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Synthesis and Consolidation of Nano-Sized Cu Coated SiC Powders by a Chemical Method and Spark Plasma Sintering

机译:用化学法和火花等离子体烧结合成和固结纳米Cu涂层SiC粉末

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摘要

Cu-70 vol% SiC composites with dense microstructure and sound interface between Cu and SiC grains were fabricated by solution chemistry route and spark plasma sintering. Two methods for developing powder mixtures of Cu and uncoated or pre-coated SiC were compared on the basis of the resulting microstructures. The pre -coating of Si(A1)OC onto SiC powders was prepared by curing and pyrolysis of Al-modified polycarbosilane. SiC/Cu composites were obtained by hydrogen reduction and densified using spark plasma sintering of pre-coated SiC and Cu-nitrate powder mixtures. The powder mixture showed a homogenous dispersion of nano-sized Cu particles on the surface of SiC powers. Microstructural observation revealed that the sintered composite using powder mixture with pre -coating of Al-PCS onto SiC powders showed dense microstructure and good contact between Cu and SiC grains due to the improved wettability by barrier coating. The results suggested that the SiC/Cu composite with required microstructural characteristics can be fabricated by using Al-PCS coated SiC powder mixture, more effectively.
机译:通过溶液化学途径和火花等离子体烧结,制造具有致密微观结构和Cu和SiC晶粒之间的声音结构和声音界面的Cu-70Vol%SiC复合材料。将基于所得的微观结构进行比较了用于显影Cu和未涂覆的SiC的粉末混合物的方法。通过固化和热解制备Si(A1)OC的预涂通过固化和热解来制备Al改性聚氨基硅烷。通过氢气还原获得SiC / Cu复合材料,并使用预涂覆的SiC和Cu-硝酸粉末混合物的火花等离子体烧结致密化。粉末混合物显示出纳米铜颗粒在SiC功率表面上的均匀分散体。微观结构观察显示,使用粉末混合物的烧结复合材料与前涂层的粉末混合物在SiC粉末上显示出致密的微观结构和Cu和SiC颗粒之间的良好接触由于通过阻挡涂层改善的润湿性而导致的Cu和SiC颗粒之间的良好接触。结果表明,通过使用Al-PC涂覆的SiC粉末混合物更有效地制造具有所需微观结构特性的SiC / Cu复合材料。

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