EN 10088-1 Grade X3CrTi17 soft annealed (+A)

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Description

Acc. VdTÜV material data sheet 494 : 1996-06 the stainless ferritic steel X 6 CrTi 17, mat. no. 1.4510, is used for longitudinal welded tubes for pressure vessels acc. TRB 100 and AD data sheet W 2 at operating temperatures from - 10 to 280 °C. and pressures up to 50 bar and for type approved hot water boiler up to 100 °C. The weldability is examined allowing for the generally accepted engineering rules for inert arc welding without filler or with wire electrode and for seam welding. Preheating is mostly not necessary, the intermediate layer temperature amounts to max. 200 °C. An heat treatment after the welding is unusual. Longitudinal welded tubes have to recrystallising annealed. The material is also in the welded condition resistant against intercrystalline corrosion. For the material acc. DIN EN 10088-1 : 1995-08 applies: The mark X3CrTi17 is comparable to X 6 CrTi 17 (here higher C-content). This material is a ferritic steel with comparable general corrosion properties like 1.4016. It is widely resistant in water, steam, weak acids and bases as well as in oxidizing acids. The steel shows increased stress corrosion resistance in hot bases, low chloride containing water. No risk of intercrystalline corrosion after welding due to Ti-addition, but it is therefore unsuitable for mirror finishing. Application for welded parts in washing machines (lye tanks) and partly in chemical apparatus engineering (weak acids), in dairy, food, brewery, dyeing and soap industry.

Related Standards

Equivalent Materials

Diese Materialdaten wurden von WIAM zur Verfügung gestellt

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Eigenschaften

Allgemein

PropertyTemperatureValue

Dichte

20.0 °C

7.56 - 7.7 g/cm³

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Mechanisch

PropertyTemperatureValueComment

Dehnung

20.0 °C

23 %

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Dehnung A80

20.0 °C

23 %

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Dehnung A80, transversal

20.0 °C

23 %

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Dehnung, transversal

20.0 °C

23 %

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Elastizitätsmodul

20.0 °C

218 - 220 GPa

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100.0 °C

213 - 215 GPa

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200.0 °C

206 - 210 GPa

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300.0 °C

198 - 205 GPa

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400.0 °C

190 - 195 GPa

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500.0 °C

180 GPa

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600.0 °C

167 GPa

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700.0 °C

150 GPa

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Poissonzahl

23.0 °C

0.3 [-]

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Typical for Ferritic Stainless Steel

Schubmodule

23.0 °C

77 GPa

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Typical for Ferritic Stainless Steel

Streckgrenze Rp 0,2

20.0 °C

230 MPa

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100.0 °C

195 MPa

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150.0 °C

190 MPa

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200.0 °C

185 MPa

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250.0 °C

175 MPa

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300.0 °C

165 MPa

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350.0 °C

155 MPa

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Streckgrenze Rp 0,2, transversal

20.0 °C

240 MPa

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Zugfestigkeit

20.0 °C

420 - 600 MPa

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Zugfestigkeit, transversal

20.0 °C

420 - 600 MPa

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Thermisch

PropertyTemperatureValueComment

Koeffizient der thermischen Ausdehnung

20.0 °C

9.9E-6 1/K

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100.0 °C

1E-5 - 1.03E-5 1/K

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200.0 °C

1E-5 - 1.08E-5 1/K

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300.0 °C

1.05E-5 - 1.12E-5 1/K

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400.0 °C

1.05E-5 - 1.16E-5 1/K

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500.0 °C

1.1E-5 - 1.19E-5 1/K

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600.0 °C

1.21E-5 1/K

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700.0 °C

1.24E-5 1/K

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800.0 °C

1.29E-5 1/K

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Max. Betriebstemperatur, lang

-10 - 280 °C

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Schmelzpunkt

1425 - 1530 °C

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Typical for Ferritic Stainless Steel

Spezifische Wärmekapazität

20.0 °C

450 - 460 J/(kg·K)

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100.0 °C

482 J/(kg·K)

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200.0 °C

506 J/(kg·K)

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300.0 °C

525 J/(kg·K)

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400.0 °C

547 J/(kg·K)

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500.0 °C

576 J/(kg·K)

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600.0 °C

616 J/(kg·K)

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Temperaturleitfähigkeit

20.0 °C

4.7 mm²/s

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100.0 °C

4.5 mm²/s

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200.0 °C

4.5 mm²/s

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300.0 °C

4.6 mm²/s

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400.0 °C

4.4 mm²/s

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500.0 °C

4.1 mm²/s

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600.0 °C

3.6 mm²/s

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Wärmeleitfähigkeit

20.0 °C

16 - 25 W/(m·K)

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100.0 °C

17.2 W/(m·K)

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200.0 °C

18.6 W/(m·K)

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300.0 °C

20 W/(m·K)

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400.0 °C

21.2 W/(m·K)

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500.0 °C

22.3 W/(m·K)

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600.0 °C

23.3 W/(m·K)

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700.0 °C

24.1 W/(m·K)

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800.0 °C

25.5 W/(m·K)

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900.0 °C

26.9 W/(m·K)

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1000.0 °C

28.3 W/(m·K)

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Elektrisch

PropertyTemperatureValue

spezifischer Widerstand

20.0 °C

6E-7 - 9.06E-7 Ω·m

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100.0 °C

9.42E-7 Ω·m

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200.0 °C

9.87E-7 Ω·m

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300.0 °C

1.03E-6 Ω·m

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400.0 °C

1.08E-6 Ω·m

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500.0 °C

1.12E-6 Ω·m

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600.0 °C

1.18E-6 Ω·m

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700.0 °C

1.22E-6 Ω·m

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800.0 °C

1.24E-6 Ω·m

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900.0 °C

1.26E-6 Ω·m

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1000.0 °C

1.27E-6 Ω·m

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Chemical properties

PropertyValue

Chrom

16 - 18 %

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Kohlenstoff

0.05 %

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Mangan

1 %

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Phosphor

0.04 %

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Schwefel

0.015 %

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Silizium

1 %

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Titan

0.8 %

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