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基于超材料的假肢足部力学设计优化

Design Optimization of the Mechanics of a Metamaterial-Based Prosthetic Foot.

作者信息

Mrozek-Czajkowska Agata, Stręk Tomasz

机构信息

Faculty of Mechanical Engineering, Poznan University of Technology, Piotrowo 3 Street, 61-138 Poznan, Poland.

出版信息

Materials (Basel). 2024 Dec 29;18(1):96. doi: 10.3390/ma18010096.

Abstract

This paper is dedicated to the analysis of a foot prosthesis optimization process, with a particular focus on the application of optimization algorithms and unconventional materials, such as auxetic materials. The study aims to enhance prosthesis performance by minimizing the difference between the ground reaction force generated by the prosthetic foot and that of a natural limb. In the initial part of the study, the basic topics concerning the parameterization of the foot prosthesis geometry and the preparation of a finite element model for human gait are discussed. In the subsequent part of the study, the focus is on the optimization process, in which algorithms were applied to adjust the prosthesis structure to the patient's individual needs. The optimization process utilized a finite element method gait model. After validating the FEM, an algorithm generating the prosthesis geometry based on the given parameters was developed. These parameters were optimized using the VOA, comparing FEM gait model data on vertical ground reaction force with experimental results. The results of the foot prosthesis optimization are presented through a comparison of different structural models. The study also demonstrates the application of auxetic materials, which, due to their unique mechanical properties, can enhance foot prosthesis efficiency. Simulations were performed using multi-material topology optimization. The results obtained for different gait phases were compared.

摘要

本文致力于足部假肢优化过程的分析,特别关注优化算法和非常规材料(如负泊松比材料)的应用。该研究旨在通过最小化假肢脚产生的地面反作用力与自然肢体产生的地面反作用力之间的差异来提高假肢性能。在研究的初始部分,讨论了与足部假肢几何形状参数化以及人体步态有限元模型准备相关的基本主题。在研究的后续部分,重点是优化过程,其中应用算法根据患者的个体需求调整假肢结构。优化过程使用了有限元方法步态模型。在验证有限元模型后,开发了一种基于给定参数生成假肢几何形状的算法。使用变分渐近分析(VOA)对这些参数进行了优化,将有限元步态模型在垂直地面反作用力方面的数据与实验结果进行了比较。通过不同结构模型的比较展示了足部假肢优化的结果。该研究还展示了负泊松比材料的应用,由于其独特的力学性能,可提高足部假肢的效率。使用多材料拓扑优化进行了模拟。比较了不同步态阶段获得的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a21e/11721499/60614683dedd/materials-18-00096-g001.jpg

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