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Dissimilar material lap joints by Friction Stir Welding of Steel and Titanium Sheets: Process Modeling

机译:钢材摩擦搅拌焊接钢材和钛薄膜的不同材料圈接头:工艺造型

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In the paper a continuum based FEM model for Friction Stir Welding of different material lap joint made out of thin stainless steel and titanium sheets is proposed. The simulation campaign was made out using the 3D Lagrangian implicit code DEFORM by means of a rigid-visco-plastic approach. The model, already set up and tuned for FSW process of similar materials and geometrical configurations takes into account the different mechanical and thermal behavior of the two materials and the microstructural evolution of the considered titanium alloy in the same joint. Additionally, it is able to predict temperature, phase, strain and strain rate distributions and evolution at the varying of the main process variables. The phase evolution models take into account only the main phases called Alpha, Beta and Alpha+Baeta so that, at the end of the simulation, the complete phase distribution in the welded zone.
机译:在纸质中,提出了一种基于连续的FEM模型,用于薄不锈钢和钛板制成的不同材料搭接接头的摩擦搅拌焊接。 使用刚性粘液塑料方法的3D拉格朗日隐式码变形,制定了模拟运动。 已经成立和调谐的模型,用于类似材料的FSW工艺和几何配置,考虑了两种材料的不同机械和热行为和同一关节中所考虑的钛合金的微观结构演化。 另外,能够在不同过程变量的变化时预测温度,相位,应变和应变速率分布和演化。 相位演化模型仅考虑了α,β和α+ baeta的主要相,使得在模拟结束时,焊接区域的完整相位分布。

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