Dynamic analysis of thick plates reinforced with agglomerated GNPs

In this work, the quasi-3D hyperbolic shear deformation theory (quasi-3D HSDT) is utilized to examine the dynamics of thick rectangular plates reinforced with rectangular nanofillers known as graphene nanoplatelets (GNPs). Agglomeration of the GNPs is incorporated and the mechanical characteristics...

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Published in:Heliyon
Main Authors: Ali Alnujaie, Mohammad Yahya Alshahrani, Wessim Salahaddin Ibrahim, Yaser Yasin, Zahraa Salam Obaid, Israa J. Alhani, Mohammad Hasan Khaddour, Salema K. Hadrawi, Yaassin Riyahi, M.H. Ghazwani
Format: Article
Language:English
Published: Elsevier 2023-09-01
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Online Access:http://www.sciencedirect.com/science/article/pii/S2405844023055871
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author Ali Alnujaie
Mohammad Yahya Alshahrani
Wessim Salahaddin Ibrahim
Yaser Yasin
Zahraa Salam Obaid
Israa J. Alhani
Mohammad Hasan Khaddour
Salema K. Hadrawi
Yaassin Riyahi
M.H. Ghazwani
author_facet Ali Alnujaie
Mohammad Yahya Alshahrani
Wessim Salahaddin Ibrahim
Yaser Yasin
Zahraa Salam Obaid
Israa J. Alhani
Mohammad Hasan Khaddour
Salema K. Hadrawi
Yaassin Riyahi
M.H. Ghazwani
author_sort Ali Alnujaie
collection DOAJ
container_title Heliyon
description In this work, the quasi-3D hyperbolic shear deformation theory (quasi-3D HSDT) is utilized to examine the dynamics of thick rectangular plates reinforced with rectangular nanofillers known as graphene nanoplatelets (GNPs). Agglomeration of the GNPs is incorporated and the mechanical characteristics like shear, elastic, and bulk moduli, Poisson's ratio, and density are analysed according to the mixture along with the Eshelby-Mori-Tanaka approach. Hamilton's principle is hired to derive the solving equations, the Navier approach is hired to present an analytical solution in the spatial domain, and the Newmark method is hired to provide an approximate solution in the time domain. The relevance of the dynamic response and the natural frequencies of the plate on several parameters are explored such as dispersion pattern and the GNPs percentage and agglomeration parameters. It is discovered that for a specific GNPs percentage, growth in the amount of agglomerated GNPs leads to lower natural frequencies and higher dynamic deflection. Meanwhile, for a specific mass fraction of the agglomerated GNPs, growth in the volume of clusters brings about higher natural frequencies and lower dynamic deflection.
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spelling doaj-art-6fa3dfd0fbd741b09bc36cfcb31d12fd2025-08-19T22:40:21ZengElsevierHeliyon2405-84402023-09-0199e1837910.1016/j.heliyon.2023.e18379Dynamic analysis of thick plates reinforced with agglomerated GNPsAli Alnujaie0Mohammad Yahya Alshahrani1Wessim Salahaddin Ibrahim2Yaser Yasin3Zahraa Salam Obaid4Israa J. Alhani5Mohammad Hasan Khaddour6Salema K. Hadrawi7Yaassin Riyahi8M.H. Ghazwani9Mechanical Engineering Department, Faculty of Engineering, Jazan University, P.O.Box 45142, Jazan, Kingdom of Saudi ArabiaDepartment of Clinical Laboratory Sciences, College of Applied Medical Sciences, King Khalid University, Abha, Saudi ArabiaDepartment of Pharmacy, AlNoor University College, Bartella, IraqCollege of Medical Technology, Al-Farahidi University, IraqBuilding and Construction Engineering Technology Department, AL-Mustaqbal University College, Hillah 51001, IraqMazaya University College, IraqAl-Amarah University College, Al-Amarah, IraqRefrigeration and Air-conditioning Technical Engineering Department, College of Technical Engineering, The Islamic University, Najaf, IraqAn Independed Researcher, IraqMechanical Engineering Department, Faculty of Engineering, Jazan University, P.O.Box 45142, Jazan, Kingdom of Saudi ArabiaIn this work, the quasi-3D hyperbolic shear deformation theory (quasi-3D HSDT) is utilized to examine the dynamics of thick rectangular plates reinforced with rectangular nanofillers known as graphene nanoplatelets (GNPs). Agglomeration of the GNPs is incorporated and the mechanical characteristics like shear, elastic, and bulk moduli, Poisson's ratio, and density are analysed according to the mixture along with the Eshelby-Mori-Tanaka approach. Hamilton's principle is hired to derive the solving equations, the Navier approach is hired to present an analytical solution in the spatial domain, and the Newmark method is hired to provide an approximate solution in the time domain. The relevance of the dynamic response and the natural frequencies of the plate on several parameters are explored such as dispersion pattern and the GNPs percentage and agglomeration parameters. It is discovered that for a specific GNPs percentage, growth in the amount of agglomerated GNPs leads to lower natural frequencies and higher dynamic deflection. Meanwhile, for a specific mass fraction of the agglomerated GNPs, growth in the volume of clusters brings about higher natural frequencies and lower dynamic deflection.http://www.sciencedirect.com/science/article/pii/S2405844023055871Free vibrationForced vibrationRectangular plateGraphene nanoplatelets (GNPs)Agglomeration
spellingShingle Ali Alnujaie
Mohammad Yahya Alshahrani
Wessim Salahaddin Ibrahim
Yaser Yasin
Zahraa Salam Obaid
Israa J. Alhani
Mohammad Hasan Khaddour
Salema K. Hadrawi
Yaassin Riyahi
M.H. Ghazwani
Dynamic analysis of thick plates reinforced with agglomerated GNPs
Free vibration
Forced vibration
Rectangular plate
Graphene nanoplatelets (GNPs)
Agglomeration
title Dynamic analysis of thick plates reinforced with agglomerated GNPs
title_full Dynamic analysis of thick plates reinforced with agglomerated GNPs
title_fullStr Dynamic analysis of thick plates reinforced with agglomerated GNPs
title_full_unstemmed Dynamic analysis of thick plates reinforced with agglomerated GNPs
title_short Dynamic analysis of thick plates reinforced with agglomerated GNPs
title_sort dynamic analysis of thick plates reinforced with agglomerated gnps
topic Free vibration
Forced vibration
Rectangular plate
Graphene nanoplatelets (GNPs)
Agglomeration
url http://www.sciencedirect.com/science/article/pii/S2405844023055871
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