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Micro Displacement and Strain Detection for Crack Prediction on Concrete Surface Using Optical Nondestructive Evaluation Methods

机译:基于光学无损评价方法的混凝土表面裂缝微位移和应变检测

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摘要

Continuous inspection of the concrete structures is important for extending the operating life span of nuclear power plants. Restricted physical accessibility to the nuclear plant structures, due to concerns of radiation, presents a unique challenge to the conventional visual inspection and contact-type nondestructive evaluation (NDE) technologies. Digital image correlation (DIC) is an optical NDE method that can measure the structural parameters such as displacement and strain. However, it is highly challenging to accurately detect micro displacement on the concrete surface because of weathering and change in illumination conditions. Usually, an artificial speckle pattern with good contrast to the object surface is needed for calibration and tracking, but it is difficult to apply in the field. In order to be able to detect micro surface strain for crack prediction in outdoor environment, a DIC-based NDE technology is developed to significantly improve the measurement accuracy by incorporating the orientation code matching (OCM) technique, a robust and accurate template matching algorithm. Concrete specimens were built and tested under four-point bending. Using the remotely measured images, the OCM incorporated DIC method successfully predicted concrete cracks before they emerged on the surface. The experiments also demonstrated the robustness of the method against the optical noise including weathering and change in illumination conditions.
机译:连续检查混凝土结构对于延长核电站的使用寿命非常重要。由于辐射问题,限制了对核电站结构的物理可达性,这对传统的目视检查和接触式无损评估(NDE)技术提出了独特的挑战。数字图像相关(DIC)是一种光学NDE方法,可以测量诸如位移和应变之类的结构参数。但是,由于风化和光照条件的变化,准确检测混凝土表面的微小位移是非常困难的。通常,校准和跟踪需要与物体表面具有良好对比度的人造斑点图案,但是很难在现场应用。为了能够检测微表面应变以预测室外环境中的裂纹,开发了一种基于DIC的NDE技术,该技术通过结合方向代码匹配(OCM)技术,稳健而准确的模板匹配算法来显着提高测量精度。建造混凝土标本并在四点弯曲下进行测试。使用遥测图像,结合了OCM的DIC方法成功地预测了混凝土裂缝在表面出现之前的状况。实验还证明了该方法针对包括风化和照明条件变化在内的光学噪声的鲁棒性。

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