Epoxy-UHMWPE acetabular cup performance based on finite element study / Solehuddin Shuib ... [et al.]

The articulate surface of the acetabular components are among the reasons of Total Hip Replacement (THR) failure. The types of the material used for the components are also equally important as the orientation of the acetabular component which must be complied to avoid failure. This study aims to fi...

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Main Authors: Shuib, Solehuddin, Abd Manap, Muhammad Faris, Abdullah, Abdul Halim, Dimon, Mohd Zamrin, Romli, Ahmad Zafir, Ahmed Shokri, Amran
Format: Article
Language:English
Published: Faculty of Mechanical Engineering Universiti Teknologi MARA (UiTM) 2018
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Online Access:http://ir.uitm.edu.my/id/eprint/40958/1/40958.pdf
http://ir.uitm.edu.my/id/eprint/40958/
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spelling my.uitm.ir.409582021-01-26T03:42:30Z http://ir.uitm.edu.my/id/eprint/40958/ Epoxy-UHMWPE acetabular cup performance based on finite element study / Solehuddin Shuib ... [et al.] Shuib, Solehuddin Abd Manap, Muhammad Faris Abdullah, Abdul Halim Dimon, Mohd Zamrin Romli, Ahmad Zafir Ahmed Shokri, Amran Finite element method Polymers and polymer manufacture The articulate surface of the acetabular components are among the reasons of Total Hip Replacement (THR) failure. The types of the material used for the components are also equally important as the orientation of the acetabular component which must be complied to avoid failure. This study aims to find the mechanical properties of Epoxy-UHMWPE variants and compared with acetabular cup default material by using FEA. Two steps of methodology conducted; first by using hand technique layup for preparing Epoxy-UHMWPE samples and run compression testing, the second step is by re-run the data collected from the compression testing results into the FEA and compared with default material of acetabular cup. The results show that EpUHMWPE5 exhibits the highest Young’s Modulus compared to other variants. The FEA run in ANSYS WORKBENCH V15 displayed that EpUHMWPE5 performs better compared to default material in term of Contact Pressure, Von-Mises stress and Total Deformation at 36mm femoral head with Maximum Safe Inclination Angle. The data of Contact Pressure, Von-Mises stress and Total Deformation for EpUHMWPE5 was at 5.0388MPa, 4.5042MPa and 0.01834mm compared to default material (UHMWPE) at 5.15MPa, 6.4211MPa and 0.02306mm, respectively. The results shows that EpUHMWPE5 could be a propose material to replace the UHMWPE material at the acetabular cup based on mechanical analysis aspect although further studies of the materials are compulsory. Faculty of Mechanical Engineering Universiti Teknologi MARA (UiTM) 2018 Article PeerReviewed text en http://ir.uitm.edu.my/id/eprint/40958/1/40958.pdf Shuib, Solehuddin and Abd Manap, Muhammad Faris and Abdullah, Abdul Halim and Dimon, Mohd Zamrin and Romli, Ahmad Zafir and Ahmed Shokri, Amran (2018) Epoxy-UHMWPE acetabular cup performance based on finite element study / Solehuddin Shuib ... [et al.]. Journal of Mechanical Engineering (JMechE), SI 5 (6). pp. 117-140. ISSN 18235514
institution Universiti Teknologi Mara
building Tun Abdul Razak Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Mara
content_source UiTM Institutional Repository
url_provider http://ir.uitm.edu.my/
language English
topic Finite element method
Polymers and polymer manufacture
spellingShingle Finite element method
Polymers and polymer manufacture
Shuib, Solehuddin
Abd Manap, Muhammad Faris
Abdullah, Abdul Halim
Dimon, Mohd Zamrin
Romli, Ahmad Zafir
Ahmed Shokri, Amran
Epoxy-UHMWPE acetabular cup performance based on finite element study / Solehuddin Shuib ... [et al.]
description The articulate surface of the acetabular components are among the reasons of Total Hip Replacement (THR) failure. The types of the material used for the components are also equally important as the orientation of the acetabular component which must be complied to avoid failure. This study aims to find the mechanical properties of Epoxy-UHMWPE variants and compared with acetabular cup default material by using FEA. Two steps of methodology conducted; first by using hand technique layup for preparing Epoxy-UHMWPE samples and run compression testing, the second step is by re-run the data collected from the compression testing results into the FEA and compared with default material of acetabular cup. The results show that EpUHMWPE5 exhibits the highest Young’s Modulus compared to other variants. The FEA run in ANSYS WORKBENCH V15 displayed that EpUHMWPE5 performs better compared to default material in term of Contact Pressure, Von-Mises stress and Total Deformation at 36mm femoral head with Maximum Safe Inclination Angle. The data of Contact Pressure, Von-Mises stress and Total Deformation for EpUHMWPE5 was at 5.0388MPa, 4.5042MPa and 0.01834mm compared to default material (UHMWPE) at 5.15MPa, 6.4211MPa and 0.02306mm, respectively. The results shows that EpUHMWPE5 could be a propose material to replace the UHMWPE material at the acetabular cup based on mechanical analysis aspect although further studies of the materials are compulsory.
format Article
author Shuib, Solehuddin
Abd Manap, Muhammad Faris
Abdullah, Abdul Halim
Dimon, Mohd Zamrin
Romli, Ahmad Zafir
Ahmed Shokri, Amran
author_facet Shuib, Solehuddin
Abd Manap, Muhammad Faris
Abdullah, Abdul Halim
Dimon, Mohd Zamrin
Romli, Ahmad Zafir
Ahmed Shokri, Amran
author_sort Shuib, Solehuddin
title Epoxy-UHMWPE acetabular cup performance based on finite element study / Solehuddin Shuib ... [et al.]
title_short Epoxy-UHMWPE acetabular cup performance based on finite element study / Solehuddin Shuib ... [et al.]
title_full Epoxy-UHMWPE acetabular cup performance based on finite element study / Solehuddin Shuib ... [et al.]
title_fullStr Epoxy-UHMWPE acetabular cup performance based on finite element study / Solehuddin Shuib ... [et al.]
title_full_unstemmed Epoxy-UHMWPE acetabular cup performance based on finite element study / Solehuddin Shuib ... [et al.]
title_sort epoxy-uhmwpe acetabular cup performance based on finite element study / solehuddin shuib ... [et al.]
publisher Faculty of Mechanical Engineering Universiti Teknologi MARA (UiTM)
publishDate 2018
url http://ir.uitm.edu.my/id/eprint/40958/1/40958.pdf
http://ir.uitm.edu.my/id/eprint/40958/
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score 13.209306