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Unlubricated friction and wear behaviors of Al_2O_3/TiC ceramic cutting tool materials from high temperature tribological tests

机译:高温摩擦学测试表明Al_2O_3 / TiC陶瓷切削刀具材料的非润滑摩擦和磨损行为

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摘要

The unlubricated friction and wear behaviors of Al_2O_3/TiC ceramic tool materials were evaluated in ambient air at temperature up to 800 °C by high temperature tribological tests. The friction coefficient and wear rates were measured. The microstructural changes and the wear surface features of the ceramics were examined by scanning electron microscopy. Results showed that the temperature had an important effect on the friction and wear behaviors of this A1_2O_3 based ceramic. The friction coefficient decreased with the increase of temperature, and the Al_2O_3/TiC ceramics exhibited the lowest friction coefficient in the case of 800 °C sliding operation. The wear rates increased with the increase of temperature. During sliding at temperature above 600 °C, oxidation of the TiC is to be expected, and the formation of lubricious oxide film on the wear track is beneficial to the reduction of friction coefficient. The wear mechanism of the composites at temperature less than 400 °C was primary abrasive wear, and the mechanisms of oxidative wear dominated in the case of 800 °C sliding operation.
机译:通过高温摩擦学测试,评估了Al_2O_3 / TiC陶瓷工具材料在最高800°C的环境空气中的未润滑摩擦和磨损行为。测量了摩擦系数和磨损率。陶瓷的微观结构变化和磨损表面特征通过扫描电子显微镜检查。结果表明,温度对这种A1_2O_3基陶瓷的摩擦磨损性能有重要影响。摩擦系数随温度的升高而降低,在800°C的滑动条件下,Al_2O_3 / TiC陶瓷的摩擦系数最低。磨损率随着温度的升高而增加。在高于600°C的温度下滑动期间,预计会发生TiC的氧化,并且在磨损道上形成润滑性氧化膜有利于降低摩擦系数。复合材料在低于400°C的温度下的磨损机理是主要的磨料磨损,而在800°C的滑动操作中,氧化磨损的机理占主导地位。

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