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Nano zirconium diboride

Nano zirconium diboride appears as a gray powder, with a density of 5.8 and a melting point of 3040°C. Nano zirconium diboride has advantages such as a high melting point (approximately 3040°C), high hardness, and high thermal conductivity, making it an excellent high-temperature structural material. It exhibits metallic properties, with a resistivity slightly lower than that of metallic zirconium, and has good electrical conductivity.
  • Commodity name: Nano zirconium diboride

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  • Product Description
  • Product Features:

    Nano zirconium diboride (chemical formula: ZrB2) appears as a gray powder, with a density of 5.8 and a melting point of 3040℃. Nano zirconium diboride has advantages such as high melting point (about 3040℃), high hardness, and high thermal conductivity, making it an excellent high-temperature structural material. It has metallic properties, with a resistivity slightly lower than that of metallic zirconium, and exhibits good electrical conductivity. Zirconium diboride is stable over a wide temperature range and can withstand molten metal corrosion.

    Product Parameters:

    Popular Models

    JH-401

    JH-303

    Appearance

    Gray-black powder

    Gray-black powder

    Purity

    ≥99%

    ≥99.5%

    Particle Size

    100-300nm (grain size)

    ≤50nm

    More model parameters vary (customization supported), please contact customer service for detailed parameters.

    Application Industries:

    1. Nano zirconium diboride can be used to prepare high-temperature structural materials, such as aerospace engine nozzles, high-temperature furnaces, and thermal protection materials for high-speed aircraft. In addition, zirconium diboride is also used in spacecraft structural materials and aerospace engine components, enhancing the heat resistance and strong corrosion resistance of the equipment.

    2. Nano zirconium diboride can be used to prepare high-temperature structural materials, such as high-temperature resistors and heat-resistant, corrosion-resistant special coatings. These materials can maintain stable performance in high-temperature environments, suitable for various high-temperature industrial applications.

    3. Nano zirconium diboride can be used as an additive in refractory materials to improve the heat resistance and corrosion resistance of the materials. It is widely used in refractory bricks, refractory coatings, and other high-temperature industrial equipment.

    4. As an important ceramic material, nano zirconium diboride can be used to prepare ceramic products with excellent performance, such as cutting tools, ceramic mechanical parts, and ceramic protective layers. Its high hardness and good mechanical properties give it an important position in the field of ceramic processing. 5. In the lithium battery industry, zirconium diboride, as a coating layer, can enhance the conductivity of the positive electrode materials, thereby improving the charging and discharging efficiency of the battery. At the same time, nano zirconium diboride forms a protective layer on the surface of the positive electrode materials, inhibiting redox side reactions at the interface, protecting the battery's interface structure, and extending the battery's lifespan.

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