Design and analysis of cementless hip-joint system using functionally graded material

Functionally Graded Materials (FGM) are extensively employed for hip plant component material due to their certain properties in a specific design to achieve the requirements of the hip-joint system. Nevertheless, if there are similar properties, it doesn’t necessarily indicate that the knee plant i...

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Main Author: Saeed Asiri
Format: Article
Language:English
Published: Polish Academy of Sciences 2022-01-01
Series:Archive of Mechanical Engineering
Subjects:
Online Access:https://journals.pan.pl/Content/122288/PDF/AME_2022_139804_2.pdf
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author Saeed Asiri
author_facet Saeed Asiri
author_sort Saeed Asiri
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description Functionally Graded Materials (FGM) are extensively employed for hip plant component material due to their certain properties in a specific design to achieve the requirements of the hip-joint system. Nevertheless, if there are similar properties, it doesn’t necessarily indicate that the knee plant is efficiently and effectively working. Therefore, it is important to develop an ideal design of functionally graded material femoral components that can be used for a long period. A new ideal design of femoral prosthesis can be introduced using functionally graded fiber polymer (FGFP) which will reduce the stress shielding and the corresponding stresses present over the interface. Herein, modal analysis of the complete hip plant part is carried out, which is the main factor and to date, very few research studies have been found on it. Moreover, this enhances the life of hip replacement, and the modal, harmonic, and fatigue analysis determines the pre-loading failure phenomena due to the vibrational response of the hip. This study deals with the cementless hip plant applying the finite element analysis (FEA) model in which geometry is studied, and the femoral bone model is based in a 3D scan.
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spelling doaj.art-0a78396ead37465f900ed403643258be2022-12-22T04:01:29ZengPolish Academy of SciencesArchive of Mechanical Engineering2300-18952022-01-01vol. 69No 1129146https://doi.org/10.24425/ame.2021.139804Design and analysis of cementless hip-joint system using functionally graded materialSaeed Asiri0https://orcid.org/0000-0002-2551-7677Mechanical Engineering Department, Engineering College King Abdulaziz University, Jeddah, Saudi ArabiaFunctionally Graded Materials (FGM) are extensively employed for hip plant component material due to their certain properties in a specific design to achieve the requirements of the hip-joint system. Nevertheless, if there are similar properties, it doesn’t necessarily indicate that the knee plant is efficiently and effectively working. Therefore, it is important to develop an ideal design of functionally graded material femoral components that can be used for a long period. A new ideal design of femoral prosthesis can be introduced using functionally graded fiber polymer (FGFP) which will reduce the stress shielding and the corresponding stresses present over the interface. Herein, modal analysis of the complete hip plant part is carried out, which is the main factor and to date, very few research studies have been found on it. Moreover, this enhances the life of hip replacement, and the modal, harmonic, and fatigue analysis determines the pre-loading failure phenomena due to the vibrational response of the hip. This study deals with the cementless hip plant applying the finite element analysis (FEA) model in which geometry is studied, and the femoral bone model is based in a 3D scan.https://journals.pan.pl/Content/122288/PDF/AME_2022_139804_2.pdffunctionally graded materialcementless hip-joint systemnatural frequencyharmonic responsefatigue analysisfinite element analysismodal analysis
spellingShingle Saeed Asiri
Design and analysis of cementless hip-joint system using functionally graded material
Archive of Mechanical Engineering
functionally graded material
cementless hip-joint system
natural frequency
harmonic response
fatigue analysis
finite element analysis
modal analysis
title Design and analysis of cementless hip-joint system using functionally graded material
title_full Design and analysis of cementless hip-joint system using functionally graded material
title_fullStr Design and analysis of cementless hip-joint system using functionally graded material
title_full_unstemmed Design and analysis of cementless hip-joint system using functionally graded material
title_short Design and analysis of cementless hip-joint system using functionally graded material
title_sort design and analysis of cementless hip joint system using functionally graded material
topic functionally graded material
cementless hip-joint system
natural frequency
harmonic response
fatigue analysis
finite element analysis
modal analysis
url https://journals.pan.pl/Content/122288/PDF/AME_2022_139804_2.pdf
work_keys_str_mv AT saeedasiri designandanalysisofcementlesshipjointsystemusingfunctionallygradedmaterial