两级屈服钢耦合梁与钢筋混凝土耦合梁耦合剪力墙循环性能试验比较研究

Guoqiang Li, Mengde Pang, F. Sun, Liulian Li, Jian-yun Sun
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引用次数: 0

摘要

耦合剪力墙在高层建筑中得到了广泛的应用,因为它不仅能提供有效的侧移刚度,而且具有出色的耗能能力,特别是抗震性能。传统的连轴节梁采用钢筋混凝土结构,由于纵横比低,容易发生剪切破坏,大大降低了耗能效率和能力。为克服混凝土钢筋连接梁(RCB)的不足,设计了一种新型的钢筋连接梁——两级屈服钢筋连接梁(TYSCB),以平衡耦合剪力墙对刚度和耗能的要求。tyscb由两个平行的钢梁组成,在两个不同的水平上屈服。为了验证和研究TYSCB耦合剪力墙的抗震性能改善,对两个1/3比尺、10层的TYSCB和RCB耦合剪力墙试件进行了重力和侧向位移逆转试验。这两个试件的承载力设计相同,便于比较。实验的TYSCB试件表现出更强的循环性能。两个试件均达到1%的侧向位移,但tyscb -耦合剪力墙的强度衰减最小。此外,与RCB试样相比,TYSCB试样在每次试验中耗散的能量更大。根据实验结果,提出了设计建议。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Comparison Study on Cyclic Behavior of Coupled Shear Walls with Two-Level-Yielding Steel Coupling Beam and RC Coupling Beam
Coupled shear walls are widely used in high rise buildings, since they can not only provide efficient lateral stiffness but also behave outstanding energy dissipation ability especially for earthquake-resistance. Traditionally, the coupling beams are made of reinforced concrete, which are prone to shear failure due to low aspect ratio and greatly reduce the efficiency and ability of energy dissipation.  For overcoming the shortcoming of concrete reinforced coupling beams (RCB), an innovative steel coupling beams called two-level-yielding steel coupling beam (TYSCB) is invented to balance the demand of stiffness and energy dissipation for coupled shear walls. TYSCBs are made of two parallel steel beams with yielding at two different levels.  To verify and investigate the aseismic behaviour improvement of TYSCB-coupled shear walls, two 1/3 scale, 10-storey coupled shear wall specimens with TYSCB and RCB were tested under both gravity and lateral displacement reversals. These two specimens were designed with the same bearing capacity, thus to be easier to compare. The experimental TYSCB specimen demonstrated more robust cyclic performance. Both specimens reached 1% lateral drift, however, the TYSCB-coupled shear wall showed minimal strength degradation. Additionally, a larger amount of energy was dissipated during each test of the TYSCB specimen, compared with the RCB specimen. Based on the experimental results, design recommendations are provided.
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