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Investigation of Cyclic-Shear Behavior of Circular-Reinforced Concrete-Filled Steel Tubes

机译:圆钢管混凝土钢管的循环剪切特性研究

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The cyclic-shear behavior of composite circular concrete-filled steel tubes (CFSTs) and reinforced concrete-filled steel tubes (RCFSTs) was experimentally and numerically investigated. Specimens with 32.39 and 40.64 cm diameters were considered, with diameter-to-thickness ratios of 51 and 64, respectively. The effects of longitudinal and transverse reinforcement were experimentally studied. The experimentally obtained strength values were compared to those from existing shear strength equations. Experimental results showed that the presence of an internal reinforcement doesn't significantly impact the shear strength of RCFSTs. All specimens exhibited some amount of ductility under cyclic shear but not necessarily to the extent that would make it a preferred ductile mechanism. The mechanics governing the shear behavior of the CFSTs were studied using validated finite-element models. It was observed that a compression strut develops in the concrete under shear deformations. This strut also contributed to the shear strength of the composite CFSTs. (C) 2020 American Society of Civil Engineers.
机译:通过实验和数值研究了复合圆形圆钢管(CFSTs)和钢筋混凝土圆管(RCFSTs)的循环剪切行为。考虑了直径为32.39和40.64厘米的标本,直径与厚度的比分别为51和64。实验研究了纵向和横向钢筋的影响。将实验获得的强度值与现有剪切强度方程式的强度值进行比较。实验结果表明,内部增强材料的存在不会显着影响RCFST的抗剪强度。所有样品在循环剪切下均表现出一定程度的延展性,但不一定达到使其成为优选延展性机理的程度。使用验证的有限元模型研究了控制CFST剪切行为的力学。观察到在剪切变形下混凝土中会形成压缩支柱。该支柱还有助于复合CFST的剪切强度。 (C)2020年美国土木工程师学会。

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