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超细晶TiNi表面磁控溅射CNx薄膜的纳米压痕与摩擦性能
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江苏省高校自然基金重大项目 (11KJA430004); 江苏大学优秀学术青年骨干培养对象基金 (1211110001)


Nanoindentation and Friction Properties of Magnetron Sputtered CNx Films on Ultrafine Grained TiNi Alloy
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    摘要:

    采用室温磁控溅射技术在超细晶TiNi合金表面制备出CNx/SiC(氮化碳/碳化硅)双层薄膜,SiC为中间层。研究了CNx薄膜的组织结构、纳米压痕和摩擦性能。结果表明:CNx薄膜存在微孔缺陷 (基体中夹杂物脱落等原因引起)、石墨含量高、纳米硬度(5.23 GPa)低、弹性模量(33.29 GPa)低,但具有高的硬度与弹性模量比值 (0.157)。在200 g载荷、氮化硅球(半径为2 mm)为对摩件、大气干摩擦条件下,CNx薄膜的摩擦系数约为0.173,磨损后薄膜未出现裂纹和剥落;在500 g载荷、室温Kokubo人体模拟体液下,CNx薄膜的摩擦系数约为0.103,但磨损后薄膜出现剥落。剥落的发生可能是由于SBF溶液通过微孔缺陷进入并腐蚀薄膜-薄膜-基材界面所致

    Abstract:

    The microstructure, nano-indentation and friction properties of the CNx/SiC (carbon nitride/silicon carbon) bilayered films (SiC as interlayer), deposited on ultrafine-grained TiNi alloy substrate using magnetron sputtering technique at room temperature, were investigated. The results show that the CNx film is not fully compact with micro-pore defections in some zones, which has been possibly caused by the breaking off of inclusions in substrates. The CNx film presents high concentration graphite, low nano-hardness (5.23 GPa), low Young's modulus (33.29 Pa), but high hardness-to-modulus ratio (0.157). As sliding against Si3N4 (silicon nitride) balls (2 mm in radius), under ambient environment and 200 g load, the CNx film exhibits the friction coefficient of about 0.173 without film cracking and interface delaminating. On the other hand, under Kokubo simulation body fluid (SBF) and 500 g load, the CNx film exhibits the friction coefficient of about 0.103, but the interface delaminating occurs that is believed to be due to that the SBF enter into the film-film-substrate interfaces through micro-pores defections and corrode the interfaces

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许晓静,刘 敏,张体峰,凌智勇,盛新兰,陈 丹.超细晶TiNi表面磁控溅射CNx薄膜的纳米压痕与摩擦性能[J].稀有金属材料与工程,2013,42(3):585~588.[Xu Xiaojing, Liu Min, Zhang Tifeng, Ling Zhiyong, Sheng Xinlan, Chen Dan. Nanoindentation and Friction Properties of Magnetron Sputtered CNx Films on Ultrafine Grained TiNi Alloy[J]. Rare Metal Materials and Engineering,2013,42(3):585~588.]
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  • 收稿日期:2012-12-19
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