首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Wear maps for titanium nitride coatings deposited on copper and brass with electroless nickel interlayers
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Wear maps for titanium nitride coatings deposited on copper and brass with electroless nickel interlayers

机译:化学镀镍中间层沉积在铜和黄铜上的氮化钛涂层的磨损图

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摘要

Copper and its alloys are a widely used group of engineering materials in numerous applications where their properties allow them to excel. Surface engineering is a term that refers to the use of various technologies used to modify a surface, leading to desirable properties at the surface. An overlay coating or a diffusion-type (surface hardening) process may be suitable for this purpose. Historically, surface engineering has emerged in answer to a call from consumers for improved wear and corrosion resistance, as well as aesthetic improvements. The practice of surface engineering as a means of improving the corrosion properties of copper is well established. The improvement of wear resistance of copper by these means is, however, less ascertained. In the current study, titanium nitride has been coated onto copper and brass with electroless nickel (EN) interlayers. Scratch adhesion tests were performed and the results interpreted via a profilometer and microscopic examination. Recommendations have been made as to appropriate nickel interlayer thicknesses for a given degree of wear resistance as reflected in the coating failure mechanism, by way of the so-called "wear map".
机译:铜及其合金是在许多应用中被广泛使用的一组工程材料,它们的性能使它们脱颖而出。表面工程是一个术语,指的是使用各种技术来修饰表面,从而在表面产生所需的特性。覆盖涂层或扩散型(表面硬化)工艺可能适用于此目的。从历史上看,表面工程已经出现,以响应消费者对改善耐磨性和耐腐蚀性以及美观性的要求。作为改善铜的腐蚀性能的一种手段,表面工程实践已得到广泛认可。但是,通过这些手段提高的铜的耐磨性提高得很少。在当前的研究中,氮化钛已通过化学镀镍(EN)中间层涂覆在铜和黄铜上。进行刮擦附着力测试,并通过轮廓仪和显微镜检查解释结果。通过所谓的“磨损图”,已经建议了对于给定的耐磨性适当的镍中间层厚度,如在涂层失效机理中所反映的那样。

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