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Numerical pressure prediction algorithm of superplastic forming processes using 2D and 3D models

机译:基于2D和3D模型的超塑性成形过程数值压力预测算法

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The paper describes a finite element model allowing for the prediction in a rapid way the optimum pressure cycle law, the deformed shapes, the distributions of the strain rate and the evolution of the thickness during superplastic forming processes. During the calculation, a pressure-cycle control algorithm is used in the analysis which keeps track of the maximum strain rate sensitivity index m, and adapts the pressure law applied in order to approach as nearly as possible the optimal pressure time history law. The purpose is not to follow the target exactly but obtain a practical pressure time history in a low computation cost time. To compare the performance of 2D and 3D approaches, two analyses have been performed using 2D and 3D finite element modeling. The numerical results are compared with the experimental ones to verify the valid of the pressure algorithm control.
机译:本文描述了一个有限元模型,可以在超塑性成形过程中快速预测最佳压力循环定律,变形形状,应变率分布以及厚度变化。在计算过程中,分析中使用了压力循环控制算法,该算法跟踪最大应变率灵敏度指标m,并调整所应用的压力定律,以尽可能接近最佳压力时间历史定律。目的不是精确地遵循目标,而是以较低的计算成本时间获得实际的压力时间历史。为了比较2D和3D方法的性能,已使用2D和3D有限元建模进行了两次分析。将数值结果与实验结果进行比较,以验证压力算法控制的有效性。

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