CHINESE JOURNAL OF ENERGETIC MATERIALS
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高球形度核壳结构超级铝热剂的制备及点火性能
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1.北京理工大学材料学院, 北京 100081;2.高能量密度材料教育部重点实验室, 北京 100081

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北京理工大学科技创新计划创新人才科技资助专项计划(2021CX01002)


Preparation and Ignition Performance of Super Thermite with Highly Spherical Core-shell Structure
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1.School of Materials Science and Engineering, Beijing Institute of Technology,Beijing 100081, China;2.Key Laboratory of High Energy Density Materials, Ministry of Education, Beijing 100081, China

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    摘要:

    为得到含能材料3D打印用球形核壳结构超级铝热剂,采用固体颗粒间直接包覆喷雾造粒法制备了Al2#@CuO与Al2#@Bi2O3高球形度核壳结构超级铝热剂。利用NanoMeasure统计软件研究了构筑参数(粒径比、固含量)对其粒径尺寸的影响;通过电镜、X射线衍射仪表征了球形核壳结构;采用休止角法表征其流散性;利用高速摄影机观测其点火特性。结果表明,固含量为25%、2#铝粉与纳米金属氧化物(CuO、Bi2O3)粒径体系构筑参数所得2种球形核壳结构超级铝热剂结构为理想球形核壳结构,平均粒径约40 μm,壳层平均厚度分别为7.79 μm(Al2#@CuO-25%)、10.47 μm(Al2#@Bi2O3-25%);与机械混合样相比,球形核壳结构超级铝热剂的流散性有较大提升,Al/CuO体系由48.8°减小至22.9°,Al/Bi2O3体系由37.3°减小至16.6°,Al2#@CuO球形核壳结构超级铝热剂的燃烧时间由100 ms增加到了0.9 s左右,表明改变微观结构会影响其燃烧特性。

    Abstract:

    In order to obtain super thermite with spherical core-shell structure for 3D printing of energetic materials, Al2#@CuO and Al2#@Bi2O3 super thermites possessing highly spherical core-shell structure were prepared by spray granulation method for directly coating solid particles. The influence of construction parameters (particle size ratio and solid content) on particle size of super thermite was studied by using NanoMeasure statistical software. The spherical core-shell structure was characterized by scanning electron microscopy and X-ray diffraction. The flowability of super thermite was characterized using the angle of repose method. The ignition characteristics were observed using high-speed cameras. The results show that two types of super thermite possessing highly spherical core-shell structure were prepared using construction parameters of solid content 25%, 2# aluminum powder, and nano metal oxide (CuO, Bi2O3) particle size. The structure was an ideal spherical core-shell structure, with an average particle size of about 40 μm. The average thickness of the shell is 7.79 μm (Al2#@CuO-25%), 10.47 μm(Al2#@Bi2O3-25%). Compared with the mechanically mixed sample, the flowability of super thermite with spherical core-shell structure displays a great improvement. The angle of repose of Al/CuO system reduces from 48.8° to 22.9°, and the angle of repose of Al/Bi2O3 system decreases from 37.3° to 16.6°. The combustion time of Al2#@CuO super thermite with spherical core-shell structure increases from 100 ms to about 0.9 s, indicating that microstructure variation has an impact on its combustion characteristics.

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引用本文

祁振宇,姚维尚,张铭浩,等.高球形度核壳结构超级铝热剂的制备及点火性能[J].含能材料, 2023, 31(7):645-653. DOI:10.11943/CJEM2022207.
QI Zhen-yu, YAO Wei-shang, ZHANG Ming-hao, et al. Preparation and Ignition Performance of Super Thermite with Highly Spherical Core-shell Structure[J]. Chinese Journal of Energetic Materials, 2023, 31(7):645-653. DOI:10.11943/CJEM2022207.

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历史
  • 收稿日期: 2022-08-13
  • 最后修改日期: 2023-06-06
  • 录用日期: 2023-03-06
  • 在线发布日期: 2023-05-04
  • 出版日期: 2023-07-25