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Evaluation of the microstructure, mechanical and tribological properties of nickel-diamond nanocomposite coatings

机译:镍金刚石纳米复合材料涂料的微观结构,机械和摩擦学性能评价

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This study investigates the feasibility of a two-step process for the deposition of wear resistant, nickel-diamond nanocomposite coatings onto steel substrates. The steps involve the spray deposition onto stainless steel substrates, of nickel nanoparticles (40-60 nm diameter) and nanodiamonds (approx. 100 nm diameter). This is followed by the sintering of the nanoparticle coating using a microwave plasma. The 0.2-2 mu m thick nano-composite coatings exhibited very good adhesion on the steel substrates, based on Rockwell C indentation tests. The morphology and roughness of the coatings was found to be significantly influenced by the sintering temperature, which was investigated in the range 711 to 885 degrees C. The effect of nanodiamond concentration and spray duration were also investigated. Of the parameters studied, the concentration of nanodiamond in the composite was the dominant factor controlling the wear performance of the coatings, when assessed based on pin-on-disc wear tests. Compared to the nickel coating and the steel substrate, the nickel-diamond nanocomposite coatings exhibited a 126 and 55-fold enhancement respectively, in wear performance.
机译:本研究研究了两步方法的可行性,用于将耐磨,金刚石纳米复合涂层沉积到钢基材上。这些步骤涉及喷涂到不锈钢基材上,镍纳米颗粒(直径40-60nm)和纳米金刚石(约100nm直径)。这是使用微波血浆烧结纳米粒子涂层的烧结。基于罗克韦尔C压痕试验,0.2-2μm厚的纳米复合涂层在钢基材上表现出非常好的粘附性。发现涂层的形态和粗糙度受到烧结温度的显着影响,该温度在711至885℃的范围内研究。还研究了纳米金刚胺浓度和喷雾持续时间的影响。在研究的参数中,在基于销盘磨损试验评估时,复合材料中纳米金刚胺的浓度是控制涂层的磨损性能的显着因子。与镍涂层和钢基板相比,镍 - 金刚石纳米复合材料涂层分别在磨损性能下分别显示出126和55倍的增强。

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