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Novel approaches on the study of wear performance of electroless Ni-P/diamond composite deposites

机译:研究化学镀Ni-P /金刚石复合镀层磨损性能的新方法

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摘要

The ability to co-deposit particulate matter in a matrix of electroless nickel has led to a new generation of composite coatings. Polycrystalline diamond is one of the many varieties of particulate matter that can be co-deposited. Composite diamond coating is a regenerative layer of diamond particles dispersed in a hard electroless nickel matrix. In this work, experiments have been carried out to study the effect of heat treatment on the wear characteristics of the electroless composite coating containing diamond particles. The results indicate substantial increase in wear resistance after heat treatment. For wear analysis, in order to overcome the difficulties in the most common 'weight loss' method, X-ray diffraction method is used. Also the concept of internal standard method of quantitative X-ray diffraction analysis with suitable modifications is employed for the study of removal of diamond particles from the matrix. Superior integrity of the diamond particles with the matrix of the coating is observed for the specimens when heat treated to around 350℃ because of the formation of phosphides. But increasing the heat treatment to about 500℃ affects the wear resistance.
机译:在化学镍的基体中共沉积颗粒物质的能力导致了新一代的复合涂层。多晶金刚石是可以共沉积的多种颗粒物质之一。复合金刚石涂层是金刚石颗粒的再生层,分散在坚硬的化学镍基体中。在这项工作中,已经进行了实验以研究热处理对含有金刚石颗粒的化学复合涂层的磨损特性的影响。结果表明热处理后耐磨性的显着提高。对于磨损分析,为了克服最常见的“失重”方法中的困难,使用了X射线衍射方法。带有适当修改的定量X射线衍射分析的内标方法的概念也用于研究从基体中去除金刚石颗粒的研究。当样品热处理到350℃左右时,由于形成了磷化物,观察到了金刚石颗粒与涂层基质的优异完整性。但是将热处理温度提高到500℃左右会影响耐磨性。

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