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Cold drawn pipe
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  • Cold drawn pipe

Cold drawn pipe

Description

In the production process, cold drawn pipes are usually quenched and heated using a high-temperature salt bath furnace to achieve deoxidation. However, during implementation, cold drawn pipes cannot be completely deoxidized. When subjected to cold carbon erosion, cold drawn pipes may exhibit insufficient hardness. The cooling rate during the quenching process also significantly affects the hardness of cold drawn pipes. Generally, the slower the cooling speed, the lower the product hardness. To prevent this situation, it is necessary to strictly restore the salt bath and control the cooling temperature and time to achieve the best product.

The hardening of cold drawn pipes is precise. During the cold drawing process, the metal undergoes plastic deformation. There are many slip systems in the crystal. Dislocation movements intercept each other. Many dislocations are pinned, leading to dislocation accumulation and the cessation of dislocation sources. These processes result in a reduced dislocation mobility and a significant increase in dislocation density within the crystal. When further plastic deformation occurs, the stress increases enough to cause pinned dislocations to start moving, leading to the crossing and sliding of screw dislocations, while edge dislocations cannot cross and slide, resulting in dislocation crossing and an increase in the fixed order. Therefore, by increasing dislocation density and reducing dislocation mobility during the cold drawing process, the hardness and strength of the metal material are improved, making the generation and movement of dislocations more difficult. This is the metallurgical principle of cold drawing.

Product Parameters

Model
JLB150T
JLB250T
JLB300T
JLB400T
JLB600T
JLB1000T

Maximum Tension

(KN)

1630
2700
3200
4100
6500
12000

Drawing Speed

(M/min)

0-5.5
0-4.5
0-4.5
0-4
0-3
0-3

Effective Length of Finished Pipe

(M)

1.5-10
1.5-10
1.5-10
1.5-10
1.5-10
1.5-10

Thickness of Finished Pipe

(mm)

20
25
30
33
42
70

Main Oil Cylinder

(mm)

Φ320/Φ 150x10000
Φ420/Φ 210x10000
Φ450/Φ 210x10000
Φ500/Φ 220x10000
Φ630/Φ 280x10000
Φ850/Φ 350x10000

System Station Count

(Station)

2
2
2
2
2
2

System Working Pressure

(Mpa)

26
26
26
26
26
26

System Maximum Pressure

(Mpa)

31.5
31.5
31.5
31.5
31.5
31.5

Pump (Manual Variable Piston Pump)

160Lx3
160Lx2 250Lx1
250Lx3
250Lx3
250Lx3
400Lx3

Main Motor

(KW)

55x3
55x2 75x3
75x3
75x2 90x1
90x3
132x3
Dimensions (WxHxL)
1.6x1.4x42
1.7x1.5x44
1.7x1.5x44
1.9x1.8x45
2.1x2x45
2.65x2.65x60

Weight

(T)

86
100
120
180
220
300

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