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One-step FEM-based evaluation of weld line movement and development of blank in sheet metal stamping with tailor-welded blanks

机译:基于FEM的一步式评估,通过定制焊接的坯料在钣金冲压中对焊缝移动和坯料的发展进行评估

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摘要

Currently, more and more tailor-welded blanks (TWBs) are used in the automobile industry. It is very important to locate the weld line and predict its movement during the forming process. The initial weld line can be predicted by one-step finite-element analysis according to the desired weld line in the final workpiece. Meanwhile, weld line movement during the deformation process can be evaluated in advance. In this paper, the procedures of finite-element analysis of one-step FEM with TWBs are established. The contact between tool and blank and the effect of restraining forces under the blankholder due to drawbead and blankholder pressure are considered as well. Forming limit diagram (FLD) is used to show not only the tendency of reduction in thickness and fracture but also of increase in thickness and wrinkle. Hydraulic controlled pads used to clamp the weld line during the deep drawing process are simplified as static external force to eliminate the movement of the weld line. In order to speed up and ensure the convergence of Newton-Raphson iterations, energy-based 3D mesh mapping algorithm is introduced to obtain the initial solution. The above-mentioned methods have been implemented in the authors' in-house one-step FEM code InverStamp. A rectangular cup drawing case demonstrates that this approach can be easily implemented to evaluate weld line movement and develop initial blank in sheet metal stamping with tailor-welded blanks.
机译:当前,汽车工业中使用越来越多的拼焊毛坯(TWB)。定位焊缝并预测其在成型过程中的运动非常重要。可以根据最终工件中的所需焊接线,通过一步有限元分析来预测初始焊接线。同时,可以预先评估变形过程中焊缝的运动。本文建立了用TWBs进行单步有限元分析的程序。还考虑了工具与毛坯之间的接触以及由于拉延筋和毛坯夹持器压力而在毛坯夹持器下产生的约束力的影响。成形极限图(FLD)不仅用于显示厚度减少和断裂的趋势,而且还显示厚度和皱纹的增加。在深冲过程中用于夹紧焊缝的液压控制垫被简化为静态外力,以消除焊缝的运动。为了加快并确保Newton-Raphson迭代的收敛性,引入了基于能量的3D网格映射算法以获得初始解。上述方法已在作者内部的一步式FEM代码InverStamp中实现。一个矩形的杯子绘图案例表明,这种方法可以很容易地实现,以评估焊接线的运动并使用定制焊接的毛坯在钣金冲压中开发出初始毛坯。

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