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Interlaminar shear capacity of thermally damaged GFRP bars under alkaline concrete environment

机译:碱性混凝土环境下热损伤的GFRP筋的层间剪切能力

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摘要

The paper investigated the effect of alkaline concrete environment on thermally damaged glass fiber reinforced polymer (GFRP) reinforcing bars through an accelerated aging test in alkaline solution. In the experimental test, the GRFP bar specimens were exposed to high temperatures and then immersed in alkaline solution with a pH of 12.6 presenting the similar alkalinity of concrete. Other specimens, which were unexposed to high temperatures, were also immersed in the alkaline solution for the same period of time in order to compare the performance changes in inter-laminar shear strength and stiffness capacities (ILSS and ILSSf). From the test results, the bar specimens which were thermally damaged by high temperature showed more degradation in ILSS than the thermally undamaged ones; rapid performance degradation occurred for longer immersion periods. Analysis of scanning electron microscope images showed that the fine cracks on the surface and resin matrix damage developed during exposure to high temperature led to accelerate alkali penetration, thereby resulting in rapid performance degradation. (C) 2017 Elsevier Ltd. All rights reserved.
机译:通过在碱性溶液中的加速老化试验,研究了碱性混凝土环境对热损伤玻璃纤维增​​强聚合物(GFRP)钢筋的影响。在实验测试中,将GRFP钢筋试样暴露在高温下,然后浸入pH为12.6的碱性溶液中,表现出与混凝土相似的碱度。为了比较层间剪切强度和刚度性能(ILSS和ILSSf)的性能变化,还将未暴露于高温的其他样品浸入碱性溶液中一段时间​​。从测试结果来看,被高温热破坏的钢筋试样的ILSS降解程度要高于未受热破坏的钢筋试样。较长的浸入时间会导致性能快速下降。扫描电子显微镜图像的分析表明,暴露于高温期间表面上的细裂纹和树脂基质的损坏导致碱渗透加速,从而导致性能快速下降。 (C)2017 Elsevier Ltd.保留所有权利。

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