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Effect of Ti3AlC2 Content on Electrical Friction and Wear Behaviors of Cu-Ti3AlC2 Composites

机译:Ti3Alc2含量对Cu-Ti3AlC2复合材料电摩擦和磨损行为的影响

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摘要

The effect of Ti3AlC2 content on electrical friction and wear behaviors of Cu-Ti3AlC2 composites is investigated. Composites with different volume ratios of Ti3AlC2 are prepared by the hot-pressing method, and experiments are performed on a block-on-ring sliding electrical wear tester. The results demonstrate that with increasing Ti3AlC2 content, the contact voltage drops of the Cu-Ti3AlC2 composites increase, the friction coefficient decreases, and the wear rate initially decreases and then increases. A lubricating film forms on the worn surface during the process of electrical sliding wear, which improves the wear resistance of the material. Raman spectroscopy and X-ray photoelectron spectroscopy spectra of the worn surface show that the lubricating film comprises Ti3AlC2, CuO, TiO2 and Al2O3, where the TiO2 and Al2O3 result from decomposition of Ti3AlC2.
机译:研究了Ti3AlC2含量对Cu-Ti3AlC2复合材料的电摩擦和磨损行为的影响。 通过热压方法制备具有不同体积比Ti3AlC2的复合材料,并在嵌段块滑动电磨损测试仪上进行实验。 结果表明,随着Ti3AlC2含量的增加,Cu-Ti3AlC2复合材料的接触电压降增加,摩擦系数降低,并且磨损率最初降低,然后增加。 在电滑动磨损过程中磨损表面上的润滑膜形成,从而提高了材料的耐磨性。 拉曼光谱和磨损表面的X射线光电子能谱表明,润滑膜包括Ti3AlC2,CuO,TiO 2和Al2O3,其中TiO 2和Al2O3由Ti3AlC2的分解产生。

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