Energetic Size Effect Law at the Microscopic Scale: Application to Progressive-Load Scratch Testing

A. Akono
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引用次数: 27

Abstract

AbstractA scratch test consists in pulling a diamond stylus across the surface of a weaker material; it is widely applied in several fields of science and engineering, including polymer damage, metal wear, thin-film quality control, and strength of rocks. Recently, there has been an upsurge of interest in the fracture analysis of materials via scratch testing. In this study, the energetic size effect law (SEL) is applied at the microscopic scale for progressive-load scratch tests using a Rockwell C diamond probe. First, we employ dimensional analysis to connect the scratch force to the projected load-bearing area and to the perimeter for an axisymmetric scratch probe. In a second step, based on geometrical considerations, we approximate the real scratch probe geometry with a cone of equivalent half-apex angle, θeq. Then, we express the dependence of the nominal strength, σN, on the structural size, Λ, via a scaling relationship. The theoretical developments are later implemented in an experimental procedu...
微观尺度上的能量尺寸效应规律:在渐进载荷划痕试验中的应用
摘要划痕测试包括在较弱的材料表面上拉动金刚石笔;它广泛应用于聚合物损伤、金属磨损、薄膜质量控制和岩石强度等科学和工程领域。近年来,人们对通过划痕试验对材料进行断裂分析产生了浓厚的兴趣。在本研究中,利用罗克韦尔C型金刚石探针在微观尺度上应用能量尺寸效应定律(SEL)进行了渐进载荷划痕试验。首先,我们采用量纲分析将划痕力与轴对称划痕探头的投影承载区域和周长联系起来。在第二步中,基于几何考虑,我们用等效半顶点角θeq的圆锥近似真实划痕探头几何形状。然后,我们通过标度关系表示了标称强度σN对结构尺寸Λ的依赖关系。理论的发展后来在实验过程中得到了实现。
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