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Finite element analysis of free expansion of aluminum alloy tube under magnetic pressure

机译:电磁压力下铝合金管自由膨胀的有限元分析

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摘要

A link between the electromagnetic code, ANSYS/Emag and the structural code, Ls-dyna was developed and the numerical modeling of electromagnetic forming for aluminum alloy tube expansion was performed by means of them (discharge energy 0. 75 kj). A realistic distribution of magnetic pressure was calculated. The calculated values of displacement along the tube axis and versus time are in very good agreement with the measured ones. The maximum strain rate is 1 122 s~(-1), which is not large enough to change the constitutive equations of aluminum alloy. With the augment of discharge energy (0. 5-1.0 kJ) , the relative errors of the maximum deformation increase from 2.93 percent to 11.4 percent. Therefore, coupled numerical modeling of the electromagnetic field and the structural field should be performed to investigate the electromagnetic forming with larger deformation.
机译:建立了电磁代码ANSYS / Emag与结构代码Ls-dyna之间的联系,并利用它们(放电能量为0. 75 kj)对铝合金管膨胀的电磁成形进行了数值模拟。计算出实际的电磁压力分布。沿管轴的位移和时间的计算值与实测值非常吻合。最大应变率为1122 s〜(-1),不足以改变铝合金的本构方程。随着放电能量的增加(0. 5-1.0 kJ),最大变形的相对误差从2.93%增加到11.4%。因此,应进行电磁场与结构场的耦合数值模拟,以研究变形较大的电磁场。

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