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Characterization of the deterioration of externally bonded CFRP-concrete composites using quantitative infrared thermography

机译:定量红外热成像法表征CFRP-混凝土外粘结复合材料的劣化

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摘要

Defects embedded in externally-bonded CFRP-concrete composite structures reduce the interfacial bond strength and durability. This paper classifies these defects into two types: flaws and delaminations. Flaws are formed during the first application of the CFRP strips onto the concrete surface due to poor workmanship. Delaminations are formed due to stress concentrations related to chemical/physical degradation of the binding layer. In this study, an aggressive environment was simulated by placing the specimens in water baths with elevated temperatures (40℃ and 60℃). The sizes of the CFRP-flaws and delaminations were determined by (i) quantitative infrared thermography (QIRT) and (ii) processing of visual images after opening-up the CFRP by direct shear. Experimental results show that apparent flaw sizes determined by QIRT were in good agreement (88% accuracy) with actual flaw sizes determined by the image processing method. The results also show that flaws exhibited little change but the bonding layer showed significant deterioration after exposure to high water temperatures.
机译:外部粘结CFRP-混凝土复合结构中嵌入的缺陷会降低界面粘结强度和耐久性。本文将这些缺陷分为两种类型:缺陷和分层。由于工艺不佳,在首次将CFRP条应用于混凝土表面时会形成瑕疵。由于与粘合层的化学/物理降解有关的应力集中而形成分层。在这项研究中,通过将标本放置在高温(40℃和60℃)的水浴中来模拟侵略性环境。 CFRP缺陷和分层的大小由(i)定量红外热成像(QIRT)和(ii)通过直接剪切打开CFRP后的可视图像处理确定。实验结果表明,由QIRT确定的表观缺陷尺寸与由图像处理方法确定的实际缺陷尺寸吻合良好(准确度达88%)。结果还表明,在暴露于高水温后,缺陷几乎没有变化,但是粘结层却表现出明显的劣化。

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