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首页> 外文期刊>Tribology letters >Silane Treatment of Diamond-Like Carbon: Improvement of Hydrophobicity, Oleophobicity, and Humidity Tolerance of Friction
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Silane Treatment of Diamond-Like Carbon: Improvement of Hydrophobicity, Oleophobicity, and Humidity Tolerance of Friction

机译:硅烷处理类金刚石碳:提高疏水性,疏油性和摩擦耐湿性

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摘要

Hydrophobicity and humidity tolerance of the low friction behavior of hydrogenated diamond-like carbon (H-DLC) were improved via surface modification using vapor-phase chemical reactions with organic silanes at 250-280 degrees C. Water and hexadecane contact angles increased after silane treatments. Unlike pristine H-DLC which loses ultra-low friction behavior as soon as relative humidity (RH) increases to a few percent, silane-treated H-DLC films maintained a low friction behavior (with a coefficient less than 0.08) up to 30 % RH. Elemental analysis of the transfer films accumulated on the balls after friction tests indicated that the silane molecules not only decorated the topmost surface of the H-DLC, but also penetrated into and reacted with the subsurface. Surface roughness, water adsorption behavior, and hardness measurements also showed that silane treatment affected the surface morphology and subsurface porosity of the H-DLC film.
机译:通过与有机硅烷在250-280摄氏度下进行气相化学反应进行表面改性,改善了氢化类金刚石碳(H-DLC)低摩擦行为的疏水性和湿度耐受性。硅烷处理后,水和十六烷的接触角增加。与原始H-DLC会在相对湿度(RH)增加到百分之几时立即失去超低摩擦性能的情况不同,经过硅烷处理的H-DLC膜保持高达30%的低摩擦性能(系数小于0.08)。 RH。摩擦测试后对堆积在球上的转移膜的元素分析表明,硅烷分子不仅装饰了H-DLC的最上表面,而且还渗入了地下并与之反应。表面粗糙度,水吸附行为和硬度测量结果也表明,硅烷处理会影响H-DLC膜的表面形态和地下孔隙率。

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