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Experimental Study on Tensile Properties of GFRP Bars Embedded in Concrete Beams with Working Cracks

机译:GFRP筋嵌入工作裂缝混凝土梁的抗拉性能试验研究。

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This paper presents the test results of an experimental study carried out to investigate the tensile properties of GFRP bars embedded in concrete beams with working cracks. The specimens were conditioned with sustained loading in 50°C alkaline solution and tap water for 6, 12, 18 months. The tensile test results show that the degradation rate of GFRP bars embedded in the concrete specimens with work cracks is larger than that of non-work cracks, while the effect of working cracks on the elastic modulus is not significant. The microstructure of GFRP bar surface before and after the test was observed by scanning electron microscopy (SEM), combined with Fourier-transform infrared spectroscopy (FTIR) and differential-scanning calorimetry (DSC), the degree of hydrolysis reaction and glass transition temperature is also analyzed. Compared with the hydrolysis of resin matrix, it can be found that the deterioration of glass fiber and the delamination at the interfacial is more pronounced for the GFRP bars embedded in concrete beams. As a result, the mainly reason that caused the degradation of GFRP bars embedded in concrete environments are the deterioration of glass fiber and the delamination at the interfacial.
机译:本文介绍了一项实验研究的测试结果,旨在研究含工作裂缝的混凝土梁中埋入的GFRP筋的拉伸性能。将样品在50°C碱性溶液和自来水中持续加载6、12、18个月。拉伸试验结果表明,含工作裂纹的混凝土试件中埋入的GFRP筋的降解速率大于非工作裂纹的降解速率,而工作裂纹对弹性模量的影响不明显。通过扫描电子显微镜(SEM)观察玻璃纤维棒表面的微观结构,结合傅里叶变换红外光谱(FTIR)和差示扫描量热法(DSC),观察到水解反应的程度和玻璃化转变温度为还分析了。与树脂基体的水解相比,可以发现玻璃纤维的劣化和界面处的分层对于嵌入混凝土梁中的GFRP筋更为明显。结果,导致埋入混凝土环境中的GFRP钢筋退化的主要原因是玻璃纤维的退化和界面处的分层。

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