Key Aspects in the design of silicone/graphene-based strain sensors for structural monitoring

Jorge Peña-Consuegra, Useche V. Jairo, M. Pagnola
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Abstract

The graphene as a material used in engineering applications has been on the rise in the last decade due to being a material with interesting electrical and structural properties. This possibility offers a very wide range of technological applications. Among the potential fields of application is in the development of new sensors for structural applications. Recently the combination of graphene with cross-linked polysilicones has been proposed. This compound has interesting electrical and visco-elastic properties that have allowed the development of highly sensitive pressure and strain sensors. For this reason, their use as strain sensors in structures through structural health monitoring systems opens up an interesting field of research. The aim of this work is to study the mechanical behavior, and the characteristics required of graphene / polysicone-based sensors to be applied effectively in structural health monitoring systems.
用于结构监测的硅/石墨烯应变传感器设计中的关键问题
石墨烯作为一种工程应用材料,由于其具有有趣的电学和结构特性,在过去十年中一直处于上升趋势。这种可能性提供了非常广泛的技术应用。潜在的应用领域之一是开发用于结构应用的新型传感器。最近提出了石墨烯与交联聚有机硅的结合。这种化合物具有有趣的电性和粘弹性,这使得高灵敏度压力和应变传感器的发展成为可能。因此,通过结构健康监测系统将其用作结构应变传感器开辟了一个有趣的研究领域。本工作的目的是研究基于石墨烯/聚硅氧烷的传感器的力学行为,以及有效应用于结构健康监测系统所需的特性。
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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