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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Investigation of hydrodynamic deep drawing for conical–cylindrical cups
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Investigation of hydrodynamic deep drawing for conical–cylindrical cups

机译:圆锥形圆柱杯的流体动力学深冲研究

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Forming conical parts is one of the complex and difficult fields in sheet-metal forming processes. Because of low-contact area of the sheet with punch tip in the initial stages of forming, bursting occurs on the sheet. Moreover, since most of the sheet surface in the area between the punch tip and blank holder is free, wrinkles appear on the wall of the drawing part. Thus, these parts are normally formed in industry by spinning, explosive forming, or multi-stage deep drawing processes. In this paper, forming pure copper and St14 conical–cylindrical cups in the hydrodynamic deep drawing process was studied using finite element (FE) simulation and experiment. The effect of pressure path on the occurrence of defects and thickness distribution and drawing ratio of the sheet was studied. It was concluded that at low pressures, bursting occurs on the contact area of sheet with punch tip. At higher pressures, the cup was formed, but the wall thickness distribution depends on the pressure path. It was also illustrated that for the pressure path with a certain maximum amount, the workpiece was formed adequately with minimum sheet thickness reduction. Internal pressures more than this maximum amounts did not affect on the thickness distribution. By applying the desired pressure path, conical–cylindrical cups with high deep drawing ratio were achieved.
机译:圆锥形零件的形成是钣金成形过程中复杂而困难的领域之一。由于在成形的初始阶段,片材与冲头的接触面积低,所以片材上会发生破裂。而且,由于在冲头和毛坯保持器之间的区域中的大部分片材表面是自由的,因此在绘图部的壁上出现褶皱。因此,这些零件通常在工业上通过旋压,爆炸成形或多阶段深冲工艺形成。本文利用有限元(FE)模拟和实验研究了在流体动力学深冲过程中形成纯铜和St14圆锥-圆柱杯的过程。研究了压力路径对薄板缺陷的发生,厚度分布和拉伸比的影响。结论是,在低压下,板与冲头的接触区域会发生破裂。在较高的压力下,形成了杯子,但壁厚分布取决于压力路径。还示出了,对于具有一定最大量的压力路径,以最小的片材厚度减小来充分地形成工件。大于此最大值的内部压力不会影响厚度分布。通过施加所需的压力路径,可以实现高深冲比的圆锥形圆柱杯。

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