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Forming process optimization for non-axisymmetrical complex component based on FEM simulation and experiment

机译:基于有限元仿真和实验的非轴对称复杂零件成形工艺优化

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摘要

Numerical and experimental investigations were carried out in order to reduce the forming load and defects for non-axisymmetrical complex components. The component with intricate shape and V-type high ribs was widely used as key load-bearing structures. Single-step integral loading with different billet shapes and two-step local loading schemes were used to simulate the forming process and study the metal flow laws. Forming processes of preforming and finisher were analyzed to predict the detail characteristics of material flow using the 3D finite element method models. The simulated results showed that the two-step local loading schemes significantly reduced the forming load and improved the metal filling formability without defects, the required forming load obviously lower than single-step integral. The occurrences of defects, forming loads, and velocity vector distributions were studied and a suitable preform and corresponding die designs were obtained. The experimental results also showed that the component could meet the requirements of dimensional accuracy and mechanical properties.
机译:为了减少非轴对称复杂零件的成形载荷和缺陷,进行了数值和实验研究。具有复杂形状和V型高肋的零件被广泛用作关键的承重结构。采用具有不同坯料形状的单步整体加载和两步局部加载方案来模拟成形过程并研究金属流动规律。使用3D有限元方法模型分析了预成型件和修整器的成型过程,以预测材料流的详细特征。仿真结果表明,两步局部加载方案显着降低了成形载荷,提高了金属填充成形性,没有缺陷,所需的成形载荷明显低于单步积分。研究了缺陷的出现,成形载荷和速度矢量分布,并获得了合适的预成型件和相应的模具设计。实验结果还表明,该零件可以满足尺寸精度和力学性能的要求。

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