Shock mitigation properties of compound claddings subjected to underwater explosion loads
<b>[Objectives]</b> To improve the shock resistance ability of submarines, <b>[Methods]</b> an anti-shock cladding for submarines which consists of a compound coating with rubber and plastic foam is proposed on the basis of the shock environment of submarines. The numerical m...
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doaj-245429d65e3a4a16abf844ecbb14099f2020-11-25T00:31:50ZengEditorial Office of Chinese Journal of Ship ResearchZhongguo Jianchuan Yanjiu1673-31851673-31852018-06-01133465210.19693/j.issn.1673-3185.01203201803006Shock mitigation properties of compound claddings subjected to underwater explosion loadsYIN Caiyu0JIN Zeyu1CHEN Yong2HUA Hongxing3State Key Laboratory of Mechanical System and Vibration, Shanghai Jiao Tong University, Shanghai 200240, ChinaState Key Laboratory of Mechanical System and Vibration, Shanghai Jiao Tong University, Shanghai 200240, ChinaState Key Laboratory of Mechanical System and Vibration, Shanghai Jiao Tong University, Shanghai 200240, ChinaState Key Laboratory of Mechanical System and Vibration, Shanghai Jiao Tong University, Shanghai 200240, China<b>[Objectives]</b> To improve the shock resistance ability of submarines, <b>[Methods]</b> an anti-shock cladding for submarines which consists of a compound coating with rubber and plastic foam is proposed on the basis of the shock environment of submarines. The numerical model is established by Abaqus/Explicit to analyze the dynamic response of anti-shock cladding under the combined loads of hydrostatic pressure and underwater explosion loads. <b>[Results]</b> The results indicate that the deformation of the cladding is negligible under hydrostatic pressure, and the shock load is largely mitigated when the yield stress of the cladding is higher than the hydrostatic pressure. Conversely, the deformation of the cladding is great under hydrostatic pressure and the shock mitigation effects of the coating are weakened when the yield stress of the cladding is lower than the hydrostatic pressure. As such, the yield stress of the cladding should be higher than the hydrostatic pressure, and densification should be avoided. <b>[Conclusions]</b> The research findings in this paper can provide guidance for the design of anti-shock cladding for submarines.http://www.ship-research.com/EN/Y2018/V13/I3/46underwater explosionhydrostatic pressureanti-shock claddingplastic foam |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
YIN Caiyu JIN Zeyu CHEN Yong HUA Hongxing |
spellingShingle |
YIN Caiyu JIN Zeyu CHEN Yong HUA Hongxing Shock mitigation properties of compound claddings subjected to underwater explosion loads Zhongguo Jianchuan Yanjiu underwater explosion hydrostatic pressure anti-shock cladding plastic foam |
author_facet |
YIN Caiyu JIN Zeyu CHEN Yong HUA Hongxing |
author_sort |
YIN Caiyu |
title |
Shock mitigation properties of compound claddings subjected to underwater explosion loads |
title_short |
Shock mitigation properties of compound claddings subjected to underwater explosion loads |
title_full |
Shock mitigation properties of compound claddings subjected to underwater explosion loads |
title_fullStr |
Shock mitigation properties of compound claddings subjected to underwater explosion loads |
title_full_unstemmed |
Shock mitigation properties of compound claddings subjected to underwater explosion loads |
title_sort |
shock mitigation properties of compound claddings subjected to underwater explosion loads |
publisher |
Editorial Office of Chinese Journal of Ship Research |
series |
Zhongguo Jianchuan Yanjiu |
issn |
1673-3185 1673-3185 |
publishDate |
2018-06-01 |
description |
<b>[Objectives]</b> To improve the shock resistance ability of submarines, <b>[Methods]</b> an anti-shock cladding for submarines which consists of a compound coating with rubber and plastic foam is proposed on the basis of the shock environment of submarines. The numerical model is established by Abaqus/Explicit to analyze the dynamic response of anti-shock cladding under the combined loads of hydrostatic pressure and underwater explosion loads. <b>[Results]</b> The results indicate that the deformation of the cladding is negligible under hydrostatic pressure, and the shock load is largely mitigated when the yield stress of the cladding is higher than the hydrostatic pressure. Conversely, the deformation of the cladding is great under hydrostatic pressure and the shock mitigation effects of the coating are weakened when the yield stress of the cladding is lower than the hydrostatic pressure. As such, the yield stress of the cladding should be higher than the hydrostatic pressure, and densification should be avoided. <b>[Conclusions]</b> The research findings in this paper can provide guidance for the design of anti-shock cladding for submarines. |
topic |
underwater explosion hydrostatic pressure anti-shock cladding plastic foam |
url |
http://www.ship-research.com/EN/Y2018/V13/I3/46 |
work_keys_str_mv |
AT yincaiyu shockmitigationpropertiesofcompoundcladdingssubjectedtounderwaterexplosionloads AT jinzeyu shockmitigationpropertiesofcompoundcladdingssubjectedtounderwaterexplosionloads AT chenyong shockmitigationpropertiesofcompoundcladdingssubjectedtounderwaterexplosionloads AT huahongxing shockmitigationpropertiesofcompoundcladdingssubjectedtounderwaterexplosionloads |
_version_ |
1725322159888269312 |