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Development and application of a novel low-cost capacitive sensor for accurate rebar position detection

机译:新型低成本电容传感器的开发与应用,用于精确钢筋位置检测

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摘要

A novel effective while low-cost capacitive transducer (CT), which can precisely measure rebar size and reinforcement position in both x-axis and y-axis under concrete cover using capacitance signals, is originally developed. In this paper, numerical simulations and experiments have been carried out to verify the effectiveness of the developed capacitive sensor. In the numerical simulations, electrostatic field distribution has been built and FEM method is adopted to compute the theoretical capacitance outputs during the rebar position testing, in which two kinds of capacitance measuring methods are compared. The same-face electrodes capacitance sensing method is proved to have better performance of rebar position prediction in both x-axis and y-axis directions than the face-to-face electrodes capacitance sensing method. To verify the effectiveness of the developed capacitive sensor in the real onsite scenario, experiments have also been conducted for the rebar position testing in the reinforced concrete. Both simulations and experimental results have shown that the developed CT with innovative capacitance measuring method has great accuracy in predicting the rebar size and position, which is the foundation of the future reinforcement corrosion detection. (C) 2020 Elsevier Ltd. All rights reserved.
机译:最初开发了一种新颖的诸如低成本电容传感器(CT)的低成本电容传感器(CT),其可以精确地测量X轴和Y轴下的X轴和Y轴的加固位置,使用电容信号。在本文中,已经进行了数值模拟和实验以验证型电容传感器的有效性。在数值模拟中,已经构建了静电场分布,采用了有限元方法来计算钢筋位置测试期间的理论电容输出,其中比较了两种电容测量方法。证明了相同面部电极电容传感方法在X轴和Y轴方向上具有比面对面电极电容传感方法更好地性能的钢筋位置预测。为了验证现场场景中型电容传感器的有效性,还对钢筋混凝土中的钢筋位置测试进行了实验。两者仿真和实验结果都表明,具有创新电容测量方法的开发CT在预测钢筋尺寸和位置方面具有很大的准确性,这是未来加固腐蚀检测的基础。 (c)2020 elestvier有限公司保留所有权利。

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