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Simulation of Temperature Distribution and Microstructure Evolution in the Molten Pool of GTAW Ti-6Al-4V Alloy

机译:GTAW Ti-6Al-4V合金熔池温度分布和组织演变的模拟

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摘要

In this paper, a three-dimensional (3D) finite element model was established by ABAQUS software to simulate the welding temperature field of a Ti-6Al-4V alloy under different welding currents based on a Gaussian heat source model. The model uses thermo-mechanical coupling analysis and takes into account the effects of convection and radiation on all weld surfaces. The microstructure evolution of the molten pool was calculated using the macro-micro coupling cellular automaton-finite different (CA-FD) method. It was found that with the increase of the welding current, the temperature in the central region of the moving heat source was improved and the weld bead became wider. Then, the dendritic morphology and solute concentration of the columnar to equiaxed transition (CET) in the weld molten pool was investigated. It is shown that fine equiaxed crystals formed around the columnar crystals tips during solidification. The coarse columnar crystals are produced with priority in the molten pool and their growth direction is in line with the direction of the negative temperature gradient. The effectiveness of the model was verified by gas tungsten arc welding experiments.
机译:本文利用ABAQUS软件建立了三维有限元模型,以高斯热源模型为基础,模拟了不同焊接电流下Ti-6Al-4V合金的焊接温度场。该模型使用热力耦合分析,并考虑了对流和辐射对所有焊接表面的影响。熔池的微观结构演变是使用宏观微耦合元胞自动机有限差分法(CA-FD)计算的。发现随着焊接电流的增加,移动热源中心区域的温度提高,焊缝变宽。然后,研究了焊缝熔池中柱状到等轴转变(CET)的枝晶形态和溶质浓度。结果表明,在凝固过程中,在柱状晶体周围形成了细小的等轴晶。在熔池中优先产生粗大的柱状晶体,其生长方向与负温度梯度的方向一致。通过气体钨极电弧焊实验验证了该模型的有效性。

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