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Investigations on effectiveness of embedded PZT patches at varying orientations for monitoring concrete hydration using EMI technique

机译:利用EMI技术研究不同方向的嵌入式PZT贴片监测混凝土水化的有效性。

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The electro-mechanical impedance (EMI) technique has already been established to be an effective technique for detecting incipient damages in engineering structures including reinforced concrete (RC) using smart piezo-electric sensors. Its effectiveness in monitoring the hydration of concrete, using surface bonded and embedded lead zirconium titanate (PZT) patches has also been investigated well. However, the influence of patch orientation while embedding them in concrete is still unexplored. The present study investigates the effectiveness of the EMI technique using PZT patches embedded at different orientations (here, 0 degrees, 45 degrees and 90 degrees ) with the axis of the structure, while monitoring the hydration of a real-life prototype RC beam. Further, the effectiveness of the PZT patches in monitoring the strength gain in concrete is investigated. It is observed that the PZT patch placed in the inclined orientation (45 degrees) least efficient in capturing the progressive changes of hydration in the concrete in comparison to the other two orientations. The EMI technique showed best results when PZT patch was placed in horizontal position (0 degrees) with the longitudinal axis of the beam. (C) 2018 Elsevier Ltd. All rights reserved.
机译:机电阻抗(EMI)技术已被确立为使用智能压电传感器检测包括钢筋混凝土(RC)在内的工程结构中初期损坏的有效技术。还已经很好地研究了其使用表面结合和嵌入的钛酸锆锆(PZT)贴剂监测混凝土水化的有效性。然而,将补丁嵌入到混凝土中时补丁方向的影响仍未开发。本研究调查了使用嵌入在与结构轴不同方向(此处为0度,45度和90度)的PZT贴片上的EMI技术的有效性,同时监控了真实原型RC光束的水合作用。此外,研究了PZT贴片在监测混凝土强度增加方面的有效性。可以观察到,与其他两个方向相比,以倾斜方向(45度)放置的PZT贴片在捕获混凝土中水化的逐渐变化方面效率最低。当PZT贴片与光束的纵轴水平放置(0度)时,EMI技术显示出最佳效果。 (C)2018 Elsevier Ltd.保留所有权利。

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