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EXPERIMENTALLY VALIDATED THERMO-MECHANICALLY COUPLED FE SIMULATIONS OF AL/MG FRICTION STIR WELDED JOINTS

机译:Al / MG摩擦搅拌焊接接头的实验验证热机耦合有限元模拟

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Numerical simulations of the friction stir welding of dissimilar metal joints is a daunting task given the complex issues involved such as the flow mixing action and the phase transformations. In this work, a 3D thermo-mechanical FE model is developed to simulate the dissimilar friction stir welding (DFSW) of aluminum-magnesium bi-metallic joints. The model is built using a manufacturing-processing-specific FEM software package (DEFORM 3D). Suitable constitutive laws are implemented to describe flow stress for both welded constituents: Al and Mg. The flow patterns of the stirring action from the simulations were verified against flow patterns of steel shots reported from experiments published in the literature. Also, the simulated interface patterns were found to be in agreement with microscopic images of welded sections taken from reported experiments. Furthermore, simulated temperature profiles favorably compare with temperature measurements previously published in the literature. The numerical model output includes relevant results such as material flow and volume fractions throughout the joint but most importantly in the recrystallized stir zone.
机译:考虑到所涉及的复杂问题,例如混流作用和相变,对异种金属接头进行摩擦搅拌焊接的数值模拟是一项艰巨的任务。在这项工作中,建立了一个3D热机械有限元模型来模拟铝镁双金属接头的异种搅拌摩擦焊(DFSW)。该模型是使用特定于制造过程的FEM软件包(DEFORM 3D)构建的。实施适当的本构定律来描述两种焊接成分:Al和Mg的流动应力。针对文献中公布的实验报告的钢丸流态,对模拟中搅拌作用的流态进行了验证。另外,发现模拟的界面图案与从报道的实验中获得的焊接部分的显微图像一致。此外,模拟温度曲线与文献中先前公布的温度测量结果相比具有优势。数值模型输出包括相关结果,例如整个接缝处的材料流量和体积分数,但最重要的是在重结晶搅拌区中。

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