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Analysis and behaviour of FRP-confined short concrete columns subjected to eccentric loading

机译:偏心荷载下FRP约束混凝土短柱的分析与性能

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摘要

Fibre-reinforced polymer (FRP) composites were widely utilized in civil engineering structures as the retrofit of reinforced concrete (RC) columns. To design FRP jackets safely and economically, the behaviour of such columns should be predicted first. This paper is concerned with the analysis and behaviour of FRP-confined RC circular and rectangular short columns subjected to eccentric loading. A simple design-oriented stress-strain model for FRP-confined concrete in a section analysis was first proposed. The accuracy was then proved by two test data. Following that, a parametric study including amount of FRP confinement, FRP strain capacity, unconfined concrete strength and shape of column section is provided. Some conclusions were obtained at the end of the paper. The work here will provide a comprehensive understanding of the behaviour of FRP-confined concrete columns. The simplicity of the model also enables a simple equivalent stress block to be developed for direct use in practical design.
机译:纤维增强聚合物(FRP)复合材料被广泛用于土木工程结构中,作为钢筋混凝土(RC)柱的改造。为了安全,经济地设计FRP护套,应首先预测此类立柱的性能。本文关注的是FRP约束的钢筋混凝土圆形和矩形短柱在偏心荷载作用下的分析和性能。首先在截面分析中提出了一种针对设计的简单FRP约束混凝土应力应变模型。然后,通过两个测试数据证明了准确性。随后,进行了参数研究,包括FRP限制量,FRP应变能力,无侧限混凝土强度和柱截面形状。在论文的最后得到了一些结论。此处的工作将对FRP约束混凝土柱的行为提供全面的了解。该模型的简单性还使得能够开发出简单的等效应力块,以便直接用于实际设计中。

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