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Analytical and numerical calculation of the force and power requirements for air bending of structured sheet metals

机译:结构化钣金的空气弯曲力和功率要求的分析和数值计算

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摘要

Structured sheet metals with regular bumps offer higher stiffness compared to smooth sheet metals. They can be produced by a hydroforming process. The application of the structured sheet metals, however, is inhibited by the lack of knowledge for the subsequent processing steps. In this paper, the force and power requirements for air bending of structured sheet metals are calculated with a Finite Element Simulation (FE) and an analytical approach.In the first step, the hydroforming manufacturing process of the structured sheet metals is simulated in order to predict the exact geometry and the change in the material properties. Following, air bending simulations have been done taking into account the results of the hydroforming simulation. The FE-Simulations have been carried out with the software package LS-DYNA. The simulation models are validated with the optical displacement measuring system ARGUS and by a series of bending tests. For the analytical calculation the model based on the bending theory is adapted by simplifying the cross section of the structured sheet metals. The results of the FE-Simulation, the analytic calculation and the experiments are compared. The advantages and disadvantages as well as the application areas of the considered methods are indicated.
机译:与平滑钣金相比,具有规则凸块的结构化钣金具有更高的刚度。它们可以通过液压成型工艺生产。然而,结构化金属薄板的应用由于缺乏后续加工步骤的知识而受到限制。本文通过有限元模拟(FE)和分析方法来计算结构化钣金的空气弯曲力和功率要求。第一步,对结构化钣金的液压成形制造过程进行仿真,以便预测确切的几何形状以及材料特性的变化。接下来,已经考虑了液压成形模拟的结果进行了空气弯曲模拟。 FE仿真是使用软件包LS-DYNA进行的。仿真模型已通过光学位移测量系统ARGUS以及一系列弯曲测试进行了验证。为了进行分析计算,通过简化结构化钣金的横截面来适应基于弯曲理论的模型。比较了有限元仿真的结果,解析计算和实验结果。指出了所考虑方法的优缺点以及应用领域。

著录项

  • 来源
    《Sheet metal 2011》|2011年|p.602-609|共8页
  • 会议地点 Leuven(BE);Leuven(BE)
  • 作者单位

    Brandenburg University of Technology, Chair of Design and Manufacturing,Konrad-Wachsmann-Allee 1, 03046 Cottbus, Germany;

    Brandenburg University of Technology, Chair of Joining and Welding Technology,Konrad-Wachsmann-Allee 1, 03046 Cottbus, Germany;

    Brandenburg University of Technology, Chair of Design and Manufacturing,Konrad-Wachsmann-Allee 1, 03046 Cottbus, Germany;

    Brandenburg University of Technology, Chair of Joining and Welding Technology,Konrad-Wachsmann-Allee 1, 03046 Cottbus, Germany;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 轧制;
  • 关键词

    air bending; structured sheet metal; simulation;

    机译:空气弯曲结构化钣金;模拟;

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