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首页> 外文期刊>Journal of Composites for Construction >FRP-Confined Concrete Composite Retrofit System for Structural Steel Columns
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FRP-Confined Concrete Composite Retrofit System for Structural Steel Columns

机译:FRP约束结构钢柱混凝土组合改造系统

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Fiber-reinforced polymer (FRP)-confined concrete-steel composite columns have been recently introduced as a retrofit technique for structural steel columns. This technique involves placing a two-part FRP tube around an existing steel column and subsequently filling the void between the steel section and the FRP tube with concrete to create a composite column. The composite action occurs due to the concrete encasing the steel section and the FRP confining the concrete. Within this focus, an experimental investigation has been undertaken with the objectives of evaluating the effect of adding confined concrete to encase a steel W section, the effect of using a split-tube system as a practical encasement technique, and the effect of adding shrinkage-reducing admixtures (SRA) to the confined concrete. A total of 18 stub columns comprising six different column types were tested to achieve these objectives. The test results showed that the load-displacement response of the composite columns was similar to that of confined concrete combined with the elastic-perfectly plastic steel contribution. The experimental findings also demonstrated the enhanced composite column performance, including a significant increase in the ultimate capacity using the proposed split-tube retrofit technique. The results also indicated that the use of a SRA in confined concrete has an indistinguishable effect on the confined concrete strength.
机译:最近,引入了纤维增强聚合物(FRP)约束的混凝土-钢复合柱,作为结构钢柱的改造技术。该技术包括将两部分的FRP管围绕现有的钢柱放置,然后用混凝土填充钢段和FRP管之间的空隙以创建复合柱。由于混凝土包围着钢型材,而FRP限制了混凝土,因此产生了复合作用。在此重点范围内,进行了一项实验研究,目的是评估添加约束混凝土以包裹W型钢的效果,使用分流管系统作为实用包裹技术的效果以及增加收缩率的效果,减少密闭混凝土中的外加剂(SRA)。为了达到这些目的,共测试了18种包含6种不同类型色谱柱的短管柱。试验结果表明,组合柱的荷载-位移响应与承压混凝土在弹性-塑性塑料作用下的相似。实验结果还证明了复合柱的性能得到增强,包括使用提议的分流管翻新技术显着提高了最终容量。结果还表明,在承压混凝土中使用SRA对承压混凝土强度没有明显的影响。

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