仿生假肢的设计

Aldiansyah Wahyu Pratama, D. Daryono, M. Mulyono
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引用次数: 0

摘要

随着印度尼西亚身体残疾者人数的增加和膝盖以上截肢病例的增多,印度尼西亚对假肢的需求也在增加。义肢是替代因先天缺陷、截肢或疾病而失去肢体的工具。仿生假肢具有长期的用途,同时也支持残疾人的权利。该设备可以帮助膝盖以上的截肢者。为了设计仿生假肢,需要进行生物力学分析以获得人体的行走模式,并对结构和工作材料进行分析以获得用于仿生假肢脚的安全舒适的材料。这款仿生腿部假肢使用了一个自动系统,使用肌电(EMG)传感器作为肌肉的信号拾取器,Arduino Mega 2560作为输入信号处理器,然后转换为输出信号,行星齿轮作为膝关节传动,这样身体就不会向前或向后摔倒。利用Autodesk Inventor软件分析的结果表明,该仿生腿的假肢可以承受404.526 MPa的压力,承受354.576 N的反作用力和15.4073 N的反力矩,因此基于结果的仿生假肢在残疾人身上使用时非常安全舒适。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of bionic prosthetic leg
Along with the increase in the number of Indonesian people who are physically disabled and the number of cases of leg amputations above the knee, the need for prosthetic limbs in Indonesia is also increasing. Prosthetic limbs are tools to replace lost limbs caused by birth defects, amputations, or disease. The bionic prosthetic leg has a long-term useful purpose, as well as supporting the rights of people with disabilities. The device helps the above-the-knee amputee. To design a bionic prosthetic leg, a biomechanical analysis of work is needed to obtain a walking pattern in humans and an analysis of the structure and working material to obtain a safe and comfortable material for use in a bionic prosthetic foot. This bionic leg prosthetic uses an automatic system using an Electromyography (EMG) sensor as a signal picker for the muscles, Arduino Mega 2560 as an input signal processor which is then converted into an output signal and Planetary gear as a knee joint transmission so that the body does not fall forward or backward. The results of the analysis using Autodesk Inventor software on the prosthetic of the bionic leg can withstand a pressure of 404.526 MPa, withstand a reaction force of 354.576 N and a reaction moment of 15.4073 N. So based on the results of the bionic prosthetic leg is very safe and comfortable when used on people with disabilities.
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