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Health monitoring of reinforced concrete slabs subjected to earthquake-type dynamic loading via measurement and analysis of acoustic emission signals

机译:通过声发射信号的测量与分析监测钢筋混凝土板在地震型动态荷载下的健康状况

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摘要

This paper discusses the applicability of Acoustic Emission (AE) to assess the damage in reinforced concrete (RC) structures subjected to complex dynamic loadings such as those induced by earthquakes. The AE signals recorded during this type of event can be complicated due to the arbitrary and random nature of seismicity and the fact that the signals are highly contaminated by many spurious sources of noise. This paper demonstrates that by properly filtering the AE signals, a very good correlation can be found between AE and damage on the RC structure. The basic experimental data used for this research are the results of fourteen seismic simulations conducted with a shake table on an RC slab supported on four steel columns. The AE signals were recorded by several low-frequency piezoelectric sensors located on the bottom surface of the slab. The evolution of damage under increasing values of peak acceleration applied to the shake table was monitored in terms of AE and dissipated plastic strain energy. A strong correlation was found between the energy dissipated by the concrete through plastic deformations and the AE energy calculated after properly filtering the signals. For this reason, a procedure is proposed to analyze the AE measured in a RC structure during a seismic event so that it can be used for damage assessment.
机译:本文讨论了声发射(AE)在评估钢筋混凝土(RC)结构在复杂动态载荷(例如地震引起的载荷)下的损伤的适用性。在这种类型的事件中记录的AE信号可能会很复杂,这是因为地震活动具有任意性和随机性,而且信号被许多杂散噪声源高度污染。本文证明,通过适当地过滤AE信号,可以在AE与RC结构的损坏之间找到很好的相关性。这项研究使用的基本实验数据是用振动台在支撑四个钢柱的RC平板上进行的十四次地震模拟的结果。 AE信号由位于平板底部表面的几个低频压电传感器记录。根据AE和耗散的塑性应变能,监测了应用于振动台的峰值加速度增加时,损伤的演变。在混凝土通过塑性变形耗散的能量与正确过滤信号后计算出的AE能量之间发现强烈的相关性。因此,提出了一种程序来分析在地震事件中在RC结构中测得的AE,以便可以将其用于损伤评估。

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