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FRICTION DAMPER DEVICES FOR SEISMIC PERFORMANCE IMPROVEMENT OF STEEL FRAMES

机译:摩擦阻尼装置,用于钢框架的地震性能改善

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The damages observed in recent earthquakes show that it is necessary to choose new methods for improving the seismic response of structures. Energy dissipation capacity of structures subjected to strong earthquakes plays a vital role to protect the primary structural members from severe damage or failure. This study investigates a friction damping bracing system in order to improve the response of steel frames when subjected to severe seismic excitations, beyond the design earthquake. A simplified model describing the behavior of the friction damper device was developed for global analyses of steel frames. Parametric analyses based on numerical simulations were carried out to evaluate the slip force with the aim of minimizing the values of top displacement and hysteretic energy dissipated by the steel frame. The main results of nonlinear dynamic analyses performed on steel frames incorporating friction damping bracing systems are presented and compared with the response of the unprotected counterpart. The effectiveness of the protection system was also assessed by examining the seismic response of the frame equipped with traditional braces, without friction devices. The results of the numerical investigations showed that the use of the friction damping bracing system caused an increase of the dissipative capacity of the frame, above all for severe seismic actions. The plastic deformation concentrated inside the device, protecting the main structural elements from severe damage. The formation of the plastic hinges at the column base was delayed with respect to the unprotected frame. Numerical analyses indicated that the introduction of supplemental damping by using friction devices in steel bracings is very effective for seismic protection of steel frames subjected to severe seismic actions.
机译:最近地震中观察到的损害表明,有必要选择改善结构的地震反应的新方法。受强烈地震所经受强烈地震的结构的能量耗散能力对保护主要结构成员免受严重损害或失败的作用至关重要。本研究调查了摩擦阻尼支撑系统,以改善钢框架时钢框架的响应,超越设计地震。描述了描述摩擦阻尼器装置的行为的简化模型,用于全局分析钢框架。进行了基于数值模拟的参数分析,以评估滑移力,目的是最小化钢框架的顶部位移和滞后能量的值。呈现在包含摩擦阻尼支撑系统的钢框架上进行的非线性动态分析的主要结果,并与未受保护的对应物的响应进行比较。通过检查配备有传统牙套的框架的地震反应,还评估了保护系统的有效性,无需摩擦装置。数值研究的结果表明,使用摩擦阻尼支撑系统导致框架的耗散能力增加,最重要的是严重地震动作。塑性变形浓缩在装置内,保护主要结构元素免受严重的损伤。在柱碱处形成塑料铰链相对于未受保护的框架延迟。数值分析表明,通过在钢支撑件中使用摩擦装置引入补充阻尼对于经受严重地震动作的钢框架的地震保护非常有效。

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