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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >A three-dimensional upper bound elemental technique for forging analysis
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A three-dimensional upper bound elemental technique for forging analysis

机译:锻造分析的三维上限元技术

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摘要

In this paper, two kinematically admissible velocity fields are derived for the proposed three-dimensional arbitrarily triangular and trapezoidal prismatic upper bound elemental technique (UBET) elements. These elements are applied to the portions between the circular shaped part and the straight rod part with three-dimensional metal flow in connecting rod forging, and then the capability of the proposed elements are shown. From the derived velocity fields, the upper bound loads on the upper dieand the velocity field are determined by minimizing the total energy consumption with respect to some chosen parameters. Experiments with connecting rod forging were carried out with commercial pure lead billets at ambient temperature. The theoreticalpredictions of the forming load is in good agreement with the experimental results. It is shown that the proposed UBET elements in this work can effectively be used for the prediction of the forming load and velocity field in connecting rod forging.
机译:本文针对拟议的三维任意三角形和梯形棱柱形上界元素技术(UBET)元素推导了两个运动学上允许的速度场。在连杆锻造中,利用三维金属流将这些元素应用于圆形部分和直杆部分之间的部分,然后显示了所提出元素的能力。从导出的速度场中,相对于某些选定参数,通过使总能量消耗最小来确定上模的上限载荷和速度场。连杆锻造的实验是在环境温度下使用商业纯铅坯进行的。成形载荷的理论预测与实验结果吻合良好。结果表明,在这项工作中提出的UBET元素可以有效地用于预测连杆锻造中的成形载荷和速度场。

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