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Glass fiber-reinforced polymer-reinforced rectangular concrete columns under simulated seismic loads

机译:模拟地震荷载作用下的玻璃纤维增强聚合物增强矩形混凝土柱

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摘要

This paper presents the results of nine concrete columns reinforced with longitudinal and transverse glass fiber-reinforced polymer (GFRP) bars and two concrete columns reinforced with longitudinal steel bars and transverse GFRP bars. These specimens were tested under lateral cyclic quasi-static loading while simultaneously subjected to constant axial load. The influence of the volumetric ratio of stirrups, the shear span ratio and the axial load level on the behavior of GFRP-reinforced concrete columns are discussed. The results showed that GFRP-reinforced concrete columns can have sufficient bearing capacity and achieve high levels of deformability. The lateral drift ratios of all the columns reached 4.08-5.06, which meet seismic drift limitations in most building codes. The evaluation methodology of ductility coefficient may not assess the seismic deformability and resistance of GFRP-reinforced concrete columns objectively, while the integrated performance index can reflect the influence of the volumetric ratio of stirrups, the shear span ratio and the axial load on seismic performance comprehensively. The results further indicate that concrete columns reinforced with GFRP bars can be successfully designed and used in seismic engineering if confined well.
机译:本文介绍了9根用纵向和横向玻璃纤维增强聚合物(GFRP)钢筋加固的混凝土柱和2根用纵向钢筋和横向GFRP钢筋加固的混凝土柱的结果。这些试样在横向循环准静态载荷下进行测试,同时承受恒定的轴向载荷。讨论了箍筋体积比、剪跨比和轴向荷载水平对GFRP钢筋混凝土柱行为的影响。结果表明,GFRP钢筋混凝土柱具有足够的承载力,并具有较高的变形能力。所有柱子的侧向漂移比达到4.08-5.06%,符合大多数建筑规范中的地震漂移限制。延性系数的评价方法可能无法客观地评价GFRP钢筋混凝土柱的抗震变形性和抗震性,而综合性能指标可以全面反映箍筋体积比、剪跨比和轴向荷载对抗震性能的影响。结果进一步表明,如果约束良好,GFRP钢筋加固的混凝土柱可以成功地设计并用于地震工程。

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