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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Thermal Response Modeling of Sheet Petals in Uniaxial Tension During Electrically-Assisted Forming
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Thermal Response Modeling of Sheet Petals in Uniaxial Tension During Electrically-Assisted Forming

机译:电辅助成形过程中片状花瓣单轴拉伸热响应模型

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摘要

For the current practice of improving fuel efficiency and reducing emissions in the automotive sector, it is becoming more common to use low density/high strength materials instead of costly engine/'drivetrain technologies. With these materials there are normally many manufacturing difficulties that arise during their incorporation to the vehicle. As a result, new processes which improve the manufacturability of these materials are necessary. This work examines the manufacturing technique of electrically-assisted forming (EAF) where an electrical current is applied to the workpiece during deformation to modify the material's formability. In this work, the thermal response of sheet metal for stationary (i.e., no deformation) and deformation tests using this process are explored and modeled. The results of the model show good agreement for the stationary tests while for the deformation tests, the model predicts that all of the applied electrical current does not generate Joule heating. Thus, this work suggests from the observed response that a portion of the applied current may be directly aiding in deformation (i.e., the electroplas-tic effect). Additionally, the stress/strain response of Mg AZ31 under tensile forming using EAF is presented and compared to prior experimental work for this material.
机译:对于提高汽车部门的燃油效率和减少排放的当前实践,使用低密度/高强度材料代替昂贵的发动机/动力传动系统技术已变得越来越普遍。对于这些材料,通常在将其结合到车辆期间会出现许多制造困难。结果,需要改善这些材料的可制造性的新工艺。这项工作研究了电辅助成型(EAF)的制造技术,其中在变形过程中向工件施加电流以改变材料的可成型性。在这项工作中,探索并建模了钣金对于固定(即不变形)的热响应以及使用该过程进行的变形测试。该模型的结果显示出与静态测试的良好一致性,而对于变形测试,该模型预测所有施加的电流都不会产生焦耳热。因此,这项工作从观察到的响应中暗示,施加的电流的一部分可能直接有助于变形(即,电塑料效应)。此外,介绍了在使用EAF拉伸成形过程中Mg AZ31的应力/应变响应,并将其与该材料的先前实验工作进行了比较。

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