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Electrical and Tribological Characteristics of Copper Containing Diamond-like Carbon Nanocomposite Coating on Brass Substrate Sliding against Brass Ball

机译:黄铜球滑动黄铜基板上含铜铜金刚石碳纳米复合涂层的电气和摩擦学特性

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With the market growth of electrical and hybrid vehicles, demands for innovative technology on sliding contacts for vehicles have been increasing. Reducing the electrical contact resistance and the coefficient of friction are major technological requirements. This report provides electrical and tribological characteristics of a Copper containing Diamond-like Carbon (Cu-DLC) nanocomposite coating deposited on a brass plate, investigated with a ball-on-flat linear-reciprocating tribometer. The counterpart was a brass ball. While the initial electrical contact resistance was hundreds of milliohms, it gradually decreased with cycles and reached approximately 2 milliohms after 600 cycles. Coefficient of friction started below 0.35 and decreased progressively, stabilizing around 0.25 after 600 cycles. Sliding surfaces after different number of cycles were analyzed by optical microscope, energy dispersive X-ray spectroscopy, transmission electron microscopy and nanoindentation. The results of analyses revealed that a copper-rich tribofilm was built up on the ball and it grew and hardened as the sliding cycle increased. The Cu-DLC coating wore gradually and was almost worn out after less than 1000 cycles. However, detrimental effects were not observed either on electrical contact resistance or on coefficient of friction. Therefore, the tribofilm on the ball should have a key role in achieving and maintaining the good electrical-tribological characteristic.
机译:随着电气和混合动力汽车的市场增长,对车辆滑动接触的创新技术的需求已经增加。降低电接触电阻和摩擦系数是主要的技术要求。本报告提供沉积在黄铜板上的含有金刚石状碳(Cu-DLC)纳米复合涂层的铜的电气和摩擦学特征,用球形线性往复摩擦计进行研究。对应物是黄铜球。虽然初始电接触电阻为数百毫升,但它随循环逐渐降低,并在600次循环后达到约2毫升。摩擦系数在0.35以下开始,逐渐降低,稳定在600次循环后约0.25。通过光学显微镜分析不同数量的循环后的滑动表面,能量分散X射线光谱,透射电子显微镜和纳米凸缘。分析结果显示,在球上建立了富含富含铜的呋喃酚,并且随着滑动循环增加,它成长并变硬。 Cu-DLC涂层逐渐磨损,几乎在小于1000次循环后几乎磨损。然而,在电接触电阻或摩擦系数上未观察到不利影响。因此,球上的婚皮局应该在实现和维持良好的电气摩擦学特征方面具有关键作用。

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