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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Into the development of a model to assess beam shaping and polarization control effects on laser cutting
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Into the development of a model to assess beam shaping and polarization control effects on laser cutting

机译:进入模型的发展,以评估激光切割光束塑造和偏振控制效应

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摘要

This paper offers an in-depth look into beam shaping and polarization control as two of the most promising techniques for improving industrial laser cutting of metal sheets. An assessment model is developed for the study of such effects. It is built upon several modifications to models as available in literature in order to evaluate the potential of a wide range of considered concepts. This includes different kinds of beam shaping (achieved by extra-cavity optical elements or asymmetric diode staking) and polarization control techniques (linear, cross, radial, azimuthal). A fully mathematical description and solution procedure are provided. Three case studies for direct diode lasers follow, containing both experimental data and parametric studies. In the first case study, linear polarization is analyzed for any given angle between the cutting direction and the electrical field. In the second case several polarization strategies are compared for similar cut conditions, evaluating, for example, the minimum number of spatial divisions of a segmented polarized laser beam to achieve a target performance. A novel strategy, based on a 12-division linear-to-radial polarization converter with an axis misalignment and capable of improving cutting efficiency with more than 60%, is proposed. The last case study reveals different insights in beam shaping techniques, with an example of a beam shape optimization path for a 30% improvement in cutting efficiency. The proposed techniques are not limited to this type of laser source, neither is the model dedicated to these specific case studies. Limitations of the model and opportunities are further discussed.
机译:本文提供了深入调查光束成型和极化控制,作为改善金属板工业激光切割的最有前途的技术。开发了评估模型用于研究这些效果。它是根据文献中提供的型号的几种修改,以评估广泛考虑的概念的潜力。这包括不同种类的光束整形(通过超腔光学元件或不对称二极管铆接而实现)和偏振控制技术(线性,交叉,径向,方位角)。提供了完全数学描述和解决方案程序。三个案例研究用于直接二极管激光,包括实验数据和参数研究。在第一种情况下,针对切割方向和电场之间的任何给定角度分析线性偏振。在第二种情况下,比较几种偏振策略以比较类似的切割条件,例如,分段偏振激光束的最小空间分割数以实现目标性能。一种新的策略,基于具有轴未对准并且能够提高具有超过60%的切削效率的12分割线性到径向偏振转换器。最后一个案例研究揭示了光束成形技术的不同见解,其中梁形状优化路径的示例是切割效率的30%提高。所提出的技术不限于这种类型的激光源,也不是这些特定案例研究的模型。进一步讨论了模型和机会的局限性。

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