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A durability study of externally bonded FRP-concrete beams via full-field infrared thermography (IRT) and quasi-static shear test

机译:通过全场红外热像仪(IRT)和准静态剪切试验对外部粘结FRP混凝土梁的耐久性进行研究

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摘要

Durability of 36nos. externally-bonded CFRP-concrete beams was studied by monitoring the intermediate cracking (IC) processes using infrared thermography (IRT) and quasi-static direct shear test. Specimens were exposed to three elevated water temperatures (25 ℃, 40 ℃ and 60 ℃) for 5, 15 and 30 weeks. In addition to the measurement of the properties at ultimate state, this work attempts to characterize the intermediate states of the intact, softened and ruptured part during the IC debonding process. The results show that the adhesive bond layers of the 40 ℃ and 60 ℃ specimens were ruptured and softened at a force level much lower than that for the 25 ℃ and control specimens. This is explained by the exposure condition that the water temperature exceeded the heat distortion temperature of the adhesive layer, which accelerated the bond deterioration of the composites.
机译:36nos的耐久性。通过使用红外热像仪(IRT)和准静态直接剪切试验监测中间裂缝(IC)过程,研究了外部粘结CFRP混凝土梁。将样品暴露于三种升高的水温(25℃,40℃和60℃)下5、15和30周。除了在极限状态下测量特性外,这项工作还试图表征IC剥离过程中完整,软化和破裂部分的中间状态。结果表明,40℃和60℃的试样的粘合层破裂和软化的力水平远低于25℃和对照试样。这可以通过暴露条件来解释,即水温超过了粘合剂层的热变形温度,从而加速了复合材料的粘结劣化。

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