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Shear resistance of stiffened steel corrugated shear walls

机译:加筋钢瓦楞剪力墙的抗剪强度

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In recent years, the steel corrugated shear walls (SCSWs) are widely used in building structures to serve as lateral force resistant members. For some practical engineering applications that the width of the infilled SCSWs in frame structure is much greater than its height, it is common to add vertical stiffening systems to the SCSWs, thus forming the stiffened SCSWs (SSCSWs), and the stiffening system is composed of a pair of vertical stiffeners installed on both sides of the corrugated plate and the connecting high-strength bolts. In this paper, the shear resistant behavior of the SSCSWs is investigated via FE analyses considering both the geometrical and material nonlinearities, and over 300 models are analyzed through elastoplastic numerical process. The comparison of the shear resistant behavior of SSCSWs with different stiffening rigidities is performed, which indicates that the stiffening system can effectively restrain the out-of-plane displacements of the corrugated wall, and can improve both shear resistance and ductility of the SSCSWs. Then a transition rigidity ratio of the stiffening system is proposed to reflect the critical value of the stiffening rigidity that the out-of-plane displacements of the corrugated plate are fully restrained at the bolted locations. Correspondingly, curve fitted formula of the transition rigidity ratio is provided to enable a conservative prediction. Finally, shear buckling formulas are fitted to reveal the relationship between the reduction factor and the normalized aspect ratio, and they are validated to be able to conservatively predict the ultimate shear stress of SSCSWs. Accordingly, some design recommendations are presented, which could provide valuable references for practical design of SSCSWs.
机译:近年来,钢制波纹状剪力墙(SCSW)广泛用于建筑结构中,以用作抗侧向力构件。对于某些实际的工程应用,框架结构中填充的SCSW的宽度远大于其高度,通常在SCSW中添加垂直加劲系统,从而形成加劲的SCSW(SSCSW),而加劲系统由以下组成:波纹板两侧安装了一对垂直加强筋,并连接了高强度螺栓。在本文中,通过考虑几何和材料非线性的有限元分析,研究了SSCSWs的抗剪性能,并通过弹塑性数值过程分析了300多个模型。进行了不同刚度的SSCSW的抗剪性能的比较,表明该加强系统可以有效地抑制波纹壁的平面外位移,并且可以提高SSCSW的抗剪性和延展性。然后提出了加强系统的过渡刚度比,以反映加强刚度的临界值,即瓦楞板的平面外位移在螺栓位置完全受到约束。相应地,提供过渡刚度比的曲线拟合公式以实现保守的预测。最后,拟合了剪切屈曲公式,揭示了折减系数与归一化纵横比之间的关系,并经过验证可以保守地预测SSCSW的极限剪切应力。因此,提出了一些设计建议,可以为SSCSW的实际设计提供有价值的参考。

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