Ultimate strength of stiffened plates with pitting corrosion

Predicting residual strength of corroded plates is of crucial importance for service life estimation of aged structures. A series of nonlinear finite element method is employed for ultimate strength analysis of stiffened plates with pitting corrosion. Influential parameters, including plate thicknes...

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Main Authors: Ahmad Rahbar-Ranji, Nabi Niamir, Arvin Zarookian
Format: Article
Language:English
Published: Elsevier 2015-05-01
Series:International Journal of Naval Architecture and Ocean Engineering
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2092678216300620
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spelling doaj-58938d5c393143d0822cf9cbb55bff3a2020-11-24T23:37:33ZengElsevierInternational Journal of Naval Architecture and Ocean Engineering2092-67822015-05-017350952510.1515/ijnaoe-2015-0037ijnaoe-2015-0037Ultimate strength of stiffened plates with pitting corrosionAhmad Rahbar-RanjiNabi NiamirArvin ZarookianPredicting residual strength of corroded plates is of crucial importance for service life estimation of aged structures. A series of nonlinear finite element method is employed for ultimate strength analysis of stiffened plates with pitting corrosion. Influential parameters, including plate thickness, type and size of stiffeners, pit depth and degree of pitting are varied and more than 208 finite element models are analyzed. It is found that ultimate strength is reduced by increasing pit depth to thickness ratio. Thin and intermediate plates have minimum and maximum reduction of ultimate strength with stronger stiffeners, respectively. In weak stiffener, reduction of ultimate strength in thin and intermediate plates depends on DOP. Reduction of ultimate strength in thick plates depends on thickness ofplate and DOP. For intermediate plates, reduction for all stiffeners regardless of shape and size are the same.http://www.sciencedirect.com/science/article/pii/S2092678216300620Stiffened-plateUltimate strengthPitting CorrosionFinite element method
collection DOAJ
language English
format Article
sources DOAJ
author Ahmad Rahbar-Ranji
Nabi Niamir
Arvin Zarookian
spellingShingle Ahmad Rahbar-Ranji
Nabi Niamir
Arvin Zarookian
Ultimate strength of stiffened plates with pitting corrosion
International Journal of Naval Architecture and Ocean Engineering
Stiffened-plate
Ultimate strength
Pitting Corrosion
Finite element method
author_facet Ahmad Rahbar-Ranji
Nabi Niamir
Arvin Zarookian
author_sort Ahmad Rahbar-Ranji
title Ultimate strength of stiffened plates with pitting corrosion
title_short Ultimate strength of stiffened plates with pitting corrosion
title_full Ultimate strength of stiffened plates with pitting corrosion
title_fullStr Ultimate strength of stiffened plates with pitting corrosion
title_full_unstemmed Ultimate strength of stiffened plates with pitting corrosion
title_sort ultimate strength of stiffened plates with pitting corrosion
publisher Elsevier
series International Journal of Naval Architecture and Ocean Engineering
issn 2092-6782
publishDate 2015-05-01
description Predicting residual strength of corroded plates is of crucial importance for service life estimation of aged structures. A series of nonlinear finite element method is employed for ultimate strength analysis of stiffened plates with pitting corrosion. Influential parameters, including plate thickness, type and size of stiffeners, pit depth and degree of pitting are varied and more than 208 finite element models are analyzed. It is found that ultimate strength is reduced by increasing pit depth to thickness ratio. Thin and intermediate plates have minimum and maximum reduction of ultimate strength with stronger stiffeners, respectively. In weak stiffener, reduction of ultimate strength in thin and intermediate plates depends on DOP. Reduction of ultimate strength in thick plates depends on thickness ofplate and DOP. For intermediate plates, reduction for all stiffeners regardless of shape and size are the same.
topic Stiffened-plate
Ultimate strength
Pitting Corrosion
Finite element method
url http://www.sciencedirect.com/science/article/pii/S2092678216300620
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