Research on Electromagnetic Radiation Mechanism during Detonation of Energetic Material

In the process of deflagration of energetic materials, strong electromagnetic radiation is generated, which causes the surrounding electronic equipment to fail to work normally. To solve this problem, it is necessary to clarify the mechanism of electromagnetic radiation generated by energetic materi...

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Main Authors: Yuanbo Cui, Deren Kong, Jian Jiang, Shang Gao
Format: Article
Language:English
Published: MDPI AG 2022-04-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/22/7/2765
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author Yuanbo Cui
Deren Kong
Jian Jiang
Shang Gao
author_facet Yuanbo Cui
Deren Kong
Jian Jiang
Shang Gao
author_sort Yuanbo Cui
collection DOAJ
description In the process of deflagration of energetic materials, strong electromagnetic radiation is generated, which causes the surrounding electronic equipment to fail to work normally. To solve this problem, it is necessary to clarify the mechanism of electromagnetic radiation generated by energetic materials. The mechanism of plasma changed by the deflagration of energetic materials is an important topic in the aerospace and geophysics fields. The academic community holds two main viewpoints on the mechanism of electromagnetic radiation generated by energetic materials: one is that the solid material is squeezed and deformed during the deflagration of energetic materials, and the charges of different polarities rub in space to form effective electric dipoles, which eventually generate electromagnetic radiation. Another view is that the deflagration of energetic materials causes the temperature of the medium to rise sharply, and bremsstrahlung is formed during the compression and diffusion of the high-temperature wave front, resulting in the generation of electromagnetic radiation. This paper, based on theoretical analysis and experimental data, holds the view that electromagnetic radiation is generated by the high-temperature thermal effect. It studies the relationship between temperature and electromagnetic radiation and obtains quantitative analysis conclusions.
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spelling doaj.art-b19d3bf1cc9c4d1cbdc598d7b2ec5fd92023-12-01T00:05:12ZengMDPI AGSensors1424-82202022-04-01227276510.3390/s22072765Research on Electromagnetic Radiation Mechanism during Detonation of Energetic MaterialYuanbo Cui0Deren Kong1Jian Jiang2Shang Gao3School of Mechanical Engineering, Nanjing University of Science and Technology, Nanjing 210094, ChinaSchool of Mechanical Engineering, Nanjing University of Science and Technology, Nanjing 210094, ChinaSchool of Mechanical Engineering, Nanjing University of Science and Technology, Nanjing 210094, ChinaSchool of Mechanical Engineering, Nanjing University of Science and Technology, Nanjing 210094, ChinaIn the process of deflagration of energetic materials, strong electromagnetic radiation is generated, which causes the surrounding electronic equipment to fail to work normally. To solve this problem, it is necessary to clarify the mechanism of electromagnetic radiation generated by energetic materials. The mechanism of plasma changed by the deflagration of energetic materials is an important topic in the aerospace and geophysics fields. The academic community holds two main viewpoints on the mechanism of electromagnetic radiation generated by energetic materials: one is that the solid material is squeezed and deformed during the deflagration of energetic materials, and the charges of different polarities rub in space to form effective electric dipoles, which eventually generate electromagnetic radiation. Another view is that the deflagration of energetic materials causes the temperature of the medium to rise sharply, and bremsstrahlung is formed during the compression and diffusion of the high-temperature wave front, resulting in the generation of electromagnetic radiation. This paper, based on theoretical analysis and experimental data, holds the view that electromagnetic radiation is generated by the high-temperature thermal effect. It studies the relationship between temperature and electromagnetic radiation and obtains quantitative analysis conclusions.https://www.mdpi.com/1424-8220/22/7/2765energetic materialplasmadetonationelectromagnetismhigh temperature
spellingShingle Yuanbo Cui
Deren Kong
Jian Jiang
Shang Gao
Research on Electromagnetic Radiation Mechanism during Detonation of Energetic Material
Sensors
energetic material
plasma
detonation
electromagnetism
high temperature
title Research on Electromagnetic Radiation Mechanism during Detonation of Energetic Material
title_full Research on Electromagnetic Radiation Mechanism during Detonation of Energetic Material
title_fullStr Research on Electromagnetic Radiation Mechanism during Detonation of Energetic Material
title_full_unstemmed Research on Electromagnetic Radiation Mechanism during Detonation of Energetic Material
title_short Research on Electromagnetic Radiation Mechanism during Detonation of Energetic Material
title_sort research on electromagnetic radiation mechanism during detonation of energetic material
topic energetic material
plasma
detonation
electromagnetism
high temperature
url https://www.mdpi.com/1424-8220/22/7/2765
work_keys_str_mv AT yuanbocui researchonelectromagneticradiationmechanismduringdetonationofenergeticmaterial
AT derenkong researchonelectromagneticradiationmechanismduringdetonationofenergeticmaterial
AT jianjiang researchonelectromagneticradiationmechanismduringdetonationofenergeticmaterial
AT shanggao researchonelectromagneticradiationmechanismduringdetonationofenergeticmaterial