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An adaptive simulation approach designed for tube hydroforming processes

机译:专为管材液压成型工艺设计的自适应仿真方法

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The efficiency of a tube hydroforming process is largely dependent on the process control parameters (i.e. the internal pressure and the axial feeding) since they determine the occurrence of forming limits such as wrinkling and bursting. Therefore, these parameters should be carefully selected. In this paper an adaptive method is presented to obtain a more efficient process control for tube hydroforming processes. This method avoids the onset of wrinkling and bursting via dedicated stability criteria. The wrinkling criterion uses an energy-based indicator inspired on the plastic bifurcation theory. For necking, followed by bursting, a criterion based on the forming limit curve is employed. Applying these two criteria, the process parameters are adjusted during the simulation via a fuzzy knowledge based controller (FKBC). A case study is carried out for the hydroforming of a T-shape part using the designed adaptive system in combination with the finite element method. For the simulations ABAQUS/Explicit is used.
机译:管液压成型工艺的效率在很大程度上取决于工艺控制参数(即内部压力和轴向进给),因为它们确定了诸如皱纹和爆裂之类的成型极限的出现。因此,应仔细选择这些参数。本文提出了一种自适应方法来获得更有效的管液压成型工艺控制。该方法通过专用的稳定性标准避免了起皱和爆裂的发生。折皱标准使用了基于能量的指标,该指标受塑料分叉理论的启发。对于缩颈,然后是破裂,采用基于成形极限曲线的标准。应用这两个标准,可以在仿真过程中通过基于模糊知识的控制器(FKBC)来调整过程参数。利用设计的自适应系统结合有限元方法,对T形零件进行液压成形的案例研究。对于模拟,使用ABAQUS / Explicit。

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