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Shear Resistance of Buckling-restrained Steel Plate Shear Walls

机译:屈曲约束钢板剪力墙的抗剪强度

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摘要

The buckling-restrained steel plate shear walls (SPSWs), which consist of a steel plate sandwiched in between by two reinforced concrete (RC) cover plates, are known to be a robust and efficient lateral load-resisting system. Since the initial imperfection between the RC plates and the inner plate which is mainly caused by the fabrication and construction errors, the high-order buckling deformation generally forms in the compression zone of inner steel plate. Therefore, a modified method based on the high-order buckling analysis on the inner panel is developed to predict the shear resistance of buckling-restrained SPSWs in the present study. Furthermore, the available experimental data from literature is employed to establish the validation of the modified method, and the shear resistance predicted by the proposed method reasonably agrees with the test results. In addition, the effect of the flexural stiffness of vertical boundary elements (VBEs) is also investigated. The minimum moment of inertia of VBEs is then proposed so that the inner steel plate fairly uniformly forms the tension field. Moreover, the pushover analysis is conducted using nonlinear finite element (FE) method to establish the validation of the proposed VBEs flexural stiffness. The FE results are then compared with that predicted by the proposed method and a reasonable agreement is generally achieved between them.
机译:屈曲受限的钢板剪力墙(SPSW)由坚固的钢板和两块钢筋混凝土(RC)盖板夹在中间,是一种坚固而有效的抗侧向荷载系统。由于RC板和内板之间的初始缺陷主要是由制造和构造误差引起的,因此高阶屈曲变形通常在内钢板的压缩区内形成。因此,在本研究中,开发了一种基于内面板高阶屈曲分析的改进方法来预测受屈曲约束的SPSW的抗剪强度。此外,从文献中获得的可用实验数据被用来建立改进方法的验证,并且该方法预测的抗剪强度与测试结果合理地吻合。此外,还研究了垂直边界单元(VBE)的弯曲刚度的影响。然后提出了VBE的最小惯性矩,以使内部钢板相当均匀地形成张力场。此外,使用非线性有限元(FE)方法进行推覆分析,以验证所提出的VBE的弯曲刚度。然后将有限元结果与所提出的方法所预测的结果进行比较,并且通常在它们之间达成合理的协议。

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