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首页> 外文期刊>Journal of Materials Processing Technology >Determination of optimal loading profiles in warm hydroforming of lightweight materials
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Determination of optimal loading profiles in warm hydroforming of lightweight materials

机译:确定轻质材料的温暖液压成形中的最佳载荷曲线

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摘要

In this study, a methodology is developed to determine proper profiles of the hydraulic pressure and the blank holder force under warm hydroforming conditions at different punch speeds. First, finite element models (2-D and 3-D) are developed and validated through comparisons with the experimental results from the literature. To determine the optimal hydraulic pressure and blank holder force profiles simultaneously, an adaptive FE analysis with fuzzy control algorithm was developed. Thinning, wrinkling, punch wall contact, die corner floating and conduction were used as criteria in the fuzzy control algorithm. The effects of the determined loading profiles are then presented in terms of thickness, strain and stress, and temperature distributions as well as success/failure of the forming process. The effect of punch speed was also investigated to reveal its impact on part formability. It was found that the optimal process conditions can be rapidly and accurately obtained with the developed adaptive FEA method coupled with fuzzy control algorithm.
机译:在这项研究中,开发了一种方法来确定在不同的冲头速度下,在温暖的液压成形条件下的液压压力和坯料夹持力的适当分布。首先,通过与文献中的实验结果进行比较,开发并验证了有限元模型(2-D和3-D)。为了同时确定最佳液压和毛坯夹持器力曲线,开发了具有模糊控制算法的自适应有限元分析。在模糊控制算法中,将变薄,起皱,冲头壁接触,模角浮动和传导用作准则。然后,根据厚度,应变和应力,温度分布以及成型过程的成功/失败来表示确定的载荷曲线的影响。还研究了冲头速度的影响,以揭示其对零件可成型性的影响。结果表明,采用改进的自适应有限元分析方法结合模糊控制算法,可以快速,准确地获得最佳工艺条件。

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