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首页> 外文期刊>Mechanical systems and signal processing >Damage assessed by wavelet scale bands and b-value in dynamical tests of a reinforced concrete slab monitored with acoustic emission
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Damage assessed by wavelet scale bands and b-value in dynamical tests of a reinforced concrete slab monitored with acoustic emission

机译:在声发射监测下的钢筋混凝土板动力试验中,通过小波尺度带和b值评估损伤

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The complex Morlet Continuous Wavelet Transform (CWT) was applied to acoustic emission (AE) signals from dynamic tests conducted on a reinforced concrete slab with a shaking table. The steel reinforcement bars did not yield during the tests, but a severe loss of bond between reinforcement bars and surrounding concrete was detected. Comparison of the evolution of the scale position of maximum values of CWT coefficients and the histories of response acceleration obtained in different seismic simulations allowed us to identify the (45-64 kHz) frequency band corresponding to the fracture of concrete. The Cumulative Acoustic Emission Energy (CAE) obtained by reconstructing the AE signals in this scale (frequency) band was compared with the Cumulative Dissipated Energy (CDE) of the tested structure. The CDE is accepted as a good parameter for characterizing the mechanical damage in structures. A reasonably good agreement was found between the normalized histories of CAE and CDE. This made it possible to categorize the cracking of concrete as the main source of damage in the reinforced concrete slab. Conversely, the differences between the CAE and CDE curves observed for high levels of peak acceleration applied to the shaking table can be attributed to the deformation of the steel that formed the columns. The AE coming from the plastic deformation of the steel is not detected by CAE due to the threshold amplitude (45 dB) used in the AE monitoring, but the strain energy dissipated by the steel through plastic deformations is included in the CDE. Further, a study of the evolution of the b-value in the successive seismic simulations revealed that the b-value can capture the inception of severe cracking in the concrete, which the tests described in this study attributed mainly to the loss of bond between reinforcing steel and surrounding concrete.
机译:将复杂的Morlet连续小波变换(CWT)应用于在带有振动台的钢筋混凝土板上进行的动态测试的声发射(AE)信号。在测试过程中,钢筋没有屈服,但是发现钢筋和周围混凝土之间的粘结严重丧失。比较CWT系数的最大值的标度位置的演变和在不同地震模拟中获得的响应加速度的历史,可以识别与混凝土断裂对应的(45-64 kHz)频带。将通过重建此标度(频带)中的AE信号获得的累积声发射能量(CAE)与测试结构的累积耗散能量(CDE)进行了比较。 CDE被认为是表征结构机械损伤的良好参数。在CAE和CDE的规范化历史之间发现了相当好的一致性。这样就可以将混凝土开裂归类为钢筋混凝土板中主要的破坏源。相反,对于施加到振动台上的高峰值加速度,观察到的CAE和CDE曲线之间的差异可归因于形成立柱的钢的变形。由于AE监测中使用的阈值幅度(45 dB),CAE无法检测到来自钢塑性变形的AE,但是CDE中包含了钢通过塑性变形而耗散的应变能。此外,对连续地震模拟中b值演变的研究表明,b值可以捕获混凝土中严重裂纹的开始,本研究中所述的测试主要归因于钢筋之间的粘结损失。钢和周围的混凝土。

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