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Composite Action Assessment of Concrete-Filled FRP Tubes Subjected to Flexural Cyclic Load

机译:循环荷载作用下混凝土填充FRP管的复合作用评估

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Concrete filled fiber-reinforced polymer (FRP) tubes (CFFT) is a principal competitor to replace the conventional reinforced concrete (RC) members in severe environmental conditions. This paper investigates the composite action (interfacial bond) between the FRP tube and its concrete core. Four full-scale CFFT columns associated with RC footings were tested under lateral cyclic load without axial load. Two different diameters of CFFT columns were tested to study the size effect on the bond performance then consequently on the flexural behavior of the CFFT column. The interior surface of two FRP tubes have been covered by sand coating to improve the interfacial bond between the FRP tube and the concrete core. A new approach was proposed to evaluate the composite action between the FRP tube and the concrete core based on measuring strains inside the concrete core by using embedded concrete strain gauges. The assessment of the composite action between the FRP tube and the concrete core was implemented by comparing the interior concrete strains and the corresponding strains on the external tube skin. The experimental results illustrated that the bond significantly influences the flexural strength and stiffness of the CFFT column. Increasing the tube diameter leads to reduce the interfacial bond between the FRP tube and its concrete core. Using sand-coating as a bond enhancer improved the bond between the FRP tube and the concrete core, minimize the adverse effect of increasing the tube diameter, and increased the flexural capacity and stiffness of tested CFFT columns. An analytical model was developed to estimate the flexural capacity of the fully bonded CFFT member.
机译:填充混凝土的纤维增强聚合物(FRP)管(CFFT)是在恶劣的环境条件下替代常规钢筋混凝土(RC)构件的主要竞争对手。本文研究了玻璃钢管与其混凝土芯之间的复合作用(界面结合)。在没有轴向载荷的横向循环载荷下,测试了与RC基础相关的四个全尺寸CFFT柱。测试了两个不同直径的CFFT柱,以研究尺寸对键合性能的影响,然后研究对CFFT柱的弯曲行为的影响。两个FRP管的内表面已被砂覆盖,以改善FRP管与混凝土芯之间的界面粘结。提出了一种新的方法,通过使用嵌入式混凝土应变仪测量混凝土芯内部的应变,来评估FRP管与混凝土芯之间的复合作用。通过比较内部混凝土应变与外管蒙皮上的相应应变,对FRP管与混凝土芯之间的复合作用进行评估。实验结果表明,粘结力显着影响CFFT柱的抗弯强度和刚度。增大管径会导致FRP管与其混凝土芯之间的界面粘结减少。使用砂涂层作为粘结增强剂可以改善FRP管与混凝土芯之间的粘结,最大程度地减小增加管直径的不利影响,并提高测试的CFFT柱的抗弯能力和刚度。开发了一个分析模型来估计完全粘结的CFFT构件的抗弯能力。

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