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A combined FEA and design of experiments approach for the design and analysis of warm forming of aluminum sheet alloys

机译:有限元分析与实验设计相结合的铝板合金热成形设计与分析

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This paper presents a methodology to effectively determine the optimal process parameters for warm forming of lightweight materials using finite element analysis (FEA) and design of experiments (DOE). The accuracy and effectiveness of FEA are verified through comparisons of the achievable part depth values and forming limits predicted from FEA with those from experimental measurements in a wide range of warm-forming conditions. A DOE approach along with FEA is proposed to offer rapid and relatively accurate design of warm-forming process, especially for large parts that require 3D FEA. In addition, strain distributions on the formed part are obtained under a variety of process conditions to gain a better understanding of the warm-forming mechanisms and further investigate the effects of forming temperature, friction condition, forming speed, and blank holding pressure on forming performance. Results of this study reveal that much-improved formability can be efficiently gained with a well-controlled warm-forming parameters.
机译:本文提出了一种使用有限元分析(FEA)和实验设计(DOE)有效地确定轻质材料热成型的最佳工艺参数的方法。 FEA的准确性和有效性通过比较可预测的零件深度值和根据FEA预测的成形极限与在宽范围的热成形条件下的实验测量得出的数值进行验证。提出将DOE方法与FEA结合使用,以提供快速且相对准确的热成型工艺设计,尤其是对于需要3D FEA的大型零件。此外,在各种工艺条件下获得成形零件上的应变分布,以更好地了解热成形机理,并进一步研究成形温度,摩擦条件,成形速度和毛坯保持压力对成形性能的影响。 。这项研究的结果表明,只要控制良好的热成形参数,就可以有效地提高成形性。

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