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首页> 外文期刊>International Journal of Mechanical Sciences >Optimization of axisymmetric open-die micro-forging/extrusion processes: An upper bound approach
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Optimization of axisymmetric open-die micro-forging/extrusion processes: An upper bound approach

机译:轴对称开放模微锻/挤压工艺的优化:上限方法

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摘要

There is a trend towards component miniaturization and strong drive towards cost effective and sustainable metal forming techniques of miniaturized components. This paper presents an upper bound solution for the optimization of open-die forging/extrusion processes in the forming of micro-pins from a sheet metal. Using such an analytical modeling approach, the critical blank thickness, the resulting final part geometry, together with the required forming load were predicted based on the location of the neutral plane under the punch during the process. Based on the phenomenological findings of the process, the geometry size factor, x, was introduced explaining its relative importance to the model. Experimental results obtained from C11000 copper samples using a progressive microforming process was found to agree well with the results predicted by the model. The results were also validated with other results reported before from a similar process.
机译:部件小型化的趋势以及对低成本,可持续发展的小型部件金属成形技术的强烈驱动。本文提出了一种上限解决方案,用于在由金属薄板形成微针时优化开模锻造/挤压工艺。使用这种分析建模方法,可以根据过程中冲头下方的中性面的位置来预测关键坯料厚度,最终的最终零件几何形状以及所需的成型载荷。基于该过程的现象学发现,引入了几何尺寸因子x,解释了其对模型的相对重要性。使用渐进式微成型工艺从C11000铜样品获得的实验结果与模型预测的结果非常吻合。该结果还通过类似过程之前报告的其他结果进行了验证。

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