含氟聚合物
燃烧
硼
硼酸
热分解
反应性(心理学)
材料科学
氧化物
分解
化学工程
氧化硼
氟
复合材料
化学
有机化学
冶金
聚合物
替代医学
病理
工程类
医学
作者
Venu Keerthi,Hongqi Nie,Sreekumar Pisharath,Huey Hoon Hng
标识
DOI:10.1080/00102202.2020.1804885
摘要
The problem of sluggish combustion reactivity of Boron (B) can be overcome by inclusion of fluoropolymers. In this paper, three commercial fluoropolymers; PVDF (59 wt% F), Viton (66 wt% F) and THV (72 wt% F) coated (Ca. 4 wt%) B powders (Ca. 1-µm in size) were prepared and their combustion characteristics have been investigated. Among the fluoropolymer-coated powders, THV coated B provided the highest average improvement in heat of oxidation, reactivity in terms of pressure generation and combustion temperature followed by Viton and PVDF coated B. The sequence of reactivity enhancement has been explained by the variances in gasification efficiencies of the boric oxide shell, induced by the thermal decomposition of the respective fluoropolymer coatings. THV with higher fluorine and lower hydrogen content, supposedly promotes better gasification of the boric oxide shell by releasing more fluorine rich alkanes/alkenes during thermal decomposition. However, PVDF predominantly produces HF, which apparently less effective in gasification of the boric oxide shell, resulting in limited improvement of the measured properties.
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