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Energy Release Characteristics and Reaction Mechanism of PTFE/Al/Bi(2)O(3) Reactive Materials under Drop-Hammer Test

To obtain the influence of the Bi(2)O(3) particle content of a PTFE/Al/Bi(2)O(3) reactive material (later referred to as PAB) on its shock-induced chemical reaction (SICR) characteristics, five kinds of PAB with different Bi(2)O(3) contents were prepared; the reaction process in a drop-hammer test,...

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Autores principales: Jiang, Chunlan, Hu, Rong, Mao, Liang, Wang, Zaicheng, Xu, Wenyu, Hu, Wanxiang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9003446/
https://www.ncbi.nlm.nih.gov/pubmed/35406287
http://dx.doi.org/10.3390/polym14071415
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author Jiang, Chunlan
Hu, Rong
Mao, Liang
Wang, Zaicheng
Xu, Wenyu
Hu, Wanxiang
author_facet Jiang, Chunlan
Hu, Rong
Mao, Liang
Wang, Zaicheng
Xu, Wenyu
Hu, Wanxiang
author_sort Jiang, Chunlan
collection PubMed
description To obtain the influence of the Bi(2)O(3) particle content of a PTFE/Al/Bi(2)O(3) reactive material (later referred to as PAB) on its shock-induced chemical reaction (SICR) characteristics, five kinds of PAB with different Bi(2)O(3) contents were prepared; the reaction process in a drop-hammer test, recorded using a high-speed camera, was analyzed. The ignition and reaction mechanisms of PAB under mechanical impact were analyzed based on the thermochemical reaction characteristics and the microstructure. The results show that with an increase in Bi(2)O(3) content, the shock-induced chemical reaction duration and the sensitivity of PAB increase, and then decrease. When the Bi(2)O(3) content is 9%, the impact sensitivity is the highest and the reaction duration is the longest. The heating at the crack tip is responsible for PAB ignition under long-pulse low-velocity impact. During ignition, PAB undergoes several physicochemical changes such as the melting of PTFE, a PTFE/Bi(2)O(3) reaction, an Al/Bi(2)O(3) reaction, pyrolysis of the melted PTFE, and a C(2)F(4)/Al reaction; moreover, the presence of Bi(2)O(3) decreases the excitation threshold of the reactive material, which facilitates the propagation of the reaction and improves the degree of the reaction and overall energy release of the reactive material.
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spelling pubmed-90034462022-04-13 Energy Release Characteristics and Reaction Mechanism of PTFE/Al/Bi(2)O(3) Reactive Materials under Drop-Hammer Test Jiang, Chunlan Hu, Rong Mao, Liang Wang, Zaicheng Xu, Wenyu Hu, Wanxiang Polymers (Basel) Article To obtain the influence of the Bi(2)O(3) particle content of a PTFE/Al/Bi(2)O(3) reactive material (later referred to as PAB) on its shock-induced chemical reaction (SICR) characteristics, five kinds of PAB with different Bi(2)O(3) contents were prepared; the reaction process in a drop-hammer test, recorded using a high-speed camera, was analyzed. The ignition and reaction mechanisms of PAB under mechanical impact were analyzed based on the thermochemical reaction characteristics and the microstructure. The results show that with an increase in Bi(2)O(3) content, the shock-induced chemical reaction duration and the sensitivity of PAB increase, and then decrease. When the Bi(2)O(3) content is 9%, the impact sensitivity is the highest and the reaction duration is the longest. The heating at the crack tip is responsible for PAB ignition under long-pulse low-velocity impact. During ignition, PAB undergoes several physicochemical changes such as the melting of PTFE, a PTFE/Bi(2)O(3) reaction, an Al/Bi(2)O(3) reaction, pyrolysis of the melted PTFE, and a C(2)F(4)/Al reaction; moreover, the presence of Bi(2)O(3) decreases the excitation threshold of the reactive material, which facilitates the propagation of the reaction and improves the degree of the reaction and overall energy release of the reactive material. MDPI 2022-03-30 /pmc/articles/PMC9003446/ /pubmed/35406287 http://dx.doi.org/10.3390/polym14071415 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jiang, Chunlan
Hu, Rong
Mao, Liang
Wang, Zaicheng
Xu, Wenyu
Hu, Wanxiang
Energy Release Characteristics and Reaction Mechanism of PTFE/Al/Bi(2)O(3) Reactive Materials under Drop-Hammer Test
title Energy Release Characteristics and Reaction Mechanism of PTFE/Al/Bi(2)O(3) Reactive Materials under Drop-Hammer Test
title_full Energy Release Characteristics and Reaction Mechanism of PTFE/Al/Bi(2)O(3) Reactive Materials under Drop-Hammer Test
title_fullStr Energy Release Characteristics and Reaction Mechanism of PTFE/Al/Bi(2)O(3) Reactive Materials under Drop-Hammer Test
title_full_unstemmed Energy Release Characteristics and Reaction Mechanism of PTFE/Al/Bi(2)O(3) Reactive Materials under Drop-Hammer Test
title_short Energy Release Characteristics and Reaction Mechanism of PTFE/Al/Bi(2)O(3) Reactive Materials under Drop-Hammer Test
title_sort energy release characteristics and reaction mechanism of ptfe/al/bi(2)o(3) reactive materials under drop-hammer test
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9003446/
https://www.ncbi.nlm.nih.gov/pubmed/35406287
http://dx.doi.org/10.3390/polym14071415
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