Perspective Of Different Actuators of Hand Rehabilitation Robot and Wearing Safety

Authors

  • Mengqi Liu

DOI:

https://doi.org/10.54097/hset.v38i.5985

Keywords:

Hand rehabilitation robot; wearing safety; actuator.

Abstract

Stroke is a common acute cerebrovascular disease in middle-aged and aged people over 40 years old. With the development of science and technology, more and more patients with stroke related diseases are using hand rehabilitation robots for hand rehabilitation treatment. The body of middle-aged and aged people is weak and easy to be injured, so the safety of hand rehabilitation robot is very important. In this review, the selection and analysis of the new driving mechanism of the hand rehabilitation robot are reviewed. Based on the reference, analysis and summary of several literatures, the work characteristics and safety applications of different actuators of hand rehabilitation robot are compared Transverse and Longitudinal. Through the analysis and reference of key data and its structure and other dimensions, a detailed comparison and comprehensive analysis were made on how to improve the wearable comfort of the hand rehabilitation robot, which can provide a reference for hand manufacturers or users.

Downloads

Download data is not yet available.

References

Zhang Baowei. Design and Implementation of High-Performance Stepper Motor actuator. Digital Design (Part 1), 2021,10(3):66.

Qu Da⁃ming, Li Xing⁃fei, Tuo Wei⁃xiao, Zhou Zheng. Multilevel Motor Driver Design of Voice Coil Motor Used in Inertial Reference Unit[J]. Instrument Technique and Sensor, 2022(8):44-50,68.

Xu Hui, Li Zhi-shan, Wang Li, Ren Xu-wen. Hardware Design of Brushless DC Motor Controller and Drive Based on STM32. Measurement and Control Technology,2012,31(12):73-76.

Xu Hongwei, Fei Yanqiong, Zhu Yuhang, Wang Xu. Research on deformation of SMA spring actuators[J]. Chinese journal of high technology communications, 2017, 27(6):554-558.

Shi Hu, He Bin, Wang Zheng, Mei Xuesong. Magneto-mechanical Behavior of Magnetic Shape Memory Alloy and Its Application in Hydraulic Valve Actuator[J]. Journal of mechanical engineering, 2018, (20) : 235-244.

Wu Zhiguang. Research on New SMA Actuator and Bionic Hand [J]. Journal of mechanical transmission, 2021, (6): 159-164.

Fan Wei, Peng Guangzheng, Huang Yu. Pneumatic Muscle Actuator [J]. Machine Tool & Hydraulics, 2003(1): 32-36.

Yang Gang, Li Bao-ren, Liu Jun. A Novel Pneumatic Actuator: Pneumatic Artificial Muscle. China Mechanical Engineering, 2003,14(15):1347-1349.

Peng He, Liu Hong-bo. Types and Characteristics of Pneumatic Actuator [J]. Journal of Jilin Institute of Chemical Technology, 2017,34(3):56-58.

Yang Gang, Li Bao-ren, Liu Jun. A New Analytical Method on Characteristics of Artificial Pneumatic Muscle Actuator [J]. Chinese Hydraulics & Pneumatics, 2002(10):22-25.

Huang Qingyun, Wang Huaming, Zhu Yinlong, Yang Weidong. Modeling of Curved dielectric electroactive polymer Actuator [J]. Piezoelectrics & AcoustoOptics, 2016,38(01):19-23.

Zhu Y L, Wang H M, Zhao D B. Failure analysis of dielectric electroactive polymer (EAP)actuator.Acta Aeronautica et Astro— nauticaSinfca.2012, 33(2) :347-353.

Luo Huaan, Wang Huaming, You Youpeng, Zhu Yinlong, Yang Weidong. Characteristics of Dielectric Electroactive Polymer Cylindrical Actuator under Voltage Activation [J]. Journal of mechanical engineering, 2014 (19): 80-87.

Downloads

Published

16-03-2023

How to Cite

Liu, M. (2023). Perspective Of Different Actuators of Hand Rehabilitation Robot and Wearing Safety. Highlights in Science, Engineering and Technology, 38, 980-987. https://doi.org/10.54097/hset.v38i.5985