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MD. RASHEDUL ISLAM 
ID: 12106068 
SUB: ART 203 
SEC: B 
IUBAT- International University of Business Agriculture and Technology. 1
Construction of pre-cust 
pile of a ten storied commercial building 
2
 Introduction 
 Objective 
 Company profile 
 Company Organogram 
 Structure Drawing criterion 
 Skin friction 
 Estimation 
 Uses materials 
 Working procedure 
 Problem 
 Solution 
 Conclusion 
3
 STC group and Holdings Ltd. were starting as civil Engineering 
consultant. It has become one of the most experienced and well 
reputed real estate developer companies in Bangladesh. The STC 
group has many construction site. But now I want present the Cast in situ 
pile of a ten storied building at STC group . The reason of this 
presentation is to understand the whole construction process of pile with 
minimum rules and also understand the procedure of construction 
problem and solution, site supervision, site safety & security. 
4
 For understand the quality in construction work. 
 For learn about estimating process of cast in situ pile. 
 For Know the construction procedure of cast in situ 
pile. 
 For cheek the preferable condition of cast in situ pile. 
 For know the construction materials type of cast in 
situ pile. 
5
 Dominage Group is working in Real Estate, Prefabricated 
Steel Building Construction, Architectural & Engineering 
Consultancy, Interior–Exterior designing, Decoration & 
Power Sectors. 
 It was established in 2003. 
 Within the very short span, it has received number of 
satisfied clients and very good reputation as committed 
and consistent quality Provider Company. 
 Here has some good architects who takes good care of you, 
your loving children, your guest and other family 
members. 
6
CCCCoooommmmppppaaaannnnyyyy O OOOrrrrggggaaaannnnooooggggrrrraaaammmm 
7
Dominage Oasis, Plot#15, Road#8, Sec.#4, Uttara, Dhaka. 
8
Dominage Pride, Plot#37, Road#11, Sec.#13, Uttara, Dhaka 
9
Dominage parloto sisily, Plot#43, Road#108, Block# D, Boshundhara, Dhaka. 
10
 Name of the project: 
“Dominage Heaven” 
 Adders of the project: 
Road-12, House No-7/4, Block- 
A, Bosundhara R/A, Dhaka. 
 Area of the project: 5 katha 
Dominage Heaven 
11
 The pile can take load vertically end bearing and also by skin friction. 
 When the soil bearing capacity was not sufficient for carrying the 
design load by the column footing that is why the pile foundation was 
preferred for constructing a multistoried building in such a soil 
condition. 
 Now Dominage Consultancy Ltd of “Dominage Group” is preferred to 
construct the cast-in-site pile at Dominge Heaven. 
12
 When A pile develops the upward pressure on 
its skin surface against the super imposed load 
this is called skin friction. 
 Now we can say the skin friction of pile is 
transferring the loads to the soil by the surface 
of the pile. 
 In the design time we must have to care full about 
skin friction value because it must be grater 
then design load. 
13
Dominage Group 
 This is the pile lay 
out of the 
dominage Heaven. 
 Here has 56 pile in 
this project. 
 Total area = 5840 
sft . 
17'-5" 11'-3" 6'-8" 9'-0" 11'-1" 17'-5" 
B 
C 
D 
E 
F 
G 
H 
1'-9" 
1'-9" 
6" 
14'-11" 21'-4" 8'-1" 13'-7" 14'-11" 
B 
C 
D 
E 
F 
1'-9" 2'-3" 2'-3" 1'-9" 
H 
1'-9" 1'-9" 
1'-9" 
1'-9" 
1'-9" 2'-3" 2'-3" 1'-9" 
1'-9" 1'-9" 
1'-9" 2'-3" 2'-3" 1'-9" 
1'-9" 1'-9" 
1'-9" 2'-3" 2'-3" 1'-9" 
1'-9" 1'-9" 
1'-9" 2'-3" 2'-3" 1'-9" 
1'-9" 1'-9" 
1'-9" 
1'-9" 
1'-9" 2'-3" 2'-3" 1'-9" 
1'-9" 1'-9" 
1'-9" 2'-3" 2'-3" 1'-9" 
1'-9" 1'-9" 
1'-9" 2'-3" 2'-3" 
1'-9" 1'-3" 3'-3" 1'-9" 
2'-10" 1'-2" 1'-2" 
2'-10" 
1'-9" 2'-3" 2'-3" 
1'-9" 1'-3" 3'-3" 1'-9" 
2'-10" 1'-2" 1'-2" 
2'-10" 
1'-9" 2'-3" 2'-3" 
1'-9" 1'-3" 3'-3" 1'-9" 
2'-10" 1'-2" 1'-2" 
2'-10" 
1'-9" 2'-3" 2'-3" 
1'-9" 1'-3" 3'-3" 1'-9" 
2'-10" 1'-2" 1'-2" 
2'-10" 
1'-9" 2'-3" 2'-3" 
1'-9" 1'-3" 3'-3" 1'-9" 
2'-10" 1'-2" 1'-2" 
2'-10" 
1'-9" 2'-3" 2'-3" 
1'-9" 1'-3" 3'-3" 1'-9" 
2'-10" 1'-2" 1'-2" 
2'-10" 
1'-9" 2'-3" 2'-3" 1'-9" 
1'-9" 2'-3" 2'-3" 1'-9" 
1'-9" 2'-3" 2'-3" 1'-9" 
1'-9" 2'-3" 2'-3" 1'-9" 
1'-9" 2'-3" 2'-3" 1'-9" 
1'-9" 2'-3" 2'-3" 1'-9" 
1'-9" 2'-3" 2'-3" 1'-9" 
1'-9" 2'-3" 2'-3" 1'-9" 
3" 
3" 
3" 
4" 
3" 
1'-9" 
10" 
1'-9" 3'-4" 3'-4" 
10" 
1'-9" 
1'-1.5" 
3'-4.5" 3'-3.5" 
1'-2.5" 
1'-9" 
82'-11" 
70'-5" 
14
 In the pile use : 
 Length of pile = 70 ft. 
 Longitudinal bar= 60 
grade. 
 Spiral rod = 40 grade. 
 Side clear cover = 3”. 
H 
3'-0" (min.) 
10Ø @ 6" C/C FOR THE REST 
1'-6" 
20 40' 
70' 
ROAD LEVEL ± (0'-0") 
H = 6'-0" FOR PILE SUPPORTING WATER TANK 
H = 3'-0" FOR ALL OTHER PILE 
CASTING LEVEL 
BREAKING LEVEL (MIN. 3'-0") 
10mm Ø @ 5" c/c 
A A 
10mm Ø @ 6"c/c 
B 
LONG SECTION OF PILE 
15
 Dept of a pile cap = 
36”. 
 Dia of a pile = 18” . 
 Nos of longitudinal 
bare = 
 Upto 40’ = 16 mm 6 
nos others =16 mm 
3 and 3 #12 mm. 
1" 
Grade Beam 
PARKING LEVEL (ARCH.) 
PILE 
3"CC 
3" 
PILE CAP SECTION OF FIVE PILE OR OTHER 
36" 
CAP WITH 7 PILE 
16mm Ø @ 4" C/C 
16
 Here is 
 The length of the pile, L = 70 ft 
 The diameter of the pile, D = 18 inch 
 Concrete Volume = V 
 Now, 
 V= L X A 
 = 70 ft X 1.77 sft 
 = 123.9 cft 
17
 Where, 
 L = 60 ft 
 The cross sectional area of the pile is 
 A = Π D2/4 
= {3.142 X (18/12)2}/ 4 = 1.77 cft 
 Let, Volume= 123.9 cft 
 Ratio= 1:2:3 
 4.2.1 Portland Cement: 
 = (1X1.5 X123.9)/ (7) [Here, 1.5 is multiplied for dry 
volume] 
 = 26.55 cft / 1.15 cft @ 1.15 cft per bag cement 
18
 = 23.08 bag 
 = 24 bags (say) 
 4.2.2 Sylhet Sand: 
 = (2 X 1.5 X 123.9) / (7) 
 = 53.10 cft 
 = 54 cft (say) 
 4.2.3 Stone Chips: 
 = (4 X 1.5 X 123.9) / (7) 
 = 106.2 cft = 106 cft (say) 
19
 Stirrup: 
 The no of ring in a single pile is = (70/4 + 12) = 29.5 ft @ 5”C/C 
= {29.5*12 / (5-1)} + 1 = 90 nos 
 Length required for a single coil = Π X D = 3.142 X (18-3 X 2)/12 
 = 3.14 ft we can say 
= 90 X 3.14 ft = 282.6 ft @ 0.19 kg = 53.69 kg 
= 54 kg (say) 
 The no of ring in a single pile is = 70/2 = 35 ft@6”C/C 
= {35*12 / (6-1)} + 1 = 85 Nos. 
= 85 X 3.14 ft = 266.99 m @ 0.19 kg = 50.71 kg = 51 kg (say) 
 Total quantity of 10 mm Φ rod is for a pile = (54 + 51) kg = 105 kg. 
20
 Longitudinal bar: 
 16 mm dia of bar= 40 X .48 = 19.2 kg = 20 kg(say)X 6 nos of bar = 120 kg. 
 16 mm dia of bar= 20 X .48 = 9.6 kg = 10 kg (say) X 3 nos of bar = 30 kg. 
 12 mm dia of bar = 20 X .27 = 5.4 kg = 6 kg (say) X 3 nos of bar = 18 kg. 
21
 The Summery of Estimated Materials for Cast in situ pile for the Project: 
Sl No Name of the 
Material 
Unit No of 
Pile 
Required 
Quantity 
Per Pile 
Total 
Required 
Quantity 
1 Ordinary Portland 
Cement 
Bags 56 24 1344 bag 
2 Sylhet Sand CFT 56 54 3024 cft 
3 Stone Chips CFT 56 106 5936 cft 
4 Rod 16 mm Φ Ton 56 150 kg 8.4 ton 
5 Rod 12 mm Φ Ton 56 18 kg 1 .0 ton 
5 Rod 10 mm Φ Ton 56 105 kg 5.88 ton 
22
 Tripod stand: it is used for 
making frame to handle the 
total works including boring, 
washing and concreting, etc. 
 Centrifugal Pump: It is used 
for throw the drilling fluid 
inside the borehole to make 
easy the work and at the same 
time wash the cutting materials 
by chopping 
Tripod stand 
Centrifugal Pump 
23
 Winch machine: it is used for 
lifting the drilling rod, heavy 
pipe and also the reinforcement 
case by a wire. 
 Funnel: A funnel is used for 
the replacing concrete at the 
pile required depth through the 
trimmi pipe. 
Winch Machine 
Funnel 
24
 Mixer Machine: The mixer 
machine is used for preparing 
the concrete in its proper ratio. 
 Pipe Holder: The pipe holder is 
used for holding the drilling rod 
and trimmi pipe on the 
temporary casing pipe or bore 
hole. also it is needed at the 
time of removing the pipe from 
its inter joint and adjusting a 
new one for make it longer 
during drilling and concreting. 
Mixer machine 
Pipe Holder 
25
 Bucket: The bucket is used for 
replacing concrete inside the 
funnel. Bucket has a gate at the 
bottom. 
 Pile Drum: Pipe drum is used for 
the coiling the spiral strirup. It is 
made by steel bar and it is 
operated by the two person from 
the two side. 
 Cashing Pipe: The cashing pipe is 
the like a metal pipe which is 12 to 
15 ft long and its in side diameter 
is 20 to 30 inch or more then the 
chisel diameter. 
Bucket 
Cashing pipe 
26
 Trimmi pipe: It is the steel pipe 
which is inner side diameter is 8 
to 10 inch. It helps to replace the 
concrete to its end depth easily 
and it as also protects the water to 
enter the concrete. It is also used 
the compaction work. 
 Chisel or Drill bit: The chisel 
is the made of steel having in 
side hollow drill bit which has 
five equal flanges and that 
flanges is bonded with a metal 
ring that is help to cut the loose 
soil easily by the boring. This 
drill bit diameter is depending 
upon the borehole. 
Trimmi pipe 
Drill bit 
27
Dominage Group 
Drilling Rod 
 Drilling rod: It is made of steel 
and its diameter is 6 to 8 inch. It 
is used for drill the bore hole. 
28
In the Bangladesh most commonly useable process is percussion boring 
process for cast in situ pile. 
◦ Boring operation 
◦ Borehole stabilization 
◦ Preparation of reinforcement casing 
◦ Placement of the rebar case into the borehole 
◦ Concreting into the borehole. 
29
 Boring operation: 
 At first, according to the pile layout plan the 
locations of the center of the piles are selected 
carefully on the ground. 
 Before starting the boring work we must have 
to do the investigation of cast-in-situ pile the 
construction site. 
Then set the tripod and drill bit on the top of 
the pile point center. Then top of the drilling 
pipe adjusted with a head where a hose pipe is 
connected from the centrifugal pump. 
That pump is always circulating the drilling 
fluid from the settling tank to maintain the 
properties of drilling fluid during borehole 
operation. 
30
 Borehole stabilization: 
 The drilling purpose fluid is used for hole or loose the inside soil of 
borehole. 
 In percussion boring one subjects is must follow is that fresh water should 
not be used as a drilling fluid in boring operation. 
 For maintain the better quality bentonite is used as admixture with 
drilling fluid inside the borehole. 
 After that it should be washed properly not more or less. 
 When we will see no cutting material mixed with the wash water we have 
to stop the washing. 
 Then we can tell that the borehole is totally washed. 
31
 Preparation of reinforcement casing: 
 This work is must be done by the expert 
labor. 
 The reinforcement case made by expert 
because the longitudinal bars are cut 
according to the measurement of the 
structural drawing and it is bound with 
wire and welded properly with electrodes 
on a temporary hanger. 
 There are 8 mm to 10 mm 40 graded rod is 
used as spiral stirrup. 
 To make the spiral ring the pile drum is 
used in the field. 
 After the boring operation we should 
have to place the reinforcement case as 
soon as possible. 
32
 Placement of the rebar case into the borehole: 
 After ready the reinforcement case engineer must check the rebar case 
is properly bound and welded. 
 The engineer has to be careful about the place, through which the 
rebar case will be pulled over the borehole. 
 The rebar case should be placed by its self weight not by providing any 
extra force. 
 If the rebar case is placed by any external force then there is a 
possibility of caving or misguiding the rebar case inside the borehole. 
 In reinforcement case we should give the proper clear cover. 
 Finally the rebar case should have to hang with the case pipe . 
 Otherwise it will be grounded into the bore hole bottom which will be 
very harmful for pile. 
33
Image of Rebar case Placing 
34
 Concrete on the borehole: 
 Finally we have to place the concrete on the borehole. 
 For this work we are use the trimmi pipe, funnel, bucket etc. 
 We should not wait so long because then there is a possibility of caving 
or settling inside by the suspended particles. 
 After discharge the concrete from the bucket then that time trimmi pipe 
and funnel have to move up and down that time it cleaned properly. 
 From this up and down process concrete will be compressed. 
 Finally the concreting case pipe will be withdrawn carefully so that 
there is no chance for withdrawing the concrete or the rebar casing. 
35
Image of concreting 
36
 The proportion of the concrete was not maintained carefully. 
 Stone chips is not well graded and not bolder crash. 
 Trimmi pipe was divided from the joint. 
 Safety and security is not proper maintained. 
 Rebar case was displaced from the same position. 
 Rebar case caring time happen some accident. 
 Fast aid box is not available in the projects. 
 Pile caving occurred during replacing rebar case for two piles. 
37
Fig- stone chips 
38
 To the mixing time we have to careful for supervision. 
 Stone chips must take the bolder crashed. 
 Before joint must cheek the threat of the trimmi pipe. 
 Rebar case replace time we should be very careful about the accident. 
 Fast aid box must have to stoke in the site. 
 Washing time must have to care about the boring fluid. 
39
 To understand the layout and project preparation 
are very important in any construction. 
 To supervision of cast in situ pile & design work in 
an appropriate manner. 
 To control the quality of cast in situ pile. 
 Otherwise our dreams will not comes in true. 
40
 Any Question? 
41

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Pile foundation

  • 1. MD. RASHEDUL ISLAM ID: 12106068 SUB: ART 203 SEC: B IUBAT- International University of Business Agriculture and Technology. 1
  • 2. Construction of pre-cust pile of a ten storied commercial building 2
  • 3.  Introduction  Objective  Company profile  Company Organogram  Structure Drawing criterion  Skin friction  Estimation  Uses materials  Working procedure  Problem  Solution  Conclusion 3
  • 4.  STC group and Holdings Ltd. were starting as civil Engineering consultant. It has become one of the most experienced and well reputed real estate developer companies in Bangladesh. The STC group has many construction site. But now I want present the Cast in situ pile of a ten storied building at STC group . The reason of this presentation is to understand the whole construction process of pile with minimum rules and also understand the procedure of construction problem and solution, site supervision, site safety & security. 4
  • 5.  For understand the quality in construction work.  For learn about estimating process of cast in situ pile.  For Know the construction procedure of cast in situ pile.  For cheek the preferable condition of cast in situ pile.  For know the construction materials type of cast in situ pile. 5
  • 6.  Dominage Group is working in Real Estate, Prefabricated Steel Building Construction, Architectural & Engineering Consultancy, Interior–Exterior designing, Decoration & Power Sectors.  It was established in 2003.  Within the very short span, it has received number of satisfied clients and very good reputation as committed and consistent quality Provider Company.  Here has some good architects who takes good care of you, your loving children, your guest and other family members. 6
  • 8. Dominage Oasis, Plot#15, Road#8, Sec.#4, Uttara, Dhaka. 8
  • 9. Dominage Pride, Plot#37, Road#11, Sec.#13, Uttara, Dhaka 9
  • 10. Dominage parloto sisily, Plot#43, Road#108, Block# D, Boshundhara, Dhaka. 10
  • 11.  Name of the project: “Dominage Heaven”  Adders of the project: Road-12, House No-7/4, Block- A, Bosundhara R/A, Dhaka.  Area of the project: 5 katha Dominage Heaven 11
  • 12.  The pile can take load vertically end bearing and also by skin friction.  When the soil bearing capacity was not sufficient for carrying the design load by the column footing that is why the pile foundation was preferred for constructing a multistoried building in such a soil condition.  Now Dominage Consultancy Ltd of “Dominage Group” is preferred to construct the cast-in-site pile at Dominge Heaven. 12
  • 13.  When A pile develops the upward pressure on its skin surface against the super imposed load this is called skin friction.  Now we can say the skin friction of pile is transferring the loads to the soil by the surface of the pile.  In the design time we must have to care full about skin friction value because it must be grater then design load. 13
  • 14. Dominage Group  This is the pile lay out of the dominage Heaven.  Here has 56 pile in this project.  Total area = 5840 sft . 17'-5" 11'-3" 6'-8" 9'-0" 11'-1" 17'-5" B C D E F G H 1'-9" 1'-9" 6" 14'-11" 21'-4" 8'-1" 13'-7" 14'-11" B C D E F 1'-9" 2'-3" 2'-3" 1'-9" H 1'-9" 1'-9" 1'-9" 1'-9" 1'-9" 2'-3" 2'-3" 1'-9" 1'-9" 1'-9" 1'-9" 2'-3" 2'-3" 1'-9" 1'-9" 1'-9" 1'-9" 2'-3" 2'-3" 1'-9" 1'-9" 1'-9" 1'-9" 2'-3" 2'-3" 1'-9" 1'-9" 1'-9" 1'-9" 1'-9" 1'-9" 2'-3" 2'-3" 1'-9" 1'-9" 1'-9" 1'-9" 2'-3" 2'-3" 1'-9" 1'-9" 1'-9" 1'-9" 2'-3" 2'-3" 1'-9" 1'-3" 3'-3" 1'-9" 2'-10" 1'-2" 1'-2" 2'-10" 1'-9" 2'-3" 2'-3" 1'-9" 1'-3" 3'-3" 1'-9" 2'-10" 1'-2" 1'-2" 2'-10" 1'-9" 2'-3" 2'-3" 1'-9" 1'-3" 3'-3" 1'-9" 2'-10" 1'-2" 1'-2" 2'-10" 1'-9" 2'-3" 2'-3" 1'-9" 1'-3" 3'-3" 1'-9" 2'-10" 1'-2" 1'-2" 2'-10" 1'-9" 2'-3" 2'-3" 1'-9" 1'-3" 3'-3" 1'-9" 2'-10" 1'-2" 1'-2" 2'-10" 1'-9" 2'-3" 2'-3" 1'-9" 1'-3" 3'-3" 1'-9" 2'-10" 1'-2" 1'-2" 2'-10" 1'-9" 2'-3" 2'-3" 1'-9" 1'-9" 2'-3" 2'-3" 1'-9" 1'-9" 2'-3" 2'-3" 1'-9" 1'-9" 2'-3" 2'-3" 1'-9" 1'-9" 2'-3" 2'-3" 1'-9" 1'-9" 2'-3" 2'-3" 1'-9" 1'-9" 2'-3" 2'-3" 1'-9" 1'-9" 2'-3" 2'-3" 1'-9" 3" 3" 3" 4" 3" 1'-9" 10" 1'-9" 3'-4" 3'-4" 10" 1'-9" 1'-1.5" 3'-4.5" 3'-3.5" 1'-2.5" 1'-9" 82'-11" 70'-5" 14
  • 15.  In the pile use :  Length of pile = 70 ft.  Longitudinal bar= 60 grade.  Spiral rod = 40 grade.  Side clear cover = 3”. H 3'-0" (min.) 10Ø @ 6" C/C FOR THE REST 1'-6" 20 40' 70' ROAD LEVEL ± (0'-0") H = 6'-0" FOR PILE SUPPORTING WATER TANK H = 3'-0" FOR ALL OTHER PILE CASTING LEVEL BREAKING LEVEL (MIN. 3'-0") 10mm Ø @ 5" c/c A A 10mm Ø @ 6"c/c B LONG SECTION OF PILE 15
  • 16.  Dept of a pile cap = 36”.  Dia of a pile = 18” .  Nos of longitudinal bare =  Upto 40’ = 16 mm 6 nos others =16 mm 3 and 3 #12 mm. 1" Grade Beam PARKING LEVEL (ARCH.) PILE 3"CC 3" PILE CAP SECTION OF FIVE PILE OR OTHER 36" CAP WITH 7 PILE 16mm Ø @ 4" C/C 16
  • 17.  Here is  The length of the pile, L = 70 ft  The diameter of the pile, D = 18 inch  Concrete Volume = V  Now,  V= L X A  = 70 ft X 1.77 sft  = 123.9 cft 17
  • 18.  Where,  L = 60 ft  The cross sectional area of the pile is  A = Π D2/4 = {3.142 X (18/12)2}/ 4 = 1.77 cft  Let, Volume= 123.9 cft  Ratio= 1:2:3  4.2.1 Portland Cement:  = (1X1.5 X123.9)/ (7) [Here, 1.5 is multiplied for dry volume]  = 26.55 cft / 1.15 cft @ 1.15 cft per bag cement 18
  • 19.  = 23.08 bag  = 24 bags (say)  4.2.2 Sylhet Sand:  = (2 X 1.5 X 123.9) / (7)  = 53.10 cft  = 54 cft (say)  4.2.3 Stone Chips:  = (4 X 1.5 X 123.9) / (7)  = 106.2 cft = 106 cft (say) 19
  • 20.  Stirrup:  The no of ring in a single pile is = (70/4 + 12) = 29.5 ft @ 5”C/C = {29.5*12 / (5-1)} + 1 = 90 nos  Length required for a single coil = Π X D = 3.142 X (18-3 X 2)/12  = 3.14 ft we can say = 90 X 3.14 ft = 282.6 ft @ 0.19 kg = 53.69 kg = 54 kg (say)  The no of ring in a single pile is = 70/2 = 35 ft@6”C/C = {35*12 / (6-1)} + 1 = 85 Nos. = 85 X 3.14 ft = 266.99 m @ 0.19 kg = 50.71 kg = 51 kg (say)  Total quantity of 10 mm Φ rod is for a pile = (54 + 51) kg = 105 kg. 20
  • 21.  Longitudinal bar:  16 mm dia of bar= 40 X .48 = 19.2 kg = 20 kg(say)X 6 nos of bar = 120 kg.  16 mm dia of bar= 20 X .48 = 9.6 kg = 10 kg (say) X 3 nos of bar = 30 kg.  12 mm dia of bar = 20 X .27 = 5.4 kg = 6 kg (say) X 3 nos of bar = 18 kg. 21
  • 22.  The Summery of Estimated Materials for Cast in situ pile for the Project: Sl No Name of the Material Unit No of Pile Required Quantity Per Pile Total Required Quantity 1 Ordinary Portland Cement Bags 56 24 1344 bag 2 Sylhet Sand CFT 56 54 3024 cft 3 Stone Chips CFT 56 106 5936 cft 4 Rod 16 mm Φ Ton 56 150 kg 8.4 ton 5 Rod 12 mm Φ Ton 56 18 kg 1 .0 ton 5 Rod 10 mm Φ Ton 56 105 kg 5.88 ton 22
  • 23.  Tripod stand: it is used for making frame to handle the total works including boring, washing and concreting, etc.  Centrifugal Pump: It is used for throw the drilling fluid inside the borehole to make easy the work and at the same time wash the cutting materials by chopping Tripod stand Centrifugal Pump 23
  • 24.  Winch machine: it is used for lifting the drilling rod, heavy pipe and also the reinforcement case by a wire.  Funnel: A funnel is used for the replacing concrete at the pile required depth through the trimmi pipe. Winch Machine Funnel 24
  • 25.  Mixer Machine: The mixer machine is used for preparing the concrete in its proper ratio.  Pipe Holder: The pipe holder is used for holding the drilling rod and trimmi pipe on the temporary casing pipe or bore hole. also it is needed at the time of removing the pipe from its inter joint and adjusting a new one for make it longer during drilling and concreting. Mixer machine Pipe Holder 25
  • 26.  Bucket: The bucket is used for replacing concrete inside the funnel. Bucket has a gate at the bottom.  Pile Drum: Pipe drum is used for the coiling the spiral strirup. It is made by steel bar and it is operated by the two person from the two side.  Cashing Pipe: The cashing pipe is the like a metal pipe which is 12 to 15 ft long and its in side diameter is 20 to 30 inch or more then the chisel diameter. Bucket Cashing pipe 26
  • 27.  Trimmi pipe: It is the steel pipe which is inner side diameter is 8 to 10 inch. It helps to replace the concrete to its end depth easily and it as also protects the water to enter the concrete. It is also used the compaction work.  Chisel or Drill bit: The chisel is the made of steel having in side hollow drill bit which has five equal flanges and that flanges is bonded with a metal ring that is help to cut the loose soil easily by the boring. This drill bit diameter is depending upon the borehole. Trimmi pipe Drill bit 27
  • 28. Dominage Group Drilling Rod  Drilling rod: It is made of steel and its diameter is 6 to 8 inch. It is used for drill the bore hole. 28
  • 29. In the Bangladesh most commonly useable process is percussion boring process for cast in situ pile. ◦ Boring operation ◦ Borehole stabilization ◦ Preparation of reinforcement casing ◦ Placement of the rebar case into the borehole ◦ Concreting into the borehole. 29
  • 30.  Boring operation:  At first, according to the pile layout plan the locations of the center of the piles are selected carefully on the ground.  Before starting the boring work we must have to do the investigation of cast-in-situ pile the construction site. Then set the tripod and drill bit on the top of the pile point center. Then top of the drilling pipe adjusted with a head where a hose pipe is connected from the centrifugal pump. That pump is always circulating the drilling fluid from the settling tank to maintain the properties of drilling fluid during borehole operation. 30
  • 31.  Borehole stabilization:  The drilling purpose fluid is used for hole or loose the inside soil of borehole.  In percussion boring one subjects is must follow is that fresh water should not be used as a drilling fluid in boring operation.  For maintain the better quality bentonite is used as admixture with drilling fluid inside the borehole.  After that it should be washed properly not more or less.  When we will see no cutting material mixed with the wash water we have to stop the washing.  Then we can tell that the borehole is totally washed. 31
  • 32.  Preparation of reinforcement casing:  This work is must be done by the expert labor.  The reinforcement case made by expert because the longitudinal bars are cut according to the measurement of the structural drawing and it is bound with wire and welded properly with electrodes on a temporary hanger.  There are 8 mm to 10 mm 40 graded rod is used as spiral stirrup.  To make the spiral ring the pile drum is used in the field.  After the boring operation we should have to place the reinforcement case as soon as possible. 32
  • 33.  Placement of the rebar case into the borehole:  After ready the reinforcement case engineer must check the rebar case is properly bound and welded.  The engineer has to be careful about the place, through which the rebar case will be pulled over the borehole.  The rebar case should be placed by its self weight not by providing any extra force.  If the rebar case is placed by any external force then there is a possibility of caving or misguiding the rebar case inside the borehole.  In reinforcement case we should give the proper clear cover.  Finally the rebar case should have to hang with the case pipe .  Otherwise it will be grounded into the bore hole bottom which will be very harmful for pile. 33
  • 34. Image of Rebar case Placing 34
  • 35.  Concrete on the borehole:  Finally we have to place the concrete on the borehole.  For this work we are use the trimmi pipe, funnel, bucket etc.  We should not wait so long because then there is a possibility of caving or settling inside by the suspended particles.  After discharge the concrete from the bucket then that time trimmi pipe and funnel have to move up and down that time it cleaned properly.  From this up and down process concrete will be compressed.  Finally the concreting case pipe will be withdrawn carefully so that there is no chance for withdrawing the concrete or the rebar casing. 35
  • 37.  The proportion of the concrete was not maintained carefully.  Stone chips is not well graded and not bolder crash.  Trimmi pipe was divided from the joint.  Safety and security is not proper maintained.  Rebar case was displaced from the same position.  Rebar case caring time happen some accident.  Fast aid box is not available in the projects.  Pile caving occurred during replacing rebar case for two piles. 37
  • 39.  To the mixing time we have to careful for supervision.  Stone chips must take the bolder crashed.  Before joint must cheek the threat of the trimmi pipe.  Rebar case replace time we should be very careful about the accident.  Fast aid box must have to stoke in the site.  Washing time must have to care about the boring fluid. 39
  • 40.  To understand the layout and project preparation are very important in any construction.  To supervision of cast in situ pile & design work in an appropriate manner.  To control the quality of cast in situ pile.  Otherwise our dreams will not comes in true. 40