st52-3 material chemical composition

steel grade 1.0570 equivalent

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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

1.0570 c45

In the tribopair bolt/shell/slice of the bucket elevator transporter conveyor machine, the previously improved martensitic stainless-steel for bolts is hardened at ≈ forty five HRC and welded with the improved high yield carbon steel for bolts. As the extra materials, an electrode primarily based on Cr-Ni-Mo (18/8/6) is used. The structure and hardness of welded samples are tested. On the tensile tester, resistance of the welded joint is examined with a simulated experiment.

ST52-3

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

 

From the X3CrNi13-four martensitic stainless steel, three totally different batches with various percentages of chromium and nickel have been analyzed. For all of the steels, the research was made utilizing a tribometer by way of to the pin-on-disk technique , the place the friction coefficient and put on price have been determined. All these exams were made according to the ASTM G99 normal, with the same working conditions for all 5 samples, just for the 2 batches of the X3CrNi13-four steel, the motor speed was diversified. The obtained outcomes have been presented via attribute graphs for the friction coefficient and thru photographs acquired with a digital and a laser microscope respectively with a specialised software program concerning the damage track profiles. It could be concluded that the C45 carbon metal confirmed the great tribological behaviour with the highest dry sliding put on resistance.

  • It can be concluded that the C45 carbon steel showed the nice tribological behaviour with the best dry sliding put on resistance.
  • From the X3CrNi13-4 martensitic stainless steel, three totally different batches with varying percentages of chromium and nickel had been analyzed.
  • For all the steels, the research was made utilizing a tribometer through to the pin-on-disk method , the place the friction coefficient and wear price were decided.
  • All these exams had been made according to the ASTM G99 commonplace, with the identical working situations for all 5 samples, only for the 2 batches of the X3CrNi13-4 metal, the motor velocity was various.

The results from the EDS evaluation showed evidence of some minor erosion-corrosion damages on the surface of the coating as well as delamination and cracking of the coating. In this paper, beside the documentation relating to the various laboratory tests of X20Cr13 metal, the cavitation erosion, dry sliding wear, hardness respectively corrosion of this martensitic chrome steel was investigate.

steel 1.0570 properties

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This paper aims to disclose a research on the potential application of Nickel chromium-based mostly coating, excessive-velocity oxygen gas sprayed, for geothermal power plants elements for corrosion-erosion and wear safety. Various checks and evaluation were carried out to evaluate the suitability of the coating for the geothermal environment DIN 17100 ST 52-3. Microstructure and chemical composition of the coating was analyzed by optical and Secondary Electron Microscope equipped Energy Dispersive X-Ray Spectroscopy . The mechanical properties of the coatings had been evaluated through nano-indentation and adhesion exams. Hardness take a look at of the coating was measured with a Vickers hardness tester, utilizing 200 g load.

This materials can replace many sorts of basic device and structural metal. The datasheet below exhibits St52 steel yield strength, tensile energy, elongation and impact resistance. The St 52 material datasheet and specification similar to chemical composition, properties and equivalents could be found in the following tables. JIS G 3101 SS400 is one of the most commonly used scorching rolled general structural steel. Supplied as plates, sheets, flats, bars, sections and so forth.

1.0570 c45

The hardness worth of the coating was excessive as compared with the reference sample. Wear exams revealed that the sprayed layer had good adhesion and cohesion, and that the wear and tear resistance improved by 12% compared to the reference sample. The samples were uncovered to geothermal steam for thirty days to test the erosion-corrosion resistance. The coating was investigated earlier than and after the corrosion check with visual, optical and electron microscopic analysis to investigate the corrosive impact of the geothermal steam.

The purpose of this paper is to study and compare the dry sliding put on resistance of carbon metal, alloyed steel and forged iron, understanding that the sliding wear is a kind of degradation that seems in varied sensible applications. Experimental research of this research was mainly carried out utilizing a tribometer in accordance with the pin-on-disk methodology , aiming to determine the coefficient of friction and wear price . The tested supplies have been some iron alloys, specifically carbon steels , alloyed steel and cast iron (EN-GJS ) respectively. The exams have been performed complying with ASTM G99 Standard, keeping the same working conditions for all of the investigated materials.

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1.0570 c45