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High Hardness Tungsten Copper Alloy Disc Refractory Metal

Categories Tungsten Alloy
Brand Name: Hypersolid Metal
Model Number: tungsten copper alloy disc
Place of Origin: China
MOQ: Negotiate
Price: Negitionable
Payment Terms: L/C, D/A, D/P, T/T, Western Union, MoneyGram
Supply Ability: 10000sets/month
Delivery Time: 30 days after receiving down payment
Packaging Details: Standard export cartons
Coefficient of Friction: ≤0.3
Compressive Strength: ≥2500MPa
Density: 17.0-18.5 g/cm³
Hardness: ≥HRA90
Impact Toughness: ≥15J/cm²
Material: Tungsten Alloy
Resistivity: ≤0.2μΩ·m
Yield Strength: ≥1200MPa
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High Hardness Tungsten Copper Alloy Disc Refractory Metal

Description:


Tungsten-copper alloy rods, also known as tungsten-copper round bars, are cylindrical components made from a combination of tungsten and copper. This alloy exhibits unique properties that make it suitable for various applications. Here are some descriptions of tungsten-copper alloy rods:

  1. High thermal conductivity: Tungsten-copper alloy rods possess excellent thermal conductivity due to the high thermal conductivity of copper. This property allows for efficient heat transfer and dissipation, making them ideal for applications that require effective thermal management, such as in heat sinks and electrical components.

  2. High density: The addition of tungsten, a dense material, to the copper matrix increases the density of the alloy. Tungsten-copper alloy rods have a high density, making them useful in applications that require weight concentration, such as in radiation shielding, aerospace components, and high-performance counterweights.

  3. Low thermal expansion: Tungsten-copper alloy rods exhibit a low coefficient of thermal expansion, which means they have minimal dimensional changes with temperature fluctuations. This property contributes to their stability and reliability in applications where thermal expansion or contraction could cause issues.

Specifications:


Alloy CompositionTungsten (W) and Copper (Cu)
Density14.5 - 16.0 g/cm³
Thermal Conductivity180 - 230 W/m·K
Coefficient of Thermal Expansion6.5 - 9.0 x 10^(-6) K^(-1)
Electrical Conductivity30 - 70% IACS (International Annealed Copper Standard)
Melting Point1,450 - 1,530 degrees Celsius (2,642 - 2,786 degrees Fahrenheit)
Young's Modulus200 - 350 GPa
Tensile Strength600 - 1,000 MPa
Hardness (Rockwell C)20 - 30 HRC

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