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Axial compressive behavior of FRP-confined lightweight aggregate concrete: An experimental study and stress-strain relation model

机译:FRP轻质骨料混凝土的轴压性能:试验研究及应力应变关系模型

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Due to its low strength and high brittleness, lightweight aggregate concrete (LWAC) can mainly be used to fabricate non-load bearing structures. Wrapping LWAC with fiber-reinforced polymer (FRP) can effectively improve its mechanical properties, thereby allowing to realize a structural lightweight design. This study therefore aimed to investigate the effect of a FRP confinement on the mechanical properties of LWAC. Three types of coarse aggregate material, i.e., class 600 shale ceramsite, class 800 shale ceramsite and hollow sealed thin-wall steel balls, were selected to design the LWAC and compared in the experiments. After wrapping with three layers of FRP, the strengths of LWACs prepared from the three different materials were improved by a factor of 2.6, 2.1 and 5.4, respectively, whereas their ultimate deformations were improved by a factor of 33.4, 8.5 and 31.2, respectively. Meanwhile, the strength and stress-strain relation for the FRP-confined LWAC were obtained through axial compression tests. Models for the ultimate strength, the ultimate strain and the stress-strain relation of FRP-confined LWAC were successfully established, and a comparative analysis revealed that the predictions made using these models are very accurate. A numerical analysis of these models further showed that, for LWAC and normal concrete with the same strength and FRP confinement, the mechanical behavior was different and found to heavily depend on the FRP confinement aspect properties and the types of the light-weight aggregate. (C) 2016 Published by Elsevier Ltd.
机译:由于其低强度和高脆性,轻骨料混凝土(LWAC)主要可用于制造非承重结构。用纤维增强聚合物(FRP)包裹LWAC可以有效地改善其机械性能,从而实现结构轻巧的设计。因此,本研究旨在研究FRP限制对LWAC力学性能的影响。选择三种类型的粗骨料,即600级页岩陶粒,800级页岩陶粒和中空密封薄壁钢球来设计LWAC,并在实验中进行了比较。用三层FRP包裹后,由三种不同材料制成的LWAC的强度分别提高了2.6、2.1和5.4倍,而其最终变形分别提高了33.4、8.5和31.2倍。同时,通过轴向压缩试验获得了FRP约束的LWAC的强度和应力-应变关系。成功建立了FRP约束LWAC的极限强度,极限应变和应力-应变关系模型,并进行了比较分析,结果表明,使用这些模型进行的预测非常准确。对这些模型的数值分析进一步表明,对于具有相同强度和FRP约束的LWAC和普通混凝土,其机械性能有所不同,并且发现它们在很大程度上取决于FRP约束方面的性质和轻骨料的类型。 (C)2016由Elsevier Ltd.出版

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