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Error and Uncertainty Analysis of Non-Uniform Residual Stress Evaluation by Using the Ring-Core Method

机译:环核法非均匀残余应力评估的误差和不确定性分析

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摘要

Like other mechanical methods used for the residual stress evaluation on a generic structural component, the Ring-Core Method (RCM) is potentially subjected to various error sources that in some particular experimental conditions can lead to significant errors and/or uncertainties on the computed residual stresses. The accuracy of the residual stresses computed by the RCM can be improved by a proper error analysis that allows the user to correct the systematic errors, as well as to evaluate the remaining stress uncertainty due to the random errors. Therefore, in order to give a contribution to the accuracy of the RCM, in the present work the list of the main error sources is presented and the effects of each source on the computed residual stresses, is examined in detail. Moreover, a systematic procedure for the residual stress uncertainty estimation is implemented. Finally, the application of the proposed procedure for the evaluation of the biaxial residual stresses field simulated by FEM on a simple steel plate, has allowed to detect the quantitative effects of the main error sources on the computed residual stresses, corroborating the usefulness of the procedure proposed for the correction of the systematic errors and the estimation of the uncertainty of the principal residual stress and their orientation.
机译:像其他用于评估通用结构部件上的残余应力的机械方法一样,Ring-Core方法(RCM)可能会受到各种误差源的影响,在某些特定的实验条件下,该误差源可能导致计算出的残余物产生重大误差和/或不确定性压力。可以通过适当的误差分析来提高RCM计算的残余应力的准确性,该误差分析允许用户校正系统误差,并评估由于随机误差而引起的剩余应力不确定性。因此,为了对RCM的精度做出贡献,在本工作中列出了主要误差源,并详细检查了每个误差源对计算出的残余应力的影响。此外,实施了用于残余应力不确定性估计的系统程序。最后,所提出的程序在有限元模拟的简单钢板上评估双轴残余应力场的应用,使得能够检测主要误差源对计算出的残余应力的定量影响,从而证实了该程序的实用性提出了用于校正系统误差和估计主残余应力及其方向不确定性的建议。

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