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A comparative study on the mechanical and reactive behavior of three fluorine-containing thermites

Thermite serves as a kind of representative energetic material, which is extensively applied in the civil and military fields. In this paper, PTFE/Al/Fe(2)O(3), PTFE/Al/MnO(2) and PTFE/Al/MoO(3), solid fluorine-containing thermite with different PTFE content, were successfully fabricated by referrin...

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Autores principales: Wu, Jiaxiang, Liu, Qiang, Feng, Bin, Wu, Shuangzhang, Zhang, Sheng, Gao, Zhenru, Yin, Qin, Li, Yuchun, Xiao, Liming, Huang, Junyi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9049232/
https://www.ncbi.nlm.nih.gov/pubmed/35497435
http://dx.doi.org/10.1039/d0ra00044b
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author Wu, Jiaxiang
Liu, Qiang
Feng, Bin
Wu, Shuangzhang
Zhang, Sheng
Gao, Zhenru
Yin, Qin
Li, Yuchun
Xiao, Liming
Huang, Junyi
author_facet Wu, Jiaxiang
Liu, Qiang
Feng, Bin
Wu, Shuangzhang
Zhang, Sheng
Gao, Zhenru
Yin, Qin
Li, Yuchun
Xiao, Liming
Huang, Junyi
author_sort Wu, Jiaxiang
collection PubMed
description Thermite serves as a kind of representative energetic material, which is extensively applied in the civil and military fields. In this paper, PTFE/Al/Fe(2)O(3), PTFE/Al/MnO(2) and PTFE/Al/MoO(3), solid fluorine-containing thermite with different PTFE content, were successfully fabricated by referring to the traditional thermite and adding PTFE as a binder or matrix. Quasi-static compression tests were performed to investigate the mechanical and reactive behavior of fluorine-containing thermite. SEM and XRD were employed to analyze and characterize the energetic composites and reaction residuals. The results show that all types of fluorine-containing thermite exhibited different mechanical behavior. PTFE/Al/MnO(2) exhibited the lowest yield strength and strain hardening modulus, but the highest compressive strength and toughness. With the increase of PTFE content, the strength of fluorine-containing thermite improved. No reaction occurred when the PTFE content was 60 vol%, while fluorine-containing thermite with a PTFE content of 80 vol% experienced a severe exothermic reaction under quasi-static compression. The ignition of PTFE/Al/MoO(3) and PTFE/Al/Fe(2)O(3) actually attributed to the reaction of Al and PTFE, and the reaction between Al and Fe(2)O(3) or MoO(3) was not excited due to the insufficient input energy. The thermite reaction between Al and MnO(2,) as well as the reaction of MnO(2) and PTFE, was induced because PTFE/Al/MnO(2) possessed excellent ductility and absorbed the most energy during compression, accompanied with the production of Mn and MnF(2).
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spelling pubmed-90492322022-04-29 A comparative study on the mechanical and reactive behavior of three fluorine-containing thermites Wu, Jiaxiang Liu, Qiang Feng, Bin Wu, Shuangzhang Zhang, Sheng Gao, Zhenru Yin, Qin Li, Yuchun Xiao, Liming Huang, Junyi RSC Adv Chemistry Thermite serves as a kind of representative energetic material, which is extensively applied in the civil and military fields. In this paper, PTFE/Al/Fe(2)O(3), PTFE/Al/MnO(2) and PTFE/Al/MoO(3), solid fluorine-containing thermite with different PTFE content, were successfully fabricated by referring to the traditional thermite and adding PTFE as a binder or matrix. Quasi-static compression tests were performed to investigate the mechanical and reactive behavior of fluorine-containing thermite. SEM and XRD were employed to analyze and characterize the energetic composites and reaction residuals. The results show that all types of fluorine-containing thermite exhibited different mechanical behavior. PTFE/Al/MnO(2) exhibited the lowest yield strength and strain hardening modulus, but the highest compressive strength and toughness. With the increase of PTFE content, the strength of fluorine-containing thermite improved. No reaction occurred when the PTFE content was 60 vol%, while fluorine-containing thermite with a PTFE content of 80 vol% experienced a severe exothermic reaction under quasi-static compression. The ignition of PTFE/Al/MoO(3) and PTFE/Al/Fe(2)O(3) actually attributed to the reaction of Al and PTFE, and the reaction between Al and Fe(2)O(3) or MoO(3) was not excited due to the insufficient input energy. The thermite reaction between Al and MnO(2,) as well as the reaction of MnO(2) and PTFE, was induced because PTFE/Al/MnO(2) possessed excellent ductility and absorbed the most energy during compression, accompanied with the production of Mn and MnF(2). The Royal Society of Chemistry 2020-02-04 /pmc/articles/PMC9049232/ /pubmed/35497435 http://dx.doi.org/10.1039/d0ra00044b Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Wu, Jiaxiang
Liu, Qiang
Feng, Bin
Wu, Shuangzhang
Zhang, Sheng
Gao, Zhenru
Yin, Qin
Li, Yuchun
Xiao, Liming
Huang, Junyi
A comparative study on the mechanical and reactive behavior of three fluorine-containing thermites
title A comparative study on the mechanical and reactive behavior of three fluorine-containing thermites
title_full A comparative study on the mechanical and reactive behavior of three fluorine-containing thermites
title_fullStr A comparative study on the mechanical and reactive behavior of three fluorine-containing thermites
title_full_unstemmed A comparative study on the mechanical and reactive behavior of three fluorine-containing thermites
title_short A comparative study on the mechanical and reactive behavior of three fluorine-containing thermites
title_sort comparative study on the mechanical and reactive behavior of three fluorine-containing thermites
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9049232/
https://www.ncbi.nlm.nih.gov/pubmed/35497435
http://dx.doi.org/10.1039/d0ra00044b
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