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An inverse method for evaluating weld residual stresses via fatigue crack growth test data

机译:一种通过疲劳裂纹扩展测试数据评估焊接残余应力的逆方法

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摘要

This paper presents an inverse method for calculating the thermal residual stresses in welded specimens via measured fatigue crack growth rates. Firstly, fracture-mechanics superposition law has been used to extract the stress intensity factor due to residual stress contribution from measured crack growth rate. Secondly, a so-called B matrix has been established by performing finite element analysis. Residual stress distribution is then determined by solving linear algebraic equations relating the B matrix and residual stress intensity factors obtained from crack growth test data. The inverse method has been validated by a well-established residual stress distribution and corresponding stress intensity factor, and then applied to an M(T) sample in 2024-T3 alloy with a longitudinal weld. Agreement with the measured residual stresses is reasonably good and reasons for certain differences between the calculated and measured are discussed.
机译:本文提出了一种通过测量疲劳裂纹的增长率来计算焊接试样中的热残余应力的逆方法。首先,断裂力学叠加定律已被用来从残余应力贡献中提取应力强度因子,该残余应力来自于测得的裂纹扩展速率。其次,通过进行有限元分析已经建立了所谓的B矩阵。然后,通过求解线性代数方程来确定残余应力分布,该方程将B矩阵与从裂纹扩展测试数据中获得的残余应力强度因子相关联。反向方法已通过良好建立的残余应力分布和相应的应力强度因子进行了验证,然后应用于带有纵向焊缝的2024-T3合金中的M(T)样品。与测得的残余应力的一致性相当好,并讨论了计算出的和测得的之间存在某些差异的原因。

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