40CrMo 42CrMo 42CrMo4 Alloy Steel Pipes/Tubes

Short Description:

42CrMo alloy seamless pipe is an ultra-high strength steel with high strength and toughness, good hardenability, no obvious tempering brittleness, and small deformation during quenching. After quenching and tempering, 42CrMo alloy seamless pipe has high fatigue limit and multi impact resistance, good impact toughness at low temperature, and high creep strength and endurance strength at high temperature. Surface quenching after quenching and tempering is usually used as the heat treatment scheme for 42CrMo alloy seamless pipes.


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Product Introduction

It has no obvious temper brittleness, small deformation during quenching, high fatigue limit and multiple impact resistance after quenching and tempering treatment. 42CrMo alloy seamless pipe has good impact toughness at low temperature and high creep strength and endurance strength at high temperature. Surface quenching after quenching and tempering is usually used as the heat treatment scheme for 42CrMo alloy seamless pipes.

Alloy special steel:41Cr4,25CrMo4,30CrMo4,34CrMo4,42CrMo4

OD: 20-660mm WT: 2.3-100mm L: 5.8M, 6M, 11.8M, 12M or any other specified length.

Application: Machining, General engineering, crane arm, Bushes, Cylinders Various, Conveyor Rolls, Hollow Shafts, Hollow Parts and components, Nuts, Rings, etc

Product Application 

Application of 42CrMo alloy seamless pipe: the special steel used for bridges is "42CrMo", the special steel for automobile girders is "42CrMo", and the special steel for pressure vessels is "42CrMo". This kind of steel improves the mechanical properties of steel by adjusting the carbon (c) content. Therefore, according to the carbon content, this kind of steel can be divided into: low carbon steel -- the carbon content is generally less than 0.25%, such as 10 and 20 steel; Medium carbon steel -- the carbon content is generally between 0.25 and 0.60%, such as 35 and 45 steel; High carbon steel -- the carbon content is generally greater than 0.60%. This type of steel is generally not used to make steel pipes.

Typical Application
Suitable for making large and medium-sized plastic molds requiring certain strength and toughness.

Product Display

40crmo 42CrMo 42CrMo4 Alloy9
40crmo 42CrMo 42CrMo4 Alloy8
40crmo 42CrMo 42CrMo4 Alloy7
40crmo 42CrMo 42CrMo4 Alloy10
40crmo 42CrMo 42CrMo4 Alloy1
40crmo 42CrMo 42CrMo4 Alloy11

Chemical Composition (Cast Analysis) For Tubes Made From Alloy Special Steels In % By Mass a

Steel grade

C

Si

Mn

P

S

Cr

Mo

Ni

Steel name

Steel number

min.

max.

max.

min.

max.

max.

max.

min.

max.

min.

max.

min.

max.

41Cr4

1.7035

0,38

0,45

0,40

0,60

0,90

0,035

0,035

0,90

1,20

-

-

-

-

25CrMo4

1.7218

0,22

0,29

0,40

0,60

0,90

0,035

0,035

0,90

1,20

0,15

0,30

-

-

30CrMo4

1.7216

0,27

0,34

0,35

0,35

0,60

0,035

0,035

0,80

1,15

0,15

0,30

-

-

34CrMo4

1.7220

0,30

0,37

0,40

0,60

0,90

0,035

0,035

0,90

1,20

0,15

0,30

-

-

42CrMo4

1.7225

0,38

0,45

0,40

0,60

0,90

0,035

0,035

0,90

1,20

0,15

0,30

-

-

a See also 7.1.
b<0,25% Cu.

Mechanical Properties for Tubes Made of Steels in Accordance with Table 6 in Delivery Condition +QT

Steel grade

Minimum tensile properties

Steel name

Steel number

Yield strength (ReH) MPa

Tensile strength ( Rm) MPa

Elongation A%

For T in mm

For T in mm

For T in mm

T≤8

8<T≤20

20<T≤50

50<T≤80

T≤8

8<T≤20

20<T≤50

50<T≤80

T≤8

8<T≤20

20<T≤50

50<T≤80

l

t

l

t

l

t

l

t

41Cr4

1.7035

800

660

560

-

1000

900

800

-

11

9

12

10

14

12

-

-

25CrMo4

1.7218

700

600

450

400

900

800

700

650

12

10

14

12

15

13

16

14

30CrMo4

1.7216

750

630

520

480

950

850

750

700

12

10

13

11

14

12

15

13

34CrMo4

1.7220

800

650

550

500

1000

900

800

750

11

9

12

10

14

12

15

13

42CrMo4

1.7225

900

750

650

550

1100

1000

900

800

10

8

11

9

12

10

13

11

NOTE l = longitudinal, t = transverse.

Tolerances On Outside Diameter And On Thickness

Tolerances of Lengths:
When Length equals 6000mm, Tolerances 0/+10
When 6 000 < L =12 000, Tolerances 0/+15
When > 12 000,Tolerances 0/+ by agreement
Process specification and physical properties of 42CrMo steel pipe
42CrMo steel pipe, carbon content: 0.38 ~ 0.45%, silicon: 0.17 ~ 0.37%, manganese: 0.50 ~ 0.80%.

42CrMo steel pipe belongs to ultra-high strength steel, with high strength and toughness, good hardenability, no obvious tempering brittleness, high fatigue limit and multiple impact resistance after quenching and tempering treatment, and good low-temperature impact toughness.

The steel is suitable for manufacturing large and medium-sized plastic molds requiring certain strength and toughness. Its corresponding international standard organization brand: 42CrMo4 corresponds to Japanese brand: scm440 corresponds to German brand: 42CrMo4 approximately corresponds to American brand: 4140 characteristics and scope of application: high strength, hardenability, good toughness, small deformation during quenching, high creep strength and endurance strength at high temperature. It is used to manufacture forgings with higher strength and larger quenching and tempering cross-section than 35CrMo steel, such as large gear for locomotive traction, transmission gear of supercharger, rear axle, connecting rod and spring clamp with great load, drill pipe joint and fishing tool for oil deep well below 2000m, and mold for bending machine.

Chemical Composition

Sulfur s: allowable residual content ≤ 0.035%

Phosphorus P: allowable residual content ≤ 0.035%

Chromium (CR): 0.90 ~ 1.20%

Nickel Ni: allowable residual content ≤ 0.030%

Copper Cu: allowable residual content ≤ 0.030%

Molybdenum (MO): 0.15 ~ 0.25%

Allowable stress of 42CrMo

42CrMo allowable stress 186 ~ 310 / MPa, yield point 930 σ S / MPa, 42CrMo has high strength, hardenability, good toughness, small deformation during quenching, and high creep strength and endurance strength at high temperature. 42CrMo steel pipe is used to manufacture forgings with higher strength and larger quenched and tempered section than 35CrMo steel.

Physical Property

1) Critical point temperature (approximate): AC1 = 730 ° C, AC3 = 800 ° C, Ms = 310 ° C.

2) Linear expansion coefficient: temperature 20 ~ 100 ° C / 20 ~ 200 ° C / 20 ~ 300 ° C / 20 ~ 400 ° C / 20 ~ 500 ° C / 20 ~ 600 ° C, linear expansion coefficient: 11.1 × 10K/12.1 × 10K/12.9 × 10K/13.5 × 10K/13.9 × 10K14.1 × 10K。

3) Elastic modulus: temperature 20 ° C / 300 ° C / 400 ° C / 500 ° C / 600 ° C, elastic modulus 210000mpa / 185000mpa / 175000mpa / 165000mpa / 15500mpa

Process Specification

Hot working specification
The heating temperature is 1150 ~ 1200 ° C, the starting temperature is 1130 ~ 1180 ° C, and the ending temperature is > 850 ° C, φ> 50mm, slow cooling.

Normalizing specification
The normalizing temperature is 850 ~ 900 ° C, and the furnace is cooled by air.

High temperature tempering specification
The tempering temperature is 680 ~ 700 ° C, and the furnace is cooled by air.

Quenching and tempering specifications
Preheating temperature 680 ~ 700 ° C, quenching temperature 840 ~ 880 ° C, oil cooling, tempering temperature 580 ° C, water cooling or oil cooling, hardness ≤ 217hbw.

Specification for subcritical strengthening and toughening
Quenching temperature 900 ° C, tempering temperature 560 ° C, hardness (37 ± 1) HRC

Specification for induction quenching and tempering
Quenching temperature 900 ° C, tempering temperature 150 ~ 180 ° C, hardness 54 ~ 60HRC.

Process Specification

Hot working specification
The heating temperature is 1150 ~ 1200 ° C, the starting temperature is 1130 ~ 1180 ° C, and the ending temperature is > 850 ° C, φ> 50mm, slow cooling.

Normalizing specification
The normalizing temperature is 850 ~ 900 ° C, and the furnace is cooled by air.

High temperature tempering specification
The tempering temperature is 680 ~ 700 ° C, and the furnace is cooled by air.

Quenching and tempering specifications
Preheating temperature 680 ~ 700 ° C, quenching temperature 840 ~ 880 ° C, oil cooling, tempering temperature 580 ° C, water cooling or oil cooling, hardness ≤ 217hbw.

Specification for subcritical strengthening and toughening
Quenching temperature 900 ° C, tempering temperature 560 ° C, hardness (37 ± 1) HRC

Specification for induction quenching and tempering
Quenching temperature 900 ° C, tempering temperature 150 ~ 180 ° C, hardness 54 ~ 60HRC.


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