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Contact Modelling of Large Radius Air Bending with Geometrically Exact Contact Algorithm

机译:大半径空气弯曲的接触建模与几何精确接触算法

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摘要

Usage of high-strength steels in conventional air bending is restricted due to limited bendability of these metals. Large-radius punches provide a typical approach for decreasing deformations during the bending process. However, as deflection progresses the loading scheme changes gradually. Therefore, modelling of the contact interaction is essential for an accurate description of the loading scheme. In the current contribution, the authors implemented a plane frictional contact element based on the penalty method. The geometrically exact contact algorithm is used for the penetration determination. The implementation is done using the OOFEM – open source finite element solver. In order to verify the simulation results, experiments have been conducted on a bending press brake for 4 mm Weldox 1300 with a punch radius of 30 mm and a die opening of 80 mm. The maximum error for the springback calculation is 0.87° for the bending angle of 144°. The contact interaction is a crucial part of large radius bending simulation and the implementation leads to a reliable solution for the springback angle.
机译:由于这些金属的可弯曲性有限,因此限制了在传统的空气弯曲中使用高强度钢。大半径冲头提供了减少弯曲过程中变形的典型方法。但是,随着变形的进行,加载方案会逐渐变化。因此,接触相互作用的建模对于准确描述加载方案至关重要。在当前的贡献中,作者基于惩罚方法实现了平面摩擦接触元件。几何精确接触算法用于确定渗透率。该实现使用OOFEM –开源有限元求解器完成。为了验证模拟结果,已经在4mm Weldox 1300的弯折弯机上进行了实验,冲头半径为30mm,模具开口为80mm。对于144°的弯曲角度,回弹计算的最大误差为0.87°。接触相互作用是大半径弯曲仿真的关键部分,其实现可为回弹角提供可靠的解决方案。

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