Experimental and Numerical Investigations of Ultimate Strength of Imperfect Stiffened Plates of Different Slenderness

The objective of this study is to analyse the behaviour of compressed stiffened plates of different slenderness using experimental and numerical methods. The presented results are part of a long-term project to investigate the ultimate strength of geometrically imperfect structures subjected to diff...

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Main Authors: Woloszyk Krzysztof, Garbatov Yordan, Kowalski Jakub, Samson Leszek
Format: Article
Language:English
Published: Sciendo 2020-12-01
Series:Polish Maritime Research
Subjects:
fem
Online Access:https://doi.org/10.2478/pomr-2020-0072
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spelling doaj-9ceb2840304f4bfa8a53c99440c6ce4e2021-09-05T14:01:09ZengSciendoPolish Maritime Research2083-74292020-12-0127412012910.2478/pomr-2020-0072pomr-2020-0072Experimental and Numerical Investigations of Ultimate Strength of Imperfect Stiffened Plates of Different SlendernessWoloszyk Krzysztof0Garbatov Yordan1Kowalski Jakub2Samson Leszek3Gdansk University of Technology, Faculty of Ocean Engineering and Ship Technology, PolandCentre for Marine Technology and Ocean Engineering (CENTEC), Instituto Superior Técnico, Universidade de Lisboa, PortugalGdansk University of Technology, Faculty of Ocean Engineering and Ship Technology, PolandGdansk University of Technology, Faculty of Ocean Engineering and Ship Technology, PolandThe objective of this study is to analyse the behaviour of compressed stiffened plates of different slenderness using experimental and numerical methods. The presented results are part of a long-term project to investigate the ultimate strength of geometrically imperfect structures subjected to different degradation phenomena, including corrosion degradation and locked cracks. Several specimens were subjected to a uniaxial compressive force, and the most important quantities related to the structural behaviour were captured and analysed. A finite element model, accounting for material and geometrical nonlinearities and initial geometrical imperfections, was developed using the commercial software ANSYS. The residual welding-induced stresses were measured in the middle cross-section for two specimens. The initial imperfection was identified by employing a close-range photogrammetry approach. It was concluded that the numerical analyses, based on the finite element model, predict the ultimate strength of stiffened plates accurately, although some deviations were also observed. The detailed analysis with the indication of possible uncertainty is presented, and several conclusions are derived.https://doi.org/10.2478/pomr-2020-0072stiffened plateultimate strengthfemboundary conditions
collection DOAJ
language English
format Article
sources DOAJ
author Woloszyk Krzysztof
Garbatov Yordan
Kowalski Jakub
Samson Leszek
spellingShingle Woloszyk Krzysztof
Garbatov Yordan
Kowalski Jakub
Samson Leszek
Experimental and Numerical Investigations of Ultimate Strength of Imperfect Stiffened Plates of Different Slenderness
Polish Maritime Research
stiffened plate
ultimate strength
fem
boundary conditions
author_facet Woloszyk Krzysztof
Garbatov Yordan
Kowalski Jakub
Samson Leszek
author_sort Woloszyk Krzysztof
title Experimental and Numerical Investigations of Ultimate Strength of Imperfect Stiffened Plates of Different Slenderness
title_short Experimental and Numerical Investigations of Ultimate Strength of Imperfect Stiffened Plates of Different Slenderness
title_full Experimental and Numerical Investigations of Ultimate Strength of Imperfect Stiffened Plates of Different Slenderness
title_fullStr Experimental and Numerical Investigations of Ultimate Strength of Imperfect Stiffened Plates of Different Slenderness
title_full_unstemmed Experimental and Numerical Investigations of Ultimate Strength of Imperfect Stiffened Plates of Different Slenderness
title_sort experimental and numerical investigations of ultimate strength of imperfect stiffened plates of different slenderness
publisher Sciendo
series Polish Maritime Research
issn 2083-7429
publishDate 2020-12-01
description The objective of this study is to analyse the behaviour of compressed stiffened plates of different slenderness using experimental and numerical methods. The presented results are part of a long-term project to investigate the ultimate strength of geometrically imperfect structures subjected to different degradation phenomena, including corrosion degradation and locked cracks. Several specimens were subjected to a uniaxial compressive force, and the most important quantities related to the structural behaviour were captured and analysed. A finite element model, accounting for material and geometrical nonlinearities and initial geometrical imperfections, was developed using the commercial software ANSYS. The residual welding-induced stresses were measured in the middle cross-section for two specimens. The initial imperfection was identified by employing a close-range photogrammetry approach. It was concluded that the numerical analyses, based on the finite element model, predict the ultimate strength of stiffened plates accurately, although some deviations were also observed. The detailed analysis with the indication of possible uncertainty is presented, and several conclusions are derived.
topic stiffened plate
ultimate strength
fem
boundary conditions
url https://doi.org/10.2478/pomr-2020-0072
work_keys_str_mv AT woloszykkrzysztof experimentalandnumericalinvestigationsofultimatestrengthofimperfectstiffenedplatesofdifferentslenderness
AT garbatovyordan experimentalandnumericalinvestigationsofultimatestrengthofimperfectstiffenedplatesofdifferentslenderness
AT kowalskijakub experimentalandnumericalinvestigationsofultimatestrengthofimperfectstiffenedplatesofdifferentslenderness
AT samsonleszek experimentalandnumericalinvestigationsofultimatestrengthofimperfectstiffenedplatesofdifferentslenderness
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