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首页> 外文期刊>Journal of Materials Science >Input error sensitivity of hardness and elastic modulus evaluated from indentation load-displacement records by Oliver and Pharr method
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Input error sensitivity of hardness and elastic modulus evaluated from indentation load-displacement records by Oliver and Pharr method

机译:硬度和弹性模量的输入误差敏感性,通过Oliver和Pharr方法从压痕载荷-位移记录评估

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Due to its straightforwardness and the ease of implementation the Oliver-Pharr method [1] has been used in the analysis of load- displacement records for more than a decade now. This paper provides analytical expressions relating the errors in the hardness and elastic modulus obtained by this method to systematic calibration errors of measured depth, force and frame compliance for spherical and sharp indentation. While in systems with zero frame compliance the sensitivity ratios for depth and force measurement were found to be constant, in systems with a finite frame compliance the error sensitivity changes with the absolute values of applied force and measured depth. The analytical predictions are compared with the true variation in derived materials parameters and the ranges of validity of the expressions are established. The error sensitivity with respect to different input variables and its implications for the actual measurement are discussed. (C) 2004 Kluwer Academic Publishers. [References: 16]
机译:由于其直接性和易于实施性,Oliver-Pharr方法[1]已用于分析荷载-位移记录已有十多年了。本文提供了通过这种方法获得的硬度和弹性模量误差与球形和尖锐压痕的测得深度,力和框架柔度的系统校准误差有关的解析表达式。在零框架柔度的系统中,发现深度和力测量的灵敏度比是恒定的,而在有限框架柔度的系统中,误差灵敏度随施加力和测得深度的绝对值而变化。将分析预测与派生材料参数的真实变化进行比较,并建立了表达式的有效性范围。讨论了关于不同输入变量的误差敏感性及其对实际测量的影响。 (C)2004 Kluwer学术出版社。 [参考:16]

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