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Investigation of CFRP- and GFRP-confined concrete cylinders under monotonic and cyclic loading

机译:CFRP和GFRP约束混凝土圆柱在单调和循环荷载下的研究。

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摘要

Fiber reinforced polymer (FRP) composites have found increasingly wide applications in engineering due to their high strength-to-weight ratio and high corrosion resistance. One important application of FRP composites is as a confining material for concrete, which can enhance both the compressive strength and the ultimate axial strain of concrete. With this respect, the stress-strain behavior of FRP-confined concrete, under both monotonic and cyclic compression, needs to be properly understood and modeled. This paper presents details of an experimental work carried out on concrete cylinders wrapped with FRP materials and subjected to both monotonic and cyclic loading. A total number of 12 FRP confined concrete specimens and 10 control specimens with a diameter of 100 mm and a height of 200 mm were cast and cured under the same conditions, and two FRP materials (carbon fibers (CFRP) and glass fibers (GFRP)) were used for the construction of the FRP jackets. The effect of the type of confinement material, reinforcement ratio based on the jacket stiffness, and type of loading is examined. A model that predicts the behavior of confined concrete, which takes into account the stiffness and effectiveness of different confinement materials is also briefly introduced.
机译:纤维增强聚合物(FRP)复合材料因其高的重量重量比和高的耐腐蚀性而在工程中得到越来越广泛的应用。 FRP复合材料的一个重要应用是作为混凝土的约束材料,它可以提高混凝土的抗压强度和极限轴向应变。鉴于此,需要正确理解和建模FRP约束混凝土在单调和循环压缩下的应力应变行为。本文介绍了在用FRP材料包裹并承受单调和循环载荷的混凝土圆筒上进行的实验工作的详细信息。在相同条件下铸造和固化总共12根直径100毫米,高200毫米的FRP约束混凝土试样和10根对照试样,以及两种FRP材料(碳纤维(CFRP)和玻璃纤维(GFRP) )用于FRP护套的构造。检查了约束材料类型,基于护套刚度的增强比以及载荷类型的影响。还简要介绍了一种预测承压混凝土性能的模型,该模型考虑了不同承压材料的刚度和有效性。

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