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Composite Layers with Ceramic Matrix Modified with Glassy Carbon Destined for Oil-Less Sliding Pairings

机译:玻碳修饰的陶瓷基复合材料层,适用于无油滑动配对

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The paper presents basic knowledge about producing and some results of tribological and metallographical research on composite layers with porous, anodic hard coating matrix which were modified with glassy carbon nanotubes. These composite layers were formed as surface layers of machine parts operating under conditions of sparse lubrication (limited lubrication) and friction in air. The layers were tested at sliding mating with EN-GJL-350 cast iron used for piston rings in combustion engines and air compressors. On the basis of the metallographical tests was the structure of the composite layer described. It was fount that on the surface of the oxide is a glassy carbon layer and in the pores of oxide are regullary carbon nanotubes. On the basis of the obtained results of tribological tests it was found that glassy carbon layer on the oxide surface shorts the wering-in time, and the glassy carbon nanotubes formed inside the pores of anodic hard coating upon EN-AW-6061 aluminum alloy prove to be effective solid lubricants and complement lubrication function of the graphite in cast iron. Consequently the coefficient of friction was lower than in case of nanotubes-free oxide layers.
机译:本文介绍了用多孔碳纳米管改性的多孔,阳极硬质涂层基体的复合层的制备方法以及摩擦学和金相学研究的基础知识。这些复合层形成为在稀疏润滑(有限润滑)和空气摩擦条件下运行的机械零件的表面层。这些层与EN-GJL-350铸铁滑动配合进行了测试,铸铁用于内燃机和空气压缩机的活塞环。根据金相测试,描述了复合层的结构。可以看出,在氧化物的表面上是玻璃碳层,在氧化物的孔中是规则的碳纳米管。根据获得的摩擦学测试结果,发现氧化物表面的玻璃碳层缩短了熔合时间,并且证明了在EN-AW-6061铝合金上的阳极硬涂层的孔内部形成的玻璃碳纳米管。是有效的固体润滑剂,并补充了铸铁中石墨的润滑功能。因此,摩擦系数低于不含纳米管的氧化物层的情况。

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