王冲文,彭廷海,刘剑,赵远荣,董力,张友良,严庭瑜,王世锦,肖建军,李叶涵,杨品杰.红外增透膜实验室加速模拟自然环境试验方法研究[J].装备环境工程,2024,21(8):172-179. WANG Chongwen,PENG Tinghai,LIU Jian,ZHAO Yuanrong,DONG Li,ZHANG Youliang,YAN Tingyu,WANG Shijin,XIAO Jianjun,LI Yehan,YANG Pinjie.Test Method for Accelerated Simulation of Natural Environment of Infrared Anti-reflection Membrane in Laboratory[J].Equipment Environmental Engineering,2024,21(8):172-179. |
红外增透膜实验室加速模拟自然环境试验方法研究 |
Test Method for Accelerated Simulation of Natural Environment of Infrared Anti-reflection Membrane in Laboratory |
投稿时间:2024-03-21 修订日期:2024-06-03 |
DOI:10.7643/issn.1672-9242.2024.08.020 |
中文关键词: 锗 红外 增透膜 热带海洋 模拟加速试验 相关性中图分类号:TG174 文献标志码:A 文章编号:1672-9242(2024)08-0172-08 |
英文关键词:germanium infrared anti-reflection membrane tropical marine simulated accelerated test correlation |
基金项目:国防科技工业技术基础科研项目(JSHS2020208C001) |
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Author | Institution |
WANG Chongwen | Yunnan North Optical & Electronic Instrument Co., Ltd., Kunming 650114, China;Yunnan Xishuangbanna National Field Scientific Observation and Research Station for Material Corrosion in Atmospheric Environment, Kunming 650114, China |
PENG Tinghai | Yunnan North Optical & Electronic Instrument Co., Ltd., Kunming 650114, China |
LIU Jian | Yunnan North Optical & Electronic Instrument Co., Ltd., Kunming 650114, China;Yunnan Xishuangbanna National Field Scientific Observation and Research Station for Material Corrosion in Atmospheric Environment, Kunming 650114, China |
ZHAO Yuanrong | Yunnan North Optical & Electronic Instrument Co., Ltd., Kunming 650114, China;Yunnan Xishuangbanna National Field Scientific Observation and Research Station for Material Corrosion in Atmospheric Environment, Kunming 650114, China |
DONG Li | Yunnan North Optical Technology Co., Ltd., Kunming 650217, China |
ZHANG Youliang | Yunnan North Optical Technology Co., Ltd., Kunming 650217, China |
YAN Tingyu | The First Military Representative Office in Kunming of the Armament Department in Chongqing, Kunming 650032, China |
WANG Shijin | The First Military Representative Office in Kunming of the Armament Department in Chongqing, Kunming 650032, China |
XIAO Jianjun | Yunnan North Optical & Electronic Instrument Co., Ltd., Kunming 650114, China;Yunnan Xishuangbanna National Field Scientific Observation and Research Station for Material Corrosion in Atmospheric Environment, Kunming 650114, China |
LI Yehan | Yunnan North Optical & Electronic Instrument Co., Ltd., Kunming 650114, China;Yunnan Xishuangbanna National Field Scientific Observation and Research Station for Material Corrosion in Atmospheric Environment, Kunming 650114, China |
YANG Pinjie | Yunnan North Optical & Electronic Instrument Co., Ltd., Kunming 650114, China;Yunnan Xishuangbanna National Field Scientific Observation and Research Station for Material Corrosion in Atmospheric Environment, Kunming 650114, China |
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中文摘要: |
目的 针对锗镀红外增透膜材料提出一种模拟其热带海洋环境自然暴露试验的实验室加速试验方法。方法 根据锗镀红外增透膜在热带海洋环境的自然暴露试验结果,从环境因素、损伤模式、腐蚀机理等方面进行分析,设计一种模拟热带海洋环境的实验室加速试验方法,并开展实验室验证试验,对实验室加速试验的模拟性和加速性与自然环境暴露试验进行对比分析研究。结果 所设计的实验室加速试验方法在环境条件、损伤模式、作用机理等方面均与自然暴露试验一致,具有较好的模拟性和加速性。结论 本文设计的试验方法能有效加速模拟锗镀红外增透膜材料的热带海洋环境暴露试验结果,对提高锗镀红外增透膜在热带海洋环境中的可靠性研究具有一定参考和应用价值。 |
英文摘要: |
The work aims to propose an accelerated laboratory test method for germanium plated infrared anti-reflection membrane material to simulate its natural exposure test in tropical marine environment. According to the natural exposure test results of germanium plated infrared anti-reflection membrane in tropical marine environment, an accelerated laboratory test method was designed to simulate tropical marine environment from the aspects of environmental factors, damage mode and corrosion mechanism, and laboratory verification test was carried out to compare the simulation and acceleration of laboratory accelerated test and natural environmental exposure test. The laboratory accelerated test was consistent with the natural exposure test in environmental conditions, damage mode and action mechanism, with good simulation and acceleration performance. The test method designed can effectively accelerate the simulation of the exposure test results of germanium plated infrared anti-reflection membrane material in tropical marine environment, and has certain reference and application value for improving the reliability of germanium plated infrared anti-reflection membrane in tropical marine environment. |
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