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Exploitation of Nanoindentation and Statistical Tools to Investigate the Behavior of Materials

机译:利用纳米压痕和统计工具研究材料的行为

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The determination of the performance of materials requires the characterization of materials at scales: macro, micro and nanoscale. Among the most common experimental methods one can find the instrumented indentation test for determining the contact stiffness and contact depth and analyzing the characteristic curve by nanoindentation load on the penetration of the indentor. Through statistical processing of the experimental results, the rigidity of contact on the contact depth is investigated, depending on the indentation load, for bronze, brass and copper. A mathematical model is adopted to describe the polynomial regression by the method of least squares growth rigidity with one or more geometric parameters representative of the size of the footprint. This study allows us to identify factors that influence the rigidity of the materials examined and the sensitivity of the used indenters.
机译:确定材料性能需要对材料进行宏观,微观和纳米尺度的表征。在最常用的实验方法中,可以找到一种仪器化的压痕测试,用于确定接触刚度和接触深度,并通过纳米压痕载荷对压痕穿透的特性曲线进行分析。通过对实验结果进行统计处理,根据压痕载荷,研究了青铜,黄铜和铜的接触刚度对接触深度的影响。采用数学模型通过最小二乘法生长刚度的方法来描述多项式回归,该方法具有一个或多个代表足迹尺寸的几何参数。这项研究使我们能够确定影响所检查材料的刚度和所用压头灵敏度的因素。

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