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PZT sensor array for local and distributed measurements of localized cracking in concrete

机译:PZT传感器阵列,用于局部和分布测量混凝土局部裂缝的测量

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摘要

An application is developed with surface mounted lead zirconate titanate (PZT) patches for sensing damage in the form of a stress-induced crack in a concrete substrate. A localized crack is introduced in a controlled manner using a fracture test. Full-field displacements obtained using digital image correlation are used for crack penetration and crack width measurements. Electrical impedance (EI) measurements are obtained from the individual PZT patches, which are attached at different locations relative to the crack. Stress wave transmission measurements are performed using the PZT patches as actuator-receiver (AR) pairs. The EI measurements indicate that small, quantifiable changes in the mechanical impedance of the substrate are experienced by the PZT patch in the vicinity of the localized crack, which sensitively detect crack initiation. The stress wave-based measurements are very sensitive to the presence of physical discontinuity created by a localized crack in the stress wave path. A measure of stress wave attenuation, the attenuation factor is developed, to quantify the measured changes in the stress wave produced by the physical discontinuity in concrete upon unloading a stress-induced crack. The physical discontinuity due to a stress-induced crack opening on the order of 10 mu m can be detected from the measured changes in the attenuation factor. The physical discontinuity in the concrete associated with a stress-induced crack opening on the order of 100 mu m produces a complete attenuation of the stress wave of 120 kHz. The combined use of PZT patches in the EI and the AR modes can be used to detect local changes close to a PZT patch and it allows distributed sensing over the entire volume of a structural element.
机译:用表面安装的引线锆型钛酸盐(PZT)贴片开发了应用,用于在混凝土基板中的应力诱导裂缝的形式感测。使用裂缝试验以受控方式引入局部裂缝。使用数字图像相关获得的全场位移用于裂纹渗透和裂缝宽度测量。从各个PZT贴片获得电阻抗(EI)测量,其相对于裂缝连接在不同的位置。使用PZT贴片作为执行器 - 接收器(AR)对进行应力波传输测量。 EI测量表明,通过局部裂缝附近的PZT贴剂在局部裂缝附近体验的小,可量化的变化,其敏感地检测裂纹启动。基于应力波的测量对由应力波路径中的局部裂缝产生的物理不连续性的存在非常敏感。显影衰减因子的衡量标准,开发了衰减因子,以量化混凝土中的物理不连续在卸载应力诱导的裂缝中产生的应力波的测量变化。可以从衰减因子的测量变化中检测到10μm的应力诱导的裂缝开口导致的物理不连续性。与100μm的应力诱导的裂缝开口相关的混凝土中的物理不连续性产生120kHz的应力波的完全衰减。 PZT贴片在EI和AR模式中的结合使用可用于检测接近PZT贴片的局部变化,并且允许在整个结构元件的整个体积上分布传感。

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