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Experimental study and theoretical analysis on axial compressive behavior of concrete columns reinforced with GFRP bars and PVA fibers

机译:GFRP和PVA纤维增强混凝土柱轴压性能的试验研究与理论分析。

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There have been some studies on the axial compressive behavior of concrete columns reinforced with fiber-reinforced polymer (FRP) bars. But most studies focused on normal concrete without fibers. In this paper, 10 concrete columns reinforced with glass fiber-reinforced polymer (GFRP) bars and polyvinyl alcohol (PVA) fibers were designed to investigate the influence of reinforcement type, longitudinal reinforcement ratio, spacing and size of GFRP ties on the axial compressive behavior of the specimens. Analytical and numerical studies were explored in this paper. The test results indicated that the concrete column reinforced with GFRP bars and PVA fibers (GFRP PVA-FRC column) and the concrete column reinforced with steel bars and PVA fibers (steel PVA-FRC column) had the similar failure processes and failure modes. The axial bearing capacity and brittleness of the GFRP PVA-FRC columns increased with the increasing longitudinal reinforcement ratio. When the volumetric ratio was constant, the confinement efficiency and ductility of the specimens using GFRP ties with smaller diameter and closer spacing were higher than that using GFRP ties with larger diameter and larger spacing. A new stress-strain constitutive model for PVA fiber reinforced concrete confined by GFRP bars was proposed. The numerical results showed that the concrete in the columns reinforced with GFRP longitudinal bars and GFRP ties could give full play to its strength. The conclusions could be references for the engineering application. (C) 2018 Elsevier Ltd. All rights reserved.
机译:已经对用纤维增强聚合物(FRP)钢筋增强的混凝土柱的轴向压缩性能进行了一些研究。但是大多数研究集中在没有纤维的普通混凝土上。本文设计了10根玻璃纤维增​​强聚合物棒和聚乙烯醇(PVA)纤维增强的混凝土柱,以研究增强类型,纵向增强比,间距和大小对玻璃纤维增​​强材料轴向压缩性能的影响。标本。本文进行了分析和数值研究。试验结果表明,GFRP筋和PVA纤维增强的混凝土柱(GFRP PVA-FRC柱)和钢筋和PVA纤维增强的混凝土柱(钢PVA-FRC柱)具有相似的破坏过程和破坏模式。 GFRP PVA-FRC柱的轴向承载力和脆性随纵向配筋率的增加而增加。当体积比恒定时,采用直径较小,间距较小的GFRP扎带的约束效率和延展性要比采用直径较大,间距较大的GFRP扎带的约束效率和延性高。提出了一种新的GFRP筋约束的PVA纤维增强混凝土应力应变本构模型。数值结果表明,采用GFRP筋和GFRP筋加固的混凝土柱可以充分发挥其强度。结论可为工程应用提供参考。 (C)2018 Elsevier Ltd.保留所有权利。

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