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The Effect of Thickness on the Sheet Metal Bending by Laser Peen Forming

机译:厚度对激光钢板弯曲的厚度的影响

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Laser peen forming, is a purely mechanical forming method achieved through the use of laser energy to form complex shapes or modify curvatures. In the present study, experiments and numerical simulation of laser peen forming are performed to investigate the effect of thickness on the bending direction and bending angle of thin sheet metal. The results show that the curvatures of 1060 pure aluminum sheet change form concave to convex when the sheet thickness increases from 0.5mm to 2.25mm. The concave bending angle is decreased continuously by sheet thickness, and then change to be the convex bending. The numerical simulated bending angles agree well with the trend of the measured results. But the simulations with the Johnson-Cook model are more consistent matching experimental results for the thick sheet metal with a convex bending, while the Elastic-Perfectly-Plastic model produces a better agreement for the thinner sheet metal with a concave bending.
机译:激光刺落形成,是通过使用激光能量来形成复杂的形状或改变曲率来实现的纯机械形成方法。在本研究中,进行激光割割机形成的实验和数值模拟,以研究厚度对薄板金属的弯曲方向和弯曲角的影响。结果表明,当纸张厚度从0.5mm增加到2.25mm时,1060纯铝板变化形式的曲率凹入凸。凹面弯曲角度通过片材厚度连续减小,然后改变为凸起弯曲。数值模拟弯曲角度与测量结果的趋势很好。但是与Johnson-Cook模型的模拟更加一致的厚板金属与凸弯曲的厚板金属更加一致的匹配实验结果,而弹性 - 完美塑料模型为较好的薄片金属带有凹形弯曲的更好的一致性。

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