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Investigation of the Residual Stress effect on Thermoelastic behaviour of a rolled AA2024

机译:轧制AA2024热弹性行为的残余应力影响研究

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The Thermoelastic Stress Analysis (TSA) is a contactless technique based on the thermoelastic effect that consists of the generation of small temperature variations caused by the volume variations induced by stresses applied in the linear-elastic range. Recent works demonstrated the capability of the TSA for the characterization of materials behaviour in presence of residual stresses. The use of a general TSA analytical expression allows the researchers to find a relationship between the amplitude of the thermal signal varying at the same frequency as the applied load and the characteristics of the residual stress tensor in terms of principal stresses and their direction. The just said relationship, under certain conditions, can be also affected by the uncertainty in the knowledge of the thermo-physical properties of the material which can enhance or blur the presence of residual stresses. In this work, the effect of the main variables, such as the material properties and the presence of residual stress on the TSA were investigated by applying a sensitivity analysis to the analytical general model. The analytical results were then verified and compared with TSA experimental measurements performed on AA2024 samples affected by biaxial residual stresses and the residual stresses measured with a standard test method.
机译:热弹性应力分析(TSA)是基于热弹性效果的非接触式技术,该效果包括由施加在线性弹性范围中施加的应力诱导的体积变化引起的小的温度变化的产生。最近的作品证明了TSA在存在残余应力的情况下表征材料行为的能力。使用通用TSA分析表达式允许研究人员在与所施加的负载和其方向的方向上以相同的频率和残余应力张量的特性找到变化的热信号的幅度之间的关系。在某些条件下,刚刚说的关系,也可以受到能够增强或模糊残余应力存在的材料的热物理性质的不确定性的影响。在这项工作中,通过对分析一般模型应用灵敏度分析来研究主要变量的效果,例如材料性质和物质性质和在TSA上存在残余应力。然后验证分析结果,并与对受双轴残余应力影响的AA2024样本进行的TSA实验测量进行比较,并用标准测试方法测量的残余应力。

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