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FRP-to-Masonry Bond Durability Assessment with Infrared Thermography Method

机译:FRP到砖砌体粘结耐久性的红外热成像方法评估

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摘要

The bond behavior between FRP composites and masonry substrate plays an important role in the performance of externally bonded reinforced masonry structures. Therefore, monitoring the bond quality during the application and subsequent service life of a structure is of crucial importance for execution control and structural health monitoring. The bond quality can change during the service life of the structure due to environmental conditions. Local detachments may occur at the FRP/substrate interface, affecting the bond performance to a large extent. Therefore, the use of expedite and efficient non-destructive techniques for assessment of the bond quality and monitoring FRP delamination is of much interest. Active infrared thermography (IR) technique was used in this study for assessing the bond quality in environmentally degraded FRP-strengthened masonry elements. The applicability and accuracy of the adopted method was initially validated by localization and size quantification of artificially embedded defects in FRP-strengthened brick specimens. Then, the method was used for investigating the appearance and progression of FRP delaminations due to environmental conditions. GFRP-strengthened brick specimens were exposed to accelerated hygrothermal ageing tests and inspected periodically with the IR camera. The results showed environmental exposure may produce large progressive FRP delaminations.
机译:FRP复合材料与砌体基材之间的粘结性能在外部粘结的增强砌体结构的性能中起着重要作用。因此,在施工期间以及结构的后续使用寿命中监控粘结质量对于执行控制和结构健康状况监控至关重要。由于环境条件,粘结质量会在结构的使用寿命期间发生变化。 FRP /基材界面可能会发生局部剥离,从而在很大程度上影响粘结性能。因此,使用快速有效的非破坏性技术来评估粘结质量和监测FRP分层非常重要。本研究使用主动红外热成像(IR)技术评估环境降解的FRP增强的砖石构件中的粘结质量。该方法的适用性和准确性最初是通过对FRP加固砖样品中的人工嵌入缺陷进行定位和尺寸量化来验证的。然后,该方法用于调查由于环境条件而导致的FRP分层的出现和进展。 GFRP加固的砖样品经受了加速的湿热老化测试,并使用红外热像仪进行了定期检查。结果表明,暴露在环境中可能会产生较大的FRP分层。

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