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Wear and Friction Behavior of Metal Impregnated Microporous Carbon Composites

机译:金属浸渍微孔碳复合材料的摩擦磨损行为

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摘要

Metal-matrix composites have been prepared by pressure-infiltration casting of copper-base alloy melts into microporous carbon preforms. The carbon preforms contained varying proportions of amorphous carbon and graphite. Load dependence of the wear and friction behavior of the composite pins has been examined under ambient conditions against cast-iron plates, using a pin-on-plate reciprocating wear tester. The wear resistance of the composite is significantly improved, as compared with the base alloy. Contrary to the normally expected behavior, the addition of graphite to the amorphous carbon does not reduce the friction coefficient, especially at high loads. The wear and friction behavior of the composites is very sensitive to the size and distribution of the microstructural constituents.
机译:金属基复合材料是通过将铜基合金熔体压力渗透浇铸成微孔碳预成型件而制备的。碳预成型坯包含不同比例的无定形碳和石墨。使用销钉板往复式磨损测试仪,已在环境条件下针对铸铁板检查了复合销钉的磨损和摩擦性能与载荷的关系。与基础合金相比,复合材料的耐磨性得到了显着改善。与通常预期的行为相反,向无定形碳中添加石墨不会降低摩擦系数,尤其是在高负载下。复合材料的磨损和摩擦行为对微结构成分的尺寸和分布非常敏感。

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