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Validation of Proposed Metrics for Two-Body Abrasion Scratch Test Analysis Standards

机译:二体磨损划痕试验分析标准的拟议度量标准的验证

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摘要

The objective of this work was to evaluate a set of standardized metrics proposed for characterizing a surface that has been scratched from a two-body abrasion test. This is achieved by defining a new abrasion region termed Zone of Interaction (ZOI). The ZOI describes the full surface profile of all peaks and valleys, rather than just measuring a scratch width as currently defined by the ASTM G 171 Standard. The ZOI has been found to be at least twice the size of a standard width measurement, in some cases considerably greater, indicating that at least half of the disturbed surface area would be neglected without this insight. The ZOI is used to calculate a more robust data set of volume measurements that can be used to computationally reconstruct a resultant profile for detailed analysis. Documenting additional changes to various surface roughness parameters also allows key material attributes of importance to ultimate design applications to be quantified, such as depth of penetration and final abraded surface roughness. Data are presented to show that different combinations of scratch tips and abraded materials can actually yield the same scratch width, but result in different volume displacement or removal measurements and therefore, the ZOI method is more discriminating than the ASTM method scratch width. Furthermore, by investigating the use of custom scratch tips for our specific needs, the usefulness of having an abrasion metric that can measure the displaced volume in this standardized manner, and not just by scratch width alone, is reinforced. This benefit is made apparent when a tip creates an intricate contour having multiple peaks and valleys within a single scratch. This work lays the foundation for updating scratch measurement standards to improve modeling and characterization of three-body abrasion test results.
机译:这项工作的目的是评估一套标准化的度量标准,这些度量标准旨在表征两体磨损测试中刮伤的表面。这是通过定义一个称为“作用区域”(ZOI)的新磨损区域来实现的。 ZOI可以描述所有峰和谷的整个表面轮廓,而不仅仅是测量ASTM G 171标准当前定义的划痕宽度。已经发现ZOI至少是标准宽度测量值的两倍,在某些情况下要大得多,这表明在没有这种洞察力的情况下,至少有一半的受干扰表面积会被忽略。 ZOI用于计算更健壮的体积测量数据集,该数据集可用于以计算方式重建最终轮廓以进行详细分析。记录各种表面粗糙度参数的其他变化,还可以量化对最终设计应用重要的关键材料属性,例如渗透深度和最终磨损的表面粗糙度。呈现的数据表明,刮痕尖端和磨损材料的不同组合实际上可以产生相同的刮痕宽度,但是会导致不同的体积位移或去除测量,因此,ZOI方法比ASTM方法的刮痕宽度更具区分性。此外,通过研究满足我们特定需求的定制刮擦尖端的使用,增强了可以以这种标准化方式(不仅是仅通过刮擦宽度)来测量位移量的磨损度量的实用性。当尖端在单个划痕内创建具有多个峰和谷的错综复杂的轮廓时,这种好处就变得显而易见。这项工作为更新刮擦测量标准以改善三体磨损测试结果的建模和特性奠定了基础。

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