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Electromagnetic-assisted calibration for surface part of aluminum alloy with a dedicated uniform pressure coil

机译:具有专用均匀压力线圈的铝合金表面部分的电磁辅助校准

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摘要

Springback is an inevitable defect of aluminum alloy sheet after conventional stamping process, which directly has an influence on the forming accuracy of part. For a surface part of aluminum alloy, the stamping process was used to complete the preforming process, and then the electromagnetic forming was adopted to calibrate the shape and improve the forming accuracy. A dedicated uniform pressure coil was proposed to quasi-uniformly impose the impulse magnetic pressure on the whole part. The effect of discharge voltage on the springback phenomenon was experimentally and numerically investigated. It was found that the springback defect of surface part was significantly reduced with the discharge voltage increasing. The forming accuracy of surface part was remarkably improved under the discharge voltage of 5kV. It can be attributed to two aspects: on the one hand, the effective plastic strain level at the bottom of surface part was greatly elevated, and on the other hand, the gap between the tensile stress on the exterior surface and the compressive stress on the interior surface was well decreased.
机译:回弹是常规冲压工艺后铝合金板的必然缺陷,这直接对部件的成形精度有影响。对于铝合金的表面部分,采用冲压工艺来完成预成型工艺,然后采用电磁成形来校准形状并提高成形精度。提出了一种专用均匀的压力线圈,以便在整个部分上均匀地施加脉冲磁力压力。实验和数值研究了排出电压对回弹现象的影响。发现表面部分的回弹缺陷随着排出电压的增加而显着降低。在5kV的放电电压下,表面部分的形成精度显着提高。它可以归因于两个方面:一方面,表面部分底部的有效塑性应变水平大大升高,另一方面,在外表面上的拉伸应力与压缩应力之间的间隙内表面很大。

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