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Concrete-filled steel circular tubes subjected to constant amplitude cyclic pure bending

机译:恒振幅循环纯弯曲的圆钢管混凝土

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摘要

This paper describes an experimental investigation of the cyclic inelastic flexural behaviour of concrete-filled tubular (CFT) beams made of cold-formed circular hollow sections and filled with normal concrete. Cyclic bending tests were performed using a constant amplitude loading history on different CFT specimens with diameter-to-thickness ratios (D/t) ranging from 20 to 162. The CFT beams exhibited stable hysteresis behaviour up to the formation of plastic ripples and then showed considerable degradation in stiffness, strength, and ductility depending on the D/t ratio. Seismic capacity parameters are presented including strength, stiffness, rotation capacity, hysteresis loops and modes of failure of the specimens. Peak moments obtained in the cyclic tests are compared with those obtained previously in monotonic tests and also with design moments predicted using the available design rules for composite beams. The deformation ductility demand was determined and used to derive new fully ductile section slenderness limits suitable for seismic design.
机译:本文描述了由冷弯的圆形空心型材制成并填充普通混凝土的钢管混凝土(CFT)梁的循环非弹性挠曲特性的实验研究。使用恒定的振幅加载历史在直径与厚度比(D / t)为20至162的不同CFT样品上进行循环弯曲测试。CFT梁表现出稳定的磁滞行为,直至形成塑料波纹,然后显示取决于D / t比,刚度,强度和延展性显着降低。提出了抗震能力参数,包括强度,刚度,旋转能力,磁滞回线和样本破坏模式。将循环测试中获得的峰值矩与先前在单调测试中获得的峰值矩进行比较,并与使用复合梁可用设计规则预测的设计矩进行比较。确定了变形延性要求,并将其用于导出适用于地震设计的新的全延性截面细长极限。

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