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A Fracture Mechanics Approach for Interface Durability of Bonded FRP to Concrete

机译:一种粘接FRP与混凝土界面耐久性的断裂力学方法

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Externally bonded GFRP fabrics are being increasingly used for seismic retrofit and rehabilitation of concrete structures, due to their high strength to weight ratio and low cost in comparison to carbon and aramid fibers. However, glass fibers are vulnerable to attack caused by harsh environmental weathering conditions such as freezing-thawing, wetting-drying, and exposure to alkaline and acidic environments. Concerned with durability, this study is based on fracture mechanics to evaluate the interface durability of GFRP bonded to Normal Concrete (NC) and High-Performance Concrete (HPC). Three types of specimens are evaluated: (1) newly bonded unconditioned specimens, (2) environmentally conditioned specimens, and (3) correspondingly base-line companion specimens. Two types of environmental ageing protocols are defined: (1) freeze-thaw cycling under in calcium chloride, used to simulate the deleterious effect of the deicing salts; and (2) alternate wetting and drying in sodium-hydroxide, used to simulate the alkalinity due to the presence of concrete pore water. Durability of the interface is characterized based on the critical strain energy release rate, under Mode-I loading, and weight and strain measurements. Considerable degradation of the interface bond is observed with increasing environmental cycling period.
机译:外部粘合的GFRP织物正在越来越多地用于混凝土结构的地震改造和康复,因为它们的重量比和与碳和芳族聚酰胺纤维相比的高成本和低成本。然而,玻璃纤维容易受到苛刻的环境风化条件引起的攻击,例如冻融,润湿干燥和暴露于碱性和酸性环境。本研究涉及耐用性,基于骨折力学来评估GFRP与普通混凝土(NC)和高性能混凝土(HPC)的界面耐久性。评价三种类型的样品:(1)新键合无条件标本,(2)环状标本,和(3)相应底线伴标。定义两种类型的环境老化方案:(1)在氯化钙下冻融循环,用于模拟除冰盐的有害效果; (2)氢氧化钠中的润湿和干燥,用于模拟由于混凝土孔水的存在而模拟碱度。界面的耐久性基于临界应变能释放速率,在模式-I装载和重量和应变测量下的表征。随着环境循环期的增加,观察到界面键的大大降解。

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