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Fiber Reinforced Polymer (FRP) Composites in Retrofitting of Concrete Structures: Polyurethane systems versus Epoxy systems

机译:纤维增强聚合物(FRP)复合材料在混凝土结构翻新中的应用:聚氨酯体系与环氧体系

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Fiber reinforced polymer (FRP) composites are now common structural materials for both new construction and repair/rehabilitation of existing structures. Since the 1980s researchers have developed a significant body of knowledge on externally-bonded composites for infrastructure repair; however, with emphasis on the use of epoxy systems (matrix and adhesives). Externally-bonded FRP composites with polyurethane matrices and adhesives have recently been investigated due to advantages in constructability and mechanical properties. However, little research is available on bond of polyurethane composites to concrete infrastructure, and direct comparisons between performance of epoxy and polyurethane systems. This paper presents several small-scale experiments to characterize the mechanical properties of the bond to concrete of polyurethane FRP composites alongside with epoxy composites. The tests include 3-point bending tests of concrete beams reinforced with the composite materials, lap shear tests, and coupon tensile tests. Strain data collected from the lap shear experiments were used to develop bond-slip relationships of the composite materials that were then implemented in a finite element model and compared with the experimental flexural results. While polyurethane matrices and adhesives are typically characterized by lower shear and normal strengths, results demonstrate the flexibility of the polyurethane matrix proved advantageous in spreading the bond stresses over a larger area compared with epoxy composites. Therefore polyurethane-reinforced concrete beam stiffness and strength properties are comparable with the epoxy counterparts.
机译:纤维增强聚合物(FRP)复合材料现在是用于新建建筑和现有结构的修理/修复的常见结构材料。自1980年代以来,研究人员已积累了大量有关用于基础设施维修的外结合复合材料的知识。但是,重点是使用环氧体系(基质和粘合剂)。由于在可施工性和机械性能方面的优势,最近已研究了具有聚氨酯基体和粘合剂的外部粘结FRP复合材料。但是,关于聚氨酯复合材料与混凝土基础设施之间的粘结以及环氧和聚氨酯体系性能之间的直接比较的研究很少。本文提出了几个小规模的实验,以表征聚氨酯FRP复合材料与环氧复合材料粘结到混凝土的机械性能。测试包括用复合材料增强的混凝土梁的三点弯曲测试,搭接剪切测试和试样拉伸测试。从搭接剪切实验中收集到的应变数据用于建立复合材料的粘结-滑移关系,然后将其应用到有限元模型中,并与实验弯曲结果进行比较。尽管聚氨酯基体和粘合剂通常以较低的剪切强度和正常强度为特征,但结果表明,与环氧复合材料相比,聚氨酯基体的柔韧性被证明有利于将粘结应力分布在更大的面积上。因此,聚氨酯增强混凝土梁的刚度和强度性能可与环氧同行媲美。

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