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Fe20Cr20Ni50V4Al2Nb4 High Entropy Alloy (HEA) Spherical Powder

• Trade name: Fe20Cr20Ni50V4Al2Nb4  HEA Spherical Powder 

• Origin: Shanghai, China

• Product Type: Alloy powder 

• Size: Customers' Requirements

• Certificate: ISO9001, CE, RoHS, ISO14001

    Properties

    Product Name: Fe20Cr20Ni50V4Al2Nb4
    Shape: Spherical
    Purity: ≥99.5%
    Density: ~7.5-8.2 g/cm³
    Melting Point: 1350-1450°C
    Specifications: Customized processing according to customer needs.
    Packaging: Vacuum packaging
    Particle size: 0-25,15-53,45-105,50-150um Can be supplied according to customer requirements.
    Properties: Good comprehensive mechanical properties

    Products Usage

  • 1. Additive Manufacturing: Ideal for 3D printing high-strength, lightweight components like brackets and housings.
    2. Thermal Spray Coatings: Protects surfaces from wear, corrosion, and oxidation in extreme conditions.
    3. Powder Metallurgy: Produces precision components with superior mechanical and thermal properties.
    4. Heat Exchangers: Operates efficiently in high-temperature and corrosive environments.
    5. Turbine Blades: Withstands high temperatures and mechanical stresses in jet engines and turbines.
    6. Structural Components: Provides durability and strength for load-bearing applications.

    Packing:
    Our normal packaging is 25kgs/Drum
    The packaging can be customized. the shipping term can be by sea, by air, and sample or small quantity can be shipped by DHL, FEDEX, EMS and TNT.
    Remark: Chemical composition and size can be optimized by the customers' requirements固体1q95固体2gwy
    Conditions for safe storage, including any incompatibilities
    Separated from ammonia, strong hydrogen peroxide solutions and strong acids.

    Safety Protection

    Precautions for safe handling
    Handling in a well ventilated place. Wear suitable protective clothing. Avoid contact with skin and eyes. Avoid formation of dust and aerosols. Use non-sparking tools. Prevent fire caused by electrostatic discharge steam.

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