Flowability and Infrared Interference Properties of Modified Graphite Flake with Hydrophobic Nano-silica

Q3 Engineering
宁功韬, 栗苹, 崔玉玲, 李石川, 汤润泽, 周遵宁
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引用次数: 1

Abstract

To research the dispersion properties and infrared (IR) interference efficiency of graphite flake particulates modified by hydrophobic nano-silica, the flowability of graphite flake particles before and after modification was measured by a powder property tester. The smoke was formed by dispersing the graphite flake particles into the smoke box using air flow dispersion way. The mass concentration and IR spectrum transmission of the smoke were measured. On the basis of stir settlement model, the settling velocity of smoke was calculated. Results show that the Carr′s flowability index of graphite flake particulates modified with hydrophobic nano-silica in mass ratio of 4.0 % is the highest, reaching 61 and at the same time, the settling velocity decreases from 2.288×10 -3 m·s -1 before modification to 1.125×10 -3 m·s -1 after modification. Average IR spectrum transmission of the smoke formed in the wave band range of 3-5 μm and 8-12 μm decreases from 0.3895 % and 0.7288% to 0.072% and 0.176%. The physical modification of hydrophobic nano-SiO 2 on graphite flake surface effectively improves the flowability and dispersion properties and significantly increases the duration of the smoke formed by graphite flake particles and IR interference performance.
疏水纳米二氧化硅改性石墨片的流动性及红外干扰性能
为研究疏水纳米二氧化硅改性石墨薄片颗粒的分散性能和红外干扰效率,采用粉体性能测试仪对改性前后石墨薄片颗粒的流动性进行了测试。采用气流分散的方式将石墨薄片颗粒分散到烟盒内形成烟气。测定了烟的质量浓度和红外光谱透射率。在搅拌沉降模型的基础上,计算了烟气的沉降速度。结果表明:疏水纳米二氧化硅在质量比为4.0%时改性石墨片状颗粒的卡尔流动指数最高,达到61,同时沉降速度由改性前的2.288×10 -3 m·s -1降至改性后的1.125×10 -3 m·s -1;烟幕在3 ~ 5 μm和8 ~ 12 μm波段的平均红外光谱透射率从0.3895%和0.7288%下降到0.072%和0.176%。在石墨薄片表面对疏水纳米sio2进行物理改性,有效改善了石墨薄片颗粒的流动性和分散性能,显著提高了石墨薄片颗粒形成烟雾的持续时间和红外干扰性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Hanneng Cailiao/Chinese Journal of Energetic Materials
Hanneng Cailiao/Chinese Journal of Energetic Materials Engineering-Industrial and Manufacturing Engineering
CiteScore
1.90
自引率
0.00%
发文量
4271
期刊介绍: Chinese Journal of Energetic Materials is a vital forum for the exchange of science and technology in energetic materials, and information on - Propellants - Explosives - Pyrotechnics - Ignition, combustion and detonation
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