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International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 03 | Mar 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 1143
MICROCONTROLLER BASED ADVANCED FABRIC TENSION MODELLING
AND IMPLEMENTATION
AKILA. M1, ANITHA. S2, DEEBA. V3, ISSANRAJ. R4
1,2,3Student, Dept. of Electronics and Instrumentation Engineering, Valliammai Engineering College,
Tamil Nadu, India.
.4Assistant Professor, Dept. of Electronics and Instrumentation Engineering, Valliammai Engineering College,
Tamil Nadu, India.
---------------------------------------------------------------------***---------------------------------------------------------------------
Abstract – Instruments are widely used in every fields. Same
way here in textile industry it has an major advantage of
measuring different parameters of the fabric. Different types
of fabric have different thickness, elongation, quality and
weight. In this project we are overcoming the disadvantage of
the current systems which measures only one parameter at a
time. In advanced fabric tension modelling, the above said
factors along with the metal detector are to be measured in
the same instrument within a lesser time. This would bring a
dramatic change in the measurement of fabrics which helps
the customers to identify the quality by their own using this
instrument.
Key Words: RFID reader –quality, type of stitching,
fading conditions, type of washing, size determining.
1. INTRODUCTION
To help the customers by identifying the quality of the cloth
by themselves and also to know the fading conditions of the
cloth and to check the properties of the cloth for different
materials they buy. It is also used in industries to
differentiate materials of the cloth .With this, the customers
can be satisfied and the tag number for the top standard
industries can be decided by them in a tag. This will bring a
change in selling fake products in the name of the top
standard companies like adidas, reebok.
1.1 Existing Systems
 AFIS - It measures only the length. The process is
done on 2-3 minutes . It measures the fabric from
the same production area.
 HVI - It measures only the strength .It does not
measures single fibers. The process is done on 1-2
minutes.
 INSTRON - Power consumption is more.
Maintenance cost is high . Circuit is complex.
 Fake fabrics cannot be identified easily.
 Metal is not detected in the normal existing system.
 There is no tag for the customers to identify the
quality.
1.2 Block Diagram
2. DESCRIPTION
RFID READER-Radio Frequency identification Reader.
It is a device used to gather information from a RFID tag .
Radiowaves are used to transfer data from the tag to the
reader. The distance between the tag and the reader can be
3-300 feet. From this, the quality of the fabric can be found
for the sake of customers.
METAL DETECTOR
It is an electronic instrument which detects the presence of
metal hidden within the object. Mostly metal detectors are
used in many applications like military, industrial
applications and also used fordetectingthe weapons.During
weaving process, it is used to detect the process ofanymetal
such as needle.
FLEX SENSOR
It is also known as bend sensor or flexible potentiometer. It
is used to measure the amount of deflection or bending or
bending. The resistance of the flux sensor increases as the
body of the components bend. In this project, the flex sensor
is used to measure the elongation. It is measured in mm.
POWER SUPPLY
International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056
Volume: 06 Issue: 03 | Mar 2019 www.irjet.net p-ISSN: 2395-0072
© 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 1144
LOAD CELL
Load cell is a physical element that can translate pressure
into an electrical signal. It is measured in gsm. It is used to
measure the weight of the fabric. It can withstand upto
1kg.Thin and thick fabrics show differents weights from
which the quality for the product manufacture can be
determined.
RFID TAG ARDUINO UNO
2.1 WORKING
The power supply is given to the circuit. Then the fabric to
be measured is placed above the sensors. Wherea clothwith
a RFID tag is made to interact with the RFID reader which
checks the quality of the fabric. It can be used in real time
application for the customer satisfaction. Thenwithloadcell
the weight of the fabric is measured. The flex sensor
measures the elongation of the fabric where it is used in
industries to differentiate sizes like S, M, XL, XXL.The metal
sensor is used for the detection of the metal where there is a
possibility that it may be brokenduringtheweavingprocess.
2.2 PERFORMANCE ANALYSIS
TYPE OF FABRIC EXAMPLE PRODUCTS
Light weight Blouses, Shirts, Summer
dresses.
Medium weight Bags, reinforcing roofing,
Fishing nets.
Heavy weight Rain coats, Umbrella, etc.
Light weight fabric range : 30-150gsm
Medium weight fabric range : 150-350gsm
Heavy weight fabric range : above 350gsm.
The weight is measured using the load cell and according to
the above values it is differentiatedandmaterialsmentioned
in the above tabular column are manufactured.
3. CONCLUSION
Hence, we measure all the parameters by the same
instrument and it will be very useful to safeguard peoples
from skin diseases like dermatitis which occurs due to the
usage of bad quality of cloth. It will be very useful in
industries to limit wastewater by increasing the fading
conditions of the cloth. It suits to all textile shops where it
can be brought into real time for the satisfaction of
customers.
REFERENCES
[1] Z. Bo, “Predicting the hairiness of cotton yarn in winding
process,” The International Conference on Educational and
Network Technology, IEEE conference, pp. 393-396,
Zhengzhou, China, June 2010.
[2] R. A. Abuzade, A. A. Gharehaghaji, and S. Sadri, “Study on
the yarn compressive stresses at balloon control ring by
signal processing,” Mechatronics, Elsevier journal, vol. 19,
no. 9, pp. 1152-1157, 2009.
[3] “Cotton sewing threads,” Egyptian Organization for
Standardization and Quality, Egypt, vol. 127, no. 1, 2013.
[4] T. Pusch, I. Wünsch, and P. Offermann, “Dynamics ofyarn
tension on knitting machines,” Dresden University of
Technology, AUTEX Research Journal, Dresden, Germany,
vol. 1, no. 2, November 2000.
[5] W. Podsiedlik, and J. Wojtysiak, “Multi-Barrier
electromagnetic tensioner for control of yarn tension in
processing,” FIBRES & TEXTILES in Eastern Europe, Poland,
vol. 14, no. 5 (59), January / December 2006.
[6] ASTM D5035-11, Standard Test Method for Breaking
Force & Elongation of textile fabrics (Strip method)
philadelpia: American Society for testing and material 8-9,
2015.

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IRJET- Microcontroller based Advanced Fabric Tension Modelling and Implementation

  • 1. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 03 | Mar 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 1143 MICROCONTROLLER BASED ADVANCED FABRIC TENSION MODELLING AND IMPLEMENTATION AKILA. M1, ANITHA. S2, DEEBA. V3, ISSANRAJ. R4 1,2,3Student, Dept. of Electronics and Instrumentation Engineering, Valliammai Engineering College, Tamil Nadu, India. .4Assistant Professor, Dept. of Electronics and Instrumentation Engineering, Valliammai Engineering College, Tamil Nadu, India. ---------------------------------------------------------------------***--------------------------------------------------------------------- Abstract – Instruments are widely used in every fields. Same way here in textile industry it has an major advantage of measuring different parameters of the fabric. Different types of fabric have different thickness, elongation, quality and weight. In this project we are overcoming the disadvantage of the current systems which measures only one parameter at a time. In advanced fabric tension modelling, the above said factors along with the metal detector are to be measured in the same instrument within a lesser time. This would bring a dramatic change in the measurement of fabrics which helps the customers to identify the quality by their own using this instrument. Key Words: RFID reader –quality, type of stitching, fading conditions, type of washing, size determining. 1. INTRODUCTION To help the customers by identifying the quality of the cloth by themselves and also to know the fading conditions of the cloth and to check the properties of the cloth for different materials they buy. It is also used in industries to differentiate materials of the cloth .With this, the customers can be satisfied and the tag number for the top standard industries can be decided by them in a tag. This will bring a change in selling fake products in the name of the top standard companies like adidas, reebok. 1.1 Existing Systems  AFIS - It measures only the length. The process is done on 2-3 minutes . It measures the fabric from the same production area.  HVI - It measures only the strength .It does not measures single fibers. The process is done on 1-2 minutes.  INSTRON - Power consumption is more. Maintenance cost is high . Circuit is complex.  Fake fabrics cannot be identified easily.  Metal is not detected in the normal existing system.  There is no tag for the customers to identify the quality. 1.2 Block Diagram 2. DESCRIPTION RFID READER-Radio Frequency identification Reader. It is a device used to gather information from a RFID tag . Radiowaves are used to transfer data from the tag to the reader. The distance between the tag and the reader can be 3-300 feet. From this, the quality of the fabric can be found for the sake of customers. METAL DETECTOR It is an electronic instrument which detects the presence of metal hidden within the object. Mostly metal detectors are used in many applications like military, industrial applications and also used fordetectingthe weapons.During weaving process, it is used to detect the process ofanymetal such as needle. FLEX SENSOR It is also known as bend sensor or flexible potentiometer. It is used to measure the amount of deflection or bending or bending. The resistance of the flux sensor increases as the body of the components bend. In this project, the flex sensor is used to measure the elongation. It is measured in mm. POWER SUPPLY
  • 2. International Research Journal of Engineering and Technology (IRJET) e-ISSN: 2395-0056 Volume: 06 Issue: 03 | Mar 2019 www.irjet.net p-ISSN: 2395-0072 © 2019, IRJET | Impact Factor value: 7.211 | ISO 9001:2008 Certified Journal | Page 1144 LOAD CELL Load cell is a physical element that can translate pressure into an electrical signal. It is measured in gsm. It is used to measure the weight of the fabric. It can withstand upto 1kg.Thin and thick fabrics show differents weights from which the quality for the product manufacture can be determined. RFID TAG ARDUINO UNO 2.1 WORKING The power supply is given to the circuit. Then the fabric to be measured is placed above the sensors. Wherea clothwith a RFID tag is made to interact with the RFID reader which checks the quality of the fabric. It can be used in real time application for the customer satisfaction. Thenwithloadcell the weight of the fabric is measured. The flex sensor measures the elongation of the fabric where it is used in industries to differentiate sizes like S, M, XL, XXL.The metal sensor is used for the detection of the metal where there is a possibility that it may be brokenduringtheweavingprocess. 2.2 PERFORMANCE ANALYSIS TYPE OF FABRIC EXAMPLE PRODUCTS Light weight Blouses, Shirts, Summer dresses. Medium weight Bags, reinforcing roofing, Fishing nets. Heavy weight Rain coats, Umbrella, etc. Light weight fabric range : 30-150gsm Medium weight fabric range : 150-350gsm Heavy weight fabric range : above 350gsm. The weight is measured using the load cell and according to the above values it is differentiatedandmaterialsmentioned in the above tabular column are manufactured. 3. CONCLUSION Hence, we measure all the parameters by the same instrument and it will be very useful to safeguard peoples from skin diseases like dermatitis which occurs due to the usage of bad quality of cloth. It will be very useful in industries to limit wastewater by increasing the fading conditions of the cloth. It suits to all textile shops where it can be brought into real time for the satisfaction of customers. REFERENCES [1] Z. Bo, “Predicting the hairiness of cotton yarn in winding process,” The International Conference on Educational and Network Technology, IEEE conference, pp. 393-396, Zhengzhou, China, June 2010. [2] R. A. Abuzade, A. A. Gharehaghaji, and S. Sadri, “Study on the yarn compressive stresses at balloon control ring by signal processing,” Mechatronics, Elsevier journal, vol. 19, no. 9, pp. 1152-1157, 2009. [3] “Cotton sewing threads,” Egyptian Organization for Standardization and Quality, Egypt, vol. 127, no. 1, 2013. [4] T. Pusch, I. Wünsch, and P. Offermann, “Dynamics ofyarn tension on knitting machines,” Dresden University of Technology, AUTEX Research Journal, Dresden, Germany, vol. 1, no. 2, November 2000. [5] W. Podsiedlik, and J. Wojtysiak, “Multi-Barrier electromagnetic tensioner for control of yarn tension in processing,” FIBRES & TEXTILES in Eastern Europe, Poland, vol. 14, no. 5 (59), January / December 2006. [6] ASTM D5035-11, Standard Test Method for Breaking Force & Elongation of textile fabrics (Strip method) philadelpia: American Society for testing and material 8-9, 2015.