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不同类型纤维增强复合材料(FRP)约束混凝土圆柱体中纵向钢-FRP复合筋的抗压性能

Compressive Performance of Longitudinal Steel-FRP Composite Bars in Concrete Cylinders Confined by Different Type of FRP Composites.

作者信息

Duan Maojun, Tang Yu, Wang Yusheng, Wei Yang, Wang Jiaqing

机构信息

College of Civil Engineering, Nanjing Forestry University, Nanjing 210037, China.

出版信息

Polymers (Basel). 2023 Oct 11;15(20):4051. doi: 10.3390/polym15204051.

Abstract

This paper presents an experimental study on the compressive performance of longitudinal steel-fiber-reinforced polymer composite bars (SFCBs) in concrete cylinders confined by different type of fiber-reinforced polymer (FRP) composites. Three types of concrete cylinders reinforced with (or without) longitudinal SFCBs and different transverse FRP confinements were tested under monotonic compression. The results showed that the post-yield stiffness of SFCBs is higher when confined with high elastic modulus carbon fiber-reinforced polymer (CFRP) composite than with low elastic modulus basalt fiber-reinforced polymer (BFRP) composite. Decreasing confinement spacing did not significantly improve the compressive strength of SFCBs in concrete cylinders. The compressive failure strain of SFCBs could possibly reach 88% of its tensile peak strain in concrete cylinders confined by CFRP sheets, which is significantly higher than the value (around 50%) in previous studies. Existing design equations, which applied a strength reduction factor or a maximum compressive strain of concrete to consider the compressive contributions of SFCBs in concrete members, underestimate the load-carrying capacity of SFCB-reinforced concrete cylinders. The design equation that considers the actual compressive stress of SFCBs gives the most accurate prediction; however, its applicability and accuracy need to be verified with more experimental data.

摘要

本文介绍了一项关于纵向钢纤维增强聚合物复合筋(SFCB)在不同类型纤维增强聚合物(FRP)复合材料约束的混凝土圆柱体中抗压性能的试验研究。对三种(有无)纵向SFCB且采用不同横向FRP约束的混凝土圆柱体进行了单调压缩试验。结果表明,与低弹性模量玄武岩纤维增强聚合物(BFRP)复合材料相比,采用高弹性模量碳纤维增强聚合物(CFRP)复合材料约束时,SFCB的屈服后刚度更高。减小约束间距并不能显著提高混凝土圆柱体中SFCB的抗压强度。在CFRP板约束的混凝土圆柱体中,SFCB的抗压破坏应变可能达到其拉伸峰值应变的88%,这显著高于先前研究中的值(约50%)。现有的设计方程通过应用强度折减系数或混凝土的最大压缩应变来考虑SFCB在混凝土构件中的抗压贡献,低估了SFCB增强混凝土圆柱体的承载能力。考虑SFCB实际压应力的设计方程给出了最准确的预测;然而,其适用性和准确性需要更多试验数据进行验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa06/10610357/09002c7c3a99/polymers-15-04051-g001.jpg

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