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Stress-strain model of weak PVC-FRP confined concrete column and strong RC ring beam joint under eccentric compression

机译:偏心压缩下弱PVC-FRP紧孔混凝土柱和强RC环梁关节应力 - 应变模型

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摘要

To investigate the stress-strain relation of PVC-FRP Confined Concrete (PFCC) column with RC ring beam joint subjected to eccentric compression, the experiment of 13 joint specimens, which were designed with principle of "strong joint and weak column", were presented. Several variable parameters, such as reinforcement ratio, width and height of ring beam, FRP strips spacing and eccentricity, were considered. The specimens were eventually damaged by the crushing of concrete, the fracture of PVC tube and several FRP strips. With the FRP strips spacing or eccentricity increased, the ultimate carrying capacity of specimens declined. The strain of FRP strips and axial strain of PVC tube decreased as FRP strips spacing decreased. The decrease of eccentricity would slow down the development of strain of FRP strips and axial strain of PVC tube. The slope of stress-strain curve of PFCC column decreased as FRP strips spacing or eccentricity increased. The ultimate strain of PFCC column reduced as FRP strips spacing increased, while the effect of eccentricity on the ultimate strain of PFCC was not distinct. Considering the influence of eccentricity on the stress-strain relation, a modified stress-strain model for conveniently predicting the weak PFCC column and strong RC ring beam joint under eccentric compression was proposed and it was in good agreement with the experimental data.
机译:研究PVC-FRP紧孔混凝土(PFCC)柱与RC环梁关节进行偏心压缩的应力 - 应变关系,提出了13个关节标本的实验,这些试验用“强关节和弱柱”的原理设计。考虑了几个可变参数,例如环束,FRP条间距和偏心率的加固率,宽度和高度。最终被混凝土的破碎,PVC管的骨折和几条FRP条带损坏了标本。随着FRP条带间距或偏心的增加,标本的最终承载能力下降。随着FRP条带间距降低,PVC管的FRP条带和PVC管轴向应变减小。偏心的降低将减缓FRP条带应变的开发和PVC管的轴向菌株。由于FRP条带间距或偏心率增加,PFCC塔应力 - 应变曲线的斜率降低。随着FRP条带间距的增加,PFCC柱的最终菌株减少,而偏心率对PFCC的最终菌株的影响并不明显。考虑到偏心性对应力应变关系的影响,提出了一种改进的应力 - 应变模型,用于方便地预测偏心压缩下的弱PFCC柱和强RC环梁关节,并与实验数据一致。

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