Dynamic Characteristics of the Rotating Penetrating Missile for Attacking Warship Vertically

The paper aimed to analyze the dynamic response of a new type penetrating missile in rotary attacking warship. The dynamic response characteristics of the penetrator become more complex when attacking the ship target due to the special materials of the deck such as stiffeners. Therefore, different f...

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Main Authors: Dong-ze Qin, Pei-hang Li
Format: Article
Language:English
Published: Wiley 2021-01-01
Series:Journal of Engineering
Online Access:http://dx.doi.org/10.1155/2021/9953866
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author Dong-ze Qin
Pei-hang Li
author_facet Dong-ze Qin
Pei-hang Li
author_sort Dong-ze Qin
collection DOAJ
description The paper aimed to analyze the dynamic response of a new type penetrating missile in rotary attacking warship. The dynamic response characteristics of the penetrator become more complex when attacking the ship target due to the special materials of the deck such as stiffeners. Therefore, different from attacking other targets, the article reveals the design rules of precession penetration ammunition and fuze. A physical model of the missile target is established to study the numerical simulation of the penetration process of rotating projectile into a stiffened target based on finite element analysis (FEA) software. We studied the dynamic response characteristics of different projectile positions, rotational speeds, and positions that act in precession penetration. As experimental results show, the residual velocity of the precession penetrator decreases with the distance between the projectile point and stiffener. When the projectile penetrates the second target plate, the acceleration is greater than that in the first layer. It is proved that the deflection angle of the shell body is affected by comprehensive factors. The rotational speed in the projectile has less contribution to precession penetration ammunition. In addition, the change of acceleration in the missile’s central section can be significantly perceived in the direction perpendicular to the penetration direction.
format Article
id doaj-art-9a71b785acd440d39d7d5c3571de0703
institution Kabale University
issn 2314-4904
2314-4912
language English
publishDate 2021-01-01
publisher Wiley
record_format Article
series Journal of Engineering
spelling doaj-art-9a71b785acd440d39d7d5c3571de07032025-02-03T01:25:13ZengWileyJournal of Engineering2314-49042314-49122021-01-01202110.1155/2021/99538669953866Dynamic Characteristics of the Rotating Penetrating Missile for Attacking Warship VerticallyDong-ze Qin0Pei-hang Li1School of Mechatronic Engineering, North University of China, Taiyuan 030051, ChinaSchool of Mechatronic Engineering, North University of China, Taiyuan 030051, ChinaThe paper aimed to analyze the dynamic response of a new type penetrating missile in rotary attacking warship. The dynamic response characteristics of the penetrator become more complex when attacking the ship target due to the special materials of the deck such as stiffeners. Therefore, different from attacking other targets, the article reveals the design rules of precession penetration ammunition and fuze. A physical model of the missile target is established to study the numerical simulation of the penetration process of rotating projectile into a stiffened target based on finite element analysis (FEA) software. We studied the dynamic response characteristics of different projectile positions, rotational speeds, and positions that act in precession penetration. As experimental results show, the residual velocity of the precession penetrator decreases with the distance between the projectile point and stiffener. When the projectile penetrates the second target plate, the acceleration is greater than that in the first layer. It is proved that the deflection angle of the shell body is affected by comprehensive factors. The rotational speed in the projectile has less contribution to precession penetration ammunition. In addition, the change of acceleration in the missile’s central section can be significantly perceived in the direction perpendicular to the penetration direction.http://dx.doi.org/10.1155/2021/9953866
spellingShingle Dong-ze Qin
Pei-hang Li
Dynamic Characteristics of the Rotating Penetrating Missile for Attacking Warship Vertically
Journal of Engineering
title Dynamic Characteristics of the Rotating Penetrating Missile for Attacking Warship Vertically
title_full Dynamic Characteristics of the Rotating Penetrating Missile for Attacking Warship Vertically
title_fullStr Dynamic Characteristics of the Rotating Penetrating Missile for Attacking Warship Vertically
title_full_unstemmed Dynamic Characteristics of the Rotating Penetrating Missile for Attacking Warship Vertically
title_short Dynamic Characteristics of the Rotating Penetrating Missile for Attacking Warship Vertically
title_sort dynamic characteristics of the rotating penetrating missile for attacking warship vertically
url http://dx.doi.org/10.1155/2021/9953866
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AT peihangli dynamiccharacteristicsoftherotatingpenetratingmissileforattackingwarshipvertically