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FE Analysis of the Sensitivity of Friction Calibration Curves to Dimensional Changes in a Ring Compression Test

机译:环压试验中摩擦定标曲线对尺寸变化敏感性的有限元分析

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This paper is concerned with an analysis of the sensitivity of friction calibration curves to the frictional shear factor in a ring compression test. The main objective of this study is to examine the sensitivity of the FEA calibration curves of a ring compression test to the frictional shear factor. Different calibration curves were investigated by measuring dimensional changes at different positions of a ring specimen, including changes in the internal diameter at the middle and top section of the specimen, the outer diameter at the middle and top section, and the degree of surface expansion at the top surface. The initial ring geometries employed in the analysis maintain a fixed ratio of 6:3:2, i.e., the outer diameter : inner diameter : thickness ratio of the ring specimen, which is generally known as a 'standard' specimen, in order only to determine the sensitivity of the calibration curves for the measurement of dimensional changes at different positions to the frictional shear factor. A perfectly plastic material was modeled for the simulations using rigid-plastic finite element code. Analyses were performed within a definite range of friction as well as over the entire range of friction to uncover the different sensitivities of calibration curves to interfacial friction given different ranges of friction. The results of this investigation are summarized in terms of a dimensionless gradient. It was determined from the results that the friction calibration curves according to measurements of the dimensional changes at different positions of a ring specimen show different degrees of linearity and sensitivity to the frictional condition on the contact surface. Among these differences, the friction calibration curve upon changes in the degree of surface expansion at the contact boundary was found to be relatively linear and sensitive to the frictional condition over the entire range of friction.
机译:本文涉及在环形压缩试验中分析摩擦校准曲线对摩擦剪切系数的敏感性。这项研究的主要目的是检查环压缩试验的FEA校准曲线对摩擦剪切系数的敏感性。通过测量环形样品在不同位置的尺寸变化,研究了不同的校准曲线,包括样品中上部的内径,中上部的外径以及表面的膨胀程度。顶面。分析中采用的初始环几何形状保持固定比例为6:3:2,即环样品的外径:内径:厚度比,通常被称为“标准”样品,以便仅确定用于测量不同位置的尺寸变化对摩擦剪切系数的校准曲线的敏感性。使用刚塑性有限元代码为模拟建模了一种完美的塑性材料。在确定的摩擦范围内以及整个摩擦范围内进行分析,以揭示在不同摩擦范围下校准曲线对界面摩擦的不同敏感性。该研究的结果根据无量纲梯度进行了总结。从结果确定,根据在环形试样的不同位置处的尺寸变化的测量结果的摩擦校准曲线显示出不同程度的线性度和对接触表面上的摩擦条件的敏感性。在这些差异中,发现在接触边界处表面膨胀程度变化时的摩擦校准曲线相对线性,并且在整个摩擦范围内对摩擦条件敏感。

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