铝热剂
材料科学
共聚物
燃烧
放热反应
化学工程
点火系统
锰
自燃温度
复合材料
铝
聚合物
冶金
有机化学
化学
热力学
工程类
物理
作者
Jiaxing Song,Fei Duan,Jialin Chen,Guannan Wang,Quanwei Tian,Jingkai Feng
摘要
Abstract Fluoroelastomer has received increasing attention for energetic materials application due to its high fluorine contents. Different contents (0 wt%–30 wt%) of poly(VDF‐ter‐HFP‐ter‐TFE) terpolymer are added into Al/MnO 2 nanothermite. The peak exothermic temperature of thermite reaction for Al/MnO 2 system is about 554°C with 1070 Jg −1 heat release. After adding terpolymer, it mainly exists in the gap among Al nanoparticles and MnO 2 nanorods, and react with Al and MnO 2 at the range of 350 to 540°C before the occurrence of the thermite reaction. 10 wt% terpolymer has relatively little effect on the thermite reaction, but for the samples with higher terpolymer content, more nanothermite components react with terpolymer at an early stage. Ignition and combustion performance show terpolymer can reduce ignition current threshold by up to 9.82% and increase combustion duration time at least several times. The potential reasons for the above results are analyzed. This work can shed light on the application of fluoroelastomer in energetic‐materials.
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