Experimental and Numerical Investigation of the Dynamic Behavior of Clamped Thin Panel Subjected to Underwater Impulsive Loading

Abstract The dynamic response and failure mechanism of clamped thin aluminum alloy plates subjected to underwater impulsive loading are investigated by laboratory experiments and finite element (FE) simulations. The effects of plate thickness, impulsive loading and fluid-structure interaction on fai...

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Main Authors: Peng Ren, Jiaqi Zhou, Ali Tian, Wei Zhang, Wei Huang
Format: Article
Language:English
Published: Marcílio Alves
Series:Latin American Journal of Solids and Structures
Subjects:
Online Access:http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252017000600978&lng=en&tlng=en
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spelling doaj-3737ee8ecc4f4cf5ada6b6114cb2e5512020-11-25T01:17:57ZengMarcílio AlvesLatin American Journal of Solids and Structures1679-782514697899910.1590/1679-78253521S1679-78252017000600978Experimental and Numerical Investigation of the Dynamic Behavior of Clamped Thin Panel Subjected to Underwater Impulsive LoadingPeng RenJiaqi ZhouAli TianWei ZhangWei HuangAbstract The dynamic response and failure mechanism of clamped thin aluminum alloy plates subjected to underwater impulsive loading are investigated by laboratory experiments and finite element (FE) simulations. The effects of plate thickness, impulsive loading and fluid-structure interaction on failure modes in clamped thin aluminum plates are comprehensively assessed in this study. The underwater explosive shock loading experiments were performed by underwater non-contact explosive simulator to identify failure modes of target plates under loads with different intensities. The 3D digital image correlation was applied to measure the real-time deformation of the specimens throughout the impulsive event. Depending on the loading intensity, the failure modes of thin aluminum plates were subdivided into three modes. The Scanning electron micrographs of the fracture surfaces show that the local failure mechanism was tensile necking in all cases. A calibrated FE model was adopted to predict the overall dynamic behavior of plates. The results indicate that the thickness of plates had no significant effect on the deformation modes. In addition, the quantitative relations of plate thickness, the effect of fluid-structure interaction and the failure of plate subjected to underwater shock loading were revealed by the combination of the experimental and simulation results. The results obtained in this research provide a potential guidance to enhance the impulsive resistance of underwater structure.http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252017000600978&lng=en&tlng=en3D digital image correlationFluid-structure interactiondynamic failureFinite element methodfailure mechanism.
collection DOAJ
language English
format Article
sources DOAJ
author Peng Ren
Jiaqi Zhou
Ali Tian
Wei Zhang
Wei Huang
spellingShingle Peng Ren
Jiaqi Zhou
Ali Tian
Wei Zhang
Wei Huang
Experimental and Numerical Investigation of the Dynamic Behavior of Clamped Thin Panel Subjected to Underwater Impulsive Loading
Latin American Journal of Solids and Structures
3D digital image correlation
Fluid-structure interaction
dynamic failure
Finite element method
failure mechanism.
author_facet Peng Ren
Jiaqi Zhou
Ali Tian
Wei Zhang
Wei Huang
author_sort Peng Ren
title Experimental and Numerical Investigation of the Dynamic Behavior of Clamped Thin Panel Subjected to Underwater Impulsive Loading
title_short Experimental and Numerical Investigation of the Dynamic Behavior of Clamped Thin Panel Subjected to Underwater Impulsive Loading
title_full Experimental and Numerical Investigation of the Dynamic Behavior of Clamped Thin Panel Subjected to Underwater Impulsive Loading
title_fullStr Experimental and Numerical Investigation of the Dynamic Behavior of Clamped Thin Panel Subjected to Underwater Impulsive Loading
title_full_unstemmed Experimental and Numerical Investigation of the Dynamic Behavior of Clamped Thin Panel Subjected to Underwater Impulsive Loading
title_sort experimental and numerical investigation of the dynamic behavior of clamped thin panel subjected to underwater impulsive loading
publisher Marcílio Alves
series Latin American Journal of Solids and Structures
issn 1679-7825
description Abstract The dynamic response and failure mechanism of clamped thin aluminum alloy plates subjected to underwater impulsive loading are investigated by laboratory experiments and finite element (FE) simulations. The effects of plate thickness, impulsive loading and fluid-structure interaction on failure modes in clamped thin aluminum plates are comprehensively assessed in this study. The underwater explosive shock loading experiments were performed by underwater non-contact explosive simulator to identify failure modes of target plates under loads with different intensities. The 3D digital image correlation was applied to measure the real-time deformation of the specimens throughout the impulsive event. Depending on the loading intensity, the failure modes of thin aluminum plates were subdivided into three modes. The Scanning electron micrographs of the fracture surfaces show that the local failure mechanism was tensile necking in all cases. A calibrated FE model was adopted to predict the overall dynamic behavior of plates. The results indicate that the thickness of plates had no significant effect on the deformation modes. In addition, the quantitative relations of plate thickness, the effect of fluid-structure interaction and the failure of plate subjected to underwater shock loading were revealed by the combination of the experimental and simulation results. The results obtained in this research provide a potential guidance to enhance the impulsive resistance of underwater structure.
topic 3D digital image correlation
Fluid-structure interaction
dynamic failure
Finite element method
failure mechanism.
url http://www.scielo.br/scielo.php?script=sci_arttext&pid=S1679-78252017000600978&lng=en&tlng=en
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