FEA analysis of bending stress and deflection in thin steel sheet with reinforcing ribs created by laser treatment

Oleksandr Kapustynskyi, N. Višniakov
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Abstract

The main objective of the research was to determine the influence of local laser treatment on the process of elastoplastic deflection of the sheets under bending force. FEA modelling results show, that the location of the treated area and the number of laser tracks on a thin-walled sheet surface had a large influence on the stress distribution and sheet deflections during bending. The FEA analysis of equivalent Von-Mises stresses, normal stresses, deflection of steel sheets and applied bending forces confirms that the steel samples with the laser-treated area have greater resistance against bending and reduced deflection under the same bending forces. FEA investigation shows that a greater strengthening effect on thin-walled steel sheets could be achieved through the application of double-sided laser treatment of the sheet surface in comparison with untreated or one-side treated steel sheets.
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激光加筋薄钢板弯曲应力和挠度的有限元分析
研究的主要目的是确定局部激光处理对弯曲力作用下板材弹塑性变形过程的影响。有限元模拟结果表明,薄壁薄板表面处理区域的位置和激光轨迹的数量对弯曲过程中的应力分布和薄板挠度有较大的影响。对等效Von-Mises应力、法向应力、钢板挠度和施加的弯曲力进行有限元分析,证实了在相同的弯曲力下,激光处理区域的钢样品具有更大的抗弯曲能力和更小的挠度。有限元分析表明,与未经处理或单面处理的薄壁钢板相比,双面激光处理对薄壁钢板的强化效果更好。
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