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Humidity effect on friction behaviors of nano-undulated diamond-like carbon films

机译:湿度对纳米波状类金刚石碳膜摩擦行为的影响

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摘要

Humidity dependency of friction behavior of nano-undulated diamond-like carbon (DLC) films was investigated by a home-made ball-on-disk type tribometer under controlled relative humidity of 0, 50, and 90 percent. Nano-undulated DLC films with surface roughness ranging from 0.2 to 13.4 nm were prepared by deposition of DLC film on the Si substrate with Ni nanodots. Friction coefficient of the flat DLC surface increased with the relative humidity, while that of the nano-undulated surfaces revealed smaller dependence on the relative humidity. When the surface roughness increased to 13.4 nm, friction behavior was observed to be independent of the relative humidity. The analysis of chemical composition and atomic bond structure of the debris and the transfer layer revealed that the humidity dependence on the nano-undulated surface was minimized by suppressing the graphitization of the transfer layer even with high concentration of Fe in the debris.
机译:通过自制的圆盘式摩擦计在0、50和90%的相对湿度下研究了纳米波纹状类金刚石碳(DLC)薄膜摩擦行为的湿度依赖性。通过在具有Ni纳米点的Si衬底上沉积DLC膜来制备表面粗糙度为0.2至13.4 nm的纳米起伏DLC膜。平坦的DLC表面的摩擦系数随相对湿度而增加,而纳米起伏表面的摩擦系数则显示出对相对湿度的依赖性较小。当表面粗糙度增加到13.4 nm时,观察到摩擦行为与相对湿度无关。碎片和转移层的化学组成和原子键结构的分析表明,即使在碎片中含有高浓度的Fe,也可以通过抑制转移层的石墨化来最大程度地降低对纳米波纹表面的湿度依赖性。

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