4.7 Article

Insensitive energetic microspheres DAAF/RDX fabricated by facile molecular self-assembly

期刊

DEFENCE TECHNOLOGY
卷 17, 期 5, 页码 1775-1781

出版社

KEAI PUBLISHING LTD
DOI: 10.1016/j.dt.2021.02.001

关键词

DAAF; RDX; Insensitive; Energetic microspheres; Thermal stability

资金

  1. National Natural Science Foundation of China [22005275]
  2. Scientific and Technological Innovation Programs of Higher Education Institutions in Shanxi (STIP) [2019L0584]
  3. Equipment Pre-research Weapons Industry Joint Fund [6141B012896]
  4. Equipment Pre-research Key Laboratory Fund [6142020305]
  5. Advantage Disciplines Climbing Plan of Shanxi Province

向作者/读者索取更多资源

In this study, insensitive energetic explosive DAAF/RDX microspheres were fabricated using a self-assembly method, showing enhanced thermal stability and mechanical safety compared to rod-like DAAF/RDX. The findings suggest promising desensitization of RDX and potential wide applications for the prepared microspheres.
Insensitive energetic materials are promising in the defense weapons field. However, energetic materials still suffer from great challenges and the concern about their safety limits their utilization. In this work, insensitive energetic explosive 3,3'-diamino-4,4'-azoxyfurazan/hexahydro-1,3,5-trinitro-1,3,5-triazine (DAAF/RDX) microspheres were fabricated by self-assembly method. Rod-like DAAF/RDX was prepared by mechanical ball milling for comparison. DAAF/RDX composites with different mass ratios (90:10, 80:20, and 70:30) were obtained. The morphologies and structures of as-obtained DAAF/RDX composites were characterized by scanning electron microscopy (SEM), powder x-ray diffraction (PXRD) and fourier transform infrared spectroscopy (FT-IR). The results showed that DAAF/RDX microspheres exhibited regular shaped microspheres with sizes from 0.5 to 1.2 mu m. There was no crystal transition during the modification process. The thermal properties of as-obtained materials were then evaluated by differential scanning calorimetry (DSC) and materials studio software. DAAF/RDX microspheres showed an advanced decomposition peak temperature compared with rod-like DAAF/RDX. The binding energy and peak temperature values at zero beta(i) (TP0) of DAAF/RDX (90:10) increased by 36.77 kJ/mol, 1.6 degrees C, and 58.11 kJ/mol, 12.3 degrees C compared to DAAF/RDX (80:20) and DAAF/RDX (70:30), indicating the better thermal stability of DAAF/RDX (90:10). The characteristic drop height (H-50) of DAAF/RDX (higher than 100 cm) composites was higher than that of raw RDX (25 cm), suggesting significant improvements in mechanical safety. The preparation of DAAF/RDX microspheres is promising for the desensitization of RDX and useful for the formation of other materials and future wide applications. (C) 2021 China Ordnance Society. Publishing services by Elsevier B.V. on behalf of KeAi Communications Co. Ltd.

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