din st 52-3 chemical composition
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st52-3 grade specification
gangsteel produced and exported DIN 1.0570 and ST 52-3 steel plate as common carbon structural steel. Gangsteel supply DIN17100 ST52-3 ST52-3N Steel plate low alloy and high strength steel plate. DIN 17100 ST52-3 steel plate price and stock supplier.ST 52-3 steel plate is one mainly of Carbon structural steel, ST 52-3 is a type of steel sheet under DIN standard which is used to build ship, bridge, belongs to high strength sheet.
If you have any requirement for ST 52-3 structure steel plate,under DIN17100 standard ST 52-3 steel plate, under DIN17100 standard, please contact us.
1.Steel Grade : ST 52-3 (1.0570)
2. Standard: DIN 17100 steels for general structural purposes
3. Approval By Third Party :ABS, DNV, GL, CCS, LR , RINA, KR, TUV, CE
4. Classification: General structural purposes
5. Product form : super heavy steel plate
A grain refinement as well as evolution of a Widmanstätten construction was achieved within the stir zone of all of the joints produced. Al-alloys are extensively used in the transportation industries because of their low density and wonderful formability properties. These alloys, that are problematic in fusion-welding processes, can be successfully joined by friction-stir welding. Particularly high-energy AA7075 alloy is considered to be non-weldable by fusion welding. Friction-stir welding, being a solid-state becoming a member of technique, may also be successfully used in becoming a member of different troublesome-to-weld alloys.
In this research, 3.17-mm-thick, AA7075 Al-alloy plates each within the O-and T6-mood conditions had been joined by friction-stir welding using four different DIN 17100 ST 52-3 weld parameters. Microstructural and mechanical characterizations of the joints produced have been obtained with detailed optical microscopy investigations, intensive hardness measurements and tensile checks.
- The goal of this work was to show the feasibility of friction stir welding for becoming a member of of gentle steel.
- Comparisons before and after welding combining each metallographic and metrology techniques counsel changes in device dimensions stem from both rubbing wear and deformation of the software.
- plates (6.3 mm) of sizzling-rolled AISI 1018 delicate metal at travel speeds ranging from I to 4 in./min (0.forty two to 1.sixty eight mm/s) using molybdenum-primarily based and tungsten-based alloy instruments.
- Peak floor temperatures close to 1000degreesC have been measured on the workpiece and power during welding using thermocouples and an infrared digital camera system.
- Axial software loads measured during FSW had been roughly bf (18.7 kN), whereas measured torques have been within the vary of 500 in.-lb (55 N-m).
Results indicated that acceptable values of FSW parameters could possibly be obtained by RSM and grain dimension refinement during FSW primarily affected the hardness in the weld areas. Furthermore, the warmth from the FSW device increased the grain dimension in the Heat-affected zones , particularly on the copper aspect.
DIN17100 ST52-3 ST52-3N Steel plate Chemical composition of heat analysis:
DIN |
ASTM |
EN |
JIS |
Chemical Composition |
C.E. |
||||||||||
C |
Si |
Mn |
Cr |
Mo |
Ni |
V |
W |
S |
P |
CU |
|||||
17100 St52-3N |
A572-50 |
10025-2:2004 S355J2+N |
G3106 SM490YB |
max 0.22 |
max 0.55 |
max 1.60 |
– |
– |
– |
– |
– |
max 0.035 |
max 0.035 |
– |
max 0.047 |
St52-3 steel data sheet – 2, Chemical composition (product analysis) according to DIN 17100 and DIN EN 10025: 1993.
Chemical Composition (product analysis), %, ≤ |
|||||||||||
Country (Region) |
Standard |
Steel Grade (Steel number) |
C |
Si |
Mn |
P |
S |
N |
Cu |
Thickness (d) (mm) |
Method of deoxidation |
Germany |
DIN 17100: 1980 |
St52-3 (1.0570) |
0.22 |
0.60 |
1.70 |
0.065 |
0.065 |
– |
≤ 30 |
Fully Killded |
|
0.24 |
30 <d ≤100 |
||||||||||
European Union |
EN 10025: 1993 |
S355J2G3 (1.0570) |
0.22 |
0.60 |
1.70 |
0.045 |
0.045 |
– |
≤ 30 |
||
0.24 |
30 <d ≤100 |
||||||||||
EN 10025-2: 2004 |
S355J2 (1.0577) |
0.22 |
0.60 |
1.70 |
0.035 |
0.035 |
– |
0.60 |
≤ 30 |
||
0.24 |
30 <d ≤100 |
St52-3 Steel Properties
Physical Properties
- Material St 52-3 Density: 7.85 g/cm3
- Melting point: 1420-1460 °C (2590-2660 °F)
DIN17100 ST52-3 ST52-3N Steel plate mechanical properties steel plate
Thickness (mm) |
Yield Strength Reh min (N / mm2) |
Tensile Strength Rm min (N / mm2) |
Elongation A5 min (%) |
Impact Values Charpy-V-Notch Longitudinal Average from 3 Speimens Thk. >10<150mm. |
3<thk<100 |
315-355 |
490-630 |
max 22 |
27 Joules at -20 C |
St52-3 steel data sheet – 1, Chemical composition (ladle analysis) according to DIN 17100 and DIN EN 10025: 1993.
Chemical Composition (ladle analysis), %, ≤ |
|||||||||||
Country (Region) |
Standard |
Steel Grade (Steel number) |
C |
Si |
Mn |
P |
S |
N |
Cu |
Thickness (d) (mm) |
Method of deoxidation |
Germany |
DIN 17100: 1980 |
St52-3 (1.0570) |
0.20 |
0.55 |
1.60 |
0.040 |
0.040 |
– |
≤ 30 |
Fully Killded |
|
0.22 |
30 <d ≤100 |
||||||||||
European Union |
EN 10025: 1993 |
S355J2G3 (1.0570) |
0.20 |
0.55 |
1.60 |
0.035 |
0.035 |
– |
≤ 30 |
||
0.22 |
30 <d ≤100 |
||||||||||
EN 10025-2: 2004 |
S355J2 (1.0577) |
0.20 |
0.55 |
1.60 |
0.025 |
0.025 |
– |
0.55 |
≤ 30 |
||
0.22 |
30 <d ≤100 |
DIN17100 ST52-3 EQUIVALENT STEEL GRADES
EN 10025 – 2 |
EN 10025+A1 |
?SN |
DIN 17100 |
||
EN10027-1 |
EN10027-2 |
EN10027-1 Grade |
EN10027-2 Grade |
|
|
S235JR2 |
1.0038 |
S235JRG2 |
1.0038 |
11375 |
RSt 37-2 |
S235J0 |
1.0114 |
S235J0 |
1.0114 |
11378 |
St 37-3U |
|
– |
S235J2GR3 |
1.0116 |
11378 |
St 37-3N |
S235J2 |
1.0117 |
S235J2G4 |
1.0117 |
– |
– |
S275JR |
1.0044 |
S275JR |
1.0044 |
11443 |
St 44-2 |
S275J0 |
1.0143 |
S275J0 |
1.0143 |
11445 |
St 44-3U |
|
– |
S275J2GR3 |
1.0144 |
11448 |
St 44-3N |
S275J2 |
1.0145 |
S275J2G4 |
1.0145 |
– |
– |
S355JR |
1.0045 |
S355JR |
1.0045 |
11523 |
St 52-3 |
S355J0 |
1.0553 |
S355J0 |
1.0553 |
11523 |
St 52-3U |
|
– |
S355J2G3 |
1.057 |
11503 |
St 52-3N |
S355J2 |
1.0577 |
S355J2G4 |
1.0577 |
– |
– |
Material St 52-3 Datasheet – 3
Yield strength (≥ N/mm2); Thickness (d) mm |
||||||
Steel (Steel number) |
d≤16 |
16< d ≤40 |
40< d ≤63 |
63< d ≤80 |
80< d ≤100 |
>100 |
St52-3 |
355 |
345 |
335 |
325 |
315 |
by agreement |
Tensile Strength
Material St 52-3 Datasheet – 4
Tensile strength (≥ N/mm2); Thickness (d) mm |
|||
Steel (Steel number) |
d<3 |
3 ≤ d ≤ 100 |
>100 |
St 52-3 |
515-680 |
490-630 |
by agreement |
Note: 1MPa = 1N/mm2
Elongation
Material St 52-3 Datasheet – 5
Elongation (≥, %); Thickness (d), mm |
||||||||
Steel (Steel number) |
0.5 ≤d <1 |
1≤ d <1,5 |
1,5≤ d <2 |
2≤ d <2,5 |
2,5≤ d <3 |
|||
St52-3U |
14 |
15 |
16 |
17 |
18 |
|||
St52-3N |
12 |
13 |
14 |
15 |
16 |
|||
Elongation (≥, %); Thickness (d), mm |
||||||||
Steel (Steel number) |
3 ≤d ≤40 |
40< d ≤63 |
63 < d ≤100 |
>100 |
||||
St52-3 |
22 |
21 |
20 |
by agreement |
||||
St52-3N |
20 |
19 |
18 |
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The material flow subject inside the SZ shows an incline of ~ 10° in direction of the advancing aspect across the welding path . The base materials and the weld-related zones show comparable mechanical properties, which is as a result of competitive results of the dislocation density, grain diameter and grain orientation. This homogeneous mechanical property distribution makes the Ti-15-3 alloy joint preferred for industrial applications. corresponding to Widmanstatten ferrite, ferrite with or with out carbide aggregates and grain boundary ferrite. The effect of stir depth on joint performance was additionally decided.
What is the difference between s275 and s355 steel?
S275 provides a lower strength (than S355) but has good machinability and can be welded. The average minimum yield for S275 steel is 275 N/mm² giving its name: S275. BS EN 10025 S355, S355JR, S355J2 and S355J2+N supercedes BS4360 50A, 50B, 50C 50D.
ST52 3 steels Powered properties is Yield energy more than 355 MPa, tensile power Mpa. Friction stir welding was performed on β-kind Ti-15V-3Cr-3Al-3Sn alloy (Ti-15-3, mass%) plates to manufacture a sound weld joint. The microstructural and mechanical properties of the weld joint were systematically investigated to be able to perceive the response of the β-sort titanium alloys to the FSW. The results present that a defect-free Ti-15-3 alloy weld joint could be successfully fabricated by the FSW.
The goal of this overview is to summarize the developments in the joining of Al alloys over the latest years. This study can also be supposed to provide steering for the industry and researchers coping with becoming a member of of these alloys. EN S235JR material (1.0038 metal) is an European standard hot rolled non-alloy structural metal grade. It has good plasticity, toughness and weldability, sure strength and good chilly bending properties. For specification, datasheet and equivalent, please see the following tables.
din 1.0570 steel
This value can also be a price between these of the bottom plates. This paper deals for the first time with the consequences of further cooling medium by submerging underwater on the feasibility of dissimilar bond formation between aluminum and steel in solid-state throughout friction-stir welding course of. Thermo-mechanical cycles during the FSW course of are monitored in addition to the sound-ness of produced dissimilar weldments in terms of materials inter-mixing, grain structural features, possible phase transformations , mechanical property, and subsequent fracture behavior. The results confirmed that by rising the cooling capability of the setting and employing the low-temperature water because the submerged medium, the peak temperature through the FSW course of is continuously decreased down to ~ 400 °C. The influence influence is on suppressing the dissimilar metals inter-mixing in addition to the grain structural coarsening during dynamic recrystallization and the kinetics of intermetallic compound formation.
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