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An Introduction to Wear Degradation Mechanisms of Surface-Protected Metallic Components

机译:表面保护金属零件的磨损降解机理简介

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Despite the fact that ceramics and polymers have found numerous applications in several mechanical systems, metals and metallic alloys still remain the main materials family for manufacturing the bulk of parts and components of engineering assemblies. However, in cases of components that are serving as parts of a tribosystem, the application of surface modification techniques is required to ensure their unhampered function during operation. After a short introduction on fundamental aspects of tribology, this review article delves further into four representative case studies, where the inappropriate application of wear protection techniques has led to acceleration of the degradation of the quasi-protected metallic material. The first deals with the effects of the deficient lubrication of rolling bearings designed to function under oil lubrication conditions; the second is focused on the effects of overloading on sliding bearing surfaces, wear-protected via nitrocarburizing; the third concerns the application of welding techniques for producing hardfacing overlayers intended for the wear protection of heavily loaded, non-lubricated surfaces; the fourth deals with the degradation of thermal-sprayed ceramic coatings, commonly used as wear-resistant layers.
机译:尽管事实证明陶瓷和聚合物已在多种机械系统中得到广泛应用,但金属和金属合金仍然是制造工程装配的大部分零件的主要材料系列。然而,在部件充当摩擦系统的一部分的情况下,需要应用表面改性技术以确保其在运行过程中的正常运行。在简短介绍了摩擦学的基本方面之后,这篇综述文章进一步研究了四个代表性的案例研究,其中磨损保护技术的不适当应用导致准保护金属材料的降解加速。第一个问题涉及设计用于在油润滑条件下运行的滚动轴承润滑不足的影响。第二个重点是过载对滑动轴承表面的影响,并通过氮碳共渗进行磨损保护;第三方面涉及焊接技术在生产硬面覆盖层中的应用,这些覆盖层旨在保护重载,非润滑表面;第四类处理通常用作耐磨层的热喷涂陶瓷涂层的退化。

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