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Development of deformable connection for earthquake-resistant buildings to reduce floor accelerations and force responses

机译:为抗震建筑开发可变形连接,以减少地板加速度和力响应

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This paper presents the development of a deformable connection that is used to connect each floor system of the flexible gravity load resisting system (GLRS) with the stiff lateral force resisting system (LFRS) of an earthquake-resistant building. It is shown that the deformable connection acts as a seismic response modification device, which limits the lateral forces transferred from each floor to the LFRS and allows relative motion between the GLRS and LFRS. In addition, the floor accelerations and the LFRS story shears related to the higher-mode responses are reduced. The dispersion of peak responses is also significantly reduced. Numerical simulations of the earthquake response of a 12-story reinforced concrete shear wall example building with deformable connections are used to define an approximate feasible design space for the deformable connection. The responses of the example building model with deformable connections and the example building model with rigid-elastic connections are compared. Two configurations of the deformable connection are studied. In one configuration, a buckling restrained brace is used as the limited-strength load-carrying hysteretic component of the deformable connection, and in the other configuration, a friction device is used. Low damping laminated rubber bearings are used in both configurations to ensure the out-of-plane stability of the LFRS and to provide post-elastic stiffness to the deformable connection. Important experimental results from full-scale tests of the deformable connections are presented and used to calibrate numerical models of the connections. Copyright (C) 2016 John Wiley & Sons, Ltd.
机译:本文介绍了可变形连接的开发,该可变形连接用于将柔性重力抵抗系统(GLRS)的每个楼层系统与抗震建筑物的刚性横向抵抗系统(LFRS)连接起来。结果表明,可变形连接用作地震响应修正装置,它限制了从每个楼层传递到LFRS的侧向力,并允许GLRS和LFRS之间的相对运动。此外,降低了与较高模式响应有关的地板加速度和LFRS楼层剪切。峰响应的色散也大大降低。使用具有可变形连接的12层钢筋混凝土剪力墙示例建筑物的地震响应的数值模拟,为可变形连接定义了近似可行的设计空间。比较了具有可变形连接的示例建筑模型和具有刚性-弹性连接的示例建筑模型的响应。研究了可变形连接的两种配置。在一种构造中,将屈曲约束支撑件用作可变形连接件的有限强度承载滞后分量,而在另一种构造中,使用摩擦装置。两种配置均使用低阻尼层压橡胶轴承,以确保LFRS的平面外稳定性,并为可变形连接提供弹性后刚度。提出了来自可变形连接的全面测试的重要实验结果,并将其用于校准连接的数值模型。版权所有(C)2016 John Wiley&Sons,Ltd.

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