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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >A general formulation for hydroforming of arbitrarily-shaped boxes and its application to hydroforming of an elliptic-circular box
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A general formulation for hydroforming of arbitrarily-shaped boxes and its application to hydroforming of an elliptic-circular box

机译:任意形状盒的液压成型的一般配方及其在椭圆圆形盒的液压成型中的应用

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摘要

A general kinematically admissible velocity field is suggested for the upper-bound solution of hydroforming of arbitrarily-shaped boxes. The suggested formulation is then applied to hydroforming of an elliptic-circular box From the proposedvelocity field, the fluid pressure vs. punch stroke relationship to render uniform thickness and the deformed configuration are determined by minimizing the total power consumption with respect to some chosen parameters.Experiments are carried out in the hydroforming press according to the computed pressure vs. punch stroke curve. The assumption of uniform wall thickness is confirmed by measuring the thickness variation. The effects of various process parametersincluding blank size, work-hardening exponent and frictional coefficient on the pressure curve are analyzed and discussed. It is thus shown that the proposed method of analysis in the present study can be effectively used for hydroforming ofarbitrarily-shaped boxes.
机译:对于任意形状的箱体的液压成形的上限解,建议使用一般的运动学上允许的速度场。然后将建议的公式应用于椭圆形圆形盒的液压成形。从建议的速度场开始,通过使总功率消耗相对于某些选定参数最小化,确定流体压力与冲头冲程关系,以提供均匀的厚度和变形的构型。根据所计算的压力与冲头冲程曲线,在液压成形机中进行实验。通过测量厚度变化来确认均匀壁厚的假设。分析并讨论了包括毛坯尺寸,加工硬化指数和摩擦系数在内的各种工艺参数对压力曲线的影响。因此表明,本研究中提出的分析方法可以有效地用于任意形状的盒子的液压成形。

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