首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >Characterization of spherical indenter with fused silica under small deformation by Hertzian relation and Oliver and Pharr's method
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Characterization of spherical indenter with fused silica under small deformation by Hertzian relation and Oliver and Pharr's method

机译:赫兹关系与奥利弗和PHARR方法小变形下熔融二氧化硅对球形压痕的特征

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摘要

Radius and area function of a spherical indenter are calibrated by performing spherical nanoindentation tests on fused silica with known properties. The spherical indenter is made of ruby with a relatively large radius of 200 mu m in nominal value. Hertzian relation was found to be successful in characterizing radius of spherical indenter under purely elastic deformation condition. Oliver and Pharr's method is dependent on the measurement accuracy of residual displacement, which cannot be measured within acceptable precision under very little plastic deformation with values of residual displacement being only several nanometers. Area function calibrated with Oliver and Pharr's method on a brittle material like fused silica was found to be smaller than true value, leading to measured elastic modulus larger than true value. A softer material that can produce sufficient plastic deformation with large residual displacement is recommended as the standard material for area function calibration. (C) 2018 Elsevier Ltd. All rights reserved.
机译:通过在具有已知性质的熔融二氧化硅上进行球形纳米末端试验来校准球形压痕的半径和区域功能。球形压痕由标号的标称值具有相对较大的半径为200μm的红宝石制成。发现赫斯氏的关系在纯弹性变形条件下表现出球形压痕的半径。 Oliver和Pharr的方法取决于残留位移的测量精度,在非常小的塑性变形下不能在可接受的精度下测量,其中残留位移的值仅为几纳米。发现用oliver和pharr在脆性材料上校准的区域功能,如熔融石英的脆性材料,比真值小,导致测量的弹性模量大于真值。建议使用具有大残余位移的足够塑性变形的更柔软的材料作为区域功能校准的标准材料。 (c)2018年elestvier有限公司保留所有权利。

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