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首页> 外文期刊>Journal of Nondestructive Evaluation >Characterization of Flaws Embedded in Externally Bonded CFRP on Concrete Beams by Infrared Thermography and Shearography
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Characterization of Flaws Embedded in Externally Bonded CFRP on Concrete Beams by Infrared Thermography and Shearography

机译:红外热成像和剪切成像表征混凝土梁外粘结CFRP中嵌入的缺陷

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摘要

Carbon fiber-reinforced polymer (CFRP) has become an important material to rehabilitate deteriorating concrete structures. The quality of the bond between the externally-bonded CFRP and concrete elements is crucial to durability and structural integrity of the rehabilitated concrete structure. However, flaws between CFRP and concrete interfaces can reduce the effective contact area significantly and therefore, the overall bond strength at these interfaces. Such flaws are not readily noticed by naked eyes, but can be detected and quantified non-destructively and effectively by using full-field and non-contact infrared thermography (IRT) and laser shearography. Flaw and sound areas presented within the FRP-concrete interfaces manifest very different thermal decay and mechanical fingerprints. In this paper, we report a study which tested, with IRT and shearography, the sizes and shapes of 17 round-shaped and artificial flaws embedded in 6 CFRP-concrete specimens; and then compared the results with the actual flaw sizes and shapes. In general, the results show that IRT underestimated the actual flaw sizes by 6.1% on average, whilst shearography overestimated the actual flaw sizes by 9.4% on average. These results demonstrated that both IRT and shearography are promising non-destructive evaluation techniques that can be used to define flaw boundaries and determine flaw sizes within the CFRP-concrete composites.
机译:碳纤维增强聚合物(CFRP)已成为修复恶化的混凝土结构的重要材料。外部粘结的CFRP与混凝土构件之间的粘结质量对于修复后的混凝土结构的耐久性和结构完整性至关重要。但是,CFRP和混凝土界面之间的缺陷会显着减小有效接触面积,因此会减小这些界面的整体粘结强度。此类缺陷用肉眼不易察觉,但是可以通过使用全场和非接触式红外热成像(IRT)和激光剪切成像技术来无损且有效地检测和定量。 FRP-混凝土界面中出现的缺陷和声音区域表现出截然不同的热衰减和机械指纹。在本文中,我们报告了一项研究,该研究通过IRT和剪切成像技术测试了嵌入6个CFRP混凝土试样中的17个圆形和人造缺陷的尺寸和形状;然后将结果与实际缺陷尺寸和形状进行比较。总体而言,结果表明,IRT将实际缺陷尺寸平均低估了6.1%,而剪切成像技术则将实际缺陷尺寸平均低了9.4%。这些结果表明,IRT和剪切成像都是很有前途的无损评估技术,可用于定义缺陷边界并确定CFRP混凝土复合材料中的缺陷尺寸。

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