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Thermography-Based Deterioration Detection in Concrete Bridge Girders Strengthened with Carbon Fiber-Reinforced Polymer

机译:碳纤维增强聚合物加固混凝土桥梁梁基于热成像的劣化检测

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摘要

In bridge structures worldwide, carbon fiber-reinforced polymer (CFRP) sheets are applied to strengthen weak components, especially concrete girders that are at a high risk of rapid degradation during the bridge’s operation owing to impacts from the superstructure’s weight and traffic loads. Regarding the thermography-based method (TM), although deteriorations in the concrete core are some of the main defects in concrete structures strengthened with CFRP, these do not receive as much attention as damage in the CFRP. Therefore, the interpretation of the structural health in terms of these defects using TM is still unclear. The problem presented in this work addresses the quantification of delamination inside the concrete part of a specimen with a CFRP sheet installed on the surface (assumed to be the girder surface strengthened with CFRP) via step heating thermography. Additionally, the empirical thermal diffusivity of concrete girders strengthened with a CFRP sheet (CSC girder), has not been provided previously, is proposed in the present study to predict delamination depths used for field investigations. Moreover, the effect of the CFRP sheet installed on the structure’s surface on the absolute contrast of delamination is clarified. Finally, advanced post-processing algorithms, i.e., thermal signal reconstruction and pulsed phase thermography, are applied to images obtained with step heating thermography to enhance the visibility of delamination in CSC girders.
机译:在全球的桥梁结构中,碳纤维增强聚合物(CFRP)片材被用于加固薄弱的部件,特别是混凝土梁,由于上部结构的重量和交通负荷的影响,桥梁在运营过程中极有可能迅速降解。关于基于热成像的方法(TM),尽管混凝土芯的劣化是CFRP加固的混凝土结构的主要缺陷之一,但与CFRP的损坏相比,这些缺陷并没有引起足够的重视。因此,仍不清楚使用TM对这些缺陷进行结构健康的解释。这项工作中出现的问题是通过逐步加热热成像法来定量分析在混凝土表面上安装了CFRP板的试样的混凝土内部的分层(假定是用CFRP加固的梁表面)。另外,在本研究中还没有提出用CFRP板加固的混凝土梁(CSC梁)的经验热扩散率,以预测用于田间调查的分层深度。此外,阐明了安装在结构表面上的CFRP板材对分层的绝对对比度的影响。最后,将先进的后处理算法,即热信号重建和脉冲相热成像技术,应用于逐步加热热成像技术获得的图像,以增强CSC大梁分层的可见性。

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