Chain damage effects of multi-spaced plates by reactive jet impact

Chain damage is a new phenomenon that occurs when a reactive jet impacts and penetrates multi-spaced plates. The reactive jet produces mechanical perforations on the spaced plates by its kinetic energy (KE), and then results in unusual chain rupturing effects and excessive structural damage on the s...

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Main Authors: Yuan-feng Zheng, Cheng-hai Su, Huan-guo Guo, Qing-bo Yu, Hai-fu Wang
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2021-04-01
Series:Defence Technology
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2214914719311122
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spelling doaj-387efcfe0aac44d1bbab1ec68894f9c52021-05-03T04:34:50ZengKeAi Communications Co., Ltd.Defence Technology2214-91472021-04-01172393404Chain damage effects of multi-spaced plates by reactive jet impactYuan-feng Zheng0Cheng-hai Su1Huan-guo Guo2Qing-bo Yu3Hai-fu Wang4Corresponding author.; State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing, 100081, ChinaState Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing, 100081, ChinaState Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing, 100081, ChinaState Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing, 100081, ChinaState Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing, 100081, ChinaChain damage is a new phenomenon that occurs when a reactive jet impacts and penetrates multi-spaced plates. The reactive jet produces mechanical perforations on the spaced plates by its kinetic energy (KE), and then results in unusual chain rupturing effects and excessive structural damage on the spaced plates by its deflagration reaction. In the present study, the chain damage behavior is initially demonstrated by experiments. The reactive liners, composed of 26 wt%Al and 74 wt% PTFE, are fabricated through a pressing and sintering process. Three reactive liner thicknesses of 0.08 CD, 0.10 CD and 0.12 CD (charge diameter) are chosen to carry out the chain damage experiments. The results show a chain rupturing phenomenon caused by reactive jet. The constant reaction delay time and the different penetration velocities of reactive jets from liners with different thicknesses result in the variation of the deflagration position, which consequently determines the number of ruptured plates behind the armor. Then, the finite-element code AUTODYN-3D has been used to simulate the kinetic energy only-induced rupturing effects on plates, based on the mechanism of behind armor debris (BAD). The significant discrepancies between simulations and experiments indicate that one enhanced damage mechanism, the behind armor blast (BAB), has acted on the ruptured plates. Finally, a theoretical model is used to consider the BAB-induced enhancement, and the analysis shows that the rupturing area on aluminum plates depends strongly upon the KE only-induced pre-perforations, the mass of reactive materials, and the thickness of plates.http://www.sciencedirect.com/science/article/pii/S2214914719311122Reactive materialsReactive jetChain damageBehind armor blast
collection DOAJ
language English
format Article
sources DOAJ
author Yuan-feng Zheng
Cheng-hai Su
Huan-guo Guo
Qing-bo Yu
Hai-fu Wang
spellingShingle Yuan-feng Zheng
Cheng-hai Su
Huan-guo Guo
Qing-bo Yu
Hai-fu Wang
Chain damage effects of multi-spaced plates by reactive jet impact
Defence Technology
Reactive materials
Reactive jet
Chain damage
Behind armor blast
author_facet Yuan-feng Zheng
Cheng-hai Su
Huan-guo Guo
Qing-bo Yu
Hai-fu Wang
author_sort Yuan-feng Zheng
title Chain damage effects of multi-spaced plates by reactive jet impact
title_short Chain damage effects of multi-spaced plates by reactive jet impact
title_full Chain damage effects of multi-spaced plates by reactive jet impact
title_fullStr Chain damage effects of multi-spaced plates by reactive jet impact
title_full_unstemmed Chain damage effects of multi-spaced plates by reactive jet impact
title_sort chain damage effects of multi-spaced plates by reactive jet impact
publisher KeAi Communications Co., Ltd.
series Defence Technology
issn 2214-9147
publishDate 2021-04-01
description Chain damage is a new phenomenon that occurs when a reactive jet impacts and penetrates multi-spaced plates. The reactive jet produces mechanical perforations on the spaced plates by its kinetic energy (KE), and then results in unusual chain rupturing effects and excessive structural damage on the spaced plates by its deflagration reaction. In the present study, the chain damage behavior is initially demonstrated by experiments. The reactive liners, composed of 26 wt%Al and 74 wt% PTFE, are fabricated through a pressing and sintering process. Three reactive liner thicknesses of 0.08 CD, 0.10 CD and 0.12 CD (charge diameter) are chosen to carry out the chain damage experiments. The results show a chain rupturing phenomenon caused by reactive jet. The constant reaction delay time and the different penetration velocities of reactive jets from liners with different thicknesses result in the variation of the deflagration position, which consequently determines the number of ruptured plates behind the armor. Then, the finite-element code AUTODYN-3D has been used to simulate the kinetic energy only-induced rupturing effects on plates, based on the mechanism of behind armor debris (BAD). The significant discrepancies between simulations and experiments indicate that one enhanced damage mechanism, the behind armor blast (BAB), has acted on the ruptured plates. Finally, a theoretical model is used to consider the BAB-induced enhancement, and the analysis shows that the rupturing area on aluminum plates depends strongly upon the KE only-induced pre-perforations, the mass of reactive materials, and the thickness of plates.
topic Reactive materials
Reactive jet
Chain damage
Behind armor blast
url http://www.sciencedirect.com/science/article/pii/S2214914719311122
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AT chenghaisu chaindamageeffectsofmultispacedplatesbyreactivejetimpact
AT huanguoguo chaindamageeffectsofmultispacedplatesbyreactivejetimpact
AT qingboyu chaindamageeffectsofmultispacedplatesbyreactivejetimpact
AT haifuwang chaindamageeffectsofmultispacedplatesbyreactivejetimpact
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