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Processing of Sliding Hybrid Composites with Aluminum Alloy Matrix Containing Solid Lubricants

机译:含固体润滑剂的铝合金基复合滑动复合材料的加工

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摘要

This paper presents the information about manufacturing processes of hybrid composites with aluminum alloy matrix containing glassy carbon as a solid lubricant. Two methods have been described: the method based on mixing glassy carbon and ceramic particles with a liquid metal matrix; and the precursor method. In the precursor method, carbon is introduced into a composite with the application of liquid precursor and porous ceramic foams. It is then followed by precursor pyrolysis where, as the result, glassy carbon is obtained. Ceramic foams help liquid precursor penetrate the ceramic spheroid pores by forming a thin film of glassy carbon on their walls. Composites produced by the both methods feature good tribological properties. Sliding friction coefficient in air of the new obtained by mixing method composite against cast iron (mu=0.08-0.17 at wearing in and 0.12 after wearing in by reciprocating sliding and 0.14-0.17 by rotating sliding) is much lower than in the case of composite containing only ceramic foam as a reinforcing phase (mu=0.28-0.36 by reciprocating sliding and 0.28-0.40 by rotating).
机译:本文介绍了有关含玻璃碳作为固体润滑剂的铝合金基复合材料的制造工艺信息。已经描述了两种方法:基于将玻璃碳和陶瓷颗粒与液态金属基体混合的方法;和基于玻璃纤维的方法。和前体方法。在前体方法中,通过使用液体前体和多孔陶瓷泡沫将碳引入复合材料。然后进行前体热解,从而得到玻璃状碳。陶瓷泡沫通过在其壁上形成玻璃碳薄膜来帮助液态前驱物渗透陶瓷球体孔。两种方法生产的复合材料均具有良好的摩擦学性能。通过混合方法复合材料获得的新铸铁在铸铁中的空气摩擦系数(磨损时的mu = 0.08-0.17,往复滑动时的磨损后0.12,旋转滑动时的0.14-0.17)远低于复合材料时的情况。仅包含陶瓷泡沫作为增强相(通过往复滑动,mu = 0.28-0.36;通过旋转,μ0.28-0.40)。

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