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Experimental and numerical study on the hysteretic behavior of composite partially restrained steel frame-reinforced concrete infill walls with vertical slits

机译:具有垂直狭缝复合部分限制钢框架钢筋混凝土填充墙体的滞回力的实验和数值研究

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The work presented in this study aimed to investigate the hysteretic behavior of composite partially restrained (PR) steel frame-reinforced concrete infill walls (PSRCW) with vertical slits, which consisted of a PR steel frame, a slit-reinforced concrete (RC) infill wall, and shear connectors. An experimental program at one-third scale of a one-bay by three-story PSRCW with vertical slits was tested under horizontal cyclic loading. The seismic behavior was examined in terms of the lateral load-carrying capacity, ductility, deformability, lateral stiffness, and energy dissipation. The results showed that this kind of structure exhibited superior ductility and deformability, as well as excellent energy-dissipation capacity. The slit RC infill walls exhibited flexure-dominated behavior and significantly increased the lateral load-carrying capacity. In contrast, the slit RC infill walls decreased the rotation demand on the PR connections from earthquake, which avoided the fracture failure of the beam-to-column connection. Additionally, the test results were verified, and relative parametric analyses of PSRCW with vertical slits were conducted by using a simplified macro fiber model to illustrate the factors that influence the structural hysteretic behavior.
机译:本研究中提出的工作旨在研究具有垂直狭缝的复合部分限制(PR)钢框架钢筋混凝土填充墙(PSRCW)的滞后行为,该垂直狭缝包括PR钢框架,钢筋混凝土(RC)填充物墙壁和剪切连接器。在水平循环加载下测试了三层PSRCW的三层PSRCW的三层PSRCW的三分之一的一个三级的实验程序。根据横向承载能力,延展性,可变形性,横向刚度和能量耗散来检查地震行为。结果表明,这种结构表现出较高的延展性和可变形性,以及出色的能量耗散能力。 SLIT RC填充墙表现出弯曲主导的行为,显着提高了横向承载能力。相比之下,狭缝RC填充壁从地震中降低了对PR连接的旋转需求,这避免了光束到柱连接的断裂失效。另外,通过使用简化的宏观光纤模型来验证测试结果,并通过使用简化的宏观光纤模型进行垂直狭缝的相对参数分析,以说明影响结构滞后行为的因素。

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