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Extrusion of non-symmetric T-shaped sections, an analysis and some experiments

机译:非对称T形截面的挤压,分析和一些实验

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摘要

In the present study, previously developed analytical approach (Int. J. Mech. Sci. 42 (2000) 273), based on the upper-bound theory, for the design of three-dimensional off-centric extrusion of arbitrarily shaped dies was applied to the extrusion of T-shaped sections from initially round billets with the experimental verifications. Here, non-symmetric T-shaped sections as well as symmetric ones were considered. A computer program was written to obtain optimum die design which yield the lowest upper-bound for a given reduction in area, die length, its off-centric positioning and the frictional conditions. Computations were carried out both for the converging (ruled-surface) and the smooth curved (advanced-surface) dies. Curvature of the extruded product and simulated deforming grid pattern were also predicted. A sophisticated CAD/CAM package was used in conjunction with the CNC and EDM processes to manufacture the streamlined dies for the extrusion of T-shaped sections. The theoretical predictions were observed to be in good agreement with the experimental results.
机译:在本研究中,基于上限理论,先前开发的分析方法(Int。J. Mech。Sci。42(2000)273)用于设计任意形状的模具的三维偏心挤压从最初的圆形坯料到T形型材的挤压,并进行了实验验证。在此,考虑了非对称的T形截面以及对称的截面。编写了一个计算机程序以获得最佳的模具设计,该模具设计在给定的面积,模具长度,其偏心定位和摩擦条件减小的情况下产生最低的上限。对会聚(规则表面)和光滑曲面(高级表面)模具都进行了计算。还预测了挤出产品的曲率和模拟的变形网格图案。先进的CAD / CAM软件包与CNC和EDM工艺结合使用,制造出用于挤出T形型材的流线型模具。观察到的理论预测与实验结果非常吻合。

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