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Towards Efficient Modelling Of Macro And Micro Tool Deformations In Sheet Metal Forming

机译:在板料成形中实现宏观和微观刀具变形的有效建模

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摘要

During forming, the deep drawing press and tools undergo large loads, and even though they are extremely sturdyudstructures, deformations occur. This causes changes in the geometry of the tool surface and the gap width between the tools.udThe deep drawing process can be very sensitive to these deformations. Tool and press deformations can be split into twoudcategories. The deflection of the press bed-plate or slide and global deformation in the deep drawing tools are referred to asudmacro press deformation. Micro-deformation occurs directly at the surfaces of the forming tools and is one or two ordersudlower in magnitude.udThe goal is to include tool deformation in a FE forming simulation. This is not principally problematic, however, the FEudmeshes become very large, causing an extremely large increase in numerical effort. In this paper, various methods areuddiscussed to include tool elasticity phenomena with acceptable cost. For macro deformation, modal methods or ’deformableudrigid bodies’ provide interesting possibilities. Static condensation is also a well known method to reduce the number of DOFs,udhowever the increasing bandwidth of the stiffness matrix limits this method severely, and decreased calculation times are notudexpected. At the moment, modeling Micro-deformation remains unfeasible. Theoretically, it can be taken into account, butudthe results may not be reliable due to the limited size of the tool meshes and due to approximations in the contact algorithms.
机译:在成型过程中,深冲压力机和工具承受着很大的载荷,即使它们非常坚固,结构也会发生变形。这会导致工具表面的几何形状以及工具之间的间隙宽度发生变化。 ud深拉过程对这些变形非常敏感。工具和冲压变形可以分为两个类别。压力机底板或滑块的挠曲以及深冲工具中的整体变形称为 udmacro压力机变形。微变形直接发生在成形工具的表面,并且幅度降低一到两个数量级。 ud目标是在有限元成形模拟中包括工具变形。这原则上不成问题,但是,有限元变得很大,导致数值上的努力大大增加。在本文中,讨论了各种方法以包括具有可接受成本的工具弹性现象。对于宏观变形,模态方法或“可变形刚体”提供了有趣的可能性。静态冷凝也是减少DOF数量的公知方法,但是,刚度矩阵的增加带宽严重限制了该方法,并且不会减少计算时间。目前,对微变形建模仍然不可行。从理论上讲,可以考虑,但是由于工具网格的大小有限以及接触算法的近似性,结果可能并不可靠。

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  • 作者

    Lingbeek R.A.; Meinders T.;

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  • 年度 2007
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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