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Towards smart concrete for smart cities: Recent results and future application of strain-sensing nanocomposites

机译:迈向智慧城市的智慧混凝土:应变传感纳米复合材料的最新成果和未来应用

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摘要

The use of smart technologies combined with city planning have given rise to smart cities, which empower modern urban systems with the efficient tools to cope with growing needs from increasing population sizes. For example, smart sensors are commonly used to improve city operations and management by tracking traffic, monitoring crowds at events, and performance of utility systems and public transportation. Recent advances in nanotechnologies have enabled a new family of sensors, termed self-sensing materials, which would provide smart cities with means to also monitor structural health of civil infrastructures. This includes smart concrete, which has the potential to provide any concrete structure with self-sensing capabilities. Such functional property is obtained by correlating the variation of internal strain with the variation of appropriate material properties, such as electrical resistance. Unlike conventional off-the-shelf structural health monitoring sensors, these innovative transducers combine enhanced durability and distributed measurements, thus providing greater scalability in terms of sensing size and cost. This paper presents recent advances on sensors fabricated using a cementitious matrix with nanoinclusions of Carbon Nanotubes (CNTs). The fabrication procedures providing homogeneous piezoresistive properties are presented, and the electromechanical behavior of the sensors is investigated under static and dynamic loads. Results show that the proposed sensors compare well against existing technologies of stress/strain monitoring, like strain gauges and accelerometers. Example of possible field applications for the developed nanocomposite cement-based sensors include traffic monitoring, parking management and condition assessment of masonry and concrete structures.
机译:将智能技术与城市规划结合使用已催生了智能城市,这些城市为现代城市系统提供了有效的工具,可以应对人口增长带来的不断增长的需求。例如,智能传感器通常用于通过跟踪交通,在事件发生时监视人群以及公共事业系统和公共交通的性能来改善城市运营和管理。纳米技术的最新进展已启用了一个称为自感材料的新传感器系列,该系列传感器将为智慧城市提供监测民用基础设施结构健康的手段。这包括智能混凝土,它有可能为任何具有自感应功能的混凝土结构提供潜力。通过使内部应变的变化与适当的材料特性(例如,电阻)的变化相关联来获得这种功能特性。与传统的现成结构健康监测传感器不同,这些创新的传感器结合了增强的耐用性和分布式测量,从而在传感尺寸和成本方面提供了更大的可扩展性。本文介绍了使用具有碳纳米管(CNT)纳米夹杂物的胶结基质制造的传感器的最新进展。介绍了提供均质压阻特性的制造程序,并研究了静态和动态载荷下传感器的机电性能。结果表明,所提出的传感器与现有的应力/应变监测技术(例如应变仪和加速度计)相比具有很好的对比性。已开发的纳米复合水泥基传感器的可能现场应用示例包括交通监控,停车管理以及砖石和混凝土结构的状况评估。

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