Study on IR laser smoothing of ground surface on fused silica

Zhigang Yuan, Yaguo Li, Du Wang, Ting Tan, H. Jin, Qinghua Zhang, Jian Wang, Qiao Xu
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引用次数: 2

Abstract

The application of fused silica in the field of High power laser requires that the formation of sub-surface damage be reduced in the process of grinding and polishing. Subsurface damage is unavoidable in traditional processing methods. Laser smoothing, as a non-contact polishing method, has attracted more and more attention in the surface treatment of fused silica. Laser smoothing is capable of producing smooth surface without incurring serious mechanical defects. Thus it is employed to polish fused silica in the hope of reducing mechanical defects on the optical components. In this paper, aiming at the ground surface of fused silica, the characteristics of mid-far infrared laser treatment and modification are studied. The surface smoothness under different laser power are studied, and the optimal laser power and action time for laser smoothing are obtained. This technology can reduce the ground surface roughness from above 100 nanometer to nanometer.
红外激光对熔融二氧化硅表面平滑的研究
熔融石英在大功率激光领域的应用,要求在磨削抛光过程中减少亚表面损伤的形成。在传统的加工方法中,亚表面损伤是不可避免的。激光光滑作为一种非接触式抛光方法,在熔融石英的表面处理中受到越来越多的关注。激光平滑能够产生光滑的表面而不会产生严重的机械缺陷。因此,它被用来抛光熔融二氧化硅,希望减少光学元件上的机械缺陷。本文针对熔融石英表面,研究了中远红外激光处理和改性的特点。研究了不同激光功率下的表面光洁度,得到了激光光洁度的最佳激光功率和作用时间。该技术可将地面表面粗糙度从100纳米以上降低到纳米级。
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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