Investigation of the Effects of the Different Laser Powers on the Steel Surface

Timur CANEL
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Abstract

In this study, grooves were created on a 3 mm thick steel plate by using a carbon dioxide laser at different laser powers at a constant speed. High-resolution images of the laser-processed surfaces were taken with a high-resolution stereo microscope. The molten zone and heat-affected zone widths of the troughs were measured using the images. To reduce the error rate, measurements were made from 5 different regions on the obtained grooves. Finally, the changes in the molten zone and heat-affected zone widths against the applied laser power were examined graphically. As a result, it has been observed that the widths were increasing by laser power with slowing down. Heat Affected Zone and Molten zone widths have changed at the same rate. As the energy transferred to the material surface increases, both the Heat Affected Zone and the molten zone width has increased. The applied laser power has been studied from 40 W to 115 W. Heat Affected Zone Size increased almost linearly when laser power was increased from 40 W to 80 W. It has been observed that the HAZ size increase was less for higher power values.
不同激光功率对钢表面影响的研究
在这项研究中,利用二氧化碳激光器以不同的激光功率以恒定的速度在3mm厚的钢板上产生凹槽。用高分辨率立体显微镜拍摄激光处理表面的高分辨率图像。利用图像测量了槽的熔融区和热影响区宽度。为了降低错误率,在得到的凹槽上进行了5个不同区域的测量。最后,用图形分析了熔融区和热影响区宽度随激光功率的变化。结果表明,随着激光功率的增大,宽度随激光功率的减小而增大。热影响区和熔化区宽度以相同的速率变化。随着传递到材料表面的能量的增加,热影响区和熔融区宽度均增大。应用的激光功率在40 W到115 W之间进行了研究。当激光功率从40 W增加到80 W时,热影响区大小几乎呈线性增加。观察到,当功率值较高时,热影响区尺寸的增加较小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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