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Preparation of TATB-BTF Nanocomposite Energetic Materials Using Solvent Vaporizing Method

机译:使用溶剂汽化法制备TATB-BTF纳米复合能量材料

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The preparation of nanocomposite energetic materials is currently a very active and exciting research area. In this paper, TATB-BTF composite particles were prepared through solvent vaporizing method, also the composite particles structure, thermal performance and mechanic sensitivity were characterized by scanning electron microscopy(SEM),differential scanning calorimetric(DSC) and impact sensitivity experiment. The SEM images revealed that most TATB-BTF composite particles were around 200nm in diameter, these nanocomposite particles did not show visible shape change and particles size distribution became narrower and smaller compared with the original ultrafine TATB particles whose size was around 400nm, These evidence indicated that ultrafine TATB aggregations were broken up and dispersed during the vaporization of solvent and construction of nanocomposite. The thermal decomposition experiments showed that thermal decomposition peaks of both two components forming TATB-BTF composite appeared on DSC curves. The impact sensitivity of TATB-BTF nanocomposite were significantly reduced compared with that of the physical mixture although their composition and ratio were the same.
机译:纳米复合含能材料的制备是目前一个非常活跃和令人兴奋的研究领域。在本文中,TATB-BTF复合颗粒通过溶剂蒸发方法制备,也复合颗粒结构,热性能和机械敏感性用扫描电子显微镜(SEM),示差扫描量热(DSC)和冲击敏感性试验表征。 SEM照片显示,大多数TATB-BTF复合粒子周围200纳米的直径,这些纳米粒子没有表现出与原超细TATB颗粒,其尺寸为400nm附近比较明显的外形变化和粒径分布越来越窄,越来越小,这些证据显示超细TATB聚集被打散和溶剂和纳米复合材料的结构的蒸发过程中分散。热分解实验表明形成出现在DSC曲线TATB-BTF复合二者两种组分的该热分解峰。 TATB-BTF纳米复合材料的冲击灵敏度与物理混合物相比,进行了降低显著虽然它们的组成和比例均相同。

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