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Augmented upper bound element technique for prediction of temperature and strain in forgings

机译:增强上限元技术预测锻件的温度和应变

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摘要

The upper bound element technique coupled with an energy formulation is used to predict the effective strain evolution and temperature distribution during axisymmetric forging. The material derivative is used to predict strain and temperature evolution of multiple particles in the flow. A new approach to elemental effective strain strain-rate calculation is presented. The augmented UBET method is applied to a case of simultaneous comer and flash fill by a strain-rate hardening material. The formulation provides a high level of spatial resolution. Results agree well with finite element-based predictions and tend to overpredict temperature and strain in locations of large energy addition.
机译:上限元素技术与能量公式结合用于预测轴对称锻造过程中的有效应变演变和温度分布。材料导数用于预测流中多个颗粒的应变和温度演变。提出了一种新的基本有效应变应变率计算方法。增强的UBET方法适用于通过应变速率硬化材料同时填充角和毛边的情况。该公式提供了高水平的空间分辨率。结果与基于有限元的预测非常吻合,并且倾向于高估添加大量能量的位置的温度和应变。

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