Investigation of Meshing Strategy on Mechanical Behaviour of Hip Stem Implant Design Using FEA

Hip joint is an important human joints system. The damaged hip joints need to be replaced with artificial hip joints. The Study of the hip joint is very costly therefore another calculation method is demanded to produce good result in acceptable time and cost. Considering this problem, a series of s...

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Main Authors: Ikhsan, Triyono Joko, Prabowo Aditya Rio, Sohn Jung Min
Format: Article
Language:English
Published: De Gruyter 2020-08-01
Series:Open Engineering
Subjects:
Online Access:https://doi.org/10.1515/eng-2020-0087
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author Ikhsan
Triyono Joko
Prabowo Aditya Rio
Sohn Jung Min
author_facet Ikhsan
Triyono Joko
Prabowo Aditya Rio
Sohn Jung Min
author_sort Ikhsan
collection DOAJ
description Hip joint is an important human joints system. The damaged hip joints need to be replaced with artificial hip joints. The Study of the hip joint is very costly therefore another calculation method is demanded to produce good result in acceptable time and cost. Considering this problem, a series of study to assess hip joint performance is conducted using numerical approach. Important parameter for example applied materials are used in the modelling by idealizing Ti-6Al-4V compared to SS 316 L, and stemlengthwas chosen to be 128 mm. ANSYS software was used to analyze models, and designed element size variations were set to be in range 1 to 2.5 mm. The magnitude of force was placed on the femoral head with an angle of 16∘C from the vertical axis. Results showed that SS 316 L material has smaller deformation than Ti material. Whereas Central Processing (CP) time decreases in increasing element size for both materials. In addition, more variations in mesh size are needed to get more accurate convergent results.
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spelling doaj.art-7cb2ee73b9a347b9b5944ea73fa659292022-12-21T21:59:08ZengDe GruyterOpen Engineering2391-54392020-08-0110176977510.1515/eng-2020-0087eng-2020-0087Investigation of Meshing Strategy on Mechanical Behaviour of Hip Stem Implant Design Using FEAIkhsan0Triyono Joko1Prabowo Aditya Rio2Sohn Jung Min3Graduate School of Mechanical Engineering, Sebelas Maret University, Surakarta, IndonesiaDepartment of Mechanical Engineering, Sebelas Maret University, Surakarta, IndonesiaDepartment of Mechanical Engineering, Sebelas Maret University, Surakarta, IndonesiaInterdisciplinary Program of Marine Convergence Design, Pukyong National University, Busan48513, South KoreaHip joint is an important human joints system. The damaged hip joints need to be replaced with artificial hip joints. The Study of the hip joint is very costly therefore another calculation method is demanded to produce good result in acceptable time and cost. Considering this problem, a series of study to assess hip joint performance is conducted using numerical approach. Important parameter for example applied materials are used in the modelling by idealizing Ti-6Al-4V compared to SS 316 L, and stemlengthwas chosen to be 128 mm. ANSYS software was used to analyze models, and designed element size variations were set to be in range 1 to 2.5 mm. The magnitude of force was placed on the femoral head with an angle of 16∘C from the vertical axis. Results showed that SS 316 L material has smaller deformation than Ti material. Whereas Central Processing (CP) time decreases in increasing element size for both materials. In addition, more variations in mesh size are needed to get more accurate convergent results.https://doi.org/10.1515/eng-2020-0087finite element analysismeshinghip stemti-6al-4vss 316 l
spellingShingle Ikhsan
Triyono Joko
Prabowo Aditya Rio
Sohn Jung Min
Investigation of Meshing Strategy on Mechanical Behaviour of Hip Stem Implant Design Using FEA
Open Engineering
finite element analysis
meshing
hip stem
ti-6al-4v
ss 316 l
title Investigation of Meshing Strategy on Mechanical Behaviour of Hip Stem Implant Design Using FEA
title_full Investigation of Meshing Strategy on Mechanical Behaviour of Hip Stem Implant Design Using FEA
title_fullStr Investigation of Meshing Strategy on Mechanical Behaviour of Hip Stem Implant Design Using FEA
title_full_unstemmed Investigation of Meshing Strategy on Mechanical Behaviour of Hip Stem Implant Design Using FEA
title_short Investigation of Meshing Strategy on Mechanical Behaviour of Hip Stem Implant Design Using FEA
title_sort investigation of meshing strategy on mechanical behaviour of hip stem implant design using fea
topic finite element analysis
meshing
hip stem
ti-6al-4v
ss 316 l
url https://doi.org/10.1515/eng-2020-0087
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AT triyonojoko investigationofmeshingstrategyonmechanicalbehaviourofhipstemimplantdesignusingfea
AT prabowoadityario investigationofmeshingstrategyonmechanicalbehaviourofhipstemimplantdesignusingfea
AT sohnjungmin investigationofmeshingstrategyonmechanicalbehaviourofhipstemimplantdesignusingfea