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Influence of surfactants on electrodeposition of a Ni-nanoparticulate SiC composite coating

机译:表面活性剂对镍纳米SiC复合涂层电沉积的影响

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摘要

Nickel coatings containing well-dispersed, submicron (150-500 nm) silicon carbide particles were electrodeposited on copper from an agitated, modified Watts nickel electrolyte at 60 degrees C using current densities of 10-100 mA cm(-2). Coumarin additions (0-5 g dm(-3)) to a bath containing 10 g dm(-3) SiC at 6 A dm(-2) resulted in lower microhardness but considerably reduced abrasive wear in the composite coatings. Over 20 other surfactants including anionic, cationic, and non-ionic types were evaluated for their influence on the surface and tribological properties of the nanocomposite coatings. The surfactant levels (typically 0-3 g dm(-3)) were chosen to give good particle dispersions in the bath while avoiding any obvious deposit quality problems. Coating microhardness (via nanoindentation measurement), surface coefficient of friction (COF) and abrasive wear performance of the coatings under three-body, water-based conditions were investigated. The surfactants affected the degree of silicon carbide nanosized particles incorporated into the coating, from 5 to 54 vol.-%, and altered the surface microstructure from a matte to a bright surface finish and from porous to nodular, compact coatings. The nickel-nanosized silicon carbide composite coatings showed improved resistance to abrasive wear compared to a plain nickel (PN) deposit by a factor of 2-20.
机译:在60摄氏度下,使用10-100 mA cm(-2)的电流密度,将含有良好分散的亚微米(150-500 nm)碳化硅颗粒的镍涂层从搅拌着的改性Watts镍电解液中电沉积在铜上。在含有6 g dm(-2)的10 g dm(-3)SiC的镀液中添加香豆素(0-5 g dm(-3))导致较低的显微硬度,但大大降低了复合涂层的磨料磨损。评估了20多种其他表面活性剂,包括阴离子,阳离子和非离子型表面活性剂对纳米复合涂层表面和摩擦学性能的影响。选择表面活性剂水平(通常为0-3 g dm(-3))以在浴液中提供良好的颗粒分散性,同时避免任何明显的沉积质量问题。研究了在三体,水基条件下涂层的显微硬度(通过纳米压痕测量),表面摩擦系数(COF)和磨料磨损性能。表面活性剂影响掺入涂层中的碳化硅纳米级颗粒的程度从5到54体积%,并且将表面微观结构从无光泽改变为光亮的表面光洁度,并且从多孔改变为结节的致密涂层。与普通的镍(PN)沉积相比,镍纳米尺寸的碳化硅复合涂层显示出更高的耐磨性。

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