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Vanadium Tin Carbide MAX Phase Powder

Vanadium Tin Carbide MAX Phase Powder

Vanadium Tin Carbide MAX Phase Powder

Product No. NRE-58025
CAS No. NA
Formula V2SnC
Molecular Weight NA
APS < 40 μm
Purity 99.9%
Form Powder

Vanadium Tin Carbide MAX Phase Powder

Applications:

Heat Shields and Engine Components: The high thermal stability and oxidation resistance of V₂SnC make it suitable for use in heat shields, turbine blades, and other components in the aerospace industry, where materials need to withstand extreme temperatures and oxidative environments.

Jet Engines and Rocket Propulsion: V₂SnC is used in jet engines, rocket propulsion systems, and spacecraft components that experience high-speed airflow, high-pressure conditions, and extreme temperatures. The material’s thermal conductivity and mechanical strength make it a reliable choice for these applications.

Cutting Tools and Wear-Resistant Coatings

Cutting Tools: Due to its high hardness and resistance to wear, V₂SnC MAX phase is used in the manufacturing of cutting tools, milling inserts, and drill bits for metalworking, machining, and mining applications. It offers better performance and longer tool life compared to traditional materials.

Wear-Resistant Coatings: V₂SnC is used as a protective coating on industrial equipment exposed to harsh conditions, such as pumps, valves, and machinery in the automotive, mining, and steel industries. These coatings protect against abrasive wear, corrosion, and high temperatures, enhancing the longevity of critical components.

Energy Storage and Electronics

Energy Storage Devices: Due to its electrical conductivity and thermal stability, V₂SnC is being explored as a material for use in energy storage devices such as batteries and supercapacitors. It helps improve the charge/discharge cycles, energy density, and efficiency of lithium-ion batteries and other advanced energy storage systems.

Conductive Coatings and Electronic Components: V₂SnC is used in electronics as a material for conductive coatings and electrode materials in devices such as sensors, capacitors, and batteries, where excellent electrical conductivity and high thermal stability are required.

 

 

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