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A robust and accurate geometric model for automated design of drawbeads in sheet metal forming

机译:钣金成型吊具自动设计的坚固耐用性和准确的几何模型

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A robust and accurate geometric model of real drawbeads that can be used for the automated design of drawbeads is presented in the paper. A three-dimensional geometric drawbead is a lofted surface, of which the section curves are constructed parallel to the stamping direction on the control points. Adaptive control point interpolation is introduced to simplify the management of the drawbead geometry and avoid unexpected shapes. Given primitive control points on a drawbead curve, dominant control points are adaptively obtained with the shapes of both the drawbead curve and the binder considered. An a priori heuristic parameter adjustment strategy is proposed to correct the parameter errors of section curves, which improves the accuracy and consistency of the drawbead geometry. By incorporating the proposed geometric drawbead with a previously developed intelligent drawbead optimization algorithm, a fully automated design process for drawbeads is realized that includes geometric modeling, finite element analysis, intelligent optimization of the drawbead geometry, and die manufacturing. Finally, a fender example is presented to verify the feasibility and validity of the fully automated drawbead design process. The simulation results with the optimized geometric drawbeads and equivalent drawbeads are compared with the experimental results. The proposed geometric drawbead shows remarkable practicability and accuracy in the automated design of drawbeads in sheet metal forming and demonstrates good consistency with the experimental results while the equivalent drawbead model introduces unneglectable deviations. (C) 2017 Elsevier Ltd. All rights reserved.
机译:纸质中提出了一种可用于自动化设计的真正绘图设计的强大和准确的几何模型。三维几何拔轴是一个柔软的表面,其中截面曲线平行于控制点上的冲压方向构造。引入自适应控制点插值以简化牵引型几何形状的管理,避免意外的形状。给定拉伸曲线上的原始控制点,用牵引曲线和所考虑的粘合剂的形状自适应地获得主导控制点。建议先验启发式参数调整策略来纠正部分曲线的参数误差,从而提高了绘制几何的准确性和一致性。通过将所提出的几何拔出与先前开发的智能抽头优化算法结合,实现了绘制宽带的全自动设计过程,包括几何建模,有限元分析,倾斜几何智能优化,以及模具制造。最后,提出了挡泥板示例以验证全自动抽取设计过程的可行性和有效性。将仿真结果与优化的几何拔出和等效拔迹相同,与实验结果进行了比较。所提出的几何拔出在金属板成形中的倾斜设计的自动设计中显示出显着的实用性和准确性,并展示了与实验结果的良好一致性,而等效抽头模型引入了不可输入的偏差。 (c)2017 Elsevier Ltd.保留所有权利。

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