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Numerical study of the effect of yield strain and stress ratio on the measurement accuracy of biaxial residual stress in steels using indentation

机译:产量应变与应力比对钢材钢材残余应力测量精度的数值研究

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Investigations into engineering structures show that residual stresses in combination with external loads can cause failure in loads which are below the design threshold. As a result, the exact study of the magnitude and distribution of these stresses is an important topic in mechanical engineering. Indentation is a new method for estimating residual stress. To measure non-equibiaxial residual stresses, there is only one reliable method presented by Lee et al. In this paper, the effect of yield stress and different values of residual stress on the accuracy of residual stress measurements in steels with similar work hardening behavior was studied by performing a large number of finite element simulations.Based on these numerical simulations and by studying how the residual stress measurement error of Lee and Kwon’s model changes according the stress ratio and the yield strain, a method is suggested to correct this error and calculate the real amount of non-equibiaxial residual stresses. The procedure is significantly reduces the error of residual stress measurement (from more than 100% to less than 10%) and has been verified by conducting experimental indentation.
机译:调查进入工程结构表明,与外部载荷组合的残余应力会导致负载的失效,这低于设计阈值。结果,对这些应力的幅度和分布的确切研究是机械工程中的重要课题。压痕是估计残余应力的新方法。为了测量非偏心残留应力,李等人只提供一种可靠的方法。在本文中,通过执行大量有限元模拟研究了屈服应力和残余应力对具有相似工作硬化行为的钢中残余应力测量精度的影响。基于这些数值模拟,并通过研究方法根据应力比和产量应变的李和夸孔模型的残余应力测量误差,提出了一种方法来纠正该误差并计算实际量的非偏离残余应力。该程序显着降低了残余应力测量的误差(从超过100%到小于10%),并通过进行实验性凹口来验证。

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