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用于多功能传感器系统的硅橡胶复合材料的最新进展综述

Review of Recent Progress on Silicone Rubber Composites for Multifunctional Sensor Systems.

作者信息

Kumar Vineet, Alam Md Najib, Park Sang Shin

机构信息

School of Mechanical Engineering, Yeungnam University, 280 Daehak-Ro, Gyeongsan 38541, Gyeongbuk, Republic of Korea.

出版信息

Polymers (Basel). 2024 Jun 28;16(13):1841. doi: 10.3390/polym16131841.

Abstract

The latest progress (the year 2021-2024) on multifunctional sensors based on silicone rubber is reported. These multifunctional sensors are useful for real-time monitoring through relative resistance, relative current change, and relative capacitance types. The present review contains a brief overview and literature survey on the sensors and their multifunctionalities. This contains an introduction to the different functionalities of these sensors. Following the introduction, the survey on the types of filler or rubber and their fabrication are briefly described. The coming section deals with the fabrication methodology of these composites where the sensors are integrated. The special focus on mechanical and electro-mechanical properties is discussed. Electro-mechanical properties with a special focus on response time, linearity, and gauge factor are reported. The next section of this review reports the filler dispersion and its role in influencing the properties and applications of these sensors. Finally, various types of sensors are briefly reported. These sensors are useful for monitoring human body motions, breathing activity, environment or breathing humidity, organic gas sensing, and, finally, smart textiles. Ultimately, the study summarizes the key takeaway from this review article. These conclusions are focused on the merits and demerits of the sensors and are followed by their future prospects.

摘要

本文报道了基于硅橡胶的多功能传感器的最新进展(2021 - 2024年)。这些多功能传感器可通过相对电阻、相对电流变化和相对电容类型进行实时监测。本综述包含对这些传感器及其多功能性的简要概述和文献调查。其中介绍了这些传感器的不同功能。在引言之后,简要描述了填料或橡胶的类型及其制备方法。接下来的部分讨论了集成传感器的这些复合材料的制备方法。重点讨论了机械和机电性能。报告了特别关注响应时间、线性度和应变片系数的机电性能。本综述的下一部分报告了填料分散及其在影响这些传感器的性能和应用方面的作用。最后,简要介绍了各种类型的传感器。这些传感器可用于监测人体运动、呼吸活动、环境或呼吸湿度、有机气体传感,以及智能纺织品。最后,该研究总结了这篇综述文章的关键要点。这些结论聚焦于传感器的优缺点,并随后展望了它们的未来前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77ea/11244113/fe33a5cf5064/polymers-16-01841-g001.jpg

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