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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >An Automated Process Sequence Design and Finite Element Simulation of Axisymmetric Deep Drawn Components
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An Automated Process Sequence Design and Finite Element Simulation of Axisymmetric Deep Drawn Components

机译:轴对称深冲构件的自动化工艺流程设计和有限元模拟

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摘要

A computer-aided design (CAD) system is developed for automatic process design and finite element (FE) modeling of axisymmetric deep drawn components. Using the theoretical and experimental rules, the system initially designs the process sequence of the component. The obtained process sequence is automatically modeled in abaqus software and the system tests whether failure occurs. The failure is supposed to happen when the fracture is predicted in FE simulation. If failure is predicted, the system changes the appropriate process parameters and carries out the simulation process again until all drawing stages are successful. The system returns the requested parameters for die design such as part geometries in middle stages, drawing forces, blank-holder forces, die, and punch profiles radii. The system is successfully tested for some components found in industry and handbooks.
机译:开发了计算机辅助设计(CAD)系统,用于轴对称深冲零件的自动过程设计和有限元(FE)建模。系统使用理论和实验规则,首先设计组件的处理顺序。所获得的过程序列会在abaqus软件中自动建模,并且系统会测试是否发生故障。当在有限元模拟中预测断裂时,应该发生故障。如果预计会失败,则系统将更改适当的过程参数,然后再次执行模拟过程,直到所有绘制阶段均成功。系统返回模具设计所需的参数,例如中间阶段的零件几何形状,拉拔力,坯料夹持力,模具和冲头轮廓半径。该系统已成功测试了行业和手册中的某些组件。

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