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Detection of Defects in Reinforced Concrete Structures Using Ultrasonic Nondestructive Evaluation with Piezoceramic Transducers and the Time Reversal Method

机译:用压电陶瓷传感器超声非破坏性评价检测钢筋混凝土结构缺陷及时间逆转法

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摘要

Reinforced concrete is of vital importance in many civil and industrial structural applications. The effective bonding between steel and concrete is the core guarantee of the safe operation of the structures. Corrosion or other interface debonding in steel-concrete is a typical failure mode during the long service period of the structures, which can severely reduce the load-bearing capacity. The Non-destructive Evaluation technique has been applied to civil engineering structures in recent years. This paper investigates the evaluation of reinforced concrete structures that have interface defects, including the cross-sectional loss and cracks, by using the piezoceramic induced ultrasonic wave and time reversal method. Ultrasonic wave is used as actuating wave to obtain the signals with defect information. Time reversal method is applied to localize and characterize defect along the interface of the steel-concrete and to image the defect through the cross-sectional scanning. Experiments were conducted to perform Nondestructive Evaluation by using six reinforced concrete components with different levels of defects. The invisible damages were made by the cutting part of the steel and embedding a table tennis ball inside concrete structures. The results show that the time reversed method can locate and evaluate the defects along the steel reinforced concrete, and the obtained defect images at the cross-section of the concrete structure are accurate.
机译:钢筋混凝土在许多民用和工业结构应用中具有至关重要的重要性。钢和混凝土之间的有效粘接是结构安全运行的核心保证。钢制混凝土中腐蚀或其他界面剥离是结构长期的典型故障模式,可以严重降低承载能力。近年来,非破坏性评价技术已应用于土木工程结构。本文研究了通过使用压电陶瓷诱导的超声波和时间反转方法,对具有界面缺陷的钢筋混凝土结构的评估,包括横截面损失和裂缝。超声波用作致动波以获得具有缺陷信息的信号。时间反转方法应用于钢混凝土界面的定位和表征缺陷,并通过横截面扫描将缺陷图像图像。进行实验以使用具有不同缺陷水平的六种钢筋混凝土组件进行无损评估。无形的损坏是由钢的切割部分制造的,并在混凝土结构内嵌入乒乓球。结果表明,时间反转方法可以定位和评价钢筋混凝土的缺陷,并且在混凝土结构的横截面处获得的缺陷图像是准确的。

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