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Experimental Observations of 5A02 Aluminum Alloy in Electromagnetically Assisted Tube Hydroforming

机译:5A02铝合金在电磁辅助管液压成形中的实验观察

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摘要

To establish the efficiency of electromagnetically assisted tube hydroforming, a typical experimental test for hydroforming, i.e., hydrobulging, was carried out on a 5A02 tube blank by using a combined quasi-static axial feeding and pulsed electromagnetic hydrobulging method. Data on the formability of an aluminum alloy 5A02 tube employing this combined loading method is compared with data for traditional quasi-static tests. The results show that the formability of aluminum alloy undergoing a quasi-static-dynamic process is dramatically increased beyond that exhibited in quasi-static or fully dynamic tests. The ultimate expansion ratio of an aluminum alloy tube undergoing a pulsed electromagnetic hydrobulging process is greatly increased beyond that exhibited in quasi-static hydrobulging tests. Both the expansion ratio and the effective strain exhibited in electromagnetically assisted tube hydroforming tests are about four and two times of that in quasi-static and fully dynamic hydrobulging tests, respectively. The forming limits of aluminum samples with both low and high prestrain levels are almost similar in the electromagnetically assisted tube hydroforming process, which makes it possible to stretch the aluminum alloy to a higher quasi-static prestrain level without weakening its total quasi-static—dynamic formability.
机译:为了建立电磁辅助管液压成形的效率,通过使用准静态轴向进给和脉冲电磁液压膨胀方法相结合的方法,对5A02管坯进行了液压成形的典型实验测试,即液压膨胀。将采用这种组合加载方法的铝合金5A02管的可成形性数据与传统的准静态测试的数据进行比较。结果表明,经历了准静态-动态过程的铝合金的可成形性大大提高,超过了准静态或完全动态测试中的铝合金。经历了脉冲电磁水力膨胀过程的铝合金管的极限膨胀率大大超过了准静态水力膨胀试验中显示的极限膨胀率。电磁辅助管液压成型试验中显示的膨胀率和有效应变分别约为准静态和完全动态液压膨胀试验中的膨胀率的四倍和两倍。低和高预应变水平的铝样品的成形极限在电磁辅助管液压成形过程中几乎相似,这使得可以将铝合金拉伸到更高的准静态预应变水平,而不会削弱其总准静态-动态可成型性。

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