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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Evaluation of the wear and abrasion resistance of hard coatings by ball-on-three-disk test methods - A case study
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Evaluation of the wear and abrasion resistance of hard coatings by ball-on-three-disk test methods - A case study

机译:通过三盘球试验方法评估硬质涂层的耐磨性-案例研究

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摘要

Engineered surfaces can provide superior resistance to abrasive and adhesive wear. There are many types of hard coatings readily available including diamond-like-carbon (DLC) coatings, nitrides, carbides, oxides, etc., and due to the many processing alternatives including alloying element, thickness, deposition technique, etc. each of these types contains a virtually endless number of choices. Fundamental materials properties such as hardness and toughness are often not adequate to reflect how a particular coating will perform, and some of these properties, toughness for example, can be hard to measure and are usually not available. In contrast, bench-scale measurements of friction and wear can provide reliable and meaningful data. However, many of these techniques are expensive and time-consuming and determining the best coating to meet the requirements of a specific application amongst this endless variety of materials can be cost-prohibitive. In this case, ball-on-three-disk (BOTD) test methods are used to provide a rapid, cost-effective, and accurate measure of the wear and abrasion resistance of representative samples of many of the types of coatings being designed with modern techniques. This work provides a case study of steel coated with seven types of nitrides, novel Cr and Ni plated coatings, as well as baseline uncoated and manganese phosphate coated steel samples. The data illustrates the value of the BOTD test method as a bench-scale tribological test as well as significant insight to how subtle design features and changes in the testing conditions of coatings can lead to significant differences in performance.
机译:工程表面可以提供优异的抗磨性和粘合剂磨损性。有许多类型的硬质涂层,包括类金刚石碳(DLC)涂层,氮化物,碳化物,氧化物等,并且由于包括合金元素,厚度,沉积技术等在内的许多加工替代方法,因此很容易获得。类型包含几乎无数的选择。基本材料的特性(例如硬度和韧性)通常不足以反映特定涂层的性能,并且其中某些特性(例如韧性)可能难以测量,通常是不可用的。相反,在工作台上测量摩擦和磨损可以提供可靠且有意义的数据。然而,这些技术中的许多技术昂贵且费时,并且在这种无尽的材料中确定满足特定应用要求的最佳涂层可能会导致成本过高。在这种情况下,采用三盘滚珠(BOTD)测试方法可快速,经济高效且准确地测量正在设计的具有现代涂层设计的许多类型涂料的代表性样品的耐磨性技术。这项工作提供了一种案例研究,该案例研究了用7种氮化物涂层的钢,新型的Cr和Ni镀层,以及基线的未涂层和磷酸锰涂层的钢样品。数据说明了BOTD测试方法作为实验室规模的摩擦学测试的价值,以及对微妙的设计特征和涂层测试条件变化如何导致性能显着差异的深刻见解。

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