Effect of Viscosity and Magnetic Field on Thermoelastic Fiber-Reinforced Porous Solid using 3PHL Model

This study investigates the effect of magnetic field and viscosity on the behavior of thermoelastic fiber-reinforced porous solid materials using a 3PHL model. The study aims to understand how these factors affect the mechanical properties and thermal response of the material. The results will provi...

Full description

Saved in:
Bibliographic Details
Main Authors: Rania Fathy, Mohamed Othman, Samia Said, Esraa Gamal
Format: Article
Language:English
Published: Shahid Chamran University of Ahvaz 2025-07-01
Series:Journal of Applied and Computational Mechanics
Subjects:
Online Access:https://jacm.scu.ac.ir/article_19417_0d614bb2cac734961caba1d5124512fb.pdf
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1850196596877164544
author Rania Fathy
Mohamed Othman
Samia Said
Esraa Gamal
author_facet Rania Fathy
Mohamed Othman
Samia Said
Esraa Gamal
author_sort Rania Fathy
collection DOAJ
description This study investigates the effect of magnetic field and viscosity on the behavior of thermoelastic fiber-reinforced porous solid materials using a 3PHL model. The study aims to understand how these factors affect the mechanical properties and thermal response of the material. The results will provide valuable insights into the design and optimization of these materials for various applications, such as in the aerospace and automotive industries. The findings from this study will contribute to ongoing research in the field of advanced materials and help in the development of innovative and efficient materials for practical use. Our study introduces a pioneering application of the 3PHL model to thermoelastic fiber-reinforced porous solids, integrating the effects of viscosity and magnetic fields for the first time. This approach provides a more nuanced understanding of the material behavior under varying operational conditions. Unlike traditional models, our framework accounts for the interactions between magnetic fields and viscosity, revealing new insights into the thermoelastic response of composite materials. This enhancement allows for more precise predictions of material performance in dynamic environments.
format Article
id doaj-art-5e42daaf44d34dfa902e66e2bc1e0fa2
institution OA Journals
issn 2383-4536
language English
publishDate 2025-07-01
publisher Shahid Chamran University of Ahvaz
record_format Article
series Journal of Applied and Computational Mechanics
spelling doaj-art-5e42daaf44d34dfa902e66e2bc1e0fa22025-08-20T02:13:24ZengShahid Chamran University of AhvazJournal of Applied and Computational Mechanics2383-45362025-07-0111355756710.22055/jacm.2024.47597.474519417Effect of Viscosity and Magnetic Field on Thermoelastic Fiber-Reinforced Porous Solid using 3PHL ModelRania Fathy0Mohamed Othman1Samia Said2Esraa Gamal3Department of Mathematics, Faculty of Science, Zagazig University, P.O. Box 44519, Zagazig, EgyptDepartment of Mathematics, Faculty of Science, Zagazig University, P.O. Box 44519, Zagazig, EgyptDepartment of Mathematics, Faculty of Science, Zagazig University, P.O. Box 44519, Zagazig, EgyptDepartment of Mathematics, Faculty of Science, Zagazig University, P.O. Box 44519, Zagazig, EgyptThis study investigates the effect of magnetic field and viscosity on the behavior of thermoelastic fiber-reinforced porous solid materials using a 3PHL model. The study aims to understand how these factors affect the mechanical properties and thermal response of the material. The results will provide valuable insights into the design and optimization of these materials for various applications, such as in the aerospace and automotive industries. The findings from this study will contribute to ongoing research in the field of advanced materials and help in the development of innovative and efficient materials for practical use. Our study introduces a pioneering application of the 3PHL model to thermoelastic fiber-reinforced porous solids, integrating the effects of viscosity and magnetic fields for the first time. This approach provides a more nuanced understanding of the material behavior under varying operational conditions. Unlike traditional models, our framework accounts for the interactions between magnetic fields and viscosity, revealing new insights into the thermoelastic response of composite materials. This enhancement allows for more precise predictions of material performance in dynamic environments.https://jacm.scu.ac.ir/article_19417_0d614bb2cac734961caba1d5124512fb.pdfmagnetic fieldviscoelasticfiber-reinforced thermoelastic solidporous3phl model
spellingShingle Rania Fathy
Mohamed Othman
Samia Said
Esraa Gamal
Effect of Viscosity and Magnetic Field on Thermoelastic Fiber-Reinforced Porous Solid using 3PHL Model
Journal of Applied and Computational Mechanics
magnetic field
viscoelastic
fiber-reinforced thermoelastic solid
porous
3phl model
title Effect of Viscosity and Magnetic Field on Thermoelastic Fiber-Reinforced Porous Solid using 3PHL Model
title_full Effect of Viscosity and Magnetic Field on Thermoelastic Fiber-Reinforced Porous Solid using 3PHL Model
title_fullStr Effect of Viscosity and Magnetic Field on Thermoelastic Fiber-Reinforced Porous Solid using 3PHL Model
title_full_unstemmed Effect of Viscosity and Magnetic Field on Thermoelastic Fiber-Reinforced Porous Solid using 3PHL Model
title_short Effect of Viscosity and Magnetic Field on Thermoelastic Fiber-Reinforced Porous Solid using 3PHL Model
title_sort effect of viscosity and magnetic field on thermoelastic fiber reinforced porous solid using 3phl model
topic magnetic field
viscoelastic
fiber-reinforced thermoelastic solid
porous
3phl model
url https://jacm.scu.ac.ir/article_19417_0d614bb2cac734961caba1d5124512fb.pdf
work_keys_str_mv AT raniafathy effectofviscosityandmagneticfieldonthermoelasticfiberreinforcedporoussolidusing3phlmodel
AT mohamedothman effectofviscosityandmagneticfieldonthermoelasticfiberreinforcedporoussolidusing3phlmodel
AT samiasaid effectofviscosityandmagneticfieldonthermoelasticfiberreinforcedporoussolidusing3phlmodel
AT esraagamal effectofviscosityandmagneticfieldonthermoelasticfiberreinforcedporoussolidusing3phlmodel