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Behavior of shear studs in steel frames with reinforced concrete infill walls

机译:钢筋混凝土填充墙的钢框架中抗剪栓钉的性能

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This paper reports on the behavior of headed shear stud connectors for use in steel frames with partially restrained connections and reinforced concrete infill walls, attached com-positely to the steel frame around the perimeter of each wall panel (S-RCW system), subjected to seismic loading. In infill walls, the shear connectors lie in the plane of the concrete panel, which results in different behavior from studs in composite beams, for which the majority of past research has been conducted. In particular, shear connectors in infill walls are subjected to axial tension and compression forces due to sidesway and overturning of the S-RCW system, are influenced by the parallel edges of the wall, and are subjected to cyclic forces.An experimental program was developed to quantify the strength and deformation capacities of shear studs for use in S-RCW infill systems addressing the above issues, and to verify existing AISC, PCI, ACI, and Japanese design equations. A modification of the classic push-out test setup was made to accommodate the application of cyclic shear loading and axial tensile loading. Two different steel reinforcement configurations were used, one providing little confining reinforcement around the shear studs, and the other utilizing a steel reinforcement cage to provide ample confinement to the shear stud.
机译:本文报道了用于带部分约束连接和钢筋混凝土填充墙的钢框架的带头抗剪螺柱连接器的性能,该钢复合材料围绕每个墙板的周长(S-RCW系统)与钢框架复合连接地震荷载。在填充墙中,抗剪连接器位于混凝土板的平面内,这导致其与复合梁中的螺柱具有不同的行为,对此,以往的大多数研究已经进行了。特别是,由于S-RCW系统的侧向和倾覆,填充墙中的剪力连接器受到轴向拉力和压缩力,受墙的平行边缘影响,并受到循环力。量化用于解决上述问题的S-RCW填充系统中使用的抗剪螺栓的强度和变形能力,并验证现有的AISC,PCI,ACI和日本设计公式。对经典推出试验设置进行了修改,以适应循环剪切载荷和轴向拉伸载荷的应用。使用了两种不同的钢筋配置,一种配置在抗剪栓钉周围提供很少的围挡钢筋,另一种利用钢制钢筋笼来为抗剪栓钉提供足够的约束。

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