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红外可变发射率材料的研究

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随着动态红外隐身、智能热控等新兴技术的发展,单一的低发射率材料逐渐难以满足实际应用下的复杂需求.可变发射率材料的红外发射率在一定条件下可发生可逆变化,本文根据诱导材料红外发射率转变的外加场不同,系统总结了热致变、电致变以及其他如应力致变、湿度致变等可变发射率材料的研究进展.文中重点讨论了热致可变发射率材料中的二氧化钒(VO2)与电致可变发射率材料中的三氧化钨(WO3)、聚苯胺(PANI)等几种常用材料的相关原理与实际应用,并对各类材料性能特点进行了总结分析.可变发射率材料的研究极大的推动了自适应红外隐身技术的发展,并在智能热控、城市节能等领域得到了广泛应用,在未来将向着快响应、长寿命以及多光谱调制等方向发展.
Study of infrared variable emissivity materials
With the development of emerging technologies such as dynamic infrared stealth and intelligent thermal con-trol,it is gradually difficult for a single low-emissivity material to meet the complex needs of practical applications.The infrared emissivity of variable emissivity materials can be reversibly changed under certain conditions.In this paper,the research progress of thermo-emissivity,electro-emissivity,and other variable emissivity materials such as stress-in-duced and humidity-induced materials is systematically summarized according to the different applied fields that in-duce the infrared emissivity transition.In this paper,the principles and practical applications of vanadium dioxide(VO2)in thermally variable emissivity materials and tungsten trioxide(WO3)and polyaniline(PANI)in electro-vari-able emissivity materials are discussed,and the performance characteristics of various materials are summarized and analyzed.The research on variable emissivity materials has greatly promoted the development of adaptive infrared stealth technology,and has been widely used in the fields of intelligent thermal control and urban energy conservation,and will be developed in the direction of fast response,long life and multi-spectral modulation in the future.

variable emissivity materialthermochromicelectrochromicVO2WO3polyaniline

马创、王振、王新宇、刘兰轩、陈文锐、冯增辉

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中国机械总院集团武汉材料保护研究所有限公司,湖北武汉 430030

中国舰船研究设计中心,湖北武汉 430000

可变发射率材料 热致变 电致变 二氧化钒 三氧化钨 聚苯胺

2024

激光与红外
华北光电技术研究所

激光与红外

CSTPCD北大核心
影响因子:0.723
ISSN:1001-5078
年,卷(期):2024.54(12)