Robert Bosch Centre for Cyber Physical Systems, Indian Institute of Science, Bengaluru 560012, India.
Department of Mechanical Design Engineering, Kumoh National Institute of Technology, Daehak-Ro 61, Gumi-si 39177, Korea.
Sensors (Basel). 2022 Jun 27;22(13):4860. doi: 10.3390/s22134860.
This paper mainly focuses on various types of robots driven or actuated by shape memory alloy (SMA) element in the last decade which has created the potential functionality of SMA in robotics technology, that is classified and discussed. The wide spectrum of increasing use of SMA in the development of robotic systems is due to the increase in the knowledge of handling its functional characteristics such as large actuating force, shape memory effect, and super-elasticity features. These inherent characteristics of SMA can make robotic systems small, flexible, and soft with multi-functions to exhibit different types of moving mechanisms. This article comprehensively investigates three subsections on soft and flexible robots, driving or activating mechanisms, and artificial muscles. Each section provides an insight into literature arranged in chronological order and each piece of literature will be presented with details on its configuration, control, and application.
本文主要关注过去十年中各种类型的机器人,这些机器人由形状记忆合金 (SMA) 元件驱动或致动,这为 SMA 在机器人技术中的潜在功能创造了条件,并对其进行了分类和讨论。SMA 在机器人系统发展中的广泛应用是由于对其功能特性(如大驱动力、形状记忆效应和超弹性)的处理知识的增加。SMA 的这些固有特性可以使机器人系统具有多功能性,变得更小、更灵活、更柔软,从而展示不同类型的运动机制。本文全面研究了三个小节,分别是软机器人和柔性机器人、驱动或激活机制以及人工肌肉。每个部分都深入探讨了按时间顺序排列的文献,每篇文献都将详细介绍其配置、控制和应用。