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Laser surface treatment of materials by using CO_2 laser beam at oblique incidence

机译:通过使用CO_2激光束在倾斜入射时激光表面处理材料

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The amount of the heat transferred to the workpiece is of high importance on the laser surface treatment. A possibility to increase the energy coupling efficiency by using oblique incidence of the laser beam is proposed. The drawback of oblique incidence technique consists in the deformation of the laser intensity profile on the irradiated surface at large incidence angles (70-80 degrees). This paper is dealing with a method to overcome this disadvantage: focusing the laser beam in an elliptical shape at normal incidence; using oblique incidence at large angles (70-80 degrees) a circular focused p-polarized spot is obtained. The absorption is (2.5-4) times enhanced and the focused spot on the surface has a circular shape. The use of oblique incidence of the laser beam allows another important advantage: the avoidance of the contamination of the focusing optics. The cladding experiments at 75-degree incidence angle have been carried out at only 650 W laser power level. An improved cladding efficiency was obtained.
机译:转移到工件的热量对激光表面处理具有很高的重要性。提出了通过使用激光束的倾斜入射来提高能量耦合效率的可能性。倾斜发射技术的缺点在于,在辐照表面上的大射角(70-80度)的激光强度分布的变形。本文正在处理一种克服这个缺点的方法:将激光束在正常入射时聚焦在椭圆形;在大角度(70-80度)下使用倾斜入射率获得圆形聚焦的p偏振斑点。吸收是增强的(2.5-4)倍,并且表面上的聚焦点具有圆形形状。使用激光束的倾斜入射率允许另一个重要的优点:避免聚焦光学污染。 75度入射角的包层实验仅在650 W激光功率水平下进行。获得了改进的包层效率。

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