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首页> 外文期刊>Heat and mass transfer >Effects of optical design modifications on thermal performance of a highly reflective HfO_2/SiO_2/TiO_2 three material coating
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Effects of optical design modifications on thermal performance of a highly reflective HfO_2/SiO_2/TiO_2 three material coating

机译:光学设计修改对高反射率HfO_2 / SiO_2 / TiO_2三种材料涂层热性能的影响

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摘要

Effects of layer thickness modifications on laser induced temperature distribution inside three material, highly reflective thin film coatings are studied with numerical simulations. As a base design, a 21 layer coating composed of HfO_2, SiO_2 and TiO_2 layers of quarter wave thickness is considered. First, the laser induced temperature distribution in this base design is obtained. Then the layer thicknesses of the base design are modified and the corresponding temperature distributions in four alternative non-quarter wave coatings are evaluated. The modified thicknesses are determined using an in-house code developed to shift the electric field intensity (EFI) peak from the first high/low layer interface towards the adjacent low index layer that has a higher thermal conductivity, hence, higher laser damage resistance. Meanwhile, the induced increase in the EFI peak is kept at a user defined upper limit. The laser endurance of the base and alternative designs are compared in terms of their estimated temperature distributions. The results indicated that both the peak temperature and the highest interface temperature are decreased by at least 32%, in non-dimensional form, when alternative designs are used instead of the base design. The total reflection of the base design is only decreased from 99.8% to at most 99.4% when alternative designs are used. The study is proved to be successful in improving the laser endurance of three material thin film coatings by lowering the peak and interface temperatures.
机译:通过数值模拟研究了层厚度变化对三种材料,高反射率薄膜涂层内部激光诱导的温度分布的影响。作为基础设计,考虑了由四分之一波长厚度的HfO_2,SiO_2和TiO_2层组成的21层涂层。首先,获得该基本设计中的激光感应温度分布。然后,修改基础设计的层厚度,并评估四种替代性非四分之一波长涂层中的相应温度分布。修改后的厚度使用内部开发的代码确定,该代码可以将电场强度(EFI)峰值从第一高/低层界面移向具有较高导热率的相邻低折射率层,因此具有较高的抗激光损伤性。同时,引起的EFI峰值增加保持在用户定义的上限。根据基座和替代设计的估计温度分布比较其激光承受力。结果表明,使用替代设计代替基础设计时,无量纲形式的峰值温度和最高界面温度均降低了至少32%。使用替代设计时,基本设计的总反射率仅从99.8%降低到最多99.4%。事实证明,这项研究通过降低峰值温度和界面温度,成功提高了三种材料薄膜涂层的激光耐受性。

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  • 来源
    《Heat and mass transfer》 |2018年第2期|377-384|共8页
  • 作者单位

    ASELSAN Inc. MGEO Division, Cankiri yolu 7. km Akyurt, 06370 Ankara, Turkey,Department of Mechanical Engineering, Middle East Technical University, Universiteler Mahallesi, Dumlupinar Bulvari, No: 1, 06800 Ankara, Turkey;

    Department of Mechanical Engineering, Middle East Technical University, Universiteler Mahallesi, Dumlupinar Bulvari, No: 1, 06800 Ankara, Turkey;

    Department of Mechanical Engineering, Middle East Technical University, Universiteler Mahallesi, Dumlupinar Bulvari, No: 1, 06800 Ankara, Turkey;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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