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A General Arbitrary Lagrangian Eulerian Formulation for the Numerical Simulation of 3D Forming Processes

机译:一般任意拉格朗日欧拉·欧拉·欧莱恩配方,用于3D形成过程的数值模拟

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In this paper, the Arbitrary Lagrangian Eulerian formalism is used to compute the steady state of a 2D metal cutting operation and a 3D U-shaped cold roll forming process. Compared to the Lagrangian case, this method allows the use of a refined mesh near the tools, leading to an accurate representation of the chip formation (metal cutting) and the bending of the sheet (roll forming) with a limited computational time. The main problem of this kind of simulation is the rezoning of the nodes on the free surfaces of the sheet. A modified iterative isoparametric smoother is used to manage this geometrically complex and CPU expensive task.
机译:本文采用任意拉格朗日欧拉形式主义来计算2D金属切割操作的稳态和3D U形冷轧成形过程。与拉格朗日的情况相比,该方法允许在工具附近使用精制网格,从而精确表示芯片形成(金属切削)和具有有限的计算时间的片材(滚动成形)的弯曲。这种仿真的主要问题是重新划点在纸张的自由表面上的焦点。修改后的迭代等概述更平滑用于管理该几何复杂和CPU昂贵的任务。

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