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局部激光处理强化低碳钢薄壁结构弯曲性能的可行性评估

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

作者信息

Kapustynskyi Oleksandr, Višniakov Nikolaj, Zabulionis Darius, Piščalov Artur

机构信息

Faculty of Mechanics, Vilnius Gediminas Technical University, Saulėtekio al. 11, 10221 Vilnius, Lithuania.

出版信息

Materials (Basel). 2020 Jul 10;13(14):3085. doi: 10.3390/ma13143085.

Abstract

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.

摘要

本文致力于通过有限元分析(FEA)对薄板低碳结构钢表面激光加工的影响和效果进行数值研究和分析研究。在不同的激光处理后,对板材的力学性能——轴向和弯曲刚度、力-挠度行为以及横截面力-应变行为进行了研究。本文还提出了一种估算激光加工金属横截面积的分析方法,该方法可用于选择激光加工轨迹中心之间的合理距离。该方法考虑了激光加工轨迹的宽度以及这些轨迹之间的距离。实验、有限元数值和分析结果表明,钢板表面的激光处理提高了激光加工金属的屈服点以及板材的轴向和弯曲刚度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af79/7411601/b6dec3251150/materials-13-03085-g001.jpg

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