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超光滑光学基片表面激光清洗机理与技术
引用本文:徐传义,史兴宽. 超光滑光学基片表面激光清洗机理与技术[J]. 西北工业大学学报, 2002, 20(1): 128-131
作者姓名:徐传义  史兴宽
作者单位:西北工业大学,飞行器制造工程系,陕西,西安,710072
基金项目:国家自然科学基金(59775075)资助
摘    要:分析了激光清洗技术在清洗超光滑光学在片表面应用中的难点和可行性,并利用Nd:YAG脉冲激光器对超光滑光学玻璃表面进行了激光清洗实验,实验结果表明了激光清洗技术清洗超光滑光学基片方面非常有效。在此基础上建立了激光清洗的热学模型,结合气泡成长动力学和流体力学理论,分析了超光滑光学基片表面激光清洗的机理,量化了作用了杂质微粒上的去除力。

关 键 词:超光滑光学基片 激光清洗 清洗机理 热学模型 光学器件
文章编号:1000-2758(2002)01-0128-04
修稿时间:2000-05-10

On Efficiently Removing Micron and Submicron Particles from Super-Smooth Optical Substrate in P.R.China
Xu Chuanyi,Shi Xingkuan. On Efficiently Removing Micron and Submicron Particles from Super-Smooth Optical Substrate in P.R.China[J]. Journal of Northwestern Polytechnical University, 2002, 20(1): 128-131
Authors:Xu Chuanyi  Shi Xingkuan
Affiliation:Department of Aircraft Manufacturing Engineering. Northwestern Polytechnical University. Xi'an 710072
Abstract:Abstract: This research forms a part of an already completed project supported by NNSFC (National Natural Science Foundation of China). That quality of super-smooth optical substrate in P. R. China has not reached that of the world is mainly due to inefficient removal of micron and submicron particles from substrate. We propose using laser-cleaning techniques, which have proved efficient in other technical fields, to make such removal efficient. Figs. 2(super-smooth optical surface before laser-cleaning) and 3 (super-smooth optical surface after laser-cleaning) show that laser-cleaning is quite efficient. Section 3 discusses in much detail the mechanism of laser-cleaning. We establish a laser-heating model, shown in Fig. 4, to explain the particle removing mechanism. We derive eq. (3) for estimating the force acting on particle to be removed. In the experiment with Nd:YAG laser, we estimate a force of about 82 nN acting on 1 um particle, which is much larger than the adhesive force between the particle and the surface. Thus, laser-cleaning the micron and submicron particles from super-smooth surface is very efficient.
Keywords:Key words: super-smooth surface   laser-cleaning   micron and submicron particles
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