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A concave circular parallelepiped element and its application to three-dimensional closed-die forging

机译:凹圆六面体单元及其在三维闭模锻造中的应用

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摘要

In this study, a kinematically admissible velocity field is derived for a proposed three-dimensional concave circular parallelepiped UBET element. The element is applied to three-dimensional closed-die forging having concave curved surfaces: the capability of the proposed element is then demonstrated. From the derived velocity field, the upper-bound loads on the upper die and the velocity field are determined by minimizing the total energy consumption with respect to some chosen parameters. Also, experiments into closed-die forging are performed with commercially pure lead billet at ambient temperature. The theoretical predictions of the forming load correlated well with the experimental results. The results in this study confirm that the element proposed in this work can be used effectively to predict the forming load accurately in three-dimensional closed-die forging having concave curved surfaces.
机译:在这项研究中,为拟议的三维凹面圆形平行六面体UBET元件导出了运动学上可接受的速度场。该元件应用于具有凹曲面的三维闭模锻造:然后证明了所提出元件的能力。从导出的速度场中,通过使某些选定参数的总能耗最小,可以确定上模的上限载荷和速度场。同样,在环境温度下使用商业纯铅坯进行闭模锻造的实验。成形载荷的理论预测与实验结果密切相关。这项研究的结果证实,这项工作中提出的元素可以有效地用于预测具有凹曲面的三维闭模锻造中的成形载荷。

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