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湿热海洋环境下锗基底增透膜透过率稳定性影响

王乔方 王冲文 叶洪伟 刘剑 杨玉萍 赵远荣

红外技术2025,Vol.47Issue(4):530-537,8.
红外技术2025,Vol.47Issue(4):530-537,8.

湿热海洋环境下锗基底增透膜透过率稳定性影响

Germanium-Based Infrared Thin Film Transmittance Stability Under Tropical Marine Environment

王乔方 1王冲文 2叶洪伟 3刘剑 2杨玉萍 2赵远荣2

作者信息

  • 1. 国营第二九八厂,云南 昆明 650114||昆明物理研究所,云南 昆明 650223||云南西双版纳大气环境材料腐蚀国家野外科学观测研究站,云南 昆明 650114||西双版纳大气环境材料腐蚀云南省野外科学观测研究站,云南 昆明 650114
  • 2. 国营第二九八厂,云南 昆明 650114||云南西双版纳大气环境材料腐蚀国家野外科学观测研究站,云南 昆明 650114||西双版纳大气环境材料腐蚀云南省野外科学观测研究站,云南 昆明 650114
  • 3. 陆军装备部驻重庆地区军事代表局驻昆明地区第二军事代表室,云南 昆明 650032
  • 折叠

摘要

Abstract

To study the transmittance stability of germanium-based infrared films in tropical marine environments,two samples:germanium-based double-sided DLC film and germanium-based double-sided high-efficiency antireflective film,were placed in a tropical marine environment for a natural exposure test under a shed,with a test cycle of six months and a total of four cycles.The transmission spectrum and microscopic morphology of the test samples from each cycle were analyzed.The variation pattern of the samples over time was examined through transmission spectroscopy results,and the stability and change mechanism of the infrared thin film transmittance were studied through microstructural analysis of the film layer.The test results show that the transmittance of germanium-based infrared films does not change significantly during one testing period under the shed.The overall waveform of the film remains unchanged with increasing test time,although the crest shifts toward longer wavelengths.After four test cycles,the transmittance of the high-efficiency antireflective coating was significantly reduced,whereas the transmittance of the DLC membrane did not decrease significantly,indicating good stability in a tropical marine environment.

关键词

湿热海洋环境/红外薄膜/透过率稳定性

Key words

tropical marine environment/infrared films/transmittance stability

分类

武器工业

引用本文复制引用

王乔方,王冲文,叶洪伟,刘剑,杨玉萍,赵远荣..湿热海洋环境下锗基底增透膜透过率稳定性影响[J].红外技术,2025,47(4):530-537,8.

基金项目

国防科技工业技术基础科研项目(JSHS2020208C001). (JSHS2020208C001)

红外技术

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