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Computational and Experimental Study of Temperature Distribution and Residual Stress in Butt-Joint TIG Welds

机译:TIG对接焊缝温度分布和残余应力的计算和实验研究

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This work conducted a non-linear finite element model associated with arc efficiency to simulate the temperature distribution and residual stress. A three-dimensional finite element analysis of temperature and stress in butt-joint TIG welds was performed using commercial software ANSYS. This model includes adjusting Gaussian distribution heat flux, alternating temperature dependent material properties, and managing thermal elasto-plastic material behavior. Computational results for both the temperature distribution and the residual stress are compared with available experimental data to confirm the accuracy of this technique. The simulated results of temperature distribution and residual stress are in good agreement with corresponding experimental data. The greatest value of this work does not lie in its ability to predict the magnitude and distribution of weld temperature and residual stress. Rather, this work proposed that prediction errors in a finite element model can be eliminated by modifying the arc power distribution function.
机译:这项工作进行了一个与电弧效率相关的非线性有限元模型,以模拟温度分布和残余应力。使用商用软件ANSYS对对接TIG焊缝中的温度和应力进行了三维有限元分析。该模型包括调整高斯分布热通量,交替依赖温度的材料特性以及管理热弹塑性材料的行为。将温度分布和残余应力的计算结果与可用的实验数据进行比较,以确认该技术的准确性。温度分布和残余应力的模拟结果与相应的实验数据吻合良好。这项工作的最大价值不在于其预测焊接温度和残余应力的大小和分布的能力。相反,这项工作提出可以通过修改电弧功率分布函数来消除有限元模型中的预测误差。

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