EN 10025-5 Grade S355J2W normalized or normalized formed (+N)

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Description

The weather resistant steel S355J2W with improved atmospheric corrosion resistance (by generation of an conversion coating) has a minimum yield strength of 355 N/mm². It is applicated for welded, screwed and riveted constructions, e.g. structural engineering, bridge building, tank construction, exhaust systems, vehicle construction, toolbuilding. The grid rate have to considered in the dimensioning process. An conventional surface protection is recommend at polluted air and necessary at long-time water wetting, constant wetness or close to the sea. Unweathered areas with condensate generation have to be adequate ventilated. Before welding the coating have to be removed in a distance of 10 - 20 mm from the welding edge. With increasing thickness, strength and carbon equivalent the occurence of cold cracks in the welding zone is possible. The recommendation of the EURONORM Information No. 2 (EN 1011-2) have to considered.

Related Standards

Equivalent Materials

This material data has been provided by WIAM.

"Typical" values were obtained via a literature search. "Predicted" values were imputed via artificial intelligence technology. While we have placed significant efforts in ensuring data accuracy, "typical" and "predicted" data should be considered indicative and verified by appropriate material testing. Please do contact us if additional information on the the predicted data method is required.
All metrics apply to room temperature unless otherwise stated. SI units used unless otherwise stated.
Equivalent standards are similar to one or more standards provided by the supplier. Some equivalent standards may be stricter whereas others may be outside the bounds of the original standard.

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Properties

General

PropertyValueComment

Density

7.8 g/cm³

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Typical for Steel

Mechanical

PropertyTemperatureValueConditionRelated StandardsShapeComment

Elastic modulus

190 - 210 GPa

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Typical for Steel

Elongation

17.6 %

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Predicted Value, A200

21.8 %

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Predicted Value, A5

23.7 %

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Predicted Value, A50

20 °C

14 %

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normalized or normalized formed (+N)

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A80 Transverse

20 °C

15 %

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normalized or normalized formed (+N)

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A80 Transverse

20 °C

16 %

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normalized or normalized formed (+N)

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A80 Transverse

20 °C

16 %

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normalized or normalized formed (+N)

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A80

20 °C

17 %

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normalized or normalized formed (+N)

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A80

20 °C

18 %

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normalized or normalized formed (+N)

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A80

20 °C

18 %

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normalized or normalized formed (+N)

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Transverse

20 °C

18 %

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normalized or normalized formed (+N)

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20 °C

19 %

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normalized or normalized formed (+N)

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Transverse

20 °C

20 %

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normalized or normalized formed (+N)

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Transverse

20 °C

20 %

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normalized or normalized formed (+N)

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20 °C

21 %

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normalized or normalized formed (+N)

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20 °C

22 %

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normalized or normalized formed (+N)

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Hardness, Brinell

234 [-]

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Predicted Value, Transverse

Poisson's ratio

0.3 [-]

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Typical for Steel

Reduction of area

45.3 %

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Predicted Value, Transverse

52.2 %

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Predicted Value

Shear modulus

80.2 GPa

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Predicted Value

Shear strength

539.7 MPa

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Predicted Value

Tensile strength

20 °C

450 - 680 MPa

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normalized or normalized formed (+N)

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Transverse

20 °C

450 - 630 MPa

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normalized or normalized formed (+N)

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Transverse

20 °C

450 - 600 MPa

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Transverse

20 °C

450 - 680 MPa

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normalized or normalized formed (+N)

EN 10025-5, EN 10155

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20 °C

450 - 630 MPa

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normalized or normalized formed (+N)

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20 °C

450 - 600 MPa

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normalized or normalized formed (+N)

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20 °C

470 - 680 MPa

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Transverse

20 °C

470 - 630 MPa

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Transverse

20 °C

470 - 600 MPa

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Transverse

20 °C

470 - 680 MPa

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normalized or normalized formed (+N)

EN 10025-5, EN 10155

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20 °C

470 - 630 MPa

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normalized or normalized formed (+N)

EN 10025-5, EN 10155

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20 °C

470 - 600 MPa

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normalized or normalized formed (+N)

EN 10025-5, EN 10155

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20 °C

510 - 680 MPa

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Transverse

20 °C

510 - 630 MPa

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Transverse

20 °C

510 - 600 MPa

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Transverse

20 °C

510 - 680 MPa

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normalized or normalized formed (+N)

EN 10025-5, EN 10155

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20 °C

510 - 630 MPa

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normalized or normalized formed (+N)

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20 °C

510 - 600 MPa

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normalized or normalized formed (+N)

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Yield strength

260.9 MPa

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Predicted Value, RP1

286.6 MPa

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Predicted Value, RP1 Transverse

388.1 MPa

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Predicted Value, RP02

393.3 MPa

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Predicted Value, RP05

407.9 MPa

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Predicted Value, RP02 Transverse

468.6 MPa

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Predicted Value, RP002

20 °C

295 MPa

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normalized or normalized formed (+N)

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Transverse

20 °C

295 MPa

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normalized or normalized formed (+N)

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20 °C

315 MPa

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normalized or normalized formed (+N)

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Transverse

20 °C

315 MPa

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normalized or normalized formed (+N)

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20 °C

325 MPa

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normalized or normalized formed (+N)

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Transverse

20 °C

325 MPa

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normalized or normalized formed (+N)

EN 10025-5, EN 10155

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20 °C

335 MPa

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normalized or normalized formed (+N)

EN 10025-5, EN 10155

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Transverse

20 °C

335 MPa

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normalized or normalized formed (+N)

EN 10025-5, EN 10155

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20 °C

345 MPa

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normalized or normalized formed (+N)

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Transverse

20 °C

345 MPa

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normalized or normalized formed (+N)

EN 10025-5, EN 10155

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20 °C

355 MPa

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normalized or normalized formed (+N)

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Transverse

20 °C

355 MPa

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Thermal

PropertyValueComment

Coefficient of thermal expansion

12.02 1/K

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Predicted Value

Specific heat capacity

455 J/(kg·K)

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Predicted Value

Thermal conductivity

36.13 W/(m·K)

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Predicted Value

Electrical

PropertyValueComment

Electrical conductivity

3 S/m

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Predicted Value

Electrical resistivity

35 Ω·m

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Predicted Value

Chemical properties

PropertyValueConditionRelated StandardsShape

Carbon

0.16 %

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Chromium

0.4 - 0.8 %

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Copper

0.25 - 0.55 %

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Manganese

0.5 - 1.5 %

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Molybdenum

0.3 %

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Nickel

0.65 %

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Phosphorus

0.03 %

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Silicon

0.5 %

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Sulfur

0.03 %

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Zirconium

0.15 %

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Technological properties

Property
Supplier Disclaimer

The given information is a rough description and some properties can depend on various factors such as product thickness. Please contact the supplier or refer to the related norm or standard for further information.

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