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Friction force reduction for electrical terminals using graphene coating

机译:使用石墨烯涂层的电气终端摩擦力减少

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Multi-layer graphene, serving as a conductive solid lubricant, is coated on the metal surface of electrical terminals. This graphene layer reduces the wear and the friction between two sliding metal surfaces while maintaining the same level of electrical conduction when a pair of terminals engage. The friction between the metal surfaces was tested under dry sliding in a cyclical insertion process with and without the graphene coating. Comprehensive characterizations were performed on the terminals to examine the insertion effects on graphene using scanning electron microscopy, four-probe resistance characterization, lateral force microscopy, and Raman spectroscopy. With the thin graphene layers grown by plasma enhanced chemical vapor deposition on gold (Au) and silver (Ag) terminals, the insertional forces can be reduced by 74 % and 34 % after the first cycle and 79 % and 32 % after the 10(th)cycle of terminal engagement compared with pristine Au and Ag terminals. The resistance of engaged terminals remains almost unchanged with the graphene coating. Graphene stays on the terminals to prevent wear-out during the cyclic insertional process and survives the industrial standardized reliability test through high humidity and thermal cycling with almost no change.
机译:多层石墨烯作为一种导电固体润滑剂被涂覆在电气端子的金属表面。这种石墨烯层减少了两个滑动金属表面之间的磨损和摩擦,同时在一对端子接合时保持相同的导电水平。在有石墨烯涂层和无石墨烯涂层的循环插入过程中,在干滑动条件下测试了金属表面之间的摩擦。利用扫描电子显微镜、四探针电阻表征、侧向力显微镜和拉曼光谱对端子进行了全面表征,以检查石墨烯上的插入效应。通过等离子体增强化学气相沉积法在金(Au)和银(Ag)端子上生长薄石墨烯层,与原始金和银端子相比,第一个周期后的插入力可降低74%和34%,第十个周期后的插入力可降低79%和32%。使用石墨烯涂层后,接合端子的电阻几乎保持不变。石墨烯留在端子上,以防止在循环插入过程中磨损,并通过高湿度和热循环几乎没有变化的工业标准化可靠性测试。

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