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首页> 外文期刊>International Journal of Machine Tools & Manufacture: Design, research and application >Analysis of an equivalent drawbead model for the finite element simulation of a stamping process
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Analysis of an equivalent drawbead model for the finite element simulation of a stamping process

机译:分析的等效拉延筋模型冲压工艺的有限元模拟

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摘要

In order to facilitate the three-dimensional finite element analysis for the stamping process, an equivalent drawbead model was adopted to simulate the restraining effects produced by the real drawbead. In the present study, the restraining force exerted by the real drawbead was first computed by the finite element simulation, and the optimum pseudo drawing speed and mesh sizes for both the drawbead and sheet metal employed in the computation were determined through a systematic approach. The computed restraining force was then assigned to a regular mesh which replaced the mesh of the real drawbead. This constitutes the equivalent drawbead model, which avoids the extremely fine mesh required to describe the deformation of sheet blank in the drawbead area. In consequence, a huge amount of computation time can be saved. The accuracy of the finite element simulations using the equivalent drawbead model was validated by both the experimental data and the theoretical predictions.
机译:为了促进三维冲压工艺的有限元分析,采用等效拉延筋模型模拟生成的抑制作用真正的成形过程。真正的拉延筋约束力最初是由有限元计算的吗模拟和优化伪绘图速度和网格大小对成形过程和表金属用于计算确定通过一个系统的方法。约束力是分配给一个定期网取代真正的网拉延筋。拉延筋模型,避免了极好网格需要描述的变形片空白的拉延筋面积。可以节省大量的计算时间。有限元模拟的准确性使用等效拉延筋模型验证通过实验数据和理论预测。

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