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对仿生腿假肢动态系统行为的贡献。

Contributions to the Dynamic Regime Behavior of a Bionic Leg Prosthesis.

作者信息

Drăgoi Marius-Valentin, Hadăr Anton, Goga Nicolae, Baciu Florin, Ștefan Amado, Grigore Lucian Ștefăniță, Gorgoteanu Damian, Molder Cristian, Oncioiu Ionica

机构信息

Department of Strength of Materials, Faculty of Industrial Engineering and Robotics, Politehnica University of Bucharest, 060042 București, Romania.

Academy of Romanian Scientists, 3 Ilfov Street, Sector 5, 050045 Bucharest, Romania.

出版信息

Biomimetics (Basel). 2023 Sep 6;8(5):414. doi: 10.3390/biomimetics8050414.

Abstract

The purpose of prosthetic devices is to reproduce the angular-torque profile of a healthy human during locomotion. A lightweight and energy-efficient joint is capable of decreasing the peak actuator power and/or power consumption per gait cycle, while adequately meeting profile-matching constraints. The aim of this study was to highlight the dynamic characteristics of a bionic leg with electric actuators with rotational movement. Three-dimensional (3D)-printing technology was used to create the leg, and servomotors were used for the joints. A stepper motor was used for horizontal movement. For better numerical simulation of the printed model, three mechanical tests were carried out (tension, compression, and bending), based on which the main mechanical characteristics necessary for the numerical simulation were obtained. For the experimental model made, the dynamic stresses could be determined, which highlights the fact that, under the conditions given for the experimental model, the prosthesis resists.

摘要

假肢装置的目的是在运动过程中重现健康人的角扭矩曲线。一个轻量化且节能的关节能够降低每个步态周期的峰值致动器功率和/或功耗,同时充分满足曲线匹配约束。本研究的目的是突出具有旋转运动电动致动器的仿生腿的动态特性。采用三维(3D)打印技术制作腿部,并使用伺服电机作为关节。使用步进电机进行水平运动。为了对打印模型进行更好的数值模拟,进行了三项力学测试(拉伸、压缩和弯曲),并基于此获得了数值模拟所需的主要力学特性。对于所制作的实验模型,可以确定动态应力,这突出了在给定实验模型条件下假肢具有抗性这一事实。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41d6/10526395/c57026828428/biomimetics-08-00414-g001.jpg

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