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Health monitoring of reinforced concrete structures with hysteretic dampers subjected to dynamical loads by means of the acoustic emission energy

机译:通过声发射能量对动态滞后的带有滞回阻尼器的钢筋混凝土结构进行健康监测

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摘要

A test specimen representing a scaled reinforced concrete frame structure with hysteretic dampers was subjected to sequential seismic simulations of incremental peak acceleration on a 3 x 3 m(2) shaking table. From this specimen, two beam-column connections-one exterior and one interior-were continuously monitored with wideband low-frequency acoustic emission sensors properly attached on the structure. Complementing other Non-Destructive Testing (NDT) methods, acoustic emission has proven to be a reliable technology for structural health monitoring within a predictive maintenance program. In particular, it was found that the accumulated energy of acoustic emission signals-properly filtered by means of the root mean squared and the spectral partial power of the waveforms in order to avoid the influence of secondary sources-correlated well with the plastic strain energy released by the specimen. Moreover, the use of the rise angle and average frequency of the filtered acoustic emission signals allowed for successful discernment between tensile and shear cracks in the concrete. The acoustic emission energy associated with shear cracks was found to be substantially lesser than that corresponding to tensile crack. This observation is consistent with the fact that the beams and column of the tested reinforced concrete frame were designed under modern codes aimed at preventing the brittle shear failure of members.
机译:代表带有磁滞阻尼器的比例尺钢筋混凝土框架结构的测试样本在3 x 3 m(2)的振动台上进行了增量峰值加速度的顺序地震模拟。从该标本中,用适当安装在结构上的宽带低频声发射传感器连续监测两个梁柱连接(一个外部和一个内部)。作为其他无损检测(NDT)方法的补充,声发射已被证明是在预测性维护程序中进行结构健康监测的可靠技术。尤其是,发现声发射信号的累积能量通过均方根和波形的频谱分功率进行了适当滤波,从而避免了次级声源的影响与释放的塑性应变能很好地相关由标本。此外,使用过滤后的声发射信号的上升角和平均频率可以成功识别混凝土中的拉伸和剪切裂纹。发现与剪切裂纹相关的声发射能量明显小于对应于拉伸裂纹的声发射能量。这一观察结果与被测钢筋混凝土框架的梁和柱是根据现代规范设计的,旨在防止构件的脆性剪切破坏是一致的。

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