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Effect of steel coupling beam on the seismic reliability and R-factor of box-type buildings

机译:钢耦合梁对箱式建筑抗震可靠度和R因子的影响

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摘要

In reinforced concrete structures comprising box-type (tunnel form) structural systems, although the link beams (LBs) experience heavy damage before the shear walls, dimensional and cross-sectional limitations make it challenging to design LBs as seismic fuses. In this study, replaceable steel coupling beams were considered as an alternative to concrete LBs and the seismic performance, seismic reliability and multi-level response modification factor of this new system was examined. The results showed that the steel LBs had considerable effects on the lateral stiffness and load-bearing capacity of the box-type structural system. Under design and maximum credible earthquakes, the steel LBs had less influence on the performance level of the structural walls, which are the main elements of the lateral-load-bearing system. Consequently, they will slightly reduce the seismic reliability of the system while achieving predetermined performance levels. The use of steel LBs is suggested due to their replaceability and high energy-absorbing capacity.
机译:在包括箱型(隧道形式)结构系统的钢筋混凝土结构中,尽管连接梁(LB)在剪力墙之前受到了严重的破坏,但是尺寸和横截面限制使得将LB设计为地震保险丝具有挑战性。在这项研究中,可替换的钢耦合梁被认为是混凝土LBs的替代品,并且研究了该新系统的抗震性能,抗震可靠性和多级响应修正系数。结果表明,钢LB对箱形结构系统的侧向刚度和承载能力有很大影响。在设计和最大可信地震的作用下,钢制LB对结构墙的性能水平的影响较小,而结构墙是侧向承重系统的主要组成部分。因此,它们将在达到预定性能水平的同时略微降低系统的抗震可靠性。由于其可替换性和高能量吸收能力,建议使用钢制LB。

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