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Flexural performance of precast geopolymer concrete sandwich panel enabled by FRP connector

机译:FRP连接器(FRP连接器)启用预制Geo聚合混凝土夹芯板的弯曲性能

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摘要

Precast concrete sandwich panel (PCSP), consisting of two concrete wythes and a thermal insulation layer in between, can improve greatly the energy efficiency in buildings. This study aims to investigate the structural performance of a new type of PCSP, for which reinforced geopolymer concrete is used as two wythes and con-nectors made of fiber-reinforced polymer (FRP) composites are used to realize the composition action. Eight so-formed precast geopolymer concrete sandwich panels (PGCSP) were fabricated and evaluated their flexural performance through four points bending test. The experimental parameters included connector type (plate-type and hexagonal tubular), connector spacing (300 and 525 mm), reinforcement type (basalt FRP reinforce-ment and steel reinforcement) and reinforcement ratio (0.30% and 0.43%). The load vs. mid-span deflection relationships, crack patterns, failure modes, reinforcement strain development relationships, and degrees of composite action of the panels were investigated in details. In addition, two-dimensional (2D) finite element (FE) analysis was conducted to reproduce the test results and to facilitate a better understanding on the panel's performance particularly the connector's behavior at different loading stages. It was concluded that a higher degree of composite action in the panels can be achieved through the use of FRP tubular connectors, besides, all the FRP tubular connectors can retain their load transfer capacities at the ultimate limit state owning to their ductile failure behavior.
机译:预制混凝土夹芯板(PCSP),由两者之间的两个混凝土和隔热层组成,可以大大提高建筑物中的能源效率。本研究旨在研究一种新型PCSP的结构性能,其中增强地缘聚合物混凝土用作两个由纤维增强聚合物(FRP)复合材料制成的两个WYTHES和CON-NETOR来实现组合物作用。制造八个如此形成的预制盖岩混凝土夹芯板(PGCSP),并通过四点弯曲试验评估其抗弯性能。实验参数包括连接器类型(板式和六边形管),连接器间距(300和525mm),加固型(玄武岩FRP加固和钢筋)和加固率(0.30%和0.43%)。在细节中研究了负荷与中跨偏转关系,裂纹图案,故障模式,增强应变发育关系和面板的复合作用。此外,进行二维(2D)有限元(FE)分析以再现测试结果,并促进面板的性能更好地理解,特别是连接器在不同装载阶段的行为。得出结论是,通过使用FRP管状连接器,可以实现面板中更高程度的复合作用,此外,除了所有FRP管状连接器,所有FRP管状连接器都可以在最终限制状态下保留其负载传递能力,其具有它们的韧性故障行为。

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