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A technique for determining coefficients of the 'stress-strain' diagram by nanoscratch test results

机译:通过纳米划痕测试结果确定“应力-应变”图系数的技术

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摘要

A technique has been developed for determining coefficients in the power approximation of the "stress-strain" diagram by results of scratch testing with a Berkovich indenter under a normal load of 5 mN on the indenter. The procedure is based on a comparison of experimental results with the finite element simulation of the test process. The technique is intended for application on nanomechanical testing equipment enabling one to perform tests with recording of loading diagrams in terms of the "normal force - indenter displacement" coordinates. To obtain correct results, one must observe the following restrictions: indenter penetration depth > 150 nm under a loading of 5 mN with the indenter tip curvature radius R < 50 nm; indenter penetration depth > 250 nm with 50 < R < 100 nm; the tested metal must be ductile enough, for a scratch to be formed by the mechanism of plastic deformation rather than fracture.
机译:已经开发出一种技术,该技术用于通过在5 mN的正常载荷下使用Berkovich压头进行划痕测试的结果来确定“应力-应变”图的功率近似中的系数。该程序基于实验结果与测试过程的有限元模拟的比较。该技术旨在应用在纳米机械测试设备上,从而使测试人员能够通过“法向力-压头位移”坐标来记录载荷图。为了获得正确的结果,必须遵守以下限制条件:在5 mN的载荷下,压头穿透深度> 150 nm,压头尖端曲率半径R <50 nm;压头穿透深度> 250 nm,50 <R <100 nm;被测金属必须具有足够的延展性,以便通过塑性变形而不是断裂的机理形成划痕。

著录项

  • 来源
    《Journal of Materials Research》 |2014年第16期|1730-1736|共7页
  • 作者单位

    Institute of Engineering Science, Russian Academy of Science (Ural Branch), Ekaterinburg 620049, Russia;

    Institute of Engineering Science, Russian Academy of Science (Ural Branch), Ekaterinburg 620049, Russia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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