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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Surfactant-assisted electrodeposition of Au-Co/WS2 self-lubricating coating from WS2 suspended cyanide electrolyte
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Surfactant-assisted electrodeposition of Au-Co/WS2 self-lubricating coating from WS2 suspended cyanide electrolyte

机译:来自WS2悬浮氰电解质的Au-Co / WS2自润滑涂层的表面活性剂辅助电沉积

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摘要

In this study, Triton X-100 was used as the WS2 dispersion agent in the Au-Co cyanide electrolyte to deposit Au-Co/WS2 composite coatings. Probe sonication was applied to exfoliate the commercial WS2 powders to produce thinner and smaller WS2 flakes, which improved the stability of the WS2 particles in the electrolyte. According to the electrochemical analyses, the effects of adding Triton X-100 and WS2 particles to the electroplating process were investigated. Through material characterizations, WS2 particles were proved to be compounded into the Au-Co matrix and showed clearly {002} preferred orientation due to their flake structures. Tribological tests were performed under dry condition in 10(-3) Pa vacuum against stainless steel 316L balls with diameters of 3 mm and a normal contact force of 2 N. The Au-Co/WS2 composite coatings that developed showed the minimum coefficient of friction and wear rate of 0.05 and 8 x 10(-6) mm(3)/N.m, which are 5 times and 3 times lower than the Au-Co reference coating, respectively. (C) 2020 Elsevier B.V. All rights reserved.
机译:在该研究中,Triton X-100用作Au-Co氰化物电解质中的WS2分散剂,以沉积Au-Co / Ws2复合涂层。应用探针超声处理以剥离商业WS2粉末以产生较薄和较小的WS2薄片,这改善了电解质中WS2颗粒的稳定性。根据电化学分析,研究了将Triton X-100和WS2颗粒添加到电镀过程中的效果。通过材料表征,证明将WS2颗粒复合到Au-Co基质中,并且由于其片状结构而显示出明显的{002}优选的取向。在10(-3)PA真空的干燥条件下进行摩擦学试验,其与直径为3mm的不锈钢316L球,并且正常接触力为2N。开发的Au-Co / WS2复合涂层显示出最小的摩擦系数磨损率为0.05和8×10(-6)mm(3)/ nm,分别比au-co参考涂层低5倍和3倍。 (c)2020 Elsevier B.v.保留所有权利。

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