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Optimization of initial blank shape on minimize earing in deep drawing using finite element method

机译:使用有限元方法在最小化深冲时优化毛坯初始形状

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Deep drawing of highly anisotropic sheets causes earing in the formed cup (formation of wavy edge at the top). In the present work, an attempt has been made to study this earing problem in deep drawing of cylindrical cups using a flat bottom punch from extra-deep drawing steel sheets using a finite element method based software LSDYNA. The mechanical properties and the formability parameters of the sheets were determined from the simple tensile tests. These properties along with experimental design parameters were used as input for simulation of deep drawing. Significant earing was observed and it compared with experimentally determined earing (by measuring cup height at several points) with reasonably good accuracy. To optimize the initial blank shape to minimize earing, the flow of material was observed at various steps during the process and accordingly blank shape was modified. Simulation of blanks with modified initial shape showed significant reduction in earing. Experiments were carried out on a 40 t hydraulic press using the modified blank shapes and it has been found that results agreed well with the analysis results.
机译:高各向异性片材的深冲会在成型杯中产生耳塞(在顶部形成波浪形边缘)。在目前的工作中,已经尝试研究使用基于有限元方法的软件LSDYNA用平底冲头从平底冲头对圆柱杯进行深冲时研究该耳部问题。片材的机械性能和可成型性参数由简单的拉伸试验确定。这些属性以及实验设计参数被用作模拟深冲的输入。观察到了明显的穗状花序,并且与实验确定的穗状花序(通过在多个点测量杯状高度)进行了比较,并具有相当好的准确性。为了优化初始毛坯形状以最大程度地减少毛刺,在加工过程的各个步骤中观察到材料的流动,并相应地对毛坯形状进行了修改。初始形状已修改的坯料的仿真显示,耳垂显着减少。实验是在40吨液压机上使用改进的毛坯形状进行的,发现结果与分析结果吻合良好。

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