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Synthesis and characterization of nickel–diamond nanocomposite layers

机译:镍-金刚石纳米复合材料层的合成与表征

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Electrodeposition can be used in order to prepare nanocomposite coatings made of nanoparticles dispersed into a metallic matrix, onto a metallic substrate. These kinds of coatings can combine the properties of the matrix and of the dispersed nanoparticles, which can lead to some interesting properties of the mixture. Including diamond nanoparticles into a metallic matrix can take advantage of the diamond properties, especially of its hardness and inertness in many chemical media. Still, the proper control of the electrodeposition parameters is a must in order to obtain the best microhardness and corrosion behavior of such nanocomposite coating. This paper proposes the comparative analysis between Ni/diamond nanocomposite coatings, prepared by electrodeposition, by varying several deposition parameters and the corresponding pure nickel coatings onto the same type of substrate, namely copper. Microstructural and morphological analysis of the two kinds of coatings are also performed and studied, along with microhardness measurements and corrosion resistance tests. It is concluded that specific electrodeposition technique and corresponding parameters must be used in order to prepare those Ni/diamond nanocomposite coatings with the best microhardness and best corrosion resistance.
机译:可以使用电沉积以将由分散到金属基质中的纳米颗粒制成的纳米复合涂层制备到金属基材上。这些类型的涂层可以结合基质和分散的纳米颗粒的性质,这可以导致混合物具有某些有趣的性质。将金刚石纳米粒子包括在金属基质中可以利用金刚石的特性,尤其是在许多化学介质中的硬度和惰性。为了获得这种纳米复合涂层的最佳显微硬度和腐蚀性能,必须正确控制电沉积参数。本文提出了通过改变几个沉积参数,通过电沉积制备的镍/金刚石纳米复合镀层与相应的纯镍镀层在相同类型的基材(即铜)上的对比分析。还对两种涂层进行了显微组织和形态分析,并进行了显微硬度测量和耐蚀性测试。结论是必须使用特定的电沉积技术和相应的参数,以制备具有最佳显微硬度和最佳耐蚀性的镍/金刚石纳米复合涂层。

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