EN 10028-2 Grade P355GH normalized or normalized formed (+N)

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Description

Non-alloy heat-resistant steel. Application in steam-boiler and pressure vessel construction. Max. application temp. approx. 400 °C

Related Standards

Equivalent Materials

Diese Materialdaten wurden von WIAM zur Verfügung gestellt

Alle Daten beziehen sich auf Raumtemperatur soweit nicht anderweitig spezifiziert. SI Einheiten werden verwendt soweit nicht anderweitig spezifiziert.
Äquivalente Standards sind ähnlich zu einem oder mehreren Standards die der Anbieter angegeben hat. Manche äquivalente Standards können strikter sein oder außerhalb der Bedingungen des ursprünglichen Standards.

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Eigenschaften

Allgemein

PropertyTemperatureValueConditionRelated StandardsShape

Dichte

20 °C

7.82 g/cm³

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normalized or normalized formed (+N)

EN 10028-2

Flat

20 °C

7.82 - 7.83 g/cm³

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normalized or normalized formed (+N)

EN 10028-2

Flat

20 °C

7.83 g/cm³

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normalized or normalized formed (+N)

EN 10028-2

Flat

Mechanisch

PropertyTemperatureValueConditionRelated StandardsShapeComment

Dehnung

15.2 %

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Predicted Value, A80 Transverse

15.4 %

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Predicted Value, A80

15.4 %

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Predicted Value, A200

16.7 %

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Predicted Value, A5

19.1 %

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Predicted Value, A50

20 °C

20 %

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normalized or normalized formed (+N)

EN 10028-2

Flat

Transverse

20 °C

20 %

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normalized or normalized formed (+N)

EN 10028-2

Flat

Elastizitätsmodul

-100 °C

217 GPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

20 °C

212 GPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

100 °C

207 - 208 GPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

100 °C

207 GPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

100 °C

208 GPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

200 °C

199 - 201 GPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

200 °C

199 GPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

200 °C

201 GPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

300 °C

192 - 193 GPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

300 °C

192 GPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

300 °C

193 GPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

400 °C

184 - 185 GPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

400 °C

184 GPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

400 °C

185 GPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

500 °C

175 GPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

600 °C

164 GPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

Flächenreduzierung

38.7 %

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Predicted Value

44.2 %

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Predicted Value, Transverse

Härte, Brinell

245 [-]

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Predicted Value, Transverse

Poissonzahl

0.29 [-]

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Typical for Low Carbon Steel

Scherfestigkeit

550.7 MPa

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Predicted Value

Schubmodule

82 GPa

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Typical for Low Carbon Steel

Streckgrenze

289.3 MPa

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Predicted Value, RP1 Transverse

297.5 MPa

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Predicted Value, RP1

432 MPa

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Predicted Value, RP05

451.1 MPa

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Predicted Value, RP02 Transverse

601.7 MPa

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Predicted Value, RP002

20 °C

280 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

Transverse

20 °C

280 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

20 °C

295 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

Transverse

20 °C

295 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

20 °C

315 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

Transverse

20 °C

315 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

20 °C

335 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

Transverse

20 °C

335 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

20 °C

345 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

Transverse

20 °C

345 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

20 °C

355 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

Transverse

20 °C

355 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

50 °C

271 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

50 °C

285 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

50 °C

305 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

50 °C

324 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

50 °C

334 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

50 °C

343 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

100 °C

255 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

100 °C

268 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

100 °C

287 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

100 °C

305 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

100 °C

314 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

100 °C

323 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

150 °C

236 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

150 °C

249 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

150 °C

265 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

150 °C

282 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

150 °C

291 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

150 °C

299 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

200 °C

217 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

200 °C

228 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

200 °C

244 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

200 °C

259 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

200 °C

267 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

200 °C

275 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

250 °C

199 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

250 °C

209 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

250 °C

224 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

250 °C

238 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

250 °C

245 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

250 °C

252 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

300 °C

183 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

300 °C

192 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

300 °C

206 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

300 °C

219 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

300 °C

225 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

300 °C

232 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

350 °C

169 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

350 °C

178 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

350 °C

190 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

350 °C

202 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

350 °C

208 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

350 °C

214 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

400 °C

159 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

400 °C

167 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

400 °C

179 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

400 °C

190 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

400 °C

196 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

400 °C

202 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

RP02

Zugfestigkeit

20 °C

470 - 650 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

Transverse

20 °C

470 - 630 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

Transverse

20 °C

470 - 650 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

20 °C

470 - 630 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

20 °C

480 - 650 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

Transverse

20 °C

480 - 630 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

Transverse

20 °C

480 - 650 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

20 °C

480 - 630 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

20 °C

490 - 650 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

Transverse

20 °C

490 - 630 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

Transverse

20 °C

490 - 650 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

20 °C

490 - 630 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

20 °C

510 - 650 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

Transverse

20 °C

510 - 630 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

Transverse

20 °C

510 - 650 MPa

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normalized or normalized formed (+N)

EN 10028-2

Flat

20 °C

510 - 630 MPa

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normalized or normalized formed (+N)

EN 10028-2

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Thermisch

PropertyTemperatureValueConditionRelated StandardsShapeComment

Koeffizient der thermischen Ausdehnung

-100 °C

1.08e-05 1/K

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normalized or normalized formed (+N)

EN 10028-2

Flat

20 °C

1.19e-05 1/K

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normalized or normalized formed (+N)

EN 10028-2

Flat

100 °C

1.22e-05 1/K

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normalized or normalized formed (+N)

EN 10028-2

Flat

100 °C

1.22e-05 - 1.25e-05 1/K

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normalized or normalized formed (+N)

EN 10028-2

Flat

100 °C

1.25e-05 1/K

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normalized or normalized formed (+N)

EN 10028-2

Flat

200 °C

1.29e-05 1/K

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normalized or normalized formed (+N)

EN 10028-2

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200 °C

1.29e-05 - 1.3e-05 1/K

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normalized or normalized formed (+N)

EN 10028-2

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200 °C

1.3e-05 1/K

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normalized or normalized formed (+N)

EN 10028-2

Flat

300 °C

1.34e-05 1/K

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normalized or normalized formed (+N)

EN 10028-2

Flat

300 °C

1.34e-05 - 1.36e-05 1/K

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normalized or normalized formed (+N)

EN 10028-2

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300 °C

1.36e-05 1/K

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normalized or normalized formed (+N)

EN 10028-2

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400 °C

1.4e-05 1/K

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normalized or normalized formed (+N)

EN 10028-2

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400 °C

1.4e-05 - 1.41e-05 1/K

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normalized or normalized formed (+N)

EN 10028-2

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400 °C

1.41e-05 1/K

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normalized or normalized formed (+N)

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500 °C

1.43e-05 1/K

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normalized or normalized formed (+N)

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500 °C

1.43e-05 - 1.45e-05 1/K

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500 °C

1.45e-05 1/K

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normalized or normalized formed (+N)

EN 10028-2

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600 °C

1.46e-05 1/K

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normalized or normalized formed (+N)

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600 °C

1.46e-05 - 1.49e-05 1/K

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normalized or normalized formed (+N)

EN 10028-2

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600 °C

1.49e-05 1/K

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normalized or normalized formed (+N)

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Max. Betriebstemperatur

20 - 400 °C

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normalized or normalized formed (+N)

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Long

400 °C

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normalized or normalized formed (+N)

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Long

500 °C

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Typical for Carbon Steel

Schmelzpunkt

1480 - 1526 °C

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Typical for Low Carbon Steel

Spezifische Wärmekapazität

-100 °C

423 J/(kg·K)

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normalized or normalized formed (+N)

EN 10028-2

Flat

20 °C

430 J/(kg·K)

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normalized or normalized formed (+N)

EN 10028-2

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20 °C

430 - 461 J/(kg·K)

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normalized or normalized formed (+N)

EN 10028-2

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20 °C

461 J/(kg·K)

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normalized or normalized formed (+N)

EN 10028-2

Flat

100 °C

479 - 500 J/(kg·K)

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normalized or normalized formed (+N)

EN 10028-2

Flat

100 °C

479 J/(kg·K)

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normalized or normalized formed (+N)

EN 10028-2

Flat

100 °C

500 J/(kg·K)

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normalized or normalized formed (+N)

EN 10028-2

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200 °C

499 - 540 J/(kg·K)

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normalized or normalized formed (+N)

EN 10028-2

Flat

200 °C

499 J/(kg·K)

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normalized or normalized formed (+N)

EN 10028-2

Flat

200 °C

540 J/(kg·K)

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normalized or normalized formed (+N)

EN 10028-2

Flat

300 °C

517 - 580 J/(kg·K)

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normalized or normalized formed (+N)

EN 10028-2

Flat

300 °C

517 J/(kg·K)

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normalized or normalized formed (+N)

EN 10028-2

Flat

300 °C

580 J/(kg·K)

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normalized or normalized formed (+N)

EN 10028-2

Flat

400 °C

536 - 620 J/(kg·K)

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normalized or normalized formed (+N)

EN 10028-2

Flat

400 °C

536 J/(kg·K)

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normalized or normalized formed (+N)

EN 10028-2

Flat

400 °C

620 J/(kg·K)

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500 °C

558 - 690 J/(kg·K)

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normalized or normalized formed (+N)

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500 °C

558 J/(kg·K)

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normalized or normalized formed (+N)

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500 °C

690 J/(kg·K)

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600 °C

587 - 780 J/(kg·K)

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600 °C

587 J/(kg·K)

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600 °C

780 J/(kg·K)

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normalized or normalized formed (+N)

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Temperaturleitfähigkeit

20 °C

11 mm²/s

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100 °C

10.7 mm²/s

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normalized or normalized formed (+N)

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200 °C

10 mm²/s

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normalized or normalized formed (+N)

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300 °C

9.2 mm²/s

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400 °C

8.2 mm²/s

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normalized or normalized formed (+N)

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500 °C

7.1 mm²/s

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600 °C

5.8 mm²/s

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Wärmeleitfähigkeit

20 °C

39.7 - 40 W/(m·K)

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20 °C

39.7 W/(m·K)

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normalized or normalized formed (+N)

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20 °C

40 W/(m·K)

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100 °C

41 W/(m·K)

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100 °C

41 - 41.3 W/(m·K)

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100 °C

41.3 W/(m·K)

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200 °C

41 W/(m·K)

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200 °C

41 - 41.5 W/(m·K)

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200 °C

41.5 W/(m·K)

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300 °C

40 W/(m·K)

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300 °C

40 - 40.4 W/(m·K)

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300 °C

40.4 W/(m·K)

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400 °C

38 W/(m·K)

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400 °C

38 - 38.7 W/(m·K)

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400 °C

38.7 W/(m·K)

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500 °C

36 W/(m·K)

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500 °C

36 - 36.6 W/(m·K)

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500 °C

36.6 W/(m·K)

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600 °C

34 W/(m·K)

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600 °C

34 - 34.3 W/(m·K)

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600 °C

34.3 W/(m·K)

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Elektrisch

PropertyTemperatureValueConditionRelated StandardsShapeComment

Elektrische Leitfähigkeit

6 S/m

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Predicted Value

spezifischer Widerstand

20 °C

2.6e-07 Ω·m

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20 °C

2.6e-07 - 2.62e-07 Ω·m

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20 °C

2.62e-07 Ω·m

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normalized or normalized formed (+N)

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100 °C

3.1e-07 Ω·m

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200 °C

3.8e-07 Ω·m

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300 °C

4.64e-07 - 4.7e-07 Ω·m

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normalized or normalized formed (+N)

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300 °C

4.64e-07 Ω·m

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normalized or normalized formed (+N)

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300 °C

4.7e-07 Ω·m

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400 °C

5.62e-07 - 5.7e-07 Ω·m

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400 °C

5.62e-07 Ω·m

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EN 10028-2

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400 °C

5.7e-07 Ω·m

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500 °C

6.76e-07 - 6.9e-07 Ω·m

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500 °C

6.76e-07 Ω·m

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500 °C

6.9e-07 Ω·m

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600 °C

8.07e-07 - 8.2e-07 Ω·m

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600 °C

8.07e-07 Ω·m

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600 °C

8.2e-07 Ω·m

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Magnetisch

PropertyValueComment

Curie-Temperatur

770 °C

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Typical for Low Carbon Steel

Chemical properties

PropertyValueConditionRelated StandardsShape

Aluminium

0.02 %

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Chrom

0.3 %

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Kohlenstoff

0.1 - 0.22 %

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Kupfer

0.3 %

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Mangan

1.1 - 1.7 %

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Molybdän

0.08 %

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Nickel

0.3 %

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Niobium

0.02 %

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0.04 %

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Phosphor

0.025 %

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Schwefel

0.01 %

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0.015 %

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Silizium

0.6 %

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Stickstoff

0.012 %

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Titan

0.03 %

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Vanadium

0.02 %

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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.