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Fabrication by SPS and Thermophysical Properties of High Volume Fraction SiCp/Al Matrix Composites

机译:SPS的制备及高体积分数SiCp / Al基复合材料的热物理性质

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摘要

SiCp/Al composites containing high volume fraction of SiC particles were fabricated by spark plasma sintering (SPS), and their thermophysical properties, such as thermal conductivity (TC) and coefficient of thermal expansion (CTE), were characterized. High relative density (R-D) of composites was successfully achieved through the optimization of sintering parameters, such as sintering temperature, sintering pressure and heating rate. The measured TCs of SiCp/Al composites fabricated by SPS are higher than 195W/mk, no matter the volume fraction of SiC particles is high or low as long as the R-D is higher than 95%. The measured CTEs of SiCp/Al composites are in good agreement with the estimated values based on Kerners model. The high volume fraction of SiCp/Al composites are a good candidate material to substitute for conventional thermal management materials in advanced electronic packages due to its tailorable thermophysical properties.
机译:通过火花等离子体烧结(SPS)制备了SiCp / Al含量高的SiCp / Al复合材料,并表征了其热物理性质,如导热系数(TC)和热膨胀系数(CTE)。通过优化烧结参数,例如烧结温度,烧结压力和加热速率,成功地实现了复合材料的高相对密度(R-D)。 SPS制备的SiCp / Al复合材料的TCs均高于195W / mk,而R-D高于95%时,无论SiC颗粒的体积分数是高还是低。 SiCp / Al复合材料的CTE值与基于Kerners模型的估计值非常吻合。 SiCp / Al复合材料的高体积分数由于其可定制的热物理特性,是替代高级电子封装中常规热管理材料的良好候选材料。

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