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A cement-based piezoelectric sensor for civil engineering structure

机译:用于土木工程结构的水泥基压电传感器

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摘要

A new aggregate-like sensor using piezoelectric ceramic as sensing element was designed, fabricated and tested. The sensor was made by bonding together two cuboids of hardened cement paste with a commercially available piezoelectric ceramic plate in between, which is the sensing element. A new adhesive was developed during the fabrication of the sensor. The sensor was tested on its basic performance with a charge amplifier measuring system. First, the frequency response of the sensor was investigated in the general frequency range of civil engineering structure, which is from 0.01 Hz to 40 Hz. Then the relationship between output and input of the sensor was tested. Finally, complex, random and square loads were applied to observe the performance of the sensors. The excellent compatibility with concrete and the good sensing performance enable the aggregate-like sensor to be easily embedded into concrete structures like a real aggregate and to reliably monitor the vibration of host structure. There is a good potential for such a sensor to be used in structural health monitoring.
机译:设计,制造和测试了一种新的以压电陶瓷为传感元件的类聚集体传感器。传感器是通过将两个硬化水泥浆的长方体与两者之间的一块压电陶瓷板粘合在一起而制成的,压电陶瓷板是传感元件。在传感器的制造过程中开发了一种新的粘合剂。该传感器已通过电荷放大器测量系统对其基本性能进行了测试。首先,在土木工程结构的一般频率范围(0.01 Hz至40 Hz)中研究了传感器的频率响应。然后测试传感器的输出和输入之间的关系。最后,施加复杂,随机和正方形的载荷以观察传感器的性能。与混凝土的优异相容性和良好的传感性能使集料式传感器可以像真正的集料一样容易地嵌入到混凝土结构中,并可靠地监测主体结构的振动。这种传感器在结构健康监测中有很大的潜力。

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