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Seamless Cold Drawn Steel Pipe , Cold Drawn Steel Tube

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Xi'an New Force Energy Engineering Co.,Ltd

Seamless Cold Drawn Steel Pipe , Cold Drawn Steel Tube

Country/Region china
City & Province Shaanxi
Categories Metal Casting Machinery
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Product Details

Seamless Cold Drawn Steel Pipe , Cold Drawn Steel Tube

 

Cold drawn steel pipe is normally divided into low and medium pressure boiler pipe, high pressure boiler pipe, steel pipe, stainless steel pipe, oil cracking pipe, the other steel, but also thin-walled carbon steel, alloy steel thin-walled, thin-walled stainless steel, special steel pipe.

Cold drawn means at room temperature, after cold drawing, cold, cold drawn, such as the processing of cold steel or steel into various types steel. (Including a tapered pipe, oval shaped steel pipe, etc. are manufactured using this method)

Advantages of cold drawn steel pipe: molding speed, high output, and does not damage the coating, can be in the form of cutting brittle various kinds of cross section, to meet the needs of the conditions of use. Cold drawn can make the steel produces very large plastic deformation, thus improve the yield point of steel.

 

 

1. Standards

ASME SA106 —— American Boiler and Pressure Vessel norms

ASME SA333 —— American Boiler and Pressure Vessel norms

ASME SA335 —— American Boiler and Pressure Vessel norms

DIN17175 —— German industry standards

EN10216-2 —— European pressure piping standards

 

2. Application

For the low and medium pressure boiler and steam header pipes; for the high-pressure boiler and steam pipes, and the petrochemical industry pipes.

 

3. Steel pipes No. of main production:

SA106B, SA106C, SA333 I, SA333 VI, SA335 P5, SA335 P11, SA335 P12, SA335P22, SA335 P91, SA335 P92,

 

4. Size Available

3''~ 8’’ (88.9mm~219.1mm)

 

5. Mechanical Properties

StandardsSteel pipes No.Tensile strength
(Mpa)
Bend strength
(Mpa)
Elongation
(%)
Impact energy
(J)
Hardness
ASME SA106SA106B≥415≥240≥22≥35/
SA106C≥485≥275≥20≥35/
ASME SA333SA333 I≥380≥205≥28-45≥18/
SA335 P11ASME SA335≥415≥205≥22≥35≤163HB
SA335 P12≥415≥220≥22≥35≤163HB
SA335 P22≥415≥205≥22≥35≤163HB
SA335 P5≥415≥205≥22≥35≤187HB
SA335 P91585~760≥415≥20≥35≤250HB
SA335 P92≥620≥440≥20≥35250HB
DIN17175ST45.8/III410~530≥255≥21≥27(DVM)/
15Mo3450~600≥270≥22≥34(DVM)/
13CrMo44440~590≥290≥22≥34(DVM)/
10CrMo910480~630≥280≥20≥34(DVM)/
EN10216-215NiCuMoNb5-6-4 (WB36)610~780≥440≥19≥40/

 

6. Chemical Composition:

StandardsSteel pipes No.Chemical composition(%)
CSiMnPSCrMoCuNiVAlWCbN
ASME SA106SA106B

0.17~

0.25

0.1

0.70~

1.00

≤0.030≤0.030         
SA106C

0.23~

0.27

0.1

0.70~

1.00

≤0.030≤0.030         
ASME SA333SA333 I

0.09~

0.12

/

0.7~

1.00

≤0.020≤0.010         
SA333 VI

0.09~

0.12

0.1

0.9~

1.10

≤0.020≤0.010         
ASME SA335SA335 P11

0.05~

0.15

0.50~

1.0

0.30~

0.60

≤0.030≤0.030

1.00~

1.50

0.50~

1.00

       
SA335 P12

0.05~

0.15

≤0.50

0.30~

0.61

≤0.030≤0.030

0.80~

1.25

0.44~

0.65

       
SA335 P22

0.05~

0.15

≤0.50

0.30~

0.60

≤0.030≤0.030

1.90~

2.60

0.87~

1.13

       
SA335 P5≤0.15≤0.50

0.30~

0.60

≤0.025≤0.025

4.00~

6.00

0.45~

0.65

       
SA335 P91

0.08~

0.12

0.20~

0.50

0.30~

0.60

≤0.020≤0.010

8.00~

9.50

0.85~

1.05

 

0.40

0.18

~0.25

0.015

 

0.06~

0.10

0.03~

0.07

SA335 P92

0.07~

0.13

≤0.50

0.30~

0.60

≤0.020≤0.010

8.50~

9.50

0.30~

0.60

 

0.40

0.15~

0.25

0.015

1.50~

2.00

0.04~

0.09

0.03~

0.07

DIN 17175ST45.8/III≤0.21

0.10~

0.35

0.40~

1.20

≤0.040≤0.040≤0.30        
15Mo3

0.12~

0.20

0.10~

0.35

0.40~

0.80

≤0.035≤0.035 

0.25~

0.35

       
13CrMo44

0.10~

0.18

0.10~

0.35

0.40~

0.70

≤0.035≤0.035

0.70~

1.10

0.45~

0.65

       
10CrMo910

0.08~

0.15

≤0.50

0.30~

0.70

≤0.025≤0.020

2.00~

2.50

0.90~

1.10

≤0.30

0.30

 

0.015

   
EN1021 6-215NiCuMoNb5-6-4 (WB36)≤0.17

0.25~

0.50

0.80~

1.20

≤0.025≤0.020≤0.30

0.25~

0.50

0.50~

0.80

1.00~

1.30

 ≤0.05 

0.015~

0.045

 

 

 

 

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