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Design and analysis of solid ankle foot orthosis by employing mechanical characterization and a low-cost scanning approach for additive manufacturing

Muhammad Abas (Department of Industrial Engineering, University of Engineering and Technology, Peshawar, Pakistan)
Tufail Habib (Department of Industrial Engineering, University of Engineering and Technology, Peshawar, Pakistan)
Sahar Noor (Department of Industrial Engineering, University of Engineering and Technology, Peshawar, Pakistan)

Rapid Prototyping Journal

ISSN: 1355-2546

Article publication date: 22 April 2024

Issue publication date: 1 May 2024

15

Abstract

Purpose

This study aims to investigate the fabrication of solid ankle foot orthoses (SAFOs) using fused deposition modeling (FDM) printing technology. It emphasizes cost-effective 3D scanning with the Kinect sensor and conducts a comparative analysis of SAFO durability with varying thicknesses and materials, including polylactic acid (PLA) and carbon fiber-reinforced (PLA-C), to address research gaps from prior studies.

Design/methodology/approach

In this study, the methodology comprises key components: data capture using a cost-effective Microsoft Kinect® Xbox 360 scanner to obtain precise leg dimensions for SAFOs. SAFOs are designed using CAD tools with varying thicknesses (3, 4, and 5 mm) while maintaining consistent geometry, allowing controlled thickness impact investigation. Fabrication uses PLA and PLA-C materials via FDM 3D printing, providing insights into material suitability. Mechanical analysis uses dual finite element analysis to assess force–displacement curves and fracture behavior, which were validated through experimental testing.

Findings

The results indicate that the precision of the scanned leg dimensions, compared to actual anthropometric data, exhibits a deviation of less than 5%, confirming the accuracy of the cost-effective scanning approach. Additionally, the research identifies optimal thicknesses for SAFOs, recommending a 4 and 5 mm thickness for PLA-C-based SAFOs and an only 5 mm thickness for PLA-based SAFOs. This optimization enhances the overall performance and effectiveness of these orthotic solutions.

Originality/value

This study’s innovation lies in its holistic approach, combining low-cost 3D scanning, 3D printing and computational simulations to optimize SAFO materials and thickness. These findings advance the creation of cost-effective and efficient orthotic solutions.

Keywords

Acknowledgements

This work was supported by Pakistan Science Foundation with project funding (Grant numbers PSF/CRP/KPKUET/T-Helix (126)).

Data availability statement: All the data is available in manuscript.

Conflict of interest: The authors declare no competing interests.

Citation

Abas, M., Habib, T. and Noor, S. (2024), "Design and analysis of solid ankle foot orthosis by employing mechanical characterization and a low-cost scanning approach for additive manufacturing", Rapid Prototyping Journal, Vol. 30 No. 4, pp. 782-797. https://doi.org/10.1108/RPJ-09-2023-0316

Publisher

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Emerald Publishing Limited

Copyright © 2024, Emerald Publishing Limited

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