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Semiempirical Electromagnetic Modeling of Crack Detection and Sizing in Cement-Based Materials Using Near-Field Microwave Methods

机译:基于近场微波方法的水泥基材料裂缝检测和尺寸确定的半经验电磁建模

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Detection and characterization of cracks in cement-based materials is an integral part of damage evaluation for health monitoring of civil structures. Microwave signals are able to penetrate inside of dielectric materials (e.g., cement-based materials) and are sensitive to local, physical, geometrical, and dielectric variations in a structure. This makes microwave non-destructive testing and evaluation (NDT&E) techniques suitable for inspection and health monitoring of civil structures. Near-field microwave NDT&E techniques offer the added advantage of providing high spatial resolution, requiring simple hardware that may be portable, low power, fast, real time, and robust. Additionally, these techniques are noncontact and one-sided. Besides the need for robust detection, electromagnetic modeling of a microwave probe response to a crack is also an important issue. Such a model can be used to obtain optimal measurement parameters and serve as the foundation for extracting important crack information such as its width and depth. In this paper, the utility of open-ended rectangular waveguide probes for detecting surface-breaking cracks in cement-based materials is discussed. Subsequently, the development of a semiempirical model capable of simulating the crack response is presented. The model described here translates the magnitude and phase of the reflection coefficient as a function of scanning distance into the complex reflection plane and takes advantage of the common shape of these signals for predicting a similar signal from an unknown crack. Finally, this empirical model is used to estimate crack dimensions from a set of measurements.
机译:水泥基材料中裂缝的检测和表征是用于民用建筑健康监测的损害评估的组成部分。微波信号能够穿透介电材料(例如,水泥基材料)的内部,并且对结构中的局部,物理,几何和介电变化敏感。这使得微波无损检测和评估(NDT&E)技术适用于民用建筑的检查和健康监测。近场微波NDT&E技术具有以下优点:提供高空间分辨率,需要可移植,低功耗,快速,实时且坚固的简单硬件。此外,这些技术是非接触式和单面的。除了需要可靠的检测之外,微波探针对裂纹响应的电磁建模也是一个重要的问题。这样的模型可以用来获得最佳的测量参数,并作为提取重要裂缝信息(例如宽度和深度)的基础。在本文中,讨论了开放式矩形波导探针在检测水泥基材料中的表面破裂裂纹方面的实用性。随后,提出了能够模拟裂纹响应的半经验模型的开发。此处描述的模型将反射系数的大小和相位转换为扫描到复杂反射平面中的距离的函数,并利用这些信号的共同形状来预测来自未知裂纹的相似信号。最后,该经验模型用于从一组测量值估计裂纹尺寸。

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