Topology Optimization of Biomedical Wrist Orthosis Using Tough Photopolymer Resin

This paper presents a study case on the structural topology optimization of biomedical wrist orthosis. The manufacturing process integrates photosensitive resign that enables production of geometries that are both impact-resistant and exhibit a smooth, refined surface finishing which is essential fo...

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Main Authors: Bassir David, Guessasma Sofiane, Lebaal Nadhir, Brunel Gauthier, Choquet Axel, Gleyzon Franc¸ois, Chang Haochen
Format: Article
Language:English
Published: EDP Sciences 2025-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2025/31/e3sconf_mdoa2025_02003.pdf
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author Bassir David
Guessasma Sofiane
Lebaal Nadhir
Brunel Gauthier
Choquet Axel
Gleyzon Franc¸ois
Chang Haochen
author_facet Bassir David
Guessasma Sofiane
Lebaal Nadhir
Brunel Gauthier
Choquet Axel
Gleyzon Franc¸ois
Chang Haochen
author_sort Bassir David
collection DOAJ
description This paper presents a study case on the structural topology optimization of biomedical wrist orthosis. The manufacturing process integrates photosensitive resign that enables production of geometries that are both impact-resistant and exhibit a smooth, refined surface finishing which is essential for biomedical applications. The 3D printing is based on Digital Light Processing (DLP). Based on extensive biomechanical studies for accurate simulation parameters, four loading cases were defined for topology optimization. Maximam stresses and displacements were considered at upper limits for the optimization problem with weigh reduction.
format Article
id doaj-art-6824ef0bda954f2eaf9bb476fdc7930a
institution DOAJ
issn 2267-1242
language English
publishDate 2025-01-01
publisher EDP Sciences
record_format Article
series E3S Web of Conferences
spelling doaj-art-6824ef0bda954f2eaf9bb476fdc7930a2025-08-20T03:21:12ZengEDP SciencesE3S Web of Conferences2267-12422025-01-016310200310.1051/e3sconf/202563102003e3sconf_mdoa2025_02003Topology Optimization of Biomedical Wrist Orthosis Using Tough Photopolymer ResinBassir David0Guessasma Sofiane1Lebaal Nadhir2Brunel Gauthier3Choquet Axel4Gleyzon Franc¸ois5Chang Haochen6Smart Structural Health Monitoring and Control Laboratory, DGUT-CNAM, Dongguan University of TechnologyINRA, BIA, rue de la géraudièreICB-COMM, Université de Technologie de Belfort-MontbéliardIRAMAT UMR CNRS 7065, UTBM, Rue du ChateauIRAMAT UMR CNRS 7065, UTBM, Rue du ChateauIRAMAT UMR CNRS 7065, UTBM, Rue du ChateauIRAMAT UMR CNRS 7065, UTBM, Rue du ChateauThis paper presents a study case on the structural topology optimization of biomedical wrist orthosis. The manufacturing process integrates photosensitive resign that enables production of geometries that are both impact-resistant and exhibit a smooth, refined surface finishing which is essential for biomedical applications. The 3D printing is based on Digital Light Processing (DLP). Based on extensive biomechanical studies for accurate simulation parameters, four loading cases were defined for topology optimization. Maximam stresses and displacements were considered at upper limits for the optimization problem with weigh reduction.https://www.e3s-conferences.org/articles/e3sconf/pdf/2025/31/e3sconf_mdoa2025_02003.pdf
spellingShingle Bassir David
Guessasma Sofiane
Lebaal Nadhir
Brunel Gauthier
Choquet Axel
Gleyzon Franc¸ois
Chang Haochen
Topology Optimization of Biomedical Wrist Orthosis Using Tough Photopolymer Resin
E3S Web of Conferences
title Topology Optimization of Biomedical Wrist Orthosis Using Tough Photopolymer Resin
title_full Topology Optimization of Biomedical Wrist Orthosis Using Tough Photopolymer Resin
title_fullStr Topology Optimization of Biomedical Wrist Orthosis Using Tough Photopolymer Resin
title_full_unstemmed Topology Optimization of Biomedical Wrist Orthosis Using Tough Photopolymer Resin
title_short Topology Optimization of Biomedical Wrist Orthosis Using Tough Photopolymer Resin
title_sort topology optimization of biomedical wrist orthosis using tough photopolymer resin
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2025/31/e3sconf_mdoa2025_02003.pdf
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AT choquetaxel topologyoptimizationofbiomedicalwristorthosisusingtoughphotopolymerresin
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