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Laser Surface Modification of AISI 1025 Low Carbon Steel using Pulsed Nd:YAG Laser for Enhanced Surface Properties

机译:使用脉冲Nd:YAG激光对AISI 1025低碳钢进行激光表面改性以增强表面性能

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This paper presents laser surface modification of AISI 1025 low carbon steel for enhance surface hardness properties. A Nd:YAG laser system with pulse mode was used in order to modify 10mm thick plate surface. Three controlled parameters were laser power, pulse duration and overlap percentage which ranged from 100 W to 200 W, 0.4 to 1.0 ms and 50% to 90% respectively. The metallographic and hardness of the treated samples were characterised. Metallographic study was conducted using optical microscope for laser modified layer thickness and grain size. Hardness properties were measured using Vickers indenter. The result show that hardness of laser treated area increased due to fine grain size produced in the laser modified layer. The overlap percentage increased significantly with decreasing laser scanning speed which was found to result in a lower hardness. These findings are important high wear applications such as may be found in semi-sold metal forming.
机译:本文介绍了AISI 1025低碳钢的激光表面改性,以增强表面硬度。为了改变10mm厚的板表面,使用了Nd:YAG脉冲模式的激光系统。激光功率,脉冲持续时间和重叠百分比这三个受控参数分别为100 W至200 W,0.4至1.0 ms和50%至90%。表征了经处理的样品的金相和硬度。使用光学显微镜对激光改性的层厚度和晶粒尺寸进行金相研究。硬度性质使用维氏压头测量。结果表明,由于在激光改性层中产生的细晶粒尺寸,使得激光处理区域的硬度增加。重叠率随着激光扫描速度的降低而显着增加,这导致硬度降低。这些发现是重要的高磨损应用,例如可以在半售金属成型中发现。

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