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利用电流变流体和磁流变材料的传感器及传感装置——综述

Sensors and Sensing Devices Utilizing Electrorheological Fluids and Magnetorheological Materials-A Review.

作者信息

Park Yu-Jin, Choi Seung-Bok

机构信息

Korea Initiative for Fostering University of Research & Innovation, Inha University, Incheon 21999, Republic of Korea.

Department of Mechanical Engineering, The State University of New York, Korea (SUNY Korea), Incheon 21985, Republic of Korea.

出版信息

Sensors (Basel). 2024 Apr 29;24(9):2842. doi: 10.3390/s24092842.

Abstract

This paper comprehensively reviews sensors and sensing devices developed or/and proposed so far utilizing two smart materials: electrorheological fluids (ERFs) and magnetorheological materials (MRMs) whose rheological characteristics such as stiffness and damping can be controlled by external stimuli; an electrical voltage for ERFs and a magnetic field for MRMs, respectively. In this review article, the MRMs are classified into magnetorheological fluids (MRF), magnetorheological elastomers (MRE) and magnetorheological plastomers (MRP). To easily understand the history of sensing research using these two smart materials, the order of this review article is organized in a chronological manner of ERF sensors, MRF sensors, MRE sensors and MRP sensors. Among many sensors fabricated from each smart material, one or two sensors or sensing devices are adopted to discuss the sensing configuration, working principle and specifications such as accuracy and sensitivity. Some sensors adopted in this article include force sensors, tactile devices, strain sensors, wearable bending sensors, magnetometers, display devices and flux measurement sensors. After briefly describing what has been reviewed in a conclusion, several challenging future works, which should be undertaken for the practical applications of sensors or/and sensing devices, are discussed in terms of response time and new technologies integrating with artificial intelligence neural networks in which several parameters affecting the sensor signals can be precisely and optimally tuned. It is sure that this review article is very helpful to potential readers who are interested in creative sensors using not only the proposed smart materials but also different types of smart materials such as shape memory alloys and active polymers.

摘要

本文全面综述了迄今为止利用两种智能材料开发或提出的传感器及传感装置

电流变流体(ERF)和磁流变材料(MRM),其流变特性(如刚度和阻尼)可通过外部刺激来控制,分别是对ERF施加电压和对MRM施加磁场。在这篇综述文章中,MRM被分为磁流变液(MRF)、磁流变弹性体(MRE)和磁流变塑性体(MRP)。为便于理解使用这两种智能材料的传感研究历史,本文按照ERF传感器、MRF传感器、MRE传感器和MRP传感器的时间顺序进行组织。在由每种智能材料制造的众多传感器中,选取一两种传感器或传感装置来讨论传感配置、工作原理以及诸如精度和灵敏度等规格。本文采用的一些传感器包括力传感器、触觉装置、应变传感器、可穿戴弯曲传感器、磁力计、显示装置和磁通测量传感器。在结论部分简要描述了已综述的内容之后,从响应时间以及与人工智能神经网络集成的新技术方面讨论了为使传感器或传感装置实际应用而应开展的若干具有挑战性的未来工作,其中影响传感器信号的几个参数可被精确且优化地调整。可以肯定的是,这篇综述文章对于不仅对所提出的智能材料而且对不同类型的智能材料(如形状记忆合金和活性聚合物)感兴趣的潜在读者非常有帮助。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e217/11086258/505d63860490/sensors-24-02842-g001.jpg

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