Shape Memory Alloy (SMA)-Based Exoskeletons for Upper Limb Rehabilitation

D. Copaci, Janeth Arias, Luis Moreno, D. Blanco
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引用次数: 2

Abstract

This contribution presents the advances in the use of flexible Shape Memory Alloy (SMA)-based actuators for the development of upper limb rehabilitation exoskeletons that have been carried out by our research group. The actuator features developed by our research group maintain the SMA wire characteristics (low-weight, low-cost, noiseless operation, compact, and simplicity) and additionally presents the flexibility and its increase the work frequency. These characteristics make that its integration in rehabilitation exoskeletons provides the user more comfort, easy to use, and freedom of movement. The chapter describes some different rigid and soft rehabilitation exoskeletons for different joints such as the elbow, wrist, and hand in which this type of actuator has been successfully integrated. This gives the possibilities to expand the research line with the actuated soft exosuits systems, in a future development perspective.
基于形状记忆合金(SMA)的上肢康复外骨骼
这篇文章介绍了我们研究小组在上肢康复外骨骼开发中使用基于柔性形状记忆合金(SMA)的致动器的进展。本课程组开发的致动器特点保持了SMA线的特点(重量轻、成本低、运行无噪音、结构紧凑、简单),并具有灵活性和工作频率的提高。这些特点使其与康复外骨骼的集成为使用者提供了更舒适、更方便、更自由的运动。本章描述了一些不同的硬和软康复外骨骼不同的关节,如肘部,手腕,手,其中这种类型的驱动器已成功集成。从未来的发展角度来看,这为扩展研究领域提供了可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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