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Design-Oriented Stress-Strain Model for Concrete under Combined FRP-Steel Confinement

机译:FRP-钢组合约束下混凝土的设计导向应力应变模型

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Extensive research has been conducted on fiber-reinforced polymer (FRP)-confined plain and RC columns, leading to a large number of stress-strain models. Most of these models have been developed for FRP-confined plain concrete and are thus applicable only to concrete in FRP-confined RC columns with a negligible amount of transverse steel reinforcement. The few models that have been developed for concrete under the combined confinement of FRP and transverse steel reinforcement are either inaccurate or too complex for direct use in design. This paper presents an accurate design-oriented stress-strain model for concrete under combined FRP-steel confinement in FRP-confined circular RC columns. The proposed model is formulated on the basis of extensive numerical results generated using an analysis-oriented stress-strain model recently proposed by the authors and properly captures the key characteristics of FRP-steel-confined concrete as revealed by existing test results. The model strikes a good balance between accuracy of prediction and simplicity of form and is shown to provide close predictions of test results and perform significantly better than existing stress-strain models of the same type.
机译:对纤维增强聚合物(FRP)约束的普通柱和RC柱进行了广泛的研究,从而建立了许多应力应变模型。这些模型中的大多数都是针对FRP约束的普通混凝土开发的,因此仅适用于FRP约束的RC柱中横向钢筋的数量可忽略不计的混凝土。在FRP和横向钢筋的共同作用下为混凝土开发的几种模型不准确,或者过于复杂,无法直接用于设计。本文提出了一种在FRP约束的圆形RC柱中,在FRP-钢组合约束下,混凝土的精确设计导向型应力应变模型。该模型是根据作者最近提出的面向分析的应力-应变模型产生的大量数值结果而制定的,并且可以正确地抓住FRP钢混凝土的关键特性,如现有测试结果所示。该模型在预测的准确性和形式的简单性之间取得了良好的平衡,并且显示出可以提供测试结果的紧密预测,并且比现有的相同类型的应力应变模型表现得更好。

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