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Seismic performance of cable-sliding friction bearing system for isolated bridges

机译:隔震桥梁滑索摩擦轴承系统的抗震性能

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During past strong earthquakes, highway bridges have sustained severe damage or even collapse due to excessive displacements and/or very large lateral forces. For commonly used isolation bearings with a pure friction sliding surface, seismic forces may be reduced but displacements are often unconstrained. In this paper, an alternative seismic bearing system, called the cable-sliding friction bearing system, is developed by integrating seismic isolation devices with displacement restrainers consisting of cables attached to the upper and lower plates of the bearing. Restoring forces are provided to limit the displacements of the sliding component. Design parameters including the length and stiffness of the cables, friction coefficient, strength of the shear bolt in a fixed-type bearing, and movements under earthquake excitations are discussed. Laboratory testing of a prototype bearing subjected to vertical loads and quasi-static cyclic lateral loads, and corresponding numerical finite element simulation analysis, were carried out. It is shown that the numerical simulation shows good agreement with the experimental force-displacement hysteretic response, indicating the viability of the new bearing system. In addition, practical application of this bearing system to a multi-span bridge in China and its design advantages are discussed.
机译:在过去的强烈地震中,由于过度的位移和/或很大的侧向力,公路桥梁遭受了严重的破坏甚至倒塌。对于通常使用的具有纯摩擦滑动表面的隔离轴承,可​​以减小地震力,但位移通常不受限制。在本文中,通过将隔震装置与位移限制器集成在一起,开发了另一种称为电缆滑动摩擦轴承系统的地震轴承系统,该位移限制器由附接到轴承上下板上的电缆组成。提供恢复力以限制滑动部件的位移。讨论了设计参数,包括电缆的长度和刚度,摩擦系数,固定型轴承中的剪切螺栓的强度以及地震激励下的运动。对承受垂直载荷和准静态周期性横向载荷的原型轴承进行了实验室测试,并进行了相应的数值有限元模拟分析。结果表明,数值模拟与实验力-位移滞回响应吻合良好,表明了新轴承系统的可行性。此外,还讨论了该轴承系统在中国多跨桥梁中的实际应用及其设计优势。

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