中国光学, 2013, 6 (6): 818, 网络出版: 2013-12-24   

红外隐身技术的应用及发展趋势

Application and development trend of infrared stealth technology
李波 *
作者单位
海军驻长春地区航空军事代表室,吉林 长春 130033
摘要
从斯忒藩—波尔兹曼定律出发,阐述了红外隐身的基本原理,分析得出实现红外隐身的几种方法。介绍了红外隐身材料的作用机理,指出了目前这些材料存在的主要问题,然后描述了红外隐身技术在**上的具体应用和研究进展,总结了红外隐身技术的未来发展趋势。最后,指出今后的研究将主要在以下两方面展开:一是寻求全波段多隐身技术的兼容;二是对现有方法进行改进并探索新的红外隐身方法。
Abstract
The principle of infrared stealth is introduced based on the Stefan-Boltzmann law firstly in this paper. Several methods for infrared stealth are given. The working mechanism of the infrared stealth materials are introduced, and some unsolved problems are put forward. Then, military applications and research progress are briefly described. Finally, the development trend of infrared stealth is summarized. It suggests that the future research will mainly include two aspects: one is to solve the combination of various waveband stealth technologies; the other is to improve existing methods and to explore new methods of infrared stealth.
参考文献

[1] 刘默伟,李航.红外隐身技术的发展分析[J].舰船电子工程,2009,29(5): 25-27.

    LIU M W,LI H. Development analysis of the infrared stealth technology[J]. Ship Electronic Eng.,2009,29(5): 25-27.(in Chinese)

[2] 陈慧华.基于介孔氧化镧红外吸波材料的研究[D].南京: 东南大学,2008.

    CHEN H H. Study on infrared absorption material based on mesoporous lanthanum oxide[D]. Nanjing: Southeast University,2008.(in Chinese)

[3] 邱继进,赵晓哲.舰载烟幕弹对抗红外成像型反舰导弹的方针研究[J].红外与激光工程,2005,34(6): 651-654.

    QIU J J,ZHAO X ZH. Simulation research on the smoke bomb carried on the warship confronting the infrared imaging anti-ship missile[J]. Infrared and Laser Eng.,2005,34(6): 651-654.(in Chinese)

[4] 崔锦峰,马永强,杨保平,等.红外隐身材料的研究现状及发展趋势[J].表面技术,2010,39(6): 71-74.

    CUI J F,MA Y Q,YANG B P,et al.. Research situation and development trend of infrared stealth materials[J]. Surface Technology,2010,39(6): 71-74.(in Chinese)

[5] 侯文学,张晓光.可见光、激光、毫米波与红外的复合隐身技术[J].航天电子对抗,2003,(3): 34-37.

    HOU W X,ZHANG X G. Visible, composite stealth technology of laser, millimeter wave and infrared[J]. Aerospace Electronic Warfare,2003,(3): 34-37.(in Chinese)

[6] 徐鹏.红外隐身技术的发展动向与分析[J].舰船电子工程,2009,29(7): 40-44.

    XU P. Development trends and analysis of the infrared stealth technology[J]. Ship Electronic Eng.,2009,29(7): 40-44.(in Chinese)

[7] 杜永,邢宏龙,陈水林.热红外隐身涂料的研究进展[J].矿业科学技术,2007,35(1): 51-55.

    DU Y,XING H L,CHEN SH L. Development of IR camouflage coating research[J]. J. China University Mining & Technology,2007,35(1): 51-55.(in Chinese)

[8] 宋新波,吕雪艳,章建军.飞机红外隐身技术的研究[J].激光与红外,2012,42(1): 3-7.

    SONG X B,LV X Y,ZHANG J J. Study on the infrared stealth technology of plane[J]. Laser & Infrared,2012,42(1): 3-7.(in Chinese)

[9] 朱永安,姚兰芳,汪国庆,等.红外隐身涂料的研究进展[J].材料导报,2006,20(S2): 319-322.

    ZHU Y A,YAO L F,WANG G Q,et al.. Development of study on infrared stealthy materials[J]. Materials Review,2006,20(S2): 319-322.(in Chinese)

[10] 高颂,乐洪宇.国外红外隐身技术的发展[J].舰船电子工程,2010,30(10): 17-22.

    GAO S,LE H Y. Development of the infrared stealth technology abroad[J]. Ship Electronic Eng.,2010,30(10): 17-22.(in Chinese)

[11] 张文毓.多频段兼容雷达隐身材料的研究及应用进展[J].船舶设计与建造,2009,21(2): 710.

    ZHANG W Y. Research and application progress on compatible radar stealth material with multi-frequency[J]. Design and Construction Ship,2009,21(2): 7-10.(in Chinese)

[12] 李风雷,徐国跃,余慧娟,等.红外隐身涂层的制备及其与雷达吸波涂料的兼容性研究[J].红外技术,2009,31(7): 415-419.

    LI F L,XU G Y,YU H J,et al.. Preparation of infrared camouflage coatings and its compatibility radar absorbing coatings[J]. Infrared Technology,2009,31(7): 415-419.(in Chinese)

[13] 范有余,羊毅,姜雄伟,等.一种新型中红外材料及其隐身功能研究[J].红外与激光工程,2010,39(1): 12-16.

    FAN Y Y,YANG Y,JIANG X W,et al.. New mid-infrared material and its radar stealth function[J]. Infrared and Laser Eng.,2010,39(1): 12-16.(in Chinese)

[14] 余慧娟.低红外发射率涂层的制备及其耐腐蚀性能的研究[D]. 南京: 南京航空航天大学,2010.

    YU H J. Study on preparation and corrosion resistance of low emissivity infrared coatings[D]. Nanjing: Nanjing University Aeronautics and Astronautics,2010.(in Chinese)

李波. 红外隐身技术的应用及发展趋势[J]. 中国光学, 2013, 6(6): 818. LI Bo. Application and development trend of infrared stealth technology[J]. Chinese Optics, 2013, 6(6): 818.

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