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Tribological behavior of Ni?SiC composite coatings produced by circulating-solution electrodeposition technique

机译:循环溶液电沉积技术生产的镍铬氏菌族的摩西复合涂层

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摘要

Ni?SiC composite coatings were successfully deposited on interior surfaces of cylinders by circulating-solution electrodeposition (CSD) technique on a newly-designed composite electroplating apparatus. The circulating solution agitation was effective to improve the dispersibility of SiC particles. The morphology, microstructure, hardness and tribological performances of Ni?SiC composite coatings varying SiC content were studied. Results showed that the dominant wear mechamism was oxidative wear, accompanied by abrasive wear. The friction coefficient and wear rate decreased with increasing SiC content. The excellent wear resistance was attributed to the existence of (111) growth twins, the improved hardness, the protections from NiO layer and SiC reinforcements, and the friction-induced microstructure changes underneath the tribo-surface. The protective capability of NiO layer and micro-SiC particles were discussed in detail.
机译:镍?在自行设计的复合电镀装置上,采用循环溶液电沉积(CSD)技术成功地在气缸内表面沉积了SiC复合镀层。循环溶液搅拌可以有效地提高SiC颗粒的分散性。镍的形貌、显微结构、硬度和摩擦学性能?研究了不同SiC含量的SiC复合涂层。结果表明,主要的磨损机制是氧化磨损,并伴有磨粒磨损。摩擦系数和磨损率随SiC含量的增加而降低。优异的耐磨性归因于(111)生长孪晶的存在、硬度的提高、NiO层和SiC增强体的保护以及摩擦表面下摩擦诱导的微观结构变化。详细讨论了NiO层和SiC微粒的防护性能。

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