Static Structural Analysis on Different Topology Optimization Transtibial Prosthetic Socket Leg

The transtibial Prosthetic Socket serves as the primary connection between the residual limb of an amputee and the prosthesis. The socket must provide a secure and stable base for the amputee to bear their body weight and move around comfortably. Topological optimization is a process that aims to im...

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发表在:International Journal of Technology
主要作者: 2-s2.0-85185252875
格式: 文件
语言:English
出版: Faculty of Engineering, Universitas Indonesia 2024
在线阅读:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85185252875&doi=10.14716%2fijtech.v15i2.6711&partnerID=40&md5=3817d41fe6d5019c49b8eb66893c679a
id Norli M.H.M.; Sukimi A.K.A.; Ramlee M.H.; Mahmud J.; Abdullah A.H.
spelling Norli M.H.M.; Sukimi A.K.A.; Ramlee M.H.; Mahmud J.; Abdullah A.H.
2-s2.0-85185252875
Static Structural Analysis on Different Topology Optimization Transtibial Prosthetic Socket Leg
2024
International Journal of Technology
15
2
10.14716/ijtech.v15i2.6711
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85185252875&doi=10.14716%2fijtech.v15i2.6711&partnerID=40&md5=3817d41fe6d5019c49b8eb66893c679a
The transtibial Prosthetic Socket serves as the primary connection between the residual limb of an amputee and the prosthesis. The socket must provide a secure and stable base for the amputee to bear their body weight and move around comfortably. Topological optimization is a process that aims to improve the mechanical properties of the prosthetic socket. It involves designing a structure that minimizes stress concentrations and maximizes strength while using the least amount of material. The objective of this study is to improve the parametric design of the transtibial socket prosthesis through topology optimization and determine the stress performance of 3D-printed transtibial sockets using static structural analysis. The method used is Finite Element Analysis (FEA) simulations of forces onto the socket during phases of walking on different topology-optimized socket designs and using the same material, which is ABS. Furthermore, the results were analyzed through static structural analysis using ANSYS software. The analysis revealed that a reduction in the weight of the model correlates with an increase in stress thus may contribute to material fatigue and reducing long term performance. © 2024, Faculty of Engineering. All rights reserved.
Faculty of Engineering, Universitas Indonesia
20869614
English
Article
All Open Access; Gold Open Access
author 2-s2.0-85185252875
spellingShingle 2-s2.0-85185252875
Static Structural Analysis on Different Topology Optimization Transtibial Prosthetic Socket Leg
author_facet 2-s2.0-85185252875
author_sort 2-s2.0-85185252875
title Static Structural Analysis on Different Topology Optimization Transtibial Prosthetic Socket Leg
title_short Static Structural Analysis on Different Topology Optimization Transtibial Prosthetic Socket Leg
title_full Static Structural Analysis on Different Topology Optimization Transtibial Prosthetic Socket Leg
title_fullStr Static Structural Analysis on Different Topology Optimization Transtibial Prosthetic Socket Leg
title_full_unstemmed Static Structural Analysis on Different Topology Optimization Transtibial Prosthetic Socket Leg
title_sort Static Structural Analysis on Different Topology Optimization Transtibial Prosthetic Socket Leg
publishDate 2024
container_title International Journal of Technology
container_volume 15
container_issue 2
doi_str_mv 10.14716/ijtech.v15i2.6711
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-85185252875&doi=10.14716%2fijtech.v15i2.6711&partnerID=40&md5=3817d41fe6d5019c49b8eb66893c679a
description The transtibial Prosthetic Socket serves as the primary connection between the residual limb of an amputee and the prosthesis. The socket must provide a secure and stable base for the amputee to bear their body weight and move around comfortably. Topological optimization is a process that aims to improve the mechanical properties of the prosthetic socket. It involves designing a structure that minimizes stress concentrations and maximizes strength while using the least amount of material. The objective of this study is to improve the parametric design of the transtibial socket prosthesis through topology optimization and determine the stress performance of 3D-printed transtibial sockets using static structural analysis. The method used is Finite Element Analysis (FEA) simulations of forces onto the socket during phases of walking on different topology-optimized socket designs and using the same material, which is ABS. Furthermore, the results were analyzed through static structural analysis using ANSYS software. The analysis revealed that a reduction in the weight of the model correlates with an increase in stress thus may contribute to material fatigue and reducing long term performance. © 2024, Faculty of Engineering. All rights reserved.
publisher Faculty of Engineering, Universitas Indonesia
issn 20869614
language English
format Article
accesstype All Open Access; Gold Open Access
record_format scopus
collection Scopus
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