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Interfacial behavior of segmental concrete-filled Basalt FRP tube under cyclic loading

机译:循环荷载作用下节段混凝土充填玄武岩玻璃钢管的界面行为

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摘要

A segmental concrete-filled basalt fiber-reinforced polymer (BFRP) tube was proposed, whose lightweight characteristic promoted convenient bridge column transportation and construction. A special connecting component between the adjacent BFRP segments ensured effective transfer of sectional forces. Four specimens, including three segmental specimens and one comparative integral concrete-filled BFRP tube, were tested to investigate the mechanical performance of the BFRP tube under cyclic loading. Damage patterns, load-deformation response, and strain development were observed, showing that the segmental concrete-filled BFRP tube presented satisfactory load-carrying and deformation capacities. Further, the connecting component effectively guaranteed a satisfactory hysteretic performance. Based on the test results, the overall load-carrying capacity was mainly determined by the moment resistance of the interface. Furthermore, the segmental structure weakened the confining effect on the core concrete, though applying multiple stirrups could compensate for the reduced confining effect. Finally, design methods were proposed for the connecting component.
机译:提出了一种管段混凝土填充玄武岩纤维增强聚合物(BFRP)管,其轻质特性促进了桥柱运输和施工的便利性。相邻的BFRP段之间的特殊连接组件确保了截面力的有效传递。对4个试样进行了测试,包括3个节段试样和1个比较整体混凝土填充BFRP管,研究了BFRP管在循环载荷下的力学性能。观察损伤模式、荷载-变形响应和应变发展,表明管段混凝土填充BFRP管具有令人满意的承载和变形能力。此外,连接组件有效地保证了令人满意的迟滞性能。根据测试结果,整体承载能力主要由界面的力矩电阻决定。此外,节段结构削弱了对核心混凝土的约束作用,尽管应用多个箍筋可以弥补减少的约束作用。最后,提出了连接组件的设计方法。

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