CHINESE JOURNAL OF ENERGETIC MATERIALS
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空心结构的Al/PTFE基反应材料构筑及其燃烧性能
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四川省新型含能材料军民融合协同创新中心, 西南科技大学国防科技学院, 四川 绵阳 621010

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国家自然科学基金(11872341和22005253)


Construction and Combustion Performance of Al/PTFE-based Reactive Materials with Hollow Structure
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Sichuan Co-Innovation Center for New Energetic Materials, School of National Defense Science and Technology, Southwest University of Science and Technology, Mianyang 621010, China

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    摘要:

    为探究结构对铝/聚四氟乙烯(Al/PTFE)基反应材料燃烧性能的影响,提高氟基铝热剂燃烧性能,利用增材制造技术,制备了实心、空心、核壳结构和限域空心结构的Al/PTFE基反应材料以及限域空心结构的铝/氧化铜(Al/CuO)、铝/氧化铁(Al/Fe2O3)基反应材料。并采用扫描电子显微镜、差示扫描量热仪、高速摄影仪和恒容燃烧仪对其微观结构、热性能、燃烧速率以及产气性能进行了研究。结果表明:各样品结构完整,组分均匀;核壳结构和限域空心结构的样品放热量比同质量的实心结构和空心结构的样品低;空心、核壳结构和限域空心结构的样品的燃速分别为实心结构样品的1.44、1.32倍和2.62倍;空心结构和限域空心结构的样品的产气性能与增压速率获得明显提高,其中限域空心结构的样品提升最明显;Al/PTFE基、Al/CuO基和Al/Fe2O3基的限域空心结构材料燃速比其实心结构均有着明显的提升,该结构对Al/Fe2O3材料燃速提升最明显。制备空心结构材料来调控线条的燃烧性能有望对新型高性能武器的设计提供新思路。

    Abstract:

    In order to explore the effects of structure on combustion performance of aluminum/polytetrafluoroethylene (Al/PTFE)-based reactive materials and improve combustion performance of fluorine-based thermite, additive manufacturing technology (3D printing) was utilized to prepare Al/PTFE-based reactive materials with solid, hollow, core-shell, and confined hollow structures, as well as Al/CuO-based and Al/Fe2O3-based reactive materials with confined hollow structures. The microstructure, thermal performance, combustion rate, and gas production performance were assessed by scanning electron microscope (SEM), differential scanning calorimetry (DSC), high speed camera, and constant volume combustion chamber. The results show that each sample exhibits intact structure and uniform components. Under the circumstance of same mass, the samples with core-shell and confined hollow structures display lower heat release than that of samples with solid and hollow structures. The burning rate of samples with hollow, core-shell, and confined hollow structures is 1.44, 1.32, and 2.62 times higher than that of samples with solid structure, respectively. Obvious improvement in gas production performance and pressurization rate appears for samples with hollow and confined hollow structures, especially for samples with confined hollow structure. The burning rate of Al/PTFE, Al/CuO, and Al/Fe2O3 materials with confined hollow structure is significantly higher than that of corresponding samples with solid structure, particularly for Al/Fe2O3 materials. The approach to regulate combustion performance of lines by preparing materials with hollow structure is expected to provide a novel idea for designing new high-performance weapons.

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引用本文

汪鑫,郑达伟,周旭,等.空心结构的Al/PTFE基反应材料构筑及其燃烧性能[J].含能材料, 2022, 30(9):877-885. DOI:10.11943/CJEM2022074.
WANG Xin, ZHENG Da-wei, ZHOU Xu, et al. Construction and Combustion Performance of Al/PTFE-based Reactive Materials with Hollow Structure[J]. Chinese Journal of Energetic Materials, 2022, 30(9):877-885. DOI:10.11943/CJEM2022074.

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历史
  • 收稿日期: 2022-04-07
  • 最后修改日期: 2022-07-31
  • 录用日期: 2022-07-22
  • 在线发布日期: 2022-07-23
  • 出版日期: 2022-09-25