Infrared Technology, Volume. 46, Issue 4, 413(2024)
Preparation of Low Emissivity and Low Gloss Filler Al-Sr10 and its Extinction Mechanism
[1] [1] ZHOU L, XU W D, ZHANG Y, et al. Research on the infrared stealth effect of low emissivity materials[J]. Electronics, 2021, 50(7): 46-47.
[2] [2] FENG L L, LIU Y M, YAO L, et al. Based on infrared stealth and multiband compatible stealth materials[J]. Advances in Chemistry, 2021, 33(6): 1044-1058.
[3] [3] DONG H L, WANG J C, ZENG Y R, et al. Study on the reflection spectra of terahertz waves by infrared low-emissivity stealth coatings[J]. Spectroscopy and Spectral Analysis, 2019, 39(10): 3007-3012.
[4] [4] Kim J Y, Park C G, Hahn J W. Metal-semiconductor-metal metasurface for multiband infrared stealth technology using camouflage color pattern in visible range[J]. Advanced Optical Materials, 2022, 10(6): 507-509.
[5] [5] ZHAO H L, GUO D B, SHENG T Y, et al. Infrared emissivity properties of infrared stealth coatings prepared by water-based technologies[J]. Optical Materials Express, 2016, 6(12): 99-101.
[6] [6] HU R, WANG X Y. Analysis of several key parameters in the design of infrared stealth coating[C]//MATEC Web of Conferences, 2016, 61(3): 13-15.
[7] [7] JUAN Z, JIANG Y, LIANG Y J, Pei L. Analysis of the composition of infrared stealth coating and the influence factors of its emissivity[J]. Advanced Materials Research, 2014, 31(8): 926-930.
[8] [8] LI E B, YU B, DONG H Y. Infrared radiation and thermal properties of Al-doped SrZrO3 perovskites for potential infrared stealth coating materials in the high-temperature environment[J]. Ceramics International, 2021, 47(16): 42-49.
[9] [9] XU F F, XU G Y, TAN S J, et al. A preliminary study on the preparation method of 8~14 μm band compatible coatings with low infrared emissivity and low gloss[J]. Ordnance Materials Science and Engineering, 2011, 34(4): 5-9.
[10] [10] LI J, XU G Y, GUO T C, et al. Effect of the floating state of aluminum powder on the corrosion resistance of infrared low emissivity coatings[J]. Ordnance Materials Science and Engineering, 2019, 42(6): 54-58.
[11] [11] LIU Y, YAO G Z, ZHAO L L. Visible light stealth based on 2D holographic antireflection coatings[J]. Academy of Armored Forces Engineering (China), 2014, 9(2): 73-77.
[12] [12] SUN G, LIU S, WANG W. Real-time target detection technology of large view-field infrared image based on multicore DSP parallel processing[C]//Proc. of SPIE, 2013, 89(7): 8-9.
[13] [13] YAN X, WANG L, QIAN X Y. Preparation and characterization of low infrared emissive aluminum/waterborne acrylic coatings[J]. Coatings, 2020, 10(1): 13-21.
[14] [14] YAN X, WANG L. Preparation and performance of a waterborne UV/Al low infrared emissivity coating[J]. Applied Sciences, 2020, 10(18): 14-23.
[15] [15] YAN X, CHANG Y, QIAN X. The properties of an aluminum/UVcurable, infrared, low-emissivity coating modified by nano-silica slurry[J]. Coatings, 2020, 10(4): 38-42.
[16] [16] YAN X. Effect of different color paste on properties of fluorine resin/aluminum infrared low emissivity coating[J]. Coatings, 2020, 10(1): 66-70.
[17] [17] Farooq M, Hutchins M. Optical properties of higher and lower refractive index composites in solar selective coatings[J]. Solar Energy Materials and Solar Cells, 2002, 71(1): 73-83.
[18] [18] ZHANG D, JIN Q, LI W G, et al. Comparison of the properties of ballmilled dispersed and ultrasonically dispersed carbon nanotubes to enhance natural rubber[J]. Applied Chemicals, 2022, 51(4): 971-975.
[19] [19] KUANG P, LI Y W, WEI X L, et al. Emissivity measurement and analysis of failed infrared low emissivity coatings[J]. Journal of Air Force Engineering University (Natural Science Edition), 2020, 21(6): 26-32.
[20] [20] HU C, XU G Y, SHEN X M. Preparation and characteristics of thermal resistance polysiloxane/Al composite coatings with low infrared emissivity[J]. Journal of Alloys and Compounds, 2009, 486(1): 371-375.
[21] [21] HE Y F, XU C, XU G Y, et al. Study on the compatibility of low emissivity coatings with metamaterial absorbers[J]. Ordnance Materials Science and Engineering, 2019, 42(2): 56-59.
[22] [22] GU Q Y, FENG L. Inorganic Chemistry[M]. Beijing: Chemical Industry Press, 2008: 10-12.
[23] [23] YU T T, CHENG X L, ZHANG X F, et al. Highly sensitive H2S detection sensors at low temperature based on hierarchically structured NiO porous nanowall arrays[J]. Journal of Materials Chemistry A, 2015, 3(22): 11991-11999.
[24] [24] GAO S S, AN Q D, XIAO Z Y, et al. Significant promotion of porous architecture and magnetic Fe3O4 NPs inside honeycomb-like carbonaceous composites for enhanced microwave absorption[J]. Rsc. Advances, 2018, 8(34): 19011-19023.
[25] [25] ZHANG C, XIA S B, SHU B, et al. Study on the mechanism of action of additives in the preparation of aluminum-silver paste[J]. Metal functional materials, 2006, 13(3): 38-40.
[26] [26] TAN X X, CHEN J, LI J X. A thin and optically transparent infraredradar compatible stealth structure with low emissivity and broadband absorption[J]. Journal of Physics D: Applied Physics, 2022, 55(7): 897-905.
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WANG Yejian, XU Guoyue, TAN Shujuan, WANG Meifeng. Preparation of Low Emissivity and Low Gloss Filler Al-Sr10 and its Extinction Mechanism[J]. Infrared Technology, 2024, 46(4): 413
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Received: Jul. 22, 2022
Accepted: --
Published Online: Sep. 2, 2024
The Author Email: Guoyue XU (xuguoy@nuaa.edu.cn)
CSTR:32186.14.