首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Investigation into hydromechanical reverse redrawing assisted by separate radial pressure--process development and theoretical verification
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Investigation into hydromechanical reverse redrawing assisted by separate radial pressure--process development and theoretical verification

机译:单独径向压力辅助的水力机械逆向拉深研究-工艺开发与理论验证

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摘要

High-quality cups with a deep drawing ratio of more than four cannot be simply drawn by conventional drawing and redrawing. A special technology is required to form cups of a high deep drawing ratio. In the present study, after the conventionalmechanical deep drawing process, subsequent hydromechanical reverse redrawing with controlled radial pressure has been developed. In order to increase the deep drawing ratio by more than four, the radial pressure is controlled independently of the chamber pressure and thus an optimum forming condition can be determined by varying the radial pressure.The process has been verified by a rigid-plastic finite element (FE) analysis considering all the external force boundary conditions induced by the hydrostatic pressure. The pressure distribution on the sheet is calculated numerically from the simplifiedNavier-Stokes equation. Through the experiment and the FE analysis, it has been shown that hydromechanical reverse redrawing assisted by separate radial pressure, developed in the present study, helps to increase the drawability of cylindrical cups, andthus it is useful when forming long cups.
机译:深拉伸比大于4的高品质杯子无法通过常规拉伸和重新拉伸简单地拉伸。需要特殊的技术来形成高深冲比的杯子。在本研究中,经过常规的机械深冲工艺,已开发出了在径向压力受控的情况下进行后续的水力机械反向重拔。为了将深冲比增加四倍以上,径向压力的控制不受制腔压力的影响,因此可以通过改变径向压力来确定最佳的成型条件。该过程已通过刚塑性有限元验证(FE)分析考虑了静水压力引起的所有外力边界条件。通过简化的Navier-Stokes方程以数值方式计算纸张上的压力分布。通过实验和有限元分析,已经表明,在本研究中开发的,由单独的径向压力辅助的液压机械反向再拉伸有助于提高圆柱杯的可拉伸性,因此在形成长杯时很有用。

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