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Nondestructive evaluation of notched cracks in mortars by nonlinear ultrasonic technique

机译:非线性超声技术对砂浆中缺口裂缝的无损评价

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摘要

In this paper, a nonlinear ultrasonic technique is used to nondestructively characterise concentrated defects in cement-based materials. Cracks are artificially notched in mortar samples and five different crack widths are used to simulate increased damage of samples. The relative ratio of second harmonic amplitude to the square of fundamental ultrasonic signal amplitude is defined as the damage indicator of the nonlinear ultrasonic technique, which is measured for mortar samples in conjunction with a typical linear nondestructive evaluation parameter - ultrasonic pulse velocity. It is found that both linear and nonlinear damage parameters have a good correlation with the change of crack width, while the nonlinearity parameter shows a better sensitivity to the width increase. In addition, the nonlinearity parameter presents an exponential increase with the crack growth, indicating an accelerating nonlinear ultrasonic response of materials to increased internal damage in the late phase. The results demonstrate that the nonlinear ultrasonic technique based on the second harmonic principle keeps the high sensitivity to the isolated cracks in cement-based materials, similarly to the case of distributed cracks in previous studies. The developed technique could thus be a useful experimental tool for the assessment of concentrated damage of concrete structures.
机译:本文采用非线性超声技术,用于非破坏性地表征水泥基材料中的浓缩缺陷。砂浆样品中的裂缝在人工上缺口,并且使用五种不同的裂缝宽度来模拟样品的损伤增加。二次谐波幅度与基本超声信号幅度平方的相对比被定义为非线性超声波技术的损伤指示器,其与典型的线性非破坏性评估参数 - 超声波脉冲速度结合测量砂浆样本。结果发现,线性和非线性损伤参数与裂缝宽度的变化具有良好的相关性,而非线性参数显示出对宽度的更好的敏感性。另外,非线性参数具有裂缝增长的指数增加,表明材料的加速非线性超声波响应在晚期增加内部损伤。结果表明,基于二次谐波原理的非线性超声波技术对水泥基材料中的隔离裂缝的高灵敏度保持高灵敏度,类似于先前研究中分布式裂缝的情况。因此,开发的技术可以是用于评估混凝土结构浓缩损伤的有用实验工具。

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