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SiCp/Cu composites prepared by pressureless infiltration of copper into porous SiC preforms

机译:通过将铜无压渗透到多孔SiC预成型坯中制备的SiCp / Cu复合材料

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SiCp/Cu composites with high reinforcement content (56-65 vol.-%) were fabricated by spontaneously infiltrating copper alloy into porous SiC preform obtained by powder injection moulding. The main influencing factors of the preparation of the preform and the infiltration behaviour of various preforms were studied. The results indicate that the viscosity increases with an increase in powder loading or decreases with an increase in particle size. The feedstocks with bimodal mixture exhibit low viscosity due to the improvement in packing efficiency. When small particles or bimodal mixture with large size ratio were used, the preforms were difficult to be fully infiltrated. The preforms debound in air exhibit lower infiltration rate than the ones debound in vacuum due to the reduction of porosity and the poor wettability between the oxidised layer and copper alloy. Kinetic analysis on the infiltration curves yielded activation energies of 253 kJ mol-1.
机译:通过自发地将铜合金渗透到通过粉末注射成型获得的多孔SiC预成型坯中,制造出具有高增强含量(56-65%(体积))的SiCp / Cu复合材料。研究了瓶坯制备的主要影响因素以及各种瓶坯的渗透行为。结果表明,粘度随着粉末载量的增加而增加,或者随着粒度的增加而降低。具有双峰混合物的原料由于包装效率的提高而显示出低粘度。当使用大粒径比的小颗粒或双峰混合物时,预成型坯难以完全渗透。由于孔隙率的降低和氧化层与铜合金之间的润湿性差,在空气中脱脂的预成型坯的渗透率比在真空中脱脂的预成型坯低。渗透曲线的动力学分析产生了253 kJ mol-1的活化能。

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