Research Progress on Large-span Camouflage Screen Materials and Technologies
YANG Hongrui1,, LIU Hongrui2,,* , WANG Jieliang2, ZU Mei1,*, XU Aolan2
1 College of Aerospace Science and Engineering, National University of Defense Technology, Changsha 410073, China 2 Unit 32182 of People's Liberation Army, Beijing 100042, China
Abstract: Camouflage screen usually employs manufactured equipment or on-site materials to hide military engineering and equipment to cope with visible, infrared, and radar detections. Under the background of modern warfare, many military engineering and equipment are large in size and span, and pose high requirements for the use of camouflage equipment. Conventional camouflage screen technology has become inadequate to meet the camouflage requirements of these military engineering and equipment. Thus camouflage screen materials with large span, lightweight, and rapid deployment and removal and the corresponding technologies have attracted widespread attention. This paper outlines the basic principles of camouflage screen, discusses the research status of supporting structure and camouflage screen surface for large-span camouflage, respectively, and offers a brief prospect on the development trend of large-span camouflage screen.
杨鸿睿, 刘洪蕊, 王结良, 祖梅, 徐遨蓝. 大跨度伪装遮障材料技术研究进展[J]. 材料导报, 2025, 39(3): 23110159-6.
YANG Hongrui, LIU Hongrui , WANG Jieliang, ZU Mei, XU Aolan. Research Progress on Large-span Camouflage Screen Materials and Technologies. Materials Reports, 2025, 39(3): 23110159-6.
1 Wang J. Science & Technology Information, 2023, 21(12), 141 (in Chinese). 王军. 科技资讯, 2023, 21(12), 141. 2 Geng N. Accounts of Materials Research, 2013, 644, 353. 3 Li J M, Jia S Z, Li R X. Building Structure, 2023, 53(1), 1 (in Chinese). 李亚明, 贾水钟, 李瑞雄. 建筑结构, 2023, 53(1), 1. 4 Geng L. Engineering Construction, 2017, 49(11), 32 (in Chinese). 耿磊. 工程建设, 2017, 49(11), 32. 5 Chen Y. Journal of Guangdong Open University, 2002(2), 79 (in Chinese). 陈颖. 广东广播电视大学学报, 2002(2), 79. 6 李剑飞, 甘伟鹏, 龙跃, 等. 中国专利, CN209891746U, 2020. 7 Liu X, Zhang Y, Zhang A, et al. Advances in Structural Engineering, 2017, 20(4), 504. 8 Veenendaal D, Block P. Engineering Structures, 2014, 75, 39. 9 Deng A Z, He W M, Yang Y, et al. National Defense Technology, 2019, 40(3), 28 (in Chinese). 邓安仲, 贺伟明, 杨毅, 等. 国防科技, 2019, 40(3), 28. 10 Li X Y, Zhang Z, Xue S D, et al. Thin-Walled Structures, 2022, 178, 109491. 11 Chen W, Yin Y, Hu J, et al. In:IASS 2019 Barcelona Symposium. Spain, 2019, pp. 1. 12 Huang B Y. Urban Architecture Space, 27(9), 205 (in Chinese). 黄宝仪. 城市住宅, 2020, 27(9), 205. 13 Li Y B, Huang C L, Zhao Q, et al. Materials Reports, 2021, 35(S1), 576 (in Chinese). 李永波, 黄成亮, 赵桥, 等. 材料导报, 2021, 35(S1), 576. 14 Gao Y, Tang B, Ji G, et al. Materials Research Express, 2021, 8(6), 066404. 15 Xie D J, Zu M, Li M Y, et al. Advanced Materials, 2023, 35(47), 2302973. 16 Huang C H. Preparation, microstructure and infrared stealth property of aluminum doped zinc oxide. Master's Thesis, Shandong Unversity, China, 2019 (in Chinese). 黄朝晖. 掺铝氧化锌的制备、结构形貌及红外隐身性能研究. 硕士学位论文, 山东大学, 2019. 17 Chandra S, Franklin D, Cozart J, et al. American Chemical Society Photonics, 2018, 5(11), 4513. 18 Li E, Ma W, Zhang P, et al. Acta Materialia, 2021, 209, 116795. 19 Sun X X, Li Y B, Huang Y X, et al. Advanced Functional Materials, 2021, 32(5), 2107508. 20 Wei J J, Zhao R, Liu X B. Journal of Magnetism and Magnetic Materials, 2012, 324(20), 3323. 21 Wang J, Zhang H, Bai S X, et al. Journal of Magnetism and Magnetic Materials, 2007, 312(2), 310. 22 Guo C, Yang Z H, Shen S, et al. Journal of Magnetism and Magnetic Materials, 2018, 454, 32. 23 Feng H C, Zhang J, Zhao Z Y, et al. Science and Technology and Innovation, 2022(23), 159 (in Chinese). 冯海潮, 张健, 赵志勇, 等. 科技与创新, 2022(23), 159. 24 新浪军事. 可与周边环境融为一体!法国自适应多光谱伪装系统(2021. 12. 1)[2024. 1. 21]. https:∥mil. news. sina. com. cn/world/2021-12-01/doc-ikyakumx1383902. shtml 25 Fan X P, Dou J Z, Guo R P. New Chemical Materials, 2009, 37(5), 9 (in Chinese). 范夕萍, 窦建芝, 郭瑞萍. 化工新型材料, 2009, 37(5), 9. 26 Kim H, Choi J, Kim K K, et al. Nature Communications, 2021, 12(1), 4658. 27 Wen J X, Wang M H, Peng Y, et al. Materials China, 2016, 35(1), 57 (in Chinese). 温佳星, 王美涵, 彭洋, 等. 中国材料进展, 2016, 35(1), 57. 28 Liu D Q, Zheng W W, Cheng H F, et al. Infrared Technology, 2010, 32(3), 181 (in Chinese). 刘东青, 郑文伟, 程海峰, 等. 红外技术, 2010, 32(3), 181. 29 Liu D Q, Ji H N, Peng R F, et al. Solar Energy Materials and Solar Cells, 2018, 185, 210. 30 Ding P, Wang P, Su J C, el at. Journal of Physicsd-Applied Physics, 2022, 55(34), 345103. 31 Salihoglu O, Uzlu H B, Yaka R, et al. Nano Letters, 2018, 18, 4541. 32 Balci O, Polat E O, Kakenov N, et al. Nature Communications, 2015, 6(1), 6628. 33 Wang Y, Liu D Q, Zhou F et al. Materials China, 2020, 39(5), 404 (in Chinese). 王义, 刘东青, 周峰, 等. 中国材料进展, 2020, 39(5), 404.