首页> 外文期刊>Journal of Composites for Construction >Concrete Prisms and Cylinders Wrapped by FRP Loaded in Compression with Small Eccentricities
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Concrete Prisms and Cylinders Wrapped by FRP Loaded in Compression with Small Eccentricities

机译:以小偏心率压缩加载的FRP包裹的混凝土棱镜和圆柱体

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摘要

Fiber-reinforced polymer (FRP) wrapping has been extensively studied for strengthening reinforced concrete columns. However, few studies were found on the behavior under small eccentric loads, a frequent situation in real-world applications. In this paper an experimental, numerical, and theoretical study on the influence of small eccentricity of loading in FRP-confined prisms and cylinders is shown. Thirty-six short concrete specimens of different cross sections were tested under concentric and eccentric loads. Unwrapped specimens as well as specimens wrapped by one or two layers of FRP were tested. All specimens showed increases in axial strength and ultimate strain due to wrapping with FRP. The lateral displacement was also measured for all specimens until failure. A simple finite-element model was used to predict the axial strength and axial and lateral displacement. Simplified theoretical procedures were also used to generate axial load-bending moment interaction diagrams. The accuracy of both numerical and theoretical procedures to predict the experimental behavior depended significantly of the confinement model used. (C) 2016 American Society of Civil Engineers.
机译:纤维增强聚合物(FRP)包裹材料已被广泛研究以增强钢筋混凝土柱。但是,很少有关于偏心载荷小的情况下的行为的研究,这在实际应用中经常发生。在本文中,对FRP限制的棱柱和圆柱体中小的加载偏心率的影响进行了实验,数值和理论研究。在同心和偏心荷载下测试了36个不同截面的短混凝土标本。测试了未包裹的样本以及被一层或两层FRP包裹的样本。由于FRP包裹,所有样品均显示出轴向强度和极限应变的增加。还测量了所有样品的横向位移,直到失效为止。一个简单的有限元模型被用来预测轴向强度以及轴向和横向位移。还使用简化的理论程序来生成轴向载荷弯矩相互作用图。数值和理论程序预测实验行为的准确性在很大程度上取决于所使用的限制模型。 (C)2016年美国土木工程师学会。

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