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Experimental study on bond durability of glass fiber reinforced polymer bars in concrete exposed to harsh environmental agents: Freeze-thaw cycles and alkaline-saline solution

机译:玻璃纤维增​​强聚合物棒在混凝土中暴露于恶劣环境下的粘结耐久性的实验研究:冻融循环和碱盐溶液

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摘要

This study presents an experimental investigation on the bond durability of GFRP bars in concrete when subjected to harsh environments. The pullout specimens having different concrete covers were designed based on a created database to demonstrate the generality of the current experimental program. The freeze-thaw (FT) cycles, alkaline-saline (AS) solution, and both coupled effects were used to simulate environmental conditions in cold regions. The durability performance in terms of the failure mode, weight loss, relative dynamic modulus of elasticity, durability factor, as well as the bond strength, were measured and investigated accordingly. The test results revealed that the concrete cover with three times of the bar diameter was not sufficient to resist the environmental agents when exposed to weathering, including FT cycles, in which all the pullout specimens failed by concrete splitting. The coupled scenario of FT cycles and AS solution was observed to be the worst case among all the environmental conditions. Moreover, the analytical models: modified Bertero-Eligehausen-Popov (mBPE) model and CosenzaManfredi-Realfonzo (CMR) model, were calibrated by considering the environmental influences based on the experimental data to better demonstrate the degradation of GFRP-concrete bond. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项研究提出了在恶劣环境下对混凝土中GFRP筋粘结耐久性的实验研究。基于创建的数据库设计了具有不同混凝土覆盖层的拉样,以证明当前实验程序的普遍性。冻融(FT)循环,碱盐(AS)溶液以及两种耦合效应均用于模拟寒冷地区的环境条件。测量并研究了在破坏模式,重量损失,相对动态弹性模量,耐久性因子以及粘结强度方面的耐久性能。测试结果表明,具有三倍于钢筋直径的混凝土覆盖层在暴露于包括FT循环在内的风化条件下不足以抵抗环境因素,在该循环中,所有拉出试样均因混凝土开裂而破裂。在所有环境条件中,FT循环和AS解决方案的耦合场景被认为是最坏的情况。此外,通过基于实验数据考虑环境影响来校准分析模型:改进的Bertero-Eligehausen-Popov(mBPE)模型和CosenzaManfredi-Realfonzo(CMR)模型,以更好地证明GFRP-混凝土键的降解。 (C)2016 Elsevier Ltd.保留所有权利。

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