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WNiFe Rod Tungsten Heavy Alloy WNiFe/WNiCu Alloy plate

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WNiFe Rod Tungsten Heavy Alloy WNiFe/WNiCu Alloy plate

Tungsten heavy alloy, also known as tungsten-based heavy metal, is a composite material made of tungsten and a small amount of a binder metal, such as nickel, iron, or copper. It is known for its high density, excellent radiation shielding properties, and high strength.

    Tungsten heavy alloy is commonly used in applications where high density and strength are required, such as in aerospace, defense, medical, and industrial settings. It is often used in radiation shielding, counterweights, kinetic energy penetrators, and in various high-temperature and high-wear environments.
    The high density of tungsten heavy alloy makes it an ideal material for shielding against X-rays, gamma rays, and other forms of ionizing radiation. Its strength and durability also make it suitable for use in high-impact and high-stress applications.

    • WNiFe Rod Tungsten Heavy Alloy WNiFeWNiCu Alloy plate (6)4x5
      • Tungsten Heavy Alloy is a high-density material that is ideal for applications where weight and space are critical factors. It is composed of tungsten, nickel, and iron, resulting in a material with a density close to that of pure tungsten, but with improved mechanical properties. This unique combination of elements makes Tungsten Heavy Alloy an excellent choice for a wide range of applications, including aerospace, defense, medical, and automotive industries.
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    • WNiFe Rod Tungsten Heavy Alloy WNiFeWNiCu Alloy plate (4)cza
      • One of the key advantages of Tungsten Heavy Alloy is its superior density, which allows for the production of compact and heavy components. This makes it an ideal material for use in counterweights, radiation shielding, and high-performance kinetic energy penetrators. Its high strength and excellent machinability also make it suitable for use in tooling and die applications.
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    • WNiFe Rod Tungsten Heavy Alloy WNiFeWNiCu Alloy plate (3)mq3
      • Tungsten Heavy Alloy offers excellent corrosion resistance and thermal stability, making it a reliable choice for harsh operating environments. Its ability to withstand high temperatures and harsh chemicals makes it an ideal material for use in critical applications where reliability is paramount.
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    • WNiFe Rod Tungsten Heavy Alloy WNiFeWNiCu Alloy plate (7)w0n
      • We produce Tungsten Heavy Alloy to the highest quality standards, ensuring that our customers receive a product that meets their exact specifications. Our team of experienced engineers and metallurgists are dedicated to providing tailored solutions to meet the unique needs of each customer.
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    • WNiFe Rod Tungsten Heavy Alloy WNiFeWNiCu Alloy plate (2)0j4
      • WNIFE alloy is an important tungsten-based heavy alloy. They are alloys made of nickel, iron and other metals added to tungsten.The ratio of nickel to iron added is usually 7:3.This kind of alloy is widely used and has become the main tungsten-based heavy alloy with the largest amount.-W-Ni-Fe alloy .
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    W-Ni-Fe

    90 % W

     7% Ni

     3% Fe

    92.5 % W

     5.25 % Ni

     2.25% Fe

    95 % W

     3.5% Ni

     1.5% Fe

    97% W

     2.1% Ni

     9% Fe

    Features

    Tungsten Ni-Fe alloy is characterized by high sintering density, has good strength and plasticity and ferromagnetism. Good thermal conductivity and electrical conductivity, excellent absorption ability to γ-ray or x-ray.
     
    1. High proportion: General specific gravity is 16.5-18.75g/cm3
    2. High strength: Tensile strength is 700-1000mpa
    3. Strong ability to absorb rays: Lead ratio 30-40%
    4. Large thermal conductivity: The thermal conductivity of tungsten alloy is 5 times that of steel.
    5. Small coefficient of thermal expansion: Only 1 / 2 - 1 / 3 of iron or steel

    This kind of alloy is widely used and has become the main tungsten-based heavy alloy with the largest amount.It is characterized by high sintering density, good strength and plasticity, and certain ferromagnetism.Alloy as a general application, such as counterweight, balance hammer, radiation shielding device, and so on, are directly using sintered alloy;However, for applications requiring high mechanical properties, alloys need to be deformed and heat treated for strengthening.

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