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Possible explanations for different surface quality in laser cutting with 1 micron and 10 microns beams

机译:用1微米和10微米光束进行激光切割时不同表面质量的可能解释

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摘要

In laser cutting of thick steel sheets, quality difference is observed between cut surfaces obtained with 1 micron and 10 micron laser beams. This paper investigates physical mechanisms for this interesting and important problem of the wavelength dependence. First, striation generation process is described, based on a 3D structure of melt flow on a kerf front, which was revealed for the first time by our recent experimental observations. Two fundamental processes are suggested to explain the difference in the cut surface quality: destabilization of the melt flow in the central part of the kerf front and downward displacement of discrete melt accumulations along the side parts of the front. Then each of the processes is analyzed using a simplified analytical model. The results show that in both processes, different angular dependence of the absorptivity of the laser beam can result in the quality difference. Finally we propose use of radial polarization to improve the quality with the 1 micron wavelength.
机译:在厚钢板的激光切割中,在用1微米和10微米激光束获得的切割表面之间观察到了质量差异。本文研究了这个有趣且重要的波长依赖性问题的物理机制。首先,基于切缝前端的熔体流的3D结构描述了条纹生成过程,这是我们最近的实验观察首次揭示出来的。建议使用两个基本过程来解释切割表面质量的差异:切缝前端中央部分的熔体流动不稳定,以及沿前端侧面部分的离散熔体堆积向下移动。然后,使用简化的分析模型对每个过程进行分析。结果表明,在这两个过程中,激光束吸收率的不同角度依赖性都可能导致质量差异。最后,我们建议使用径向偏振来提高1微米波长的质量。

著录项

  • 作者

    HIRANO Koji; FABBRO Rémy;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
  • 中图分类

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