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多层涂层对基底凹坑尺寸的耐激光敏感性。

Laser-resistance sensitivity to substrate pit size of multilayer coatings.

作者信息

Chai Yingjie, Zhu Meiping, Wang Hu, Xing Huanbin, Cui Yun, Sun Jian, Yi Kui, Shao Jianda

机构信息

Key Laboratory of Materials for High Power Laser, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Sci Rep. 2016 Jun 1;6:27076. doi: 10.1038/srep27076.

Abstract

Nanosecond laser-resistance to dielectric multilayer coatings on substrate pits was examined with respect to the electric-field (E-field) enhancement and mechanical properties. The laser-induced damage sensitivity to the shape of the substrate pits has not been directly investigated through experiments, thus preventing clear understanding of the damage mechanism of substrate pits. We performed a systematic and comparative study to reveal the effects of the E-field distributions and localized stress concentration on the damage behaviour of coatings on substrates with pits. To obtain reliable results, substrate pits with different geometries were fabricated using a 520-nm femtosecond laser-processing platform. By using the finite element method, the E-field distribution and localized stress of the pitted region were well simulated. The 1064-nm damage morphologies of the coated pit were directly compared with simulated E-field intensity profiles and stress distributions. To enable further understanding, a simplified geometrical model was established, and the damage mechanism was introduced.

摘要

针对电场增强和机械性能,研究了纳秒激光对衬底凹坑上介质多层涂层的抗性。尚未通过实验直接研究激光诱导损伤对衬底凹坑形状的敏感性,因此无法清晰理解衬底凹坑的损伤机制。我们进行了一项系统的对比研究,以揭示电场分布和局部应力集中对带凹坑衬底上涂层损伤行为的影响。为了获得可靠的结果,使用520纳米飞秒激光加工平台制造了具有不同几何形状的衬底凹坑。通过有限元方法,很好地模拟了凹坑区域的电场分布和局部应力。将涂覆凹坑的1064纳米损伤形态与模拟的电场强度分布和应力分布直接进行了比较。为了进一步理解,建立了一个简化的几何模型,并介绍了损伤机制。

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