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Finite Element Analysis of Bulging Forming for Sheet Metal with Bottom Compression Drawing Method

机译:底部压缩绘制方法的金属板膨胀成型有限元分析

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For the bulging forming of sheet metal industry, two of the major disadvantages are large punch load and short bulging height, generally referring to the traditional process. In this present work, a new processing technique had been introduced for bulging forming based on bottom compression drawing method. The finite element method (FEM) with DEFORM-2D was used to investigate the bulging process. Besides, the mechanism of dimple defect occurred in bulging process was analysed with numerical simulation. The results showed that the dimple defect divided into four stages in the bulging process, where revealed an inverted cone-shape at the bottom part of the centre workpiece. Moreover, the laboratory experiments were carried out to validate the results of numerical simulation, which showed a good agreement with the FEM simulation results.
机译:对于金属板工业的凸出形成,两个主要缺点是大冲压载荷和短凸出高度,通常是指传统工艺。在本作本作中,基于底部压缩绘图方法引入了一种新的加工技术,用于膨胀成形。使用耐晶体2D的有限元法(FEM)研究凸起过程。此外,用数值模拟分析了凸起过程中发生衰减过程的机制。结果表明,浊度缺陷分为凸出过程中的四个阶段,其中在中心工件的底部揭示了倒锥形。此外,进行了实验室实验以验证数值模拟结果,表明与FEM模拟结果吻合良好。

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