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A facile and effective strategy for modifying combustion of Zr/KClO4 via adding Si.

Authors :
Zhao, Wanjun
Hui, Yujie
Ma, Xiaohang
Liu, Zhigang
Le, Wei
Wei, Ziting
Jiao, Qingjie
He, Qianqian
Source :
Ceramics International. Nov2024:Part A, Vol. 50 Issue 22, p45683-45691. 9p.
Publication Year :
2024

Abstract

As a commonly applied ignition composition, Zr/KClO 4 has attracted various interests and plenty of efforts have been made to improve the combustion performance. In this study, Si nanoparticles were incorporated into Zr/KClO 4 by sonication. Around 2.5× peak pressure and 9.2× reactivity were achieved by Si/50%Zr/KClO 4 when compared to Zr/KClO 4. In addition, the peak pressure and pressurization rate of Si/Zr/KClO 4 ternary systems are all superior to ones of both Zr/KClO 4 and Si/KClO 4 binary systems. The synergetic effect of Si/Zr/KClO 4 is a combination of shorter ignition delay of Zr/KClO 4 and more gas production of Si/KClO 4 , which is also reflected on the higher flame propagation rate of Si/Zr-based thermites than composites with pure Si or Zr as the fuel. Meanwhile, the heat release during the redox reaction has been measured. The results show ∼700–1000 J/g higher energy release than Zr/KClO 4 , and higher combustion efficiency can be attained by ternary systems than binary ones. Thus, adding Si powders is an effective way to improve the energetic behavior of Zr/KClO 4 ignition composition, and Si/Zr/KClO 4 ternary composites can be a promising candidate for application in pyrotechnics. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02728842
Volume :
50
Issue :
22
Database :
Academic Search Index
Journal :
Ceramics International
Publication Type :
Academic Journal
Accession number :
180334206
Full Text :
https://doi.org/10.1016/j.ceramint.2024.08.408