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Experimental Research on Shear Failure Monitoring of Composite Rocks Using Piezoelectric Active Sensing Approach

机译:压电主动传感方法监测复合岩石剪切破坏的实验研究

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摘要

Underground space engineering structures are generally subject to extensive damages and significant deformation. Given that composite rocks are prone to shear failure, which cannot be accurately monitored, the piezoelectric active sensing method and wavelet packet analysis method were employed to conduct a shear failure monitoring test on composite rocks in this study. For the experiment, specimens were prepared for the simulation of the composite rocks using cement. Two pairs of piezoelectric smart aggregates (SAs) were embedded in the composite specimens. When the specimens were tested using the direct shear apparatus, an active sensing-based monitoring test was conducted using the embedded SAs. Moreover, a wavelet packet analysis was conducted to compute the energy of the monitoring signal; thus allowing for the determination of the shear damage index of the composite specimens and the quantitative characterization of the shear failure process. The results indicated that upon the shear failure of the composite specimens, the amplitudes and peak values of the monitoring signals decreased significantly, and the shear failure and damage indices of the composite specimens increased abruptly and approached a value of 1. The feasibility and reliability of the piezoelectric active sensing method, with respect to the monitoring of the shear failure of composite rocks, was therefore experimentally demonstrated in this study.
机译:地下空间工程结构通常遭受广泛的破坏和明显的变形。鉴于复合岩石易发生剪切破坏,无法准确监测,本研究采用压电主动传感法和小波包分析法对复合岩石进行了剪切破坏监测试验。为了进行实验,准备了用于水泥复合岩石模拟的标本。将两对压电智能骨料(SA)嵌入复合材料样本中。当使用直接剪切设备测试样本时,使用嵌入式SA进行了基于主动感应的监测测试。此外,进行了小波包分析以计算监视信号的能量。因此,可以确定复合材料试样的剪切损伤指数,并对剪切破坏过程进行定量表征。结果表明,在复合材料试样剪切破坏后,监测信号的振幅和峰值明显下降,复合材料试样的剪切破坏和破坏指数急剧增加,接近1。可行性和可靠性因此,在本研究中通过实验证明了压电主动传感方法在监测复合岩石的剪切破坏方面。

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