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Sensing of Damage and Repair of Cement Mortar Using Electromechanical Impedance

机译:机电阻抗感知水泥砂浆的损伤与修复

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摘要

Lead zirconium titanate (PZT) has recently emerged as a low-cost material for non-destructive monitoring for civil structures. Despite the numerous studies employing PZT transducers for structural health monitoring, no studies have assessed the effects of both damage and repair on the electromechanical impedance response in cementitious materials. To this end, this study was conducted to assess the effects of the damage and repair of mortar samples on the electromechanical response of a surface-mounted PZT transducer. When damage was introduced to the specimen in stages, the resonance frequencies of the admittance signature were shifted to lower frequencies as the damage increased, and an increase in the peak amplitude was detected, indicating an increase in the damping and a reduction in the material stiffness properties. Also, increasing the damage in the material has been shown to decrease the sensitivity of the PZT to further damage. During the repair process, a noticeable difference between the after-damage and the after-repair admittance signatures was noted. The root-mean-square deviation (RMSD) showed a decreasing trend during the repair process, when compared to the before repair RMSD response which indicated a partial recovery for the material properties by decreasing the damping property in the material.
机译:钛酸铅锆(PZT)最近成为一种低成本材料,可用于土木结构的非破坏性监测。尽管使用PZT换能器进行结构健康监测的研究很多,但尚无研究评估损伤和修复对胶结材料中机电阻抗响应的影响。为此,本研究旨在评估砂浆样品的损坏和修复对表面安装的PZT换能器的机电响应的影响。当将损伤分阶段引入样品时,随着损伤的增加,导纳信号的共振频率会移至较低的频率,并且检测到峰值振幅的增加,这表明阻尼的增加和材料刚度的降低属性。同样,已显示出增加材料中的损伤会降低PZT对进一步损伤的敏感性。在修复过程中,注意到损坏后和维修后的导纳签名之间存在明显差异。与修复前的RMSD响应相比,修复过程中的均方根偏差(RMSD)呈下降趋势,这表明通过降低材料的阻尼特性可以部分恢复材料性能。

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