Numerical analysis on deformation and energy absorption characteristics of stiffened plate under explosive impact loads
<b>[Objectives]</b>In order to analyze the deformation and energy absorption characteristics of the stiffened plate under explosive impact loads,<b>[Methods]</b>the finite element analysis software LS-DYNA is used to simulate and calculate the deformation and energy absorptio...
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Editorial Office of Chinese Journal of Ship Research
2019-06-01
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doaj-54bb6b3a804d4c8bbfd7e1a24dce60252020-11-24T21:47:41ZengEditorial Office of Chinese Journal of Ship ResearchZhongguo Jianchuan Yanjiu1673-31851673-31852019-06-01143667410.19693/j.issn.1673-3185.01376201903009Numerical analysis on deformation and energy absorption characteristics of stiffened plate under explosive impact loadsChen Pengyu0Duan Hong1Hou Hailiang2Jiao Liqi3College of Naval Architecture and Ocean Engineering, Naval University of Engineering, Wuhan 430033, ChinaChina Ship Development and Design Center, Wuhan 430064, ChinaCollege of Naval Architecture and Ocean Engineering, Naval University of Engineering, Wuhan 430033, ChinaCollege of Naval Architecture and Ocean Engineering, Naval University of Engineering, Wuhan 430033, China<b>[Objectives]</b>In order to analyze the deformation and energy absorption characteristics of the stiffened plate under explosive impact loads,<b>[Methods]</b>the finite element analysis software LS-DYNA is used to simulate and calculate the deformation and energy absorption of the clamped stiffened plate under the explosive impact loads. The one-way stiffened plate is taken as the study object,the deformation and energy absorption characteristics are analyzed,the overall deflection and the local deflection of the stiffened plate are obtained,the ratio of these two deflections is used to indicate the proportional relationship between the local energy absorption and the overall energy absorption of the stiffened plate.<b>[Results]</b>The results show that the overall deformation of the stiffened plate decreases as the relative stiffness increases under certain explosive impact loads. The ratio of the local deflection to the overall deflection increases as the relative stiffness increases. The ratio of the local energy absorption to the overall deformation and energy absorption increases as the relative stiffness increases.<b>[Conclusions]</b>The dimensionless relative stiffness and deflection ratio proposed in this paper can provide study references and ideas for the ship anti-explosion and venting structure design.http://www.ship-research.com/EN/Y2019/V14/I3/66explosive impactstiffened platelocal energy absorptionnumerical simulation |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Chen Pengyu Duan Hong Hou Hailiang Jiao Liqi |
spellingShingle |
Chen Pengyu Duan Hong Hou Hailiang Jiao Liqi Numerical analysis on deformation and energy absorption characteristics of stiffened plate under explosive impact loads Zhongguo Jianchuan Yanjiu explosive impact stiffened plate local energy absorption numerical simulation |
author_facet |
Chen Pengyu Duan Hong Hou Hailiang Jiao Liqi |
author_sort |
Chen Pengyu |
title |
Numerical analysis on deformation and energy absorption characteristics of stiffened plate under explosive impact loads |
title_short |
Numerical analysis on deformation and energy absorption characteristics of stiffened plate under explosive impact loads |
title_full |
Numerical analysis on deformation and energy absorption characteristics of stiffened plate under explosive impact loads |
title_fullStr |
Numerical analysis on deformation and energy absorption characteristics of stiffened plate under explosive impact loads |
title_full_unstemmed |
Numerical analysis on deformation and energy absorption characteristics of stiffened plate under explosive impact loads |
title_sort |
numerical analysis on deformation and energy absorption characteristics of stiffened plate under explosive impact loads |
publisher |
Editorial Office of Chinese Journal of Ship Research |
series |
Zhongguo Jianchuan Yanjiu |
issn |
1673-3185 1673-3185 |
publishDate |
2019-06-01 |
description |
<b>[Objectives]</b>In order to analyze the deformation and energy absorption characteristics of the stiffened plate under explosive impact loads,<b>[Methods]</b>the finite element analysis software LS-DYNA is used to simulate and calculate the deformation and energy absorption of the clamped stiffened plate under the explosive impact loads. The one-way stiffened plate is taken as the study object,the deformation and energy absorption characteristics are analyzed,the overall deflection and the local deflection of the stiffened plate are obtained,the ratio of these two deflections is used to indicate the proportional relationship between the local energy absorption and the overall energy absorption of the stiffened plate.<b>[Results]</b>The results show that the overall deformation of the stiffened plate decreases as the relative stiffness increases under certain explosive impact loads. The ratio of the local deflection to the overall deflection increases as the relative stiffness increases. The ratio of the local energy absorption to the overall deformation and energy absorption increases as the relative stiffness increases.<b>[Conclusions]</b>The dimensionless relative stiffness and deflection ratio proposed in this paper can provide study references and ideas for the ship anti-explosion and venting structure design. |
topic |
explosive impact stiffened plate local energy absorption numerical simulation |
url |
http://www.ship-research.com/EN/Y2019/V14/I3/66 |
work_keys_str_mv |
AT chenpengyu numericalanalysisondeformationandenergyabsorptioncharacteristicsofstiffenedplateunderexplosiveimpactloads AT duanhong numericalanalysisondeformationandenergyabsorptioncharacteristicsofstiffenedplateunderexplosiveimpactloads AT houhailiang numericalanalysisondeformationandenergyabsorptioncharacteristicsofstiffenedplateunderexplosiveimpactloads AT jiaoliqi numericalanalysisondeformationandenergyabsorptioncharacteristicsofstiffenedplateunderexplosiveimpactloads |
_version_ |
1725896389464948736 |