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Experimental test on an RC beam equipped with embedded barometric pressure sensors for strains measurement

机译:用于嵌入式气压传感器的RC光束的实验测试,用于测量菌株测量

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摘要

The current trend in structural health monitoring (SHM) is to install increasingly large numbers of distributed, heterogeneous types of sensors, for a timely and exhaustive detection of any possible damage scenario evolving in the system. These sensors should be low-cost, easy to install, robust and durable. Among others, strain remains one of the most straightforward measurands for monitoring the state of a structural element and for assessing its health condition. However, for application to reinforced concrete structures, currently available strain sensing devices, such as electric strain gauges or fibre optic sensors, do not fully satisfy the aforementioned requirements, generally proving difficult to install, fragile and expensive. In this paper, an innovative monitoring technology, called Smart Steel System (S3), is proposed that measures strains in reinforced concrete members, by incorporating commercial barometric pressure MEMS sensors in appropriate sealed cavities embedded in the reinforcing steel bars. The results of an experimental campaign are reported, in which a reinforced concrete beam, instrumented with both S3 devices and conventional electrical strain gauges, is subjected to increasing loading and unloading cycles until collapse. The tests show the superior robustness of the S3 system during construction and loading as well as its good sensing accuracy, demonstrating its potential for a massive use in SHM applications.
机译:结构健康监测(SHM)的目前趋势是安装越来越大的分布式异构类型的传感器,以便及时,详尽地检测系统中不断发展的任何可能的损坏情景。这些传感器应低成本,易于安装,坚固耐用。其中,应变仍然是用于监测结构元素的状态和评估其健康状况的最直观的尺寸之一。然而,对于钢筋混凝土结构的应用,目前可用的应变感测装置,例如电动应变仪或光纤传感器,不完全满足上述要求,通常证明难以安装,脆弱和昂贵。本文据提出了一种被称为智能钢系统(S3)的创新监测技术(S3),其通过将商业气压MEMS传感器结合在嵌入于加强钢筋的适当密封腔中,衡量钢筋混凝土构件中的菌株。报告了实验活动的结果,其中钢筋混凝土梁用S3器件和传统的电应变仪仪器仪表,以增加负载和卸载循环直到塌陷。该测试在施工和装载过程中显示了S3系统的优越稳健性,以及其良好的感应精度,证明其在SHM应用中大量使用的潜力。

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