WL 3.7124-1 Grade TiCu2 Solution Annealed

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Description

The aviation material TiCu2 is an alpha-titanium alloy that, while still possessing good formability and good weldability, shows better strength properties than the unalloyed titanium materials particularly at higher temperatures. The material is hardenable. The material shows high resistance to general corrosion, especially to crevice and stress cracking corrosion, and it is largely resistant to pitting. The material shows special resistance to oxidizing mediums. There exists resistance to nitric acid, chromic acid, sulphurous acid, alkali-lyes, ammonia, acetic acid, aqueous chlorides, moist chlorine gas, liquid hydrogen, limited corrosion-resistance to sulphuric acid, hydrochloric acid, phosphoric acid, oxalic acid and formic acid. The material is not resistant to fluorine, dry chlorine gas and red fuming nitric acid. Processing properties: Formability: good (in the annealed condition formability similar to that of 3.7034, cold forming is only possible to a limited extent) Weldability: good (chiefly electron-beam welding EB, tungsten inert-gs welding, resistance welding) Application: TiCu2 is applied in the form of sheets and strips and bars and forgings in the annealed as well as in the hardened condition. The material is chiefly applied for complex construction components, in the manufacturing of which forming or welding operations are necessary and which are operated at elevated temperatures. The application range goes up to about 350 °C. Typical construction components are engine casing components, hot-air ducts, bypass lines.

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

PropertyTemperatureValueConditionRelated StandardsShape

Density

20.0 °C

4.56 g/cm³

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Solution Annealed

WL 3.7124-1

Forging, Rod, Flat

Mechanical

PropertyTemperatureValueConditionRelated StandardsShape

Elastic modulus

20.0 °C

113.0 GPa

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Solution Annealed

WL 3.7124-1

Forging, Rod, Flat

Elongation

20.0 °C

25.0 %

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Solution Annealed

WL 3.7124-1

Forging, Rod

Reduction of area

20.0 °C

45.0

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Solution Annealed

WL 3.7124-1

Forging, Rod

Tensile strength

20.0 °C

620.0 MPa

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Solution Annealed

WL 3.7124-1

Flat

20.0 °C

640.0 MPa

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Solution Annealed

WL 3.7124-1

Forging, Rod

Thermal

PropertyValueComment

Coefficient of thermal expansion

7.599999999999997e-06 - 1.1e-05 1/K

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Typical for Titanium Alpha Alloy

Melting point

1540.0 - 1715.0 °C

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Typical for Titanium Alpha Alloy

Specific heat capacity

460.0 - 527.0 J/(kg·K)

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Typical for Titanium Alpha Alloy

Thermal conductivity

4.0 - 17.0 W/(m·K)

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Typical for Titanium Alpha Alloy

Chemical properties

PropertyValueConditionRelated StandardsShape

Carbon

0.1

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Solution Annealed

WL 3.7124-1

Forging, Rod, Flat

Copper

2.0 - 3.0 %

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Solution Annealed

WL 3.7124-1

Forging, Rod, Flat

Hydrogen

0.01

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Solution Annealed

WL 3.7124-1

Forging, Rod, Flat

Iron

0.2

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Solution Annealed

WL 3.7124-1

Forging, Rod, Flat

Nitrogen

0.05

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Solution Annealed

WL 3.7124-1

Forging, Rod, Flat

Oxygen

0.2

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Solution Annealed

WL 3.7124-1

Forging, Rod, Flat

Titanium

96.4 %

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Solution Annealed

WL 3.7124-1

Forging, Rod, Flat