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A study on the analytical modeling for warm hydro-mechanical deep drawing of lightweight materials

机译:轻质材料热力水力机械深冲的解析模型研究

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摘要

The warm hydroforming process has become an emerging technology in recent years to reduce the weight of automotive body structure and minimize the number of process steps. In this study, analytical models were developed to investigate the effects of process conditions such as temperature, hydraulic pressure, blank holder force and forming speed. The analytical model under hydro-mechanical deep drawing (HMD) condition was developed based on experimental results in the literatures. FE models were also developed to validate the analytic models. Then, the analytic model was validated through comparisons with both existing experimental results and FE results. The analytical model provided rapid and reasonably accurate results for the design of warm hydroforming process. Based on this analytic model, several parametric studies were performed regarding to the temperature, hydraulic pressure, blank holder force, and punch speed conditions. It was demonstrated that the process windows for a successful part forming could be rapidly predicted with a reasonable accuracy by the analytic model compared to lengthy and costly thermo-mechanical FEA or experimental trial and error.
机译:近年来,温热液压成型工艺已成为一种新兴技术,以减轻车身结构的重量并最大程度地减少工艺步骤。在这项研究中,开发了分析模型来研究工艺条件的影响,例如温度,液压,坯料夹持力和成型速度。基于文献中的实验结果,建立了液压机械深冲(HMD)条件下的解析模型。还开发了有限元模型来验证分析模型。然后,通过与现有实验结果和有限元结果的比较来验证分析模型。该分析模型为热压成型工艺的设计提供了快速而合理的结果。基于此分析模型,对温度,液压,坯料夹持器力和冲头速度条件进行了一些参数研究。结果表明,与冗长而昂贵的热机械有限元分析或实验反复试验相比,通过解析模型可以以合理的准确性快速预测成功成型零件的过程窗口。

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