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Genesis of superlow friction and wear in diamondlike carbon films

机译:类金刚石碳膜超低摩擦磨损的成因

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Diamondlike carbon (DLC) films offer enormous possibilities for applications that require low friction and high wear resistance. The range of physical, chemical, mechanical, electrical, and optical properties offered by these films is also exceptional and can meet the increasingly multifunctional application needs of machine elements, microelectronics, and biological systems. Since the early 1990s, carbon has been used as a precursor in our laboratory for the design and synthesis of superhard and low-friction carbon films. As a result of systematic studies over the years, in 1997, we developed a new class of DLC films that provide friction and wear coefficients of 0.001-0.005 and 10{sup}(-9)-10{sup}(-9) mm{sup}3/N m, respectively, in inert-gas or vacuum test environments. This paper will mainly concentrate on the tribology of these superlow-friction carbon films and provide an update on our understanding of the fundamental tribological mechanisms of such films. It will also expand on the effects of hydrogen within the films and gaseous species within the test environments on friction and wear.
机译:类金刚石碳(DLC)膜为要求低摩擦和高耐磨性的应用提供了巨大的可能性。这些薄膜提供的物理,化学,机械,电和光学性能范围也非常出色,可以满足机械元件,微电子和生物系统日益增长的多功能应用需求。自1990年代初以来,碳已在我们的实验室中用作设计和合成超硬和低摩擦碳膜的前体。经过多年的系统研究,我们在1997年开发了新型DLC薄膜,其摩擦磨损系数为0.001-0.005和10 {sup}(-9)-10 {sup}(-9)mm在惰性气体或真空测试环境中分别为{sup} 3 / N m。本文将主要关注这些超低摩擦碳膜的摩擦学,并提供我们对这种膜的基本摩擦机理的了解的最新进展。它还将扩大薄膜中的氢和测试环境中的气态物质对摩擦和磨损的影响。

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