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◆ Journal of the mechanical behavior of biomedical materials/Journal of mechanical behavior of biomedical materials2025-12-06· Auxetics

Bioinspired auxetic metamaterial liners and sockets for transtibial prostheses: Energy absorption and stress redistribution

Mahdi Bodaghi, Saman Jolaiy, Kaveh Rahmani, Sheng Li, Fei Gao, Ali Zolfagharian

原始摘要(英文原文)· Original abstract
Prosthetic comfort depends on how the residual limb, liner, and socket share load. A crab-inspired auxetic metamaterial is introduced and applied to transtibial liners and sockets, with region-specific and fully auxetic variants benchmarked against conventional interfaces. Patient CT/3D scans guided anatomically targeted components. Auxetic lattices were additively manufactured in TPU (liners) and PA-12 (sockets). Cyclic compression experiments calibrated material models, and finite-element analyses quantified interface stresses and energy metrics. Across four sensitive liner regions, a four-zone auxetic TPU liner cut peak von Mises stresses by up to 60 %, and a fully auxetic liner by up to 65 %, relative to silicone/EL50 baselines. In sockets, a PA-12 design with two auxetic zones reduced peak stresses by ∼40-45 % versus ABS, while a fully auxetic socket achieved ∼80 % reductions with higher specific energy absorption. These findings indicate that bioinspired auxetics, integrated where anatomy needs compliance, improve pressure redistribution and mass-efficient energy management. The workflow from imaging to lattice design, printing, testing, and simulation was validated and is compatible with multi-jet fusion, enabling patient-specific prosthetic interfaces suitable for clinical translation.
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Bioinspired auxetic metamaterial liners and sockets for transtibial prostheses: Energy absorption and stress redistribution — 科研速览 Science Skim