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Feasibility Evaluation of Local Laser Treatment for Strengthening of Thin-Walled Structures from Low-Carbon Steel Subjected to Bending

机译:局部激光处理的可行性评估加强弯曲低碳钢的薄壁结构

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摘要

This paper is devoted to investigating numerically, by finite element analysis (FEA), and analytically the influences and effects of laser processing of the surface of thin-plate, low-carbon structural steel. The plate mechanical properties—axial and flexural stiffnesses, force-deflection behavior and cross-section force-strain behavior—are investigated after different laser treatments. An analytical methodology of the estimation of the cross-section area of the laser-processed metal is also proposed in the present article, that can be applied to choosing the reasonable distance between the centers of the laser-processed tracks. The methodology takes into account the width of the laser-processed tracks and the distances between these tracks. The experimental, finite element numerical and analytical analyses showed that the laser treatments of the surface of the steel plate increase the yield point of the laser-processed metal and the axial and flexural stiffnesses of the plate.
机译:本文致力于通过有限元分析(FEA)进行数控调查,并分析薄板,低碳结构钢表面的影响和影响。在不同的激光处理后,研究了板机械性能轴向和弯曲刚度,力偏转行为和横截面力 - 应变行为。在本文中还提出了激光加工金属的横截面区域的估计的分析方法,其可以应用于选择激光处理轨道的中心之间的合理距离。该方法考虑了激光处理的轨道的宽度和这些轨道之间的距离。实验性,有限元数值和分析分析表明,钢板表面的激光处理增加了激光加工金属的屈服点和板的轴向和弯曲刚度。

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