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Manufacture and Tribological Properties of C/C-SiC Brake Composites Fabricated by Warm Compacted In-situ Reaction

机译:通过热压实原位反应制造C / C-SiC制动复合材料的制造和摩擦学性能

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Carbon fibre reinforced carbon and silicon carbide dual matrix composites (C/C-SiC) were fabricated by warm compacted in-situ reaction. The C/C-SiC composites microstructure and tribological properties at different brake speeds were investigated. The results indicated that the composites were composed of 58 wt% C, 37 wt% SiC and 5 wt% Si. The density and open porosity were 2.0 g·cm~(-3) and 10%, respectively. The C/C-SiC brake composites show excellent tribological performance, including a good stability of brake, the coefficient of friction between 0.57 and 0.67, and the wear rate less than 2.02 cm·MJ~(-3). These results show that the C/C-SiC brake composites are the promising candidates for advanced brake and clutch systems.
机译:通过热压实原位反应制造碳纤维增强碳和碳化硅双基质复合材料(C / C-SiC)。研究了C / C-SiC复合材料的微观结构和不同制动速度的摩擦学特性。结果表明复合材料由58wt%C,37wt%SiC和5wt%Si组成。密度和开孔孔隙率分别为2.0g·cm〜(-3)和10%。 C / C-SiC制动复合材料显示出优异的摩擦学性能,包括良好的制动稳定性,摩擦系数0.57和0.67,磨损率小于2.02cm·mj〜(-3)。这些结果表明,C / C-SiC制动复合材料是先进制动器和离合器系统的有希望的候选物。

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