纤维增强塑料
复合数
材料科学
收缩率
复合材料
栏(排版)
结构工程
复合结构
抗压强度
管(容器)
工程类
连接(主束)
作者
Kian Karimi,Michael J. Tait,Wael El‐Dakhakhni
标识
DOI:10.1016/j.compstruct.2010.11.017
摘要
A composite column consisting of steel, concrete and fiber reinforced polymer (FRP) is presented and assessed through experimental testing and analytical modeling. The composite column utilizes a glass FRP (GFRP) composite tube that surrounds a steel I-section, which is subsequently filled with concrete. The GFRP tube acts as a stay-in-place form in addition to providing confinement to the concrete. This study investigates the behavior of the proposed composite columns under axial loading. A total of seven specimens were tested. The influence of concrete shrinkage on the compressive behavior of the composite columns was also investigated. Significant confinement and composite action resulted in enhanced compressive behavior. The addition of a shrinkage reducing agent was found to further improve the compressive behavior of the composite columns. An analytical model was developed to predict the behavior of the composite columns under axial loading.
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