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基于形状记忆合金的可穿戴设备:综述,以及工业 4.0 中 HCI 和 HRI 的概念框架。

Shape Memory Alloy-Based Wearables: A Review, and Conceptual Frameworks on HCI and HRI in Industry 4.0.

机构信息

Confirm Center for Smart Manufacturing, Science Foundation Ireland, V94 C928 Limerick, Ireland.

PRISM Research Institute, Technological University of the Shannon, Midlands Midwest, Athlone, N37 HD68 Co. Westmeath, Ireland.

出版信息

Sensors (Basel). 2022 Sep 8;22(18):6802. doi: 10.3390/s22186802.

Abstract

Ever since its discovery, the applications of Shape Memory Alloys (SMA) can be found across a range of application domains, from structural design to medical technology. This is based upon the unique and inherent characteristics such as thermal Shape Memory Effect (SME) and Superelasticity (or Pseudoelasticity). While thermal SME is used for shape morphing applications wherein temperature change can govern the shape and dimension of the SMA, Superelasticity allows the alloy to withstand a comparatively very high magnitude of loads without undergoing plastic deformation at higher temperatures. These unique properties in wearables have revolutionized the field, and from fabrics to exoskeletons, SMA has found its place in robotics and cobotics. This review article focuses on the most recent research work in the field of SMA-based smart wearables paired with robotic applications for human-robot interaction. The literature is categorized based on SMA property incorporated and on actuator or sensor-based concept. Further, use-cases or conceptual frameworks for SMA fiber in fabric for '' and SMA springs in the shoe soles for '' are proposed. The conceptual frameworks are built upon existing technologies; however, their utility in a smart factory concept is emphasized, and algorithms to achieve the same are proposed. The integration of the two concepts with the Industrial Internet of Things (IIoT) is discussed, specifically regarding minimizing hazards for the worker/user in Industry 5.0. The article aims to propel a discussion regarding the multi-faceted applications of SMAs in human-robot interaction and Industry 5.0. Furthermore, the challenges and the limitations of the smart alloy and the technological barriers restricting the growth of SMA applications in the field of smart wearables are observed and elaborated.

摘要

形状记忆合金 (SMA) 的应用自发现以来,可以在从结构设计到医疗技术等一系列应用领域中找到。这基于其独特的固有特性,如热形状记忆效应 (SME) 和超弹性(或伪弹性)。虽然热 SME 用于形状变形应用,其中温度变化可以控制 SMA 的形状和尺寸,但超弹性允许合金在较高温度下承受相对非常高的负载而不会发生塑性变形。这些独特的特性在可穿戴设备中引发了革命,从织物到外骨骼,SMA 在机器人技术和协作机器人中找到了自己的位置。本文综述了基于 SMA 的智能可穿戴设备与机器人应用相结合的 SMA 领域的最新研究工作,用于人机交互。文献根据所采用的 SMA 特性以及基于执行器或传感器的概念进行分类。此外,还提出了用于“织物中的 SMA 纤维”和“鞋底中的 SMA 弹簧”的用例或概念框架。这些概念框架建立在现有技术的基础上;然而,强调了它们在智能工厂概念中的实用性,并提出了实现这一目标的算法。讨论了这两个概念与工业互联网 (IIoT) 的集成,特别是关于在工业 5.0 中最小化工人/用户的危险。本文旨在引发关于 SMA 在人机交互和工业 5.0 中的多方面应用的讨论。此外,还观察和阐述了智能合金的挑战和局限性以及限制 SMA 在智能可穿戴设备领域应用的技术障碍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5819/9504003/3652ade7cedc/sensors-22-06802-g001.jpg

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