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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Ultra-low friction for a layered carbide-derived ceramic, Ti3SiC2, investigated by lateral force microscopy (LFM)
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Ultra-low friction for a layered carbide-derived ceramic, Ti3SiC2, investigated by lateral force microscopy (LFM)

机译:横向力显微镜(LFM)研究了层状碳化物衍生的陶瓷Ti3SiC2的超低摩擦

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The carbide-derived ceramic Ti3SiC2 has a layered structure with double TiC-like blocks separated by planes of Si in six-fold coordination. It also has an unusual combination of electrical, thermal and mechanical properties. The polycrystalline ceramic exhibits a preferred plane of easy cleavage. Fracture/cleavage faces have been investigated by lateral and atomic force microscopy, scanning electron microscopy and other techniques. The results show that the ceramic is an exceptional solid lubricant. Freshly prepared (by fracture, abrasion or scraping) cleavage faces exhibit coefficients of friction at or below the limit of resolution, about 2 × 10-3, which are comparable to the lowest values measured for the best solid lubricants (MoS2 and graphite). Exposure to air leads to slight degradation, but values below 5 × 10-3 were obtained after exposures of several months. Analysis of other faces leads to outcomes in the range 0.1-0.3, which are consistent with the outcome of macroscopic analysis. The favourable mechanical and electrical properties, in combination with ultra-low solid friction, may have important technical implications.
机译:源自碳化物的陶瓷Ti3SiC2具有层状结构,具有由Ti平面隔开的六重配位的双TiC状块。它还具有电,热和机械性能的异常组合。多晶陶瓷表现出优选的易于裂解的平面。已经通过横向和原子力显微镜,扫描电子显微镜和其他技术研究了断裂/劈裂面。结果表明,陶瓷是一种出色的固体润滑剂。新鲜制备的(通过断裂,磨损或刮擦)解理面的摩擦系数达到或低于分辨率极限(约2×10-3),与最佳固态润滑剂(MoS2和石墨)的最低测量值相当。暴露于空气中会导致轻微降解,但暴露数月后获得低于5×10-3的值。分析其他面孔会导致结果在0.1-0.3范围内,这与宏观分析的结果一致。良好的机械和电气性能,再加上超低的固体摩擦,可能具有重要的技术意义。

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