Cargando…

Gap initiation with 20.35 mm: an initiator integrating the Al/CuO(x) multilayer film and traditional electronic plug to enhance the ignition ability

In order to enhance the ignition ability and reliability of traditional electronic initiators, a novel electronic initiator has been designed to integrate with a nanothermite multilayer film and an electrode plug. The Al/CuO(x) nanothermite multilayer film with different thickness is deposited on th...

Descripción completa

Detalles Bibliográficos
Autores principales: Ni, Debin, Yu, Guoqiang, Shi, Shengnan, Xu, Dong, Chu, Enyi, Yu, Chunpei, Zhen, Zilong, Zhang, Wenchao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6549997/
https://www.ncbi.nlm.nih.gov/pubmed/31218024
http://dx.doi.org/10.1098/rsos.181686
_version_ 1783424110594883584
author Ni, Debin
Yu, Guoqiang
Shi, Shengnan
Xu, Dong
Chu, Enyi
Yu, Chunpei
Zhen, Zilong
Zhang, Wenchao
author_facet Ni, Debin
Yu, Guoqiang
Shi, Shengnan
Xu, Dong
Chu, Enyi
Yu, Chunpei
Zhen, Zilong
Zhang, Wenchao
author_sort Ni, Debin
collection PubMed
description In order to enhance the ignition ability and reliability of traditional electronic initiators, a novel electronic initiator has been designed to integrate with a nanothermite multilayer film and an electrode plug. The Al/CuO(x) nanothermite multilayer film with different thickness is deposited on the surface of the electrode plug by magnetron sputtering which uses Pt–W wire as electronic resistance. The exothermicity of Al/CuO(x) nanothermite multilayer film is so favourable that the ignition ability of electronic initiator is significantly improved. The full firing-voltage sensitivity of the electronic initiator is 10.8 V. The thickness of Al/CuO(x) multilayer film has negligible effects on the ignition time and ignition energy, but leads to great impacts on the function time, the maximum length of combustion flame and ignition ability. The electrical ignition experiments have exhibited outstanding ignition ability, since the electronic initiator can easily fire the insensitive ignition composition of boron-potassium nitrate (B-KNO(3)) tablet in a gap of 20.35 mm. It proves that this novel proposal of remoulding the traditional electronic ignition devices will distinctly improve the ignition ability and reliability of electronic initiator.
format Online
Article
Text
id pubmed-6549997
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher The Royal Society
record_format MEDLINE/PubMed
spelling pubmed-65499972019-06-19 Gap initiation with 20.35 mm: an initiator integrating the Al/CuO(x) multilayer film and traditional electronic plug to enhance the ignition ability Ni, Debin Yu, Guoqiang Shi, Shengnan Xu, Dong Chu, Enyi Yu, Chunpei Zhen, Zilong Zhang, Wenchao R Soc Open Sci Engineering In order to enhance the ignition ability and reliability of traditional electronic initiators, a novel electronic initiator has been designed to integrate with a nanothermite multilayer film and an electrode plug. The Al/CuO(x) nanothermite multilayer film with different thickness is deposited on the surface of the electrode plug by magnetron sputtering which uses Pt–W wire as electronic resistance. The exothermicity of Al/CuO(x) nanothermite multilayer film is so favourable that the ignition ability of electronic initiator is significantly improved. The full firing-voltage sensitivity of the electronic initiator is 10.8 V. The thickness of Al/CuO(x) multilayer film has negligible effects on the ignition time and ignition energy, but leads to great impacts on the function time, the maximum length of combustion flame and ignition ability. The electrical ignition experiments have exhibited outstanding ignition ability, since the electronic initiator can easily fire the insensitive ignition composition of boron-potassium nitrate (B-KNO(3)) tablet in a gap of 20.35 mm. It proves that this novel proposal of remoulding the traditional electronic ignition devices will distinctly improve the ignition ability and reliability of electronic initiator. The Royal Society 2019-05-01 /pmc/articles/PMC6549997/ /pubmed/31218024 http://dx.doi.org/10.1098/rsos.181686 Text en © 2019 The Authors. http://creativecommons.org/licenses/by/4.0/ Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/, which permits unrestricted use, provided the original author and source are credited.
spellingShingle Engineering
Ni, Debin
Yu, Guoqiang
Shi, Shengnan
Xu, Dong
Chu, Enyi
Yu, Chunpei
Zhen, Zilong
Zhang, Wenchao
Gap initiation with 20.35 mm: an initiator integrating the Al/CuO(x) multilayer film and traditional electronic plug to enhance the ignition ability
title Gap initiation with 20.35 mm: an initiator integrating the Al/CuO(x) multilayer film and traditional electronic plug to enhance the ignition ability
title_full Gap initiation with 20.35 mm: an initiator integrating the Al/CuO(x) multilayer film and traditional electronic plug to enhance the ignition ability
title_fullStr Gap initiation with 20.35 mm: an initiator integrating the Al/CuO(x) multilayer film and traditional electronic plug to enhance the ignition ability
title_full_unstemmed Gap initiation with 20.35 mm: an initiator integrating the Al/CuO(x) multilayer film and traditional electronic plug to enhance the ignition ability
title_short Gap initiation with 20.35 mm: an initiator integrating the Al/CuO(x) multilayer film and traditional electronic plug to enhance the ignition ability
title_sort gap initiation with 20.35 mm: an initiator integrating the al/cuo(x) multilayer film and traditional electronic plug to enhance the ignition ability
topic Engineering
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6549997/
https://www.ncbi.nlm.nih.gov/pubmed/31218024
http://dx.doi.org/10.1098/rsos.181686
work_keys_str_mv AT nidebin gapinitiationwith2035mmaninitiatorintegratingthealcuoxmultilayerfilmandtraditionalelectronicplugtoenhancetheignitionability
AT yuguoqiang gapinitiationwith2035mmaninitiatorintegratingthealcuoxmultilayerfilmandtraditionalelectronicplugtoenhancetheignitionability
AT shishengnan gapinitiationwith2035mmaninitiatorintegratingthealcuoxmultilayerfilmandtraditionalelectronicplugtoenhancetheignitionability
AT xudong gapinitiationwith2035mmaninitiatorintegratingthealcuoxmultilayerfilmandtraditionalelectronicplugtoenhancetheignitionability
AT chuenyi gapinitiationwith2035mmaninitiatorintegratingthealcuoxmultilayerfilmandtraditionalelectronicplugtoenhancetheignitionability
AT yuchunpei gapinitiationwith2035mmaninitiatorintegratingthealcuoxmultilayerfilmandtraditionalelectronicplugtoenhancetheignitionability
AT zhenzilong gapinitiationwith2035mmaninitiatorintegratingthealcuoxmultilayerfilmandtraditionalelectronicplugtoenhancetheignitionability
AT zhangwenchao gapinitiationwith2035mmaninitiatorintegratingthealcuoxmultilayerfilmandtraditionalelectronicplugtoenhancetheignitionability