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Effects of Environmental Gas and Trace Water on the Friction of DLC Sliding with Metals

机译:环境气体和微量水对DLC金属滑动摩擦的影响

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摘要

This paper describes an experimental study on the friction of a-C:H diamond-like carbon (DLC) and ta-C DLC coatings in gas with different concentration of trace water. Pin-on-disk sliding experiments were conducted with DLC coated disks and aluminum pins in hydrogen, nitrogen, and argon. Trace oxygen was eliminated to less than 0.1 ppm, while water in the gas was controlled between 0 and 160 ppm. Fourier transform infrared spectroscopy (FT-IR) and laser Raman spectroscopy were used to analyze the transfer films on the metal surfaces. It was found that trace water slightly increased friction in hydrogen gas, whereas trace water caused a significant decrease in the friction coefficient in nitrogen and argon, particularly with a-C:H DLC. The low friction in hydrogen was brought about by the formation of transfer films with structured amorphous carbon, but no differences in the structure and contents of the films were found in the tests with and without trace water. In nitrogen and argon, the low friction with a-C:H DLC was achieved by the gradual formation of transfer films containing structured amorphous carbon, and FT-IR spectra showed that the films contained CH, OH, C–O–C, and C–OH bonds.
机译:本文描述了在不同痕量水浓度的气体中a-C:H类金刚石碳(DLC)和ta-C DLC涂层摩擦的实验研究。针对磁盘的滑动实验是使用DLC涂层磁盘和铝针在氢气,氮气和氩气中进行的。消除了微量氧气,使其含量低于0.1 ppm,同时将气体中的水控制在0至160 ppm之间。使用傅立叶变换红外光谱(FT-IR)和激光拉曼光谱分析金属表面上的转移膜。发现微量水在氢气中的摩擦稍有增加,而微量水导致氮气和氩气中的摩擦系数显着降低,尤其是α-C:H DLC。氢的低摩擦是由具有结构化无定形碳的转移膜的形成引起的,但是在有或没有痕量水的试验中,膜的结构和含量均未发现差异。在氮气和氩气中,通过逐渐形成包含结构化无定形碳的转移膜可以实现与aC:H DLC的低摩擦,并且FT-IR光谱表明该膜包含CH,OH,C–O–C和C– OH键。

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