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Experimental Evaluation of a Rocking Damage-Free Steel Column Base with Friction Devices

机译:摩擦装置摇摆损伤钢柱底座的实验评价

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This paper presents the experimental evaluation of an earthquake-resilient rocking damage-five steel column base, previously proposed and numerically investigated by the authors. The column base uses post-tensioned high-strength steel bars to control its rocking behavior, and friction devices to dissipate seismic energy. It is equipped with a circular steel plate with rounded edges, which is used as a rocking base. The rounded edges prevent stress concentration and damage of the contact surfaces, whereas the circular shape allows rocking toward all plan directions. In contrast to conventional steel column bases, the proposed column base exhibits monotonic and cyclic moment- rotation behaviors that are easily described by analytical equations. This allows the definition of a step-by-step design procedure which ensures damage-free behavior, self-centering capability, and energy dissipation capacity for a target design base rotation. The experimental tests, presented in this study, were conducted under monotonic and cyclic loads demonstrating the damage-free behavior even under large rotations. The experimental results were used to validate the design procedure and to calibrate refined three-dimensional (3D) nonlinear finite-element models that will allow further investigations. (C) 2020 American Society of Civil Engineers.
机译:本文介绍了地震 - 弹性摇摆损伤 - 五钢柱底座的实验评价,先前提出的作者在数值上进行了数值调查。柱底座采用后张紧的高强度钢筋来控制其摇摆行为,摩擦装置散发地震能量。它配备有带圆形边缘的圆形钢板,用作摇摆底座。圆形边缘防止应力集中和接触表面的损坏,而圆形形状允许朝向所有方向晃动。与传统的钢柱碱形成相比,所提出的柱底座表现出通过分析方程容易描述的单调和循环运动行为。这允许定义逐步设计过程,该过程可确保目标设计基础旋转的无损坏行为,自定心能力和能量耗散能力。在本研究中提出的实验测试在单调和循环载荷下进行,即使在大旋转下也表现出无损的行为。实验结果用于验证设计程序和校准精制的三维(3D)非线性有限元模型,以便进一步调查。 (c)2020年美国土木工程师协会。

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