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Seismic behaviour of steel coupling beams linking reinforced concrete shear walls

机译:连接钢筋混凝土剪力墙的钢耦合梁的抗震性能

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Due to lack of information, current design methods to calculate embedment length for steel coupling beams linking concrete shear walls are tacit about cases in which the beams have connection details to the walls that include stud bolts and horizontal ties. In this study, analyses were carried out to develop a model for calculating the embedment lengths of embedded steel sections. Five models for calculating embedment lengths in hybrid coupled walls are developed as variations of the Prestressed Concrete Institute guidelines for steel brackets attached to reinforced concrete columns. In addition, experimental studies on the steel coupling beam were carried out. The main test variables were the ratios of the coupling beam strength to the connection strength. Based on the test results, it is more advantageous to design the coupling beams as shear-yielding members since a shear-critical coupling beam exhibits a more desirable mode of energy dissipation than a flexure-critical coupling beam.
机译:由于缺乏信息,目前用于计算连接混凝土剪力墙的钢制连接梁的埋入长度的设计方法是默契的,在这种情况下,梁具有与墙的连接细节(包括双头螺栓和水平扎带)。在这项研究中,进行了分析,以开发一个模型来计算嵌入式钢截面的嵌入长度。作为预应力混凝土研究所关于钢筋混凝土柱上钢支架的指南的变化,开发了五个用于计算混合耦合墙中嵌入长度的模型。另外,对钢制耦合梁进行了实验研究。主要测试变量是耦合梁强度与连接强度之比。基于测试结果,将耦合梁设计为产生屈服的构件是更有利的,因为与剪切临界耦合梁相比,剪切临界耦合梁表现出更理想的能量耗散模式。

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