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Experimental Study on Normal-Strength, High-Strength and Ultrahigh-Strength Concrete Confined by Carbon and Glass FRP Laminates

机译:碳纤维和玻璃纤维FRP层合板约束中强度,高强度和超高强度混凝土的试验研究

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摘要

Confinement of concrete columns with fiber-reinforced polymer (FRP) laminates has been extensively studied in recent decades due to their important applications for strengthening purposes or construction of hybrid elements. Significant differences were observed in confinement effects obtained for normal-, high-, and ultrahigh-strength concrete when wrapped by FRP laminates. There are few studies explaining these differences, especially when ultrahigh-strength concrete (UHSC) is taken into consideration. This paper reports on an analysis of confinement effects generated by carbon and glass fiber-reinforced polymer (CFRP and GFRP) wraps in normal-, high-, and ultrahigh-strength concrete (NSC, HSC and UHSC) cylinders. In total, 102 concrete cylinders confined with GFRP and CFRP wraps were tested, including 7 concrete mixes and different number of layers. The results showed that, different from NSC, both HSC and UHSC confined with FRP have a stress-strain behavior with a considerable strength enhancement in the first branch of the curve and a softening or hardening in the transitional zone depending on the confinement pressure.
机译:由于纤维增强聚合物(FRP)层压板在增强目的或混合元件的构造中的重要应用,因此在近几十年来,对混凝土柱的限制已得到了广泛的研究。当用FRP层压板包裹时,对普通,高强度和超高强度混凝土的约束效果观察到显着差异。很少有研究解释这些差异,特别是考虑到超高强度混凝土(UHSC)时。本文报告了对碳纤维和玻璃纤维增​​强的聚合物(CFRP和GFRP)包裹物在普通,高强度和超高强度混凝土(NSC,HSC和UHSC)圆柱中产生的约束作用的分析。总共测试了102个用GFRP和CFRP包裹的混凝土圆筒,包括7种混凝土混合物和不同层数。结果表明,与NSC不同,用FRP约束的HSC和UHSC都具有应力应变行为,曲线的第一分支强度显着增强,过渡区域中的软化或硬化取决于约束压力。

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