According to user requirements of nanoparticles, Stanford Advanced Materials can provide different sizes of Nano Copper Tungsten Alloy Powder.
related products: Nano Copper Zinc Alloy Powder, Nano Tin Copper Alloy Powder, Copper Telluride (Cu2Te) Powder (CAS No.12019-23-7)
According to user requirements of nanoparticles, Stanford Advanced Materials can provide different sizes of Nano Copper Tungsten Alloy Powder.
related products: Nano Copper Zinc Alloy Powder, Nano Tin Copper Alloy Powder, Copper Telluride (Cu2Te) Powder (CAS No.12019-23-7)
The variable current laser ion beam gas phase method can prepare nano tungsten-copper alloy powder with controllable particle size and W-Cu composition. This method yields a powder with a uniform nanostructure, precise composition control, high activity, and adjustable W and Cu content, ensuring uniform distribution. It significantly reduces sintering temperature and time, achieving a product with a relative density greater than 99%. The thermal conductivity coefficient of the nano W-Cu15 product reaches 230 W/m·K, offering superior airtightness, cost-effectiveness, and quality compared to traditional infiltration methods. This material is well-suited as a matrix for superhard products and tools, providing fast efficiency, high wear resistance, and competitive pricing.
Heat sink materials, high-end electronic packaging materials, super hard material product matrix materials, tungsten copper products, and electrical contact materials.
This product should be stored in a dry, cool, and sealing environment, and can not be exposed to air, in addition, should avoid the heavy pressure, according to ordinary goods transportation.