WL 3.4384 Grade 3.4384 T7351

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Description

DIN 3.4384, derived from Aluminum 7075, provides excellent toughness for a broad variety of applications. This alloy offers several metalworking options that include machining, forming, and heat treating. For machining, DIN 3.4384 functions best in the annealed condition and should be used with oil-based lubricants. It is also most easily formed in the annealed condition, as its hardened state results in spring-back. This alloy is typically available in flat rolled products, and it is widely used for applications that require high strength, including planes and other aerospace assemblies.

Related Standards

Equivalent Materials

Los datos sobre este material han sido proporcionados por WIAM,AluKey.

A menos que se indique lo contrario, todas las medidas corresponden a condiciones de temperatura ambiente. A menos que se indique lo contrario, se utilizan las unidades del SI.
Las normas armonizadas son similares a uno o varios estándares del proveedor. Es posible que algunas normas armonizadas se ajusten al estándar original, mientras que otras pueden quedar fuera de su alcance.

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Propiedades

General

PropertyTemperatureValueConditionRelated StandardsShape

Densidad

2.8 g/cm³

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T7351

WL 3.4384

Plate

20.0 °C

2.8 g/cm³

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T7351

WL 3.4384

Plate

Mecánica

PropertyTemperatureValueConditionRelated StandardsShapeComment

Coeficiente de Poisson

0.33 [-]

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Typical for Wrought 7000 Series Aluminium

Dureza Brinell

130.0 [-]

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T7351

WL 3.4384

Plate

20.0 °C

130.0 [-]

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T7351

WL 3.4384

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Elongación

6.0 %

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T7351

WL 3.4384

Plate

A50

7.0 %

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T7351

WL 3.4384

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A50

20.0 °C

6.0 %

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T7351

WL 3.4384

Plate

20.0 °C

7.0 %

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T7351

WL 3.4384

Plate

Módulo de cizallamiento

27.0 GPa

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T7351

WL 3.4384

Plate

20.0 °C

27.0 GPa

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T7351

WL 3.4384

Plate

Módulo de compresibilidad

20.0 °C

73.0 GPa

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T7351

WL 3.4384

Plate

Módulo elástico

71.0 GPa

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T7351

WL 3.4384

Plate

20.0 °C

71.0 GPa

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T7351

WL 3.4384

Plate

Plane-Strain Fracture Toughnes

20.0 °C

27.5 - 50.2 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

27.5 - 43.4 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

27.5 - 50.5 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

27.5 - 42.3 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

27.5 - 36.6 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

32.8 - 50.2 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

32.8 - 43.4 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

32.8 - 50.5 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

32.8 - 42.3 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

32.8 - 36.6 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

36.0 - 50.2 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

36.0 - 43.4 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

36.0 - 50.5 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

36.0 - 42.3 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

36.0 - 36.6 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

36.6 - 50.2 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

36.6 - 43.4 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

36.6 - 50.5 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

36.6 - 42.3 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

36.6 - 41.7 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

36.6 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

41.7 - 50.2 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

41.7 - 43.4 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

41.7 - 50.5 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

41.7 - 42.3 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

42.3 - 50.2 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

42.3 - 43.4 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

42.3 - 50.5 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

42.3 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

43.4 - 50.2 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

43.4 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

43.4 - 50.5 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

50.2 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

50.2 - 50.5 MPa·√m

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T7351

WL 3.4384

Plate

20.0 °C

50.5 MPa·√m

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T7351

WL 3.4384

Plate

Resistencia a la tracción

420.0 MPa

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T7351

WL 3.4384

Plate

440.0 MPa

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T7351

WL 3.4384

Plate

460.0 MPa

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T7351

WL 3.4384

Plate

470.0 MPa

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T7351

WL 3.4384

Plate

480.0 MPa

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T7351

WL 3.4384

Plate

20.0 °C

420.0 MPa

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T7351

WL 3.4384

Plate

20.0 °C

440.0 MPa

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T7351

WL 3.4384

Plate

20.0 °C

460.0 MPa

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T7351

WL 3.4384

Plate

20.0 °C

470.0 MPa

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T7351

WL 3.4384

Plate

20.0 °C

480.0 MPa

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T7351

WL 3.4384

Plate

Aplicaciones térmicas

PropertyTemperatureValueConditionRelated StandardsShape

Calor específico

880.0 J/(kg·K)

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T7351

WL 3.4384

Plate

100.0 °C

880.0 J/(kg·K)

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T7351

WL 3.4384

Plate

Coeficiente de dilatación térmica

20 °C

2.3399999999999996e-05 1/K

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T7351

WL 3.4384

Plate

100 °C

2.3399999999999996e-05 1/K

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T7351

WL 3.4384

Plate

100.0 °C

2.34e-05 1/K

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T7351

WL 3.4384

Plate

Conductividad térmica

168 W/(m·K)

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T7351

WL 3.4384

Plate

20.0 °C

168.0 W/(m·K)

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T7351

WL 3.4384

Plate

Temperatura de fusión

480.0 - 640.0 °C

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T7351

WL 3.4384

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Eléctrico

PropertyTemperatureValueConditionRelated StandardsShape

Conductividad eléctrica

24000000.0 S/m

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T7351

WL 3.4384

Plate

20.0 °C

24000000.0 S/m

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T7351

WL 3.4384

Plate

Resistividad eléctrica

4.17e-08 Ω·m

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T7351

WL 3.4384

Plate

Chemical properties

PropertyValueConditionRelated StandardsShape

Cobre

1.2 - 1.9 %

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T7351

WL 3.4384

Plate

Cromo

0.18 - 0.25 %

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T7351

WL 3.4384

Plate

Hierro

0.12 %

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T7351

WL 3.4384

Plate

0.12 %

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T7351

WL 3.4384

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Magnesio

1.9 - 2.6 %

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T7351

WL 3.4384

Plate

Manganeso

0.06 %

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T7351

WL 3.4384

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Silicona

0.1 %

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T7351

WL 3.4384

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Titanio

0.06 %

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T7351

WL 3.4384

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Zinc

5.2 - 6.2 %

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T7351

WL 3.4384

Plate

Technological properties

Property
Brazing

Excellent