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四面体无定型无氢非晶碳膜的制备及其摩擦学性能研究

Preparation and Study of the Tribological Properties of Tetrahedral Amorphous Carbon Film

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【作者】 于翔张旭王成彪刘兴举傅玉娜

【Author】 YU Xiang~1, ZHANG Xu~2, WANG Cheng-biao~1, LIU Xing-ju~1, FU Yu-na~1(1.School of Engineering and Technology, China University of Geosciences, Beijing 100083, China;itute of Low Energy Nuclear Physics, Beijing 100875, China)

【机构】 中国地质大学工程技术学院北京师范大学低能核物理研究所中国地质大学工程技术学院 北京 100083北京 100875北京 100083北京 100083

【摘要】 采用磁过滤阴极真空弧系统分别在硅片[Si(100)]、W18Cr4V高速钢和Cr18Ni9不锈钢基体上沉积了一系列sp3键含量较高的四面体无定型无氢非晶碳膜(ta-C),研究了所合成薄膜的结构、硬度、附着强度和摩擦磨损性能,考察了基体和薄膜厚度对薄膜摩擦系数的影响,简要分析了相应ta-C膜的失效机理.结果表明,在高速钢基体上沉积的ta-C膜的显微硬度为76GPa,结合力Lc值达42N,具有优良的摩擦学性能,其摩擦系数为0.12,且摩擦系数可以在16000r范围内保持稳定.

【Abstract】 A series of tetrahedral amorphous carbon films (ta-C) were deposited on silicon wafer [Si(100)], W18Cr4V high-speed steel, and Cr18Ni9 stainless steel substrates using a pulsed filtered cathodic vacuum arc system. The mechanical properties, adhesion to substrate, and friction and wear behaviors of the resulting ta-C films were investigated. The effects of the substrate and film thickness on the adhesion to substrate and tribological behaviors of the ta-C films were also examined. It was found that that the ta-C film deposited on the high-speed steel substrate had good comprehensive properties. Namely, it had a microhardness as high as 76 GPa and elastic modulus as high as 453 GPa, while its critical adhesive force (Lc) was as high as 41 N and friction coefficient as small as 0.12. At the same time, the friction coefficient of this kept almost unchanged up to a rotary cycle of 16 000. Therefore, it was rational to predict that the ta-C film deposited on the high-speed steel substrate could be used as a high-quality antiwear and protective coating for various parts made of high-speed steel.

  • 【分类号】TB43
  • 【被引频次】10
  • 【下载频次】272
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