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首页> 外文期刊>Quantum electronics >Experimental comparison of laser energy losses in high-quality laser-oxygen cutting of low-carbon steel using radiation from fibre and CO2 lasers
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Experimental comparison of laser energy losses in high-quality laser-oxygen cutting of low-carbon steel using radiation from fibre and CO2 lasers

机译:利用光纤和CO2激光辐射对低碳钢进行高质量激光氧气切割时激光能量损失的实验比较

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摘要

We report a comparative experimental study of laser-oxygen cutting of low-carbon steel using a fibre laser with a wavelength of 1.07 mm and a CO2 laser with a wavelength of 10.6 mm at the sheet thickness of 3-16 mm. For the two lasers we have measured the dependence of the cutting speed on the radiation power and determined the cutting speed at which the surface roughness is minimal. The coefficient of laser radiation absorption in the laser cutting process is measured for these lasers at different values of the cutting speed and radiation power. It is found that the minimal roughness of the cut surface is reached at the absorbed laser energy per unit volume of the removed material, equal to 11-13 J mm(-3); this value is the same for the two lasers and does not depend on the sheet thickness.
机译:我们报告了在板厚为3-16 mm的情况下使用波长为1.07 mm的光纤激光器和波长为10.6 mm的CO2激光器对低碳钢进行激光-氧气切割的对比实验研究。对于这两种激光器,我们已经测量了切割速度对辐射功率的依赖性,并确定了表面粗糙度最小的切割速度。在这些激光切割速度和辐射功率的不同值下,测量激光切割过程中的激光辐射吸收系数。发现在被去除的材料每单位体积吸收的激光能量达到切割表面的最小粗糙度,等于11-13 J mm(-3);对于两个激光器,该值是相同的,并且与片材厚度无关。

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