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Analytical and FEM investigations on boss forming process by compression-drawing method

机译:压缩法对老板成型过程的分析和有限元研究

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In plate forging process, one of the major causes for dimple defect is large processing load with the nonuniform material flows of local plastic deformation. In the present work, a new solid boss forming process named compression-drawing method was proposed with a lower forming load. The theoretical formula of the radii of separation flow was deduced based on slab method, in which the radii of separation flow decreases gradually as the bottom thickness decreases. The finite element method (FEM) with DEFORM-3D was used to investigate the solid boss forming process. The results show that the boss height is found insufficient when the punch pressure is under 200KN while the fracture behavior occurs as the punch pressure reaches 670KN approximately. The FEM calculations are well agreement with the experimental results.
机译:在板锻造过程中,凹陷缺陷的主要原因之一是具有局部塑性变形的非均匀材料流的大加工负荷。在本作工作中,提出了一种具有较低成形负荷的新的固体凸台形成过程。基于板坯方法推导出分离流动半径的理论公式,其中分离流动的半径随着底部厚度降低而逐渐降低。用抗变形-3D的有限元方法(FEM)研究了耐凸台形成过程。结果表明,当冲压行为发生在冲压压力达到670kn时,冲压压力达到200kn时,发现凸台高度不足。有限元计算与实验结果很好。

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