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首页> 外文期刊>Diamond and Related Materials >Tribological characteristics of self-lubricating nanostructured aluminum reinforced with multi-wall CNTs processed by flake powder metallurgy and hot pressing method
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Tribological characteristics of self-lubricating nanostructured aluminum reinforced with multi-wall CNTs processed by flake powder metallurgy and hot pressing method

机译:用剥落粉末冶金和热压法加工多壁CNT的自润滑纳米结构铝的摩擦学特性

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Ultrafine-grained Al-CNT (2 and 4 vol%) composites were successfully fabricated using the flake powder metallurgy and hot pressing route, and the microstructure and tribological properties of the produced composites were studied. The results showed that the coefficient of friction and the wear rate of Al decrease with the addition of the CNT reinforcement. A carbon-rich film was formed on the worn surfaces during wear test, which prevented the Al oxidation and yielded the self-lubricating effect for the composites. This improvement in the wear behavior of the composites can be attributed to the simultaneous effects of the ultrafine-grained matrix and strengthening and self-lubricating properties of the uniformly dispersed and undamaged CNT in the flake powder metallurgy method.
机译:使用薄片粉末冶金和热压路线成功制造超细镓Al-CNT(2和4 Vol%)复合材料,研究了所生产的复合材料的微观结构和摩擦学性质。 结果表明,随着CNT加固的添加,摩擦系数和Al的磨损率降低。 在磨损试验期间在磨损的表面上形成富含碳的薄膜,该磨损试验防止了Al氧化并产生了复合材料的自润滑效果。 复合材料的磨损行为的这种改善可归因于剥落粉末冶金方法中均匀分散的和未损坏的CNT的超细粒子基质和强化和自润滑性能的同时效应。

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