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Numerical study of steel rigid collar connection affecting cyclic loading

机译:影响循环载荷的钢刚性套环连接的数值研究

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摘要

In existing connections, the continuity plates are used to transfer forces from beam to column. The continuity plate can be used easily in the H-column from the practical point of view, but in a box-column, it is difficult and economically expensive. In this study, an innovative short and large collar connection has been proposed in which the continuity plates have been removed. Moreover, geometric parameters and mechanical properties are evaluated to achieve an ideal collar connection. This paper studies the cyclic behavior of the collar connection using finite element method and ABAQUS software. All details of this steel connection including welds and bolts were considered in the numerical model. For verification purposes, the numerical results of three connections including bolted tee, bolted endplate, and welded RBS were compared with experimental results. Subsequently, 18 models of the proposed collar connections were evaluated under the influence of cyclic displacement. The results indicated that seismic behavior of the large collar connections is appropriate, and this connection can be used in special steel moment frame systems. Moreover, seismic behavior of the large collar connections for deep beams showed a proper behavior over 0.04 radian rotations. In addition, the column will remain without any remarkable plasticity and local buckling.
机译:在现有连接中,连续板用于将力从光束传递到列。连续板可以在实际的角度下容易地使用H-Colums,但在盒子中,它是困难和经济上的。在这项研究中,提出了一种创新的短和大的套环连接,其中连续板已被移除。此外,评估几何参数和机械性能以实现理想的套环连接。本文采用有限元方法和ABAQUS软件研究了套环连接的循环行为。在数值模型中考虑了包括焊缝和螺栓在内的这种钢连接的所有细节。为了验证目的,将三个连接包括螺栓发球区域,螺栓端板和焊接RB的数值结果与实验结果进行比较。随后,在循环位移的影响下评估了18种所提出的套环连接的型号。结果表明,大环连接的抗震性能是合适的,并且这种连接可用于特殊钢矩框架系统。此外,用于深梁的大环连接的地震行为显示出超过0.04弧度旋转的适当行为。此外,该柱将保持没有任何显着的可塑性和局部屈曲。

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