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Generate tooling mesh by FEM virtual forming model for springback compensation in die surface design of sheet metal stamping

机译:通过FEM虚拟成型模型生成工具网格,用于金属板压模模具表面设计中的回调补偿

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An iterative FEM algorithm has been recently developed to compensate for springback in die surface design of sheet metal stamping. In each iteration of this algorithm, a new set of tooling mesh needs to be generated based on the part geometry after the so-called "spring-forward" deformation. This geometry is represented by finite element mesh of the blank. Without CAD files, regular mesh generators cannot handle the task. This paper presents a technique to generate such tooling mesh by means of a finite element calculation. After the spring-forward simulation, a virtual forming model is constructed. The virtual die and virtual punch are made from the part mesh with material changed from deformable to rigid. The virtual workpiece is generated by copying the die mesh and changing rigid material to deformable. The virtual workpiece is placed in between the virtual punch and the virtual die and then a FEM calculation is conducted to press the virtual workpiece into the shape of the virtual die. The needed new tooling mesh can then be easily obtained from the deformed virtual workpiece. The new tooling mesh generated by this technique has the same configuration as the original tooling mesh and preserves geometric features of the part design, so that the CAD engineers who receive the modified die surface geometry in the form of FEM mesh can work on the files with ease.
机译:最近已经开发了一种迭代的FEM算法来补偿金属板冲压的模具表面设计中的回弹。在该算法的每次迭代中,需要基于所谓的“弹簧向前”变形之后基于部分几何来生成一组新的工具网格。该几何形状由空白的有限元网格表示。如果没有CAD文件,常规网格生成器无法处理任务。本文介绍了一种通过有限元计算产生这种工具网格的技术。在弹簧前进仿真之后,构造了虚拟成形模型。虚拟管芯和虚拟冲头由具有从变形变为刚性的材料的部件网制成。通过将模具网格复制和更换刚性材料来变形来产生虚拟工件。虚拟工件被放置在虚拟冲头和虚拟管芯之间,然后进行有限元计算以将虚拟工件按压成虚拟管芯的形状。然后可以从变形的虚拟工件容易地获得所需的新工具网。该技术生成的新工具网格与原始工具网格相同,并保留了零件设计的几何特征,使得接收Fem网格形式的修改模具表面几何的CAD工程可以在文件上工作舒适。

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