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Heat source model for laser beam welding of steel-aluminum lap joints

机译:钢铝圈接头激光束焊接的热源模型

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摘要

In this study, a three-dimensional thermal conduction model based on the finite element analysis was established to predict a heat distribution during laser welding in overlap configuration of austenitic stainless steel 1.4301 and hardenable aluminum alloy 6016. A hybrid model based on two expanded curve-rotated volumetric heat sources is suggested to capture the complex weld geometry. Since thermal flow in the overlap area is a crucial part of the model, an analytic calculation of a thermal contact conductance between the plates and its subsequent implementation in the FE model through a superposition of two contact surfaces are described in details in this paper. Full thermal cycles, weld shapes, and thus mixing grades were successfully predicted by means of the developed model for different parameter combinations.
机译:在该研究中,建立了一种基于有限元分析的三维热传导模型,以预测奥氏体不锈钢1.4301和可硬化铝合金6016的重叠配置期间的热分布。基于两个扩展曲线的混合模型 建议旋转的体积热源来捕获复杂的焊接几何形状。 由于重叠区域中的热流是模型的关键部分,因此在本文中详细描述了通过两个接触表面的叠加在Fe模型中板材和其随后的实施方式之间的热接触电导的分析计算。 通过开发的不同参数组合,成功预测了完全热循环,焊接形状,从而进行混合等级。

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