High Strength Steel Plate En10025-6 S960ql1
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High Strength Steel Plate En10025-6 S960ql1

s690ql1 high strength steel Delivery terms
Quenching + tempering (Q).
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Product Introduction

High Strength Steel Plate En10025-6 S960ql1

S960Q steel plate implementation standard: EN 10025.

chemical component

grade quality C

%

Max

Si

%

Max

Mn

%

Max

P

%

Max

S

%

Max

N

%

Max

B

%

Max

Cr

%

Max

Cu

%

Max

Mo

%

Max

 

Nb
%

Max


b
Ni
%

Max

 

Ti
%

Max



b
V

%

Max



b
Zr

%

Max



b
All steel grades

(unsigned)

L L1



0.20



0.80



1.70

0.025

0.020

0.020

0.015

0.010

0.010



0.015



0.005 0



1.50



0.50



0.70



0.06



2.0



0.05



0.12



0.15
a Depending on product thickness and manufacturing conditions, the manufacturer may add one or more alloying elements to the steel to increase the maximum value in order to obtain the specified properties
b There should be at least 0.015% refined grain element present. Aluminum is one of these elements. The minimum content of soluble aluminum is 0.015%, if the aluminum content reaches a minimum of 0.018%, it is considered to reach this value, if there is doubt to determine the soluble aluminum content.

mechanical property
Table 4 Tempered steel ladle analysis based on maximum CEVa

name according to mm is the nominal thickness of the product
The maximum CEV in %
EN 10027-1 And CR

10260

EN 10027-2

£ 50
>50

£ 100
>100

£ 150
S460Q 1.8908      
S460QL 1.8906 0.47 0.48 0.50
S460QL1 1.8916      
S500Q 1.8924      
S500QL 1.8909 0.47 0.70 0.70
S500QL1 1.8984      
S550Q 1.8904      
S550QL 1.8926 0.65 0.77 0.83
S550QL1 1.8986      
S620Q 1.8914      
S620QL 1.8927 0.65 0.77 0.83
S620QL1 1.8987      
S690Q 1.8931      
S690QL 1.8928 0.65 0.77 0.83
S690QL1 1.8988      
S890Q 1.8940      
S890QL 1.8983 0.72 0.82 -
S890QL1 1.8925      
S960Q 1.8941      
    0.82 - -
S960QL 1.8933      
a See 7.2.3 for optional additions that affect the CEV.

 

Mechanical properties of tempered steel at room temperature

name Minimum yield strength ReH MPa
Nominal thickness mm
Tensile strength Rm MPa
Nominal thickness mm
Minimum elongation after fracture, % L0=5.65√S0
 EN 10027-1 and CR
10260
 EN 10027-2 3~
50
>50
~100
>100
~150
3
~50
>50
~100
100
~150
S460Q S460QL S460QL1 1.8908
1.8906
1.8916

460

440

400

550-720

500-670

17
S500Q S500QL
S500QL1
1.8924
1.8909
1.8984

500

480

440

590-770

540-720

17
S550Q S550QL S550QL1 1.8904
1.8926
1.8986

550

530

490

640-820

590-770

16
S620Q S620QL
S620QL1
1.8914
1.8927
1.8987

620

580

560

700-890

650-830

15
S690Q S690QL S690QL1 1.8931
1.8928
1.8988

690

650

630

770-940

760-930

710-900

14
S890Q S890QL S890QL1 1.8940
1.8983
1.8925

890

830

-

940-1100

880-1100

-

11
S960Q
S960QL
1.8941
1.8933
960 - - 980-1150 - - 10

Table 6 Minimum longitudinal V-shaped impact power of tempered steel

name At test temperature in J The minimum value of the medium impact test

 EN10027-1 And CR 10260

 EN10027-2

0

-20

-40

-60
S460Q 1.8908        
S500Q 1.8924        
S550Q 1.8904        
S620Q 1.8914 40 30 - -
S690Q 1.8931        
S890Q 1.8940        
S960Q 1.8941        
S460QL 1.8906        
S500QL 1.8909        
S550QL 1.8926        
S620QL 1.8927 50 40 30 -
S690QL 1.8928        
S890QL 1.8983        
S960QL 1.8933        
S460QL1 1.8916        
S500QL1 1.8984        
S550QL1
S620QL1
1.8986
1.8987
60 50 40 30
S690QL1 1.8988        
S890QL1 1.8925        

 

Table 7 requires the minimum value of the impact work of the tempered steel transverse V-shaped test component during the transverse impact test

name The minimum value of impact energy at the following temperature (℃), J
 EN 10027-1 and

CR 10260

 EN 10027-2

0

-20

-40

-60
S460Q S500Q S550Q S620Q S690Q S890Q
S960Q
1.8908

1.8924

1.8904

1.8914

1.8931

1.8940

1.8941





30





27





-





-
S460QL S500QL S550QL S620QL S690QL S890QL
S960QL
1.8906

1.8909

1.8926

1.8927

1.8928

1.8983

1.8933





35





30





27





-
S460QL1 S500QL1 S550QL1 S620QL1 S690QL1
S890QL1
1.8916

1.8984

1.8986

1.8987

1.8988

1.8925




40




35




30




27


8. Comparison list consistent with the original standard grade
Table A.1 List of comparisons with the original standard grades

by name

EN

10025-4
Same name as before
 EN 10113-2:1995 EU 137(1983) Germany France Sweden
S460Q 1.8908 S460Q 1.8908 Fe E 460 V -    
          TStE 460 V    
S460QL 1.8906 S460QL 1.8906 Fe E 460 V KT - E 460T  
S460QL1 1.8916 S460QL1 1.8916        

S500Q

1.8924

S500Q

1.8924

Fe E 500 V

StE 500 V
   
              2614
S500QL 1.8909 S500QL 1.8909 Fe E 500 V KT TStE 500 V E 500T 2615
S500QL1 1.8984 S500QL1 1.8984   EStE 460 V    

S550Q

1.8904

S550Q

1.8904

Fe E 550 V

StE 500 V
   

S550QL

1.8926

S550QL

1.8926

Fe E 550 V KT

TStE 550 V

E 550T
 
S550QL1 1.8986 S550QL1 1.8986   EStE 460 V    

S620Q

1.8914

S620Q

1.8914

Fe E 620 V

StE 620 V
   

S620QL

1.8927

S620QL

1.8927

Fe E 620 V KT

TStE 620 V

E 620T
 
S620QL1 1.8987 S620QL1 1.8987   EStE 620 V    

S690Q

1.8931

S690Q

1.8931
 
StE 690 V
   
              2624
S690QL 1.8928 S690QL 1.8928 Fe E 690 V KT TStE 690 V E 690T 2625
S690QL1 1.8988 S690QL1 1.8988   EStE 690 V    

S890Q

1.8940

S890Q

1.8940
 
-
   

S890QL

1.8983

S890QL

1.8983
 
TStE 890 V
   
S890QL1 1.8925 S890QL1 1.8925   EStE 460 V    

S960Q

1.8941

S960Q

1.8941
 
-
   

S960QL

1.8933

S960QL

1.8933
 
TStE 960 V

E 960T
 

S960QL1 steel

Application

S960QL steel sheet

Inspection and Customization

s460ml high strength low alloy steel

Machining Center

460ML structural steel

Packaging

product-700-570

 

Why Choose Us

s460ml steel sheet 

Production Workshop

High-Tensile Strength Steel Sheet

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