Research on Test Method of Ignition Temperature of Electric Explosive Device under Electromagnetic Pulse

The safety and reliability of electric explosive device, as the most sensitive initiating energy for igniting powder and explosive, directly impact those of weapon system. The safety and reliability of the electric explosion device were determined by the ignition temperature of the electric explosio...

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Main Authors: B. Wang, Y. W. Sun, G. G. Wei, X. T. Wang, H. M. Gao
Format: Article
Language:English
Published: Spolecnost pro radioelektronicke inzenyrstvi 2021-09-01
Series:Radioengineering
Subjects:
Online Access:https://www.radioeng.cz/fulltexts/2021/21_03_0510_0516.pdf
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spelling doaj-8e50364edee7438f88e5cfff98c9e20a2021-09-15T11:15:55ZengSpolecnost pro radioelektronicke inzenyrstviRadioengineering1210-25122021-09-01303510516Research on Test Method of Ignition Temperature of Electric Explosive Device under Electromagnetic PulseB. WangY. W. SunG. G. WeiX. T. WangH. M. GaoThe safety and reliability of electric explosive device, as the most sensitive initiating energy for igniting powder and explosive, directly impact those of weapon system. The safety and reliability of the electric explosion device were determined by the ignition temperature of the electric explosion device. Based on the conservation of energy and Fourier's law, a mathematical model was built for the relationship between the temperature rise of the bridge line and the amplitude of the electromagnetic pulse. In the experiment, the semiconductor band gap temperature measurement technology was used, and the correctness of the mathematical model was verified by altering the amplitude of the pulse signal. Then, the 50% ignition excitation of the device was determined with the Bruceton method and the statistical theory. According to the built mathematical model, the ignition temperature of the electric explosion device was determined as 412 ℃. In this paper, the measurement method of the ignition temperature of the electric explosive device was developed, which could act as a technical means for the safety assessment of the electromagnetic environment of the weapon system. Moreover, this method is critical to improve the safety and survivability of the weapon system in the complex electromagnetic environment.https://www.radioeng.cz/fulltexts/2021/21_03_0510_0516.pdfelectric explosive deviceelectromagnetic pulseweaponignition temperatureelectromagnetic environment
collection DOAJ
language English
format Article
sources DOAJ
author B. Wang
Y. W. Sun
G. G. Wei
X. T. Wang
H. M. Gao
spellingShingle B. Wang
Y. W. Sun
G. G. Wei
X. T. Wang
H. M. Gao
Research on Test Method of Ignition Temperature of Electric Explosive Device under Electromagnetic Pulse
Radioengineering
electric explosive device
electromagnetic pulse
weapon
ignition temperature
electromagnetic environment
author_facet B. Wang
Y. W. Sun
G. G. Wei
X. T. Wang
H. M. Gao
author_sort B. Wang
title Research on Test Method of Ignition Temperature of Electric Explosive Device under Electromagnetic Pulse
title_short Research on Test Method of Ignition Temperature of Electric Explosive Device under Electromagnetic Pulse
title_full Research on Test Method of Ignition Temperature of Electric Explosive Device under Electromagnetic Pulse
title_fullStr Research on Test Method of Ignition Temperature of Electric Explosive Device under Electromagnetic Pulse
title_full_unstemmed Research on Test Method of Ignition Temperature of Electric Explosive Device under Electromagnetic Pulse
title_sort research on test method of ignition temperature of electric explosive device under electromagnetic pulse
publisher Spolecnost pro radioelektronicke inzenyrstvi
series Radioengineering
issn 1210-2512
publishDate 2021-09-01
description The safety and reliability of electric explosive device, as the most sensitive initiating energy for igniting powder and explosive, directly impact those of weapon system. The safety and reliability of the electric explosion device were determined by the ignition temperature of the electric explosion device. Based on the conservation of energy and Fourier's law, a mathematical model was built for the relationship between the temperature rise of the bridge line and the amplitude of the electromagnetic pulse. In the experiment, the semiconductor band gap temperature measurement technology was used, and the correctness of the mathematical model was verified by altering the amplitude of the pulse signal. Then, the 50% ignition excitation of the device was determined with the Bruceton method and the statistical theory. According to the built mathematical model, the ignition temperature of the electric explosion device was determined as 412 ℃. In this paper, the measurement method of the ignition temperature of the electric explosive device was developed, which could act as a technical means for the safety assessment of the electromagnetic environment of the weapon system. Moreover, this method is critical to improve the safety and survivability of the weapon system in the complex electromagnetic environment.
topic electric explosive device
electromagnetic pulse
weapon
ignition temperature
electromagnetic environment
url https://www.radioeng.cz/fulltexts/2021/21_03_0510_0516.pdf
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