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E-mail: hydelect@vsnl.com
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Hydraulic Accesories
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
Designe of Hydraulic Presses
By : Q. S. Khan
Translator : Syed Anisuddin





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
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
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
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



Email : hydelect@vsnl.com
2

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






 




5.1 Reservoir 












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 1
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 36.1.1

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 20% of HP 

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


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



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

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


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










 Accessaries 












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
 



 36.1.2



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Mfg.by: M/s. Hydro-Electric Machinery, Mumbai-78.
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 (Drain) 












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

Mfg. by:
M/s. Consolidated Machines
Mumbai









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 


L-Shape Reservoir 



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Over-head Reservoir 
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Costruction Of Reservoir 




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
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
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 36.1.4

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
Mfg by:-
Hydro Electric Machinery, Mumbai


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Mfg. by: M/s. Consolidated Machine, Mumbai
6
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Wave-StreamBaffleConfigration 
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
Circuit-Sream Baffle Configration 


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
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

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
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



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 mm 
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
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 Preferably 

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 7
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



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
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
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

 mm 






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
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 8
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7
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
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8
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








xx

























 












xx
















 


























 


5.2 Oil Level Indicator 










































































































































 


























































































































































































 











































 Space 




























































Types Of indicator 








































 
















































 

























 





 













 
































































































 Maximum 





 Minimum 























































































































 BSP1
1/41/4
70
o
C 














































































 
















































































 







































































































Websites Of Manufecturers:
1) www.hydaxindia.com
2) www.hydroline.com




Mfg. by:- M/s. Hydax




















 












 




































 



9















































 


5.3 Suction stainer 




 (Coarse) 










































 (Contamination) 










































 2"BSP1/2 




































 450 LPM5 LPM 



































 (Mesh)150 30 



































































 (Pleated)
Inlet Line Filter 



 











  Clogging 

 Choking 



















































Websites of manufacturers:
www.hydaxindia.com
www.hydroline.com
www.hydraulic-supply.com
www.eaton.com/EatonCom/ProductsServices/Vickers
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Mfg. by:- M/s. Hydax
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Mfg. by:- Vickers
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Details About Filters & Stainers 
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
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
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





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
 (Microns) 



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


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 Trap 
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
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
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
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
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










 Contamination  










 

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



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
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













 Rating) 
















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
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
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


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
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
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
















 














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




 












Websites Of Manufacturers:
1-WWW.hydaxindia.com
2-WWW.hydroline.com
3-WWW.polyhydron.com
4-WWW.dunham.thomasnet.com/catagory/equip-hydraulic-hose-fitting-eaton-vickers-filters
5-http:://dunham.thomasnet.com













Mfg. by:- M/s. Hydroline















Mfg. by:- M/s. Hydroline






























Mfg. by:- M/s. Polyhydron
12

















 


5.5 Prssure Line Filter 











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

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
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
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

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
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


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






















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







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

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
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



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

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

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
 


















 300 kg/cm
2







 






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

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

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

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












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





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


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























































 





 3um 























 1 2 5 o C 0 



























Websites of manufacturers:
www.dunham.thomasnet.com/catagory/equip-hydraulic-hose-fitting-eaton-vickers-fitters
www.techno-filt.com/hydroaulicfilter.htm
www.hydaxindia.com
www.hydroline.com









































 
































Mfg. by:- M/s. Hydax










 









'AA'









13

















 


5.6 Filter Breather Assembly 













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
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
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

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

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
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



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

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










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
















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










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


















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 Coarse) 

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Pressurised Breather Assembly 

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 075 
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0.5 


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
Mfg.by:- M/s. Hydasx







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
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
Mfg.by:- M/s. Hydasx
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Mfg.by:- M/s. Hydasx
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
14
Websites of manufacturers: www.hydaxindia.com www.hydroline.com www.purolator-facet.com/breather.htm







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
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 
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
5.7 Bell Housing 

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

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
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



Websites of manufacturers:
www.polyhydron.com










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




Section 'XX" 









 



















 








































 










 












 





































































 





























 















15

















 



















 


5.8 Extension Bracket Assembly 





 



























































































































 


























































































































 

























 


































































 ISO 





















































 






























 1R,2R,11R 

 12R 



























 
































































































Websites Of Manufecturers:
WWW.polyhydron.Com



















Mfg. by: M/s Polyhydron sketch No. 5.8
16

















 


5.9 Coupling 



 







 




















































 


















































 





 



















 














 



Flexible Cupling 









 





 






 Sleeves) 












































 Hub 







 





 












  
















 































 



 (Polytera-flourtheylene) PTFE 































































 















 















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


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
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
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


 
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

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
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






Spider Cupling 








 



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
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
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
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

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
 

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
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
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
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



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

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








 Hub 














 













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



















 Hub











 








































 











 






















Website of manufacturers:
www.hydaxindia.com
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




























 






 


Mfg. by: M/s Hydax

































 


17

















 


5.10 Pressure Gauge 





















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


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



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
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















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


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
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
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
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
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
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

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



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
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








































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
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

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
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
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











 (valves) 















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

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
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










 
15 to 20 

























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



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




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
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












 15 to 20 kg/cm2


 Compensate 




















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














 kg/cm2
















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
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
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









 
 Bourdon Tube Principle 
 











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











 









 Blind 














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
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
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
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
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



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




 


 




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



















 Rachet 



 

 Movement 









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
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
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

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






 Inatial 







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

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
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
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






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
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


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
 







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






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








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
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
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
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
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
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




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












 200 kg/cm2













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
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

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

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

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

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
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
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

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
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

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








 


 

 400 kg/cm2
Pressure Gauge With Diaphragm Seal 










 


 

 










 












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


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 
 



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 
















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

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 

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
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
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
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
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

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














 (Protect) 





















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
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

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


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

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











 Across 












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



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
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
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
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



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
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
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



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












Pressure Gauge With Electrical Contect 














 


 








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
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
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
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













 Intensity 













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
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
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
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










Electronic Pressure Gauges 

















 

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

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
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 














 1.5 GHz 




 14000 Bar 
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


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
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
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



Mfg. by: M/s. thermocontrols, Mumbai



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

Mfg. by:M/s J.N. thermocontrols, Mumbai
Mfg. by:
M/s. Instrument Research
Association Pvt. Ltd. New Delhi
19

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
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
5.11 Pressure Guage Isolater 


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




















































































































































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



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























































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








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























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







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









































































Website of manufacturers:
www.hydaxindia.com
http://www.process-controls.com








 
















Mfg. by:- M/s. Hydex









 











































































Mfg. by:- M/s Hydax





















20

















 


5.12 Pressure Gauge Dumpner 


























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
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
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 



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




 








 





























 Pulsation 

















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
 (Vane) 



 













 
 (gear) 

  (Vane) 









 (Pulses) 







 



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

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
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
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
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
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
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
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
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
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



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



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

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 




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

























 







 (Viscous) 




 (Inert) 














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
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


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

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

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
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
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
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








 Porous Element 













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


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

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
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
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

















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

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

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
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









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
 



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

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



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






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

 



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



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
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
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


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
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
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




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






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
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





























 




















Websites Of Manufecturer :
WWW.hirlekarprecision.Com
WWW.adarshpressuregauge.Com






























































 


































































 







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









 


Mfg. by:- Hirlekar Precision Engineering
21
5.13 Heat Exchanger 





 









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


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










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

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

























 (efficient) 


















 




















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
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





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
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
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
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






 (Convert) 












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

 (Loss) 
















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
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
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



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 (Ambient Temprature
 



Addresses or websites of manufacturers:
www.swep.net www.maruthicoolingsystems.com
Santosh Products:8, Sardar Pratap Singh Industrial Estate No.1, LBS, Marg, (W), Mumbai-400078.



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Mfg.by:- M/s. Maruthi Cooling System
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Air-Oil Cooler
Mfg.by:- M/s. Maruthi Cooling System
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Mfg.by: M/s Santosh Products Mumbai
22
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40oC (Ambient Temprature) 
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M/S Ind. Swep Energy 











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 
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
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

 www.swep.com 











 System Pvt.Ltd.






Websites of Manufacturers:
www.swep.net
www.maruthicoolingsystems.com
www.nationalcoolingtowers.com












 



Mfg. by: M/s Ind Swep Energy System. Pune















 





























 








23

















 


5.15 Oil Cooling by Chillers 













 (Refrigerant) 
















































































































































 











































 




















 (Refrigerant) 






Websites of manufacturers:
www.swep.net
www.maruthicoolingsystems.com
www.nationalcoolingtowers.com







Mfg. by: M/s National Engineering









Mfg. by: M/s National Engineering







Mfg. by: M/s Maruthi
24

















 


5.16 Cooling Tower 

















 

































































 

































 


































 
























 







 











































 











































 

















Websites of manufecturers:
www.nationalcoolingtowers.com



























































 


























































































Mfg. by: M/s National Engineering
25

















 


5.17 Heater 







 (32 to 68 CSC) CSC 



 (Viscosity) 











































 Leakage 














 Component Valve 







 Thin 










 32 Csc 














 Suck 





















 Thik 


















 68 Csc 



















 








 






























 





















































































































 












 
























































 Thermostatically 































Websites of manufecturers:
www.warrenelectriccorp.com/applications/hydaulic-oil-heaters/default.asp
Thermostatic control Heating element
Heater
26

















 


18. Fluid Level Indicator and Controller 






















 (Over) 





























































































































 (sieged) 































































































































































 

















 (Actuate) 































































 































































Websites of manufacturers:
www.punetechtrol.com
www.waaree.com
www.kobold.com












 






















 



 







 





 
 






 


















All these Fluid Level Controllers
are manufactured by:- M/s. Pune
Techtrol.
27

















 


5.19 Flow Meter 



Turbine Meter 






 1








































































 

















































































































 











 













Positive Displacement Meter 












 









 2























































































































Mfg. by: webster-instruments
















 
































 









Mfg. by: KOBOLD Messring GmbH
28

















 


Design of-hydraulic-presses-in-urdu
Design of-hydraulic-presses-in-urdu
Design of-hydraulic-presses-in-urdu
Design of-hydraulic-presses-in-urdu
Design of-hydraulic-presses-in-urdu
Design of-hydraulic-presses-in-urdu
Design of-hydraulic-presses-in-urdu
Design of-hydraulic-presses-in-urdu

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Design of-hydraulic-presses-in-urdu

  • 1. TANVEER PUBLICATION Mumbai E-mail: hydelect@vsnl.com 800 300 500 1200 Day Light Table Hights e m , Z í W s ; à g z ´ 6 , $ n . ç G G E Y X Z ö X { y ) ! X Z ~ X } o ( 0 * v Z V z : ; à g z ´ Z & ½ h 4 n . ç G G G m ,
  • 3.                                               Designe of Hydraulic Presses By : Q. S. Khan Translator : Syed Anisuddin                                                                                                      Email : hydelect@vsnl.com 2                     
  • 4.                       5.1 Reservoir                                                                                                                                                                                                                             1                2                                  3                            36.1.1                                                                  A                                                                              B                                                                                                               Space                                                                                                                Maintenance                              (Cavitation)                                                                                             0.25 HP                               C                   20%         80%                     20% of HP                                                                                              D                                                                                                                                      Settlement                                                                                                                                          E                                                                        Accessaries                                                36.1.2                                                                           A                         B             Sucked           C                      D                                     E                         F                                        G                                                                    H 3                     
  • 5.                      cum                  I                                                                                 J       Baffles                                       K         Diffuser                             L  (Types of Reservoir)           36.1.3               (Integral Reservoir)                    1 (Separate Reservoir)                2                                             Base                                                                                                                                                                                                                           Rectangular                                                                                                                                                                Dual                                                                                          4                                                                                                        Mfg.by: M/s. Hydro-Electric Machinery, Mumbai-78.                                                                                              
  • 6. Types Of Separate Reservoir                                                                                 A (Special )                                                                                                  (Accessories)                                      Features                                           Compactness                               Container)                                         (Drain)                                                                                                                                                                                                              Mfg. by: M/s. Consolidated Machines Mumbai                                             5                     
  • 7. L-Shape Reservoir                   B                                                                                                                                                                                Over-head Reservoir                C                                                                                 Costruction Of Reservoir              36.1.4                                                         mm103         1                                                                                                                    Capacity)                    2                                                 Mfg by:- Hydro Electric Machinery, Mumbai                                                                Mfg. by: M/s. Consolidated Machine, Mumbai 6                     
  • 8.                                                        mm                                                  3                                         Space                     maximum                                 (Compensate)                                                                                                                                                             4                                                    Sluggish                                                      Wave-StreamBaffleConfigration                         A                                                                                                                                                                                                          Circuit-Sream Baffle Configration                           B                    mm            Preferably                                         5                                      Lowest)                                                                                               Avoid                                                                                            6                                        Dust                                                                            Seal                                                                                               Leaks       Rusting                                                                           7                                               mm                                                                                                                   Moisture                                                                                  Epoxy Paint                                                                                                                                                  8                                                                                                                   7                                                                                                                                                                                  
  • 9.                                                                Access Cover                                                                                                                                                                                                                                                                                                                    8                 xx                                        xx                                                
  • 10. 5.2 Oil Level Indicator                                                                                                                                                                                                                                                                                                                                                                                      Space                                                              Types Of indicator                                                                                                                                                                                                                                                Maximum        Minimum                                                                                                                          BSP1 1/41/4 70 o C                                                                                                                                                                                                                                                                           Websites Of Manufecturers: 1) www.hydaxindia.com 2) www.hydroline.com     Mfg. by:- M/s. Hydax                                                                              9                                                   
  • 11. 5.3 Suction stainer       (Coarse)                                             (Contamination)                                             2"BSP1/2                                       450 LPM5 LPM                                      (Mesh)150 30                                                                      (Pleated) Inlet Line Filter                    Clogging    Choking                                                     Websites of manufacturers: www.hydaxindia.com www.hydroline.com www.hydraulic-supply.com www.eaton.com/EatonCom/ProductsServices/Vickers         Mfg. by:- M/s. Hydax                                                                                                                                                                                                         10                                   Mfg. by:- Vickers                                                                                              
  • 12. 5.4 Return Line Filter                                                                                                                                                                                                                                                                                                                                                                        (Damage)                                                                                                                                                                                                                                                                                           11                     
  • 13.                                                                                                                                                                                                                                                                                                                                                                                 Details About Filters & Stainers                                                     (Coarse)                   (Porous)                                          (Device)              (Sieve)                                                                                                                                                                                       (Microns)                                    Trap                                                                                                      Contamination                                                    Rating)                                                                                          Websites Of Manufacturers: 1-WWW.hydaxindia.com 2-WWW.hydroline.com 3-WWW.polyhydron.com 4-WWW.dunham.thomasnet.com/catagory/equip-hydraulic-hose-fitting-eaton-vickers-filters 5-http:://dunham.thomasnet.com              Mfg. by:- M/s. Hydroline                Mfg. by:- M/s. Hydroline                               Mfg. by:- M/s. Polyhydron 12                     
  • 14. 5.5 Prssure Line Filter                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                                        300 kg/cm 2                                                                                                                    3um                          1 2 5 o C 0                             Websites of manufacturers: www.dunham.thomasnet.com/catagory/equip-hydraulic-hose-fitting-eaton-vickers-fitters www.techno-filt.com/hydroaulicfilter.htm www.hydaxindia.com www.hydroline.com                                                                            Mfg. by:- M/s. Hydax                      'AA'          13                     
  • 15. 5.6 Filter Breather Assembly                                                                                                               Coarse)                                                                                                                                                                                                                                    Liquid                                (Suck)                                                                                                                     Pressurised Breather Assembly                                                                                                                                                      075   0.5                                                                                                                                                                                   Mfg.by:- M/s. Hydasx             Mfg.by:- M/s. Hydasx                     Mfg.by:- M/s. Hydasx                                                                                                                                                                                                                              14 Websites of manufacturers: www.hydaxindia.com www.hydroline.com www.purolator-facet.com/breather.htm                     
  • 16. 5.7 Bell Housing                                                                                                           Flange                                                                                                                                                                                                                                                        Alternative                                                                                                                                                                                                          Websites of manufacturers: www.polyhydron.com                                                                               Section 'XX"                                                                                                                                                                                                                           15                     
  • 17.                      5.8 Extension Bracket Assembly                                                                                                                                                                                                                                                                                                                                                                ISO                                                                                        1R,2R,11R    12R                                                                                                                               Websites Of Manufecturers: WWW.polyhydron.Com                    Mfg. by: M/s Polyhydron sketch No. 5.8 16
  • 18.                      5.9 Coupling                                                                                                                                                                         Flexible Cupling                           Sleeves)                                               Hub                                                                                        (Polytera-flourtheylene) PTFE                                                                                                                                                                                                                     Spider Cupling                                                                       Hub                                                     Hub                                                                                           Website of manufacturers: www.hydaxindia.com                                                    Mfg. by: M/s Hydax                                      17
  • 19.                      5.10 Pressure Gauge                                                                                                                                                                                    (valves)                                                          15 to 20                                                                   15 to 20 kg/cm2    Compensate                                        kg/cm2                                          Bourdon Tube Principle                                        Blind                                                                                                                                     Rachet         Movement                                                                                                        Inatial                                                                                                                                                                                      200 kg/cm2                                                                         400 kg/cm2 Pressure Gauge With Diaphragm Seal                                                                                                                                                (Protect)                                                            Across                                                                  Pressure Gauge With Electrical Contect                                                                      Intensity                                                                                                                                                                                                                        Electronic Pressure Gauges                                              1.5 GHz       14000 Bar                                             Mfg. by: M/s. thermocontrols, Mumbai                                            18
  • 20.                                                                                                                                                              (transducer)                                                                   (transducer)                                (LVDTs)                                                                                                                                                                   LCD                                                                                                                                      LCD                        0.5 DC Volt                                                                                                                                                                                                                                                                                                                                  Mfg. by:M/s J.N. thermocontrols, Mumbai Mfg. by: M/s. Instrument Research Association Pvt. Ltd. New Delhi 19
  • 21.                      5.11 Pressure Guage Isolater                                                                                                                                VariesMaximumMinimum                                                                                                                                                                                                                                                                                                                                                                   Lock                                                                                                                                                                                                                                                                                                                                                                                                                                                                                     Website of manufacturers: www.hydaxindia.com http://www.process-controls.com                           Mfg. by:- M/s. Hydex                                                                                       Mfg. by:- M/s Hydax                      20
  • 22.                      5.12 Pressure Gauge Dumpner                                                                                        Pulsation                       (Vane)                       (gear)     (Vane)            (Pulses)                                                                                                                                                            (Viscous)       (Inert)                                                                                                                                                                                               Porous Element                                                                                                                                                                                                                     Websites Of Manufecturer : WWW.hirlekarprecision.Com WWW.adarshpressuregauge.Com                                                                                                                                                           Mfg. by:- Hirlekar Precision Engineering 21
  • 23. 5.13 Heat Exchanger                                                                 (efficient)                                                                                                                          (Convert)                                               (Loss)                                                                             (Radiation)                                                                                                    Heat Radiation                                                              0.25                                                                                                  Air Cooler                                                                                                                                                                                                          )                                                                                                                                                                                             (Cool)     (Ambient Temprature      Addresses or websites of manufacturers: www.swep.net www.maruthicoolingsystems.com Santosh Products:8, Sardar Pratap Singh Industrial Estate No.1, LBS, Marg, (W), Mumbai-400078.                                                       Mfg.by:- M/s. Maruthi Cooling System                            sucked              Air-Oil Cooler Mfg.by:- M/s. Maruthi Cooling System                                                                                           Mfg.by: M/s Santosh Products Mumbai 22                     
  • 24. 5.14 Water Cooler        40oC (Ambient Temprature)                                                                                                                                                                                                                           Shell and Tube Type Exchanger                                                                                                                                           (Extract) Plate Type Heat Exchanger                                                                                                                                                                                                                                     (Efficient)                                    M/S Ind. Swep Energy                              www.swep.com              System Pvt.Ltd.       Websites of Manufacturers: www.swep.net www.maruthicoolingsystems.com www.nationalcoolingtowers.com                  Mfg. by: M/s Ind Swep Energy System. Pune                                                         23                     
  • 25. 5.15 Oil Cooling by Chillers                (Refrigerant)                                                                                                                                                                                                                      (Refrigerant)        Websites of manufacturers: www.swep.net www.maruthicoolingsystems.com www.nationalcoolingtowers.com        Mfg. by: M/s National Engineering          Mfg. by: M/s National Engineering        Mfg. by: M/s Maruthi 24                     
  • 26. 5.16 Cooling Tower                                                                                                                                                                                                                                                                                                             Websites of manufecturers: www.nationalcoolingtowers.com                                                                                                                                                        Mfg. by: M/s National Engineering 25                     
  • 27. 5.17 Heater          (32 to 68 CSC) CSC      (Viscosity)                                              Leakage                 Component Valve          Thin             32 Csc                 Suck                        Thik                     68 Csc                                                                                                                                                                                                                                                               Thermostatically                                 Websites of manufecturers: www.warrenelectriccorp.com/applications/hydaulic-oil-heaters/default.asp Thermostatic control Heating element Heater 26                     
  • 28. 18. Fluid Level Indicator and Controller                         (Over)                                                                                                                                (sieged)                                                                                                                                                                                     (Actuate)                                                                                                                                  Websites of manufacturers: www.punetechtrol.com www.waaree.com www.kobold.com                                                                                        All these Fluid Level Controllers are manufactured by:- M/s. Pune Techtrol. 27                     
  • 29. 5.19 Flow Meter     Turbine Meter         1                                                                                                                                                                                                                        Positive Displacement Meter                          2                                                                                                                        Mfg. by: webster-instruments                                                              Mfg. by: KOBOLD Messring GmbH 28                     