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Analysis of Hydrostatic Tube Bulging with Cylindrical Die

机译:圆柱模静液压胀管的分析

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摘要

Tube hydroforming (THF) is getting an increasing amount of attention in industry. THF has advantages such as weight reduction, high dimensional accuracy, and high rigidity. However, this forming process requires precise control of internal pressure and axial feeding. Additionally, in most cases prebending processes must be performed on the tubes before the hydroforming process can be carried out, and the forming ability of the hydroforming processes is influenced by the outcome of this prebending process. We describe the development of the Finite element method (FEM) code for THF analysis and a comparison of experimental and analytical results. The Elastoplastic FEM code for THF analysis has been developed based on ITAS3D which is a sheet-metal-forming simulation program using the static explicit method. The algorithm of hydrostatic internal pressure has been newly implemented in ITAS3D. Hydrostatic copper tube bulging with a cylindrical die was calculated with the code, and analytical results show good agreement with experimental ones. In this calculation, there is only a very small difference between the solid element and shell element results.
机译:管式液压成型(THF)在工业中越来越受到关注。 THF具有诸如减轻重量,高尺寸精度和高刚性的优点。但是,这种成型过程需要精确控制内部压力和轴向进给。另外,在大多数情况下,必须先在管子上进行预弯曲工艺,然后才能进行液压成形工艺,并且液压成形工艺的成形能力受该预弯曲工艺的结果影响。我们描述了用于THF分析的有限元方法(FEM)代码的开发以及实验和分析结果的比较。已基于ITAS3D开发了用于THF分析的弹塑性FEM代码,该程序是使用静态显式方法的钣金成形模拟程序。液压内压算法已在ITAS3D中新实现。用该代码计算出了带有圆柱模的静压铜管鼓胀,分析结果与实验结果吻合良好。在此计算中,实体元素和壳单元结果之间只有很小的差异。

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