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Energetic Al/Fe2O3/PVDF composites for high energy release: Importance of polymer binder and interface

机译:高能量释放的高能Al / Fe2O3 / PVDF复合材料:聚合物粘合剂和界面的重要性

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摘要

Energetic composite materials are very important in military purpose and building explosion but, the role of polymer binder and the materials interfaces has been little reported. Here, we prepared energetic composites consisting of aluminum (Al), iron oxide (Fe2O3) and polymer, as the fuel, oxidizer and binder, respectively. Two different methods, i.e. physical mixing and compression molding were employed to form blended powder and composite film, respectively. The use of partially fluorinated polymer such as poly(vinylidene fluoride) (PVDF) resulted in large improvement in exothermic energy compared to that of hydrocarbon polymer such as poly(vinyl pyrrolidone) (PVP), representing that fluorocarbon groups are actively involved in the reaction and PVDF acts as an oxidizer as well as binder. Furthermore, the Al/Fe2O3/PVDF film prepared by compression molding exhibited much higher exothermic energy than the blended powder, indicating the importance of intimate contact property of energetic materials for energy release.
机译:高能复合材料在军事用途和建筑物爆炸中非常重要,但是,聚合物粘合剂和材料界面的作用鲜有报道。在这里,我们制备了由铝(Al),氧化铁(Fe2O3)和聚合物组成的高能复合材料,分别作为燃料,氧化剂和粘结剂。采用两种不同的方法,即物理混合和压塑,分别形成混合粉末和复合膜。与烃类聚合物(例如聚乙烯吡咯烷酮)(PVP)相比,使用部分氟化的聚合物(例如聚偏二氟乙烯)(PVDF)导致放热能大大改善,这表明碳氟化合物基团积极参与了反应PVDF充当氧化剂和粘合剂。此外,通过压模法制备的Al / Fe2O3 / PVDF薄膜显示出比共混粉末高得多的放热能,表明高能材料的紧密接触性能对于释放能量非常重要。

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