Optimization of Panel Forming Processes in Creep Mode Using CAE-Technologies

K. Bormotin, W. Aung
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引用次数: 1

Abstract

Forming in the creep mode of articles from sheets and panels is considered with the help of reconfigurable rods punch, which allows to change the shape of the workpiece. The experimental results allow one to identify the operation of scattering with the damage parameter. In this case, forming processes allow to control the level of material damage, to coordinate with technological limitations, due to the optimal choice of the deformational path in time. The problem of deformation in creep with contact conditions is solved by the finite element method. As the optimization criterion, the dissipation work accumulated in the process of deformation is adopted. Taking into account the time-discrete equations of the step-by-step integration procedure and the minimized functional, a discrete optimal control problem is formulated. In this formulation, the Bellman function is constructed and the problem is solved by the method of dynamic programming. An algorithm for calculating the rational motion of rods during forming is presented. This algorithm is implemented in the system MSC.Marc, MSC.Patran.
基于cae技术的蠕变模式板料成形工艺优化
在可重构棒冲床的帮助下,考虑了从板和板的蠕变模式的成形,这允许改变工件的形状。实验结果允许我们用损伤参数来识别散射的操作。在这种情况下,成形过程允许控制材料的损坏程度,以配合技术限制,由于变形路径的最佳选择的时间。采用有限元方法解决了接触条件下蠕变的变形问题。采用变形过程中积累的耗散功作为优化准则。考虑分步积分过程的时间离散方程和最小化泛函,建立了离散最优控制问题。在该公式中,构造Bellman函数,并采用动态规划方法求解问题。提出了一种计算成形过程中棒材合理运动的算法。该算法在系统MSC中实现。马克,MSC.Patran。
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