Analysis of Ultimate Compressive Strength of Cracked Plates with the Use of DoE Techniques

The objective of this work is to investigate the structural compressive response of plates with locked cracks accounting for all relevant factors and correlation between them. The nonlinear FE model considering both geometric and material nonlinearities is employed herein, and the FE model of the st...

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Main Authors: Woloszyk Krzysztof, Garbatov Yordan
Format: Article
Language:English
Published: Sciendo 2020-09-01
Series:Polish Maritime Research
Subjects:
fem
Online Access:https://doi.org/10.2478/pomr-2020-0052
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spelling doaj-920052a909c14832997ff5c89c0ab7572021-09-05T14:01:09ZengSciendoPolish Maritime Research2083-74292020-09-0127310912010.2478/pomr-2020-0052pomr-2020-0052Analysis of Ultimate Compressive Strength of Cracked Plates with the Use of DoE TechniquesWoloszyk Krzysztof0Garbatov Yordan1Gdańsk University of Technology, Faculty of Ocean Engineering and Ship Technology, PolandUniversidade de Lisboa, Centre for Marine Technology and Ocean Engineering (CENTEC), PortugalThe objective of this work is to investigate the structural compressive response of plates with locked cracks accounting for all relevant factors and correlation between them. The nonlinear FE model considering both geometric and material nonlinearities is employed herein, and the FE model of the structural response of intact plates is validated with the available experimental data. In the common studies, based on One Factor at a Time analysis, some of the parameters and interactions between them are excluded. In the present study, the numerical investigations are conducted with the use of the Design of Experiments techniques, where all essential parameters and their interactions are adequately considered. With a total of 32 numerical analyses, the most influential factors and their interactions are identified. As a study outcome, empirical formulations, which allow for a fast estimation of the ultimate compressive strength of intact plates, plates with locked cracks, and repaired cracked plates, are derived. The developed formulations represent a fast and practical tool for estimating the ultimate compressive strength of intact, cracked, and repaired plates, which can be easily employed in the reliability analysis.results followed by their discussion.https://doi.org/10.2478/pomr-2020-0052cracksdesign of experimentsplateultimate strengthfem
collection DOAJ
language English
format Article
sources DOAJ
author Woloszyk Krzysztof
Garbatov Yordan
spellingShingle Woloszyk Krzysztof
Garbatov Yordan
Analysis of Ultimate Compressive Strength of Cracked Plates with the Use of DoE Techniques
Polish Maritime Research
cracks
design of experiments
plate
ultimate strength
fem
author_facet Woloszyk Krzysztof
Garbatov Yordan
author_sort Woloszyk Krzysztof
title Analysis of Ultimate Compressive Strength of Cracked Plates with the Use of DoE Techniques
title_short Analysis of Ultimate Compressive Strength of Cracked Plates with the Use of DoE Techniques
title_full Analysis of Ultimate Compressive Strength of Cracked Plates with the Use of DoE Techniques
title_fullStr Analysis of Ultimate Compressive Strength of Cracked Plates with the Use of DoE Techniques
title_full_unstemmed Analysis of Ultimate Compressive Strength of Cracked Plates with the Use of DoE Techniques
title_sort analysis of ultimate compressive strength of cracked plates with the use of doe techniques
publisher Sciendo
series Polish Maritime Research
issn 2083-7429
publishDate 2020-09-01
description The objective of this work is to investigate the structural compressive response of plates with locked cracks accounting for all relevant factors and correlation between them. The nonlinear FE model considering both geometric and material nonlinearities is employed herein, and the FE model of the structural response of intact plates is validated with the available experimental data. In the common studies, based on One Factor at a Time analysis, some of the parameters and interactions between them are excluded. In the present study, the numerical investigations are conducted with the use of the Design of Experiments techniques, where all essential parameters and their interactions are adequately considered. With a total of 32 numerical analyses, the most influential factors and their interactions are identified. As a study outcome, empirical formulations, which allow for a fast estimation of the ultimate compressive strength of intact plates, plates with locked cracks, and repaired cracked plates, are derived. The developed formulations represent a fast and practical tool for estimating the ultimate compressive strength of intact, cracked, and repaired plates, which can be easily employed in the reliability analysis.results followed by their discussion.
topic cracks
design of experiments
plate
ultimate strength
fem
url https://doi.org/10.2478/pomr-2020-0052
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