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Stress analysis of cylindrical parts during deep drawing based on Dynaform

机译:基于Dynaform的深拉柱柱面术的应力分析

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In this paper, the Dynaform numerical method was used to simulate the deep drawing process of the cylindrical parts. The distribution of the thickness, stress and strain of the cylindrical part during multi-stage deep drawing, as well as the possible defects of the cylindrical parts at this time, were compared without using blank holder, using the flat blank holder or using cone-shaped blank holder. The one-step drawing showed that the use of flat blank holder or cone-shaped blank holder didn't have too much difference in stress and strain distribution. Based on the one-step drawn part, the stress and strain under different conditions at the second-step drawing showed that the use of cone-shaped blank holder could prevent the wrinkling and crack of the work-piece. The numerical simulation technologies presented in this paper can be used in the early analysis of such a complex process during the mold design, so as to predict and control the possible defects in the process of material processing, which can be used as a reference to verify the reliability of mold design.
机译:在本文中,使用Dynaform数值方法来模拟圆柱形部件的深层拉伸过程。在使用扁平坯料支架或使用锥体的情况下,比较了多级深拉伸期间圆柱形部分的圆柱形部件的厚度,应力和应变,以及此时的圆柱形部件的可能缺陷。形状的空白持有人。一步图表明,使用扁平坯料或锥形坯料支架的使用在应力和应变分布中没有太大差异。基于一步绘制的部分,第二步绘图的不同条件下的应力和应变表明,使用锥形坯料支架可以防止工件的皱纹和裂缝。本文呈现的数值模拟技术可用于在模具设计期间的这种复杂过程的早期分析中,以预测和控制材料处理过程中的可能缺陷,可以用作验证的参考模具设计的可靠性。

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