Effect of Force Correction Algorithm Arising from Change of Tool Normal on Sheet Metal Forming Simulation

T. Hama, M. Asakawa, M. Takamura, A. Makinouchi, C. Teodosiu
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引用次数: 6

Abstract

Treatment of contact problems between sheet and tools is one of the most difficult problems to deal with in sheet metal forming simulations. This paper describes a new algorithm for the discretization of the change of the “averaged tool normal” which is calculated by averaging the normals defined on all adjacent elements. The proposed algorithm was implemented into STAMP3D, which is a static explicit program dedicated to sheet metal forming simulations. Simulations of draw bending process were performed and the normalized norm of the non-equilibrated forces due to the change of the tool normals was compared between the original result and the result obtained with the proposed algorithm. It was found that the normalized norm of the non-equilibrated forces was drastically reduced by applying the proposed algorithm. This result shows the improvement of the accuracy of the simulation and the efficiency of the proposed algorithm.
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刀具法向变化引起的力校正算法对板料成形模拟的影响
板料与刀具的接触问题是板料成形模拟中最难处理的问题之一。本文描述了一种新的“平均工具法向”变化的离散化算法,该算法是通过对所有相邻单元上定义的法向进行平均来计算的。该算法在用于板料成形仿真的静态显式程序STAMP3D中实现。对拉伸弯曲过程进行了仿真,比较了由于刀具法线变化引起的非平衡力的归一化范数。结果表明,应用该算法后,非平衡力的归一化范数明显减小。结果表明,该算法提高了仿真的精度和效率。
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