Enhancing 3D Printed Bed-Resting Ankle-Foot Orthosis Design through Topology Optimization

Ankle-foot orthoses (AFOs) are devices used to support patients with ankle muscle weakness from conditions like stroke or cerebral palsy. This project designs a lightweight AFO for bedridden patients, focusing on engaging the calf muscle and enhancing structural performance while minimizing material...

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書目詳細資料
發表在:International Exchange and Innovation Conference on Engineering and Sciences
主要作者: Ab Rashid A.M.; Mukhainizam A.H.D.; Rashid H.; Ramlee M.H.; Pangesty A.I.; Abdullah A.H.
格式: Conference paper
語言:English
出版: Kyushu University 2024
在線閱讀:https://www.scopus.com/inward/record.uri?eid=2-s2.0-85213331787&doi=10.5109%2f7323255&partnerID=40&md5=683ac5eea9cba8732732b506f0c8692f
實物特徵
總結:Ankle-foot orthoses (AFOs) are devices used to support patients with ankle muscle weakness from conditions like stroke or cerebral palsy. This project designs a lightweight AFO for bedridden patients, focusing on engaging the calf muscle and enhancing structural performance while minimizing material use through topology optimization using CAD software, Solid Works. The study analyzed three materials: Polylactic Acid (PLA), Nylon 6, and Acrylonitrile Butadiene Styrene (ABS). Weight reduction was assessed using Cura software, dividing the AFO into foot and shank models with specific loading and boundary conditions. Five levels of topology optimization (10%-50% weight reduction) were proposed, showing similar weight reduction patterns across materials. However, while weight was reduced, filament usage and printing time were not, as the optimized models required additional support elements during printing. Thus, topology optimization reduces the product's weight but not necessarily filament usage in 3D printing. © 2024, IEICES/Kyushu University. All rights reserved.
ISSN:24341436
DOI:10.5109/7323255