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Effect of Draw Bead Height on Wall Features in Rectangular Deep-drawing Process using Finite Element Method

机译:利用有限元法测绘珠子高度对矩形深拉工艺壁特征的影响

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Concave/convex wall features are usually generated in the deep-drawn parts with complicated geometry, especially the difficult-to-deep draw materials. The application of the draw bead could reduce the concave/convex wall features. However, it is difficult to determine the suitable draw bead geometry and its position to obtain a straight wall. In this study, the effects of draw bead height were investigated using the finite element method (FEM) and experiments. The application of the draw bead and the effects of its height on the concave/convex wall features could be theoretically clarified on the basis of principal stress distribution. The application of draw bead led to the decrease in tensile stress in the direction of punch movement and also increased in the tensile stress distributed to the corner zone; therefore, the concave wall feature decreased. In addition, this feature decreased as the draw bead height increased. However, the application of a very large draw bead height resulted in a convex feature. The FEM simulation results were validated by experiments in the following two cases, i.e., without and with draw bead formations. With reference to the material thickness distribution, the FEM simulation results showed a good. agreement with experimental results.
机译:凹面/凸壁特征通常在深拉部件中产生,具有复杂的几何形状,尤其是难以深入的拉伸材料。拉伸珠的应用可以减少凹面/凸壁特征。然而,难以确定合适的凹凸几何形状及其位置以获得直壁。在这项研究中,使用有限元方法(FEM)和实验研究了拉珠高度的效果。在理论上基于主应力分布,理论上可以理解绘制珠和其高度对凹面壁特征的影响。凹凸胎圈的应用导致冲头运动方向上的拉伸应力的降低,并且在分布在角区的拉伸应力中也增加;因此,凹面壁特征减少。此外,随着拉伸珠高度的增加,该特征减少。然而,在非常大的拉伸珠高度的应用导致凸起特征。通过以下两种情况下的实验验证了有限元模拟结果,即,没有和凹凸形成。参考材料厚度分布,FEM仿真结果显示出很好。与实验结果一致。

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