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Estimation of Surface Stress from Sliding Scratch and Static Spherical Indentation

机译:滑动划痕和静态球面压痕估算表面应力

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摘要

In this paper, surface stresses are estimated by means of sliding scratch and spherical indentation tests to understand the surface fracture of alumina specimens with respect to grain size. The critical load of material failure and the friction coefficient determined from scrach test are used for the estimation of surface stresses by finite-element analysis. In spherical indentation test, the size of the Hertz crack measured is proportional to the surface stress on cracking and hence the crack diameter can indicate the tensile stress on the surface of the specimen. Also, the radial tensile stress values are estimated using the critical load evaluated from the formation of circular ring crack. A similar trend of tensile stress degradation with increasing grain size is observed in both surface tests.
机译:在本文中,通过滑动划痕和球形压痕测试来估算表面应力,以了解氧化铝试样相对于晶粒尺寸的表面破裂。材料破坏的临界载荷和通过刮擦试验确定的摩擦系数被用于通过有限元分析来估计表面应力。在球形压痕测试中,测得的赫兹裂纹尺寸与裂纹表面应力成正比,因此裂纹直径可表示试样表面的拉应力。同样,使用从圆环裂纹形成中评估的临界载荷估算径向拉伸应力值。在两个表面测试中都观察到了随着晶粒尺寸的增加,拉应力退化的趋势。

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