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Thermo-Mechanical Simulation of Temperature Distribution and Prediction of Heat-Affected Zone Size in MIG Welding Process on Aluminium Alloy EN AW 6082-T6.

机译:铝合金铝合金钢铁焊接工艺温度分布温度分布及预测的热机械仿真。

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Welding process is considered as a thermal-mechanical-metallurgical coupled problem. In this study, finite element method (FEM) is adopted for predicting the temperature history in Metal Inert Gas (MIG) welding of 5mm thick aluminium 6082 alloy. The Goldak's double ellipsoidal moving heat source model was used to analyse the influence of peak temperature to the radial distance from the center of the heat source and the thickness of the plate. Temperature-dependent thermal properties of aluminium alloy 6082 in T6 condition and the convective and radiative boundary conditions were included in the model. The finite element code, ANSYS along with APDL command subroutines was employed to obtain the numerical results. The effect of heat input and welding speed on the weld pool shape and temperature distribution were investigated. Finally, the predicted temperature distribution and the size of heat-affected zone were compared with the experimental results. The comparison shows that they are in good agreement.
机译:焊接过程被认为是热机械冶金耦合问题。在该研究中,采用有限元法(FEM)预测5mm厚铝6082合金的金属惰性气体(MIG)焊接中的温度历史。 Goldak的双椭圆形移动热源模型用于分析峰值温度对距热源中心的径向距离和板的厚度的影响。在T6条件下的铝合金6082的温度依赖性热性能和对流和辐射边界条件包括在模型中。有限元代码,ANSYS与APDL命令子程序一起使用以获得数值结果。研究了热输入和焊接速度对焊接池形状和温度分布的影响。最后,将预测的温度分布和热影响区的尺寸与实验结果进行了比较。比较表明它们非常一致。

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