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首页> 外文期刊>Journal of bridge engineering >Shear and Friction Response of Nonseismic Laminated Elastomeric Bridge Bearings Subject to Seismic Demands
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Shear and Friction Response of Nonseismic Laminated Elastomeric Bridge Bearings Subject to Seismic Demands

机译:非地震叠层弹性桥梁桥梁受地震需求的剪切和摩擦响应

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摘要

Laminated elastomeric bridge bearings are commonly used in areas with low-to-moderate seismicity, although the applications are typically intended for service-level considerations such as thermal movements of the bridge superstructure. These components provide a potential source of displacement capacity frequently neglected in seismic design. An experimental program was carried out to evaluate the behavioral characteristics and performance of steel-reinforced, laminated elastomeric bearings, which had not been designed for seismic demands, as the primary quasi-isolation components for seismic events by permitting slip at the interface of the bearing and substructure. The rubber at the top of the bearing is vulcanized to a steel plate, which is bolted to the test frame to simulate a connection to the superstructure. At the base of the bearing, the elastomer directly contacts concrete representing the substructure, with no restraint of horizontal motion other than friction. The elastomeric bearings investigated during the experimental program displayed an approximately linear elastic response before sliding, with an initial friction coefficient in the range of 0.25-0.5 (at a shear strain between 125 and 250%) depending on combinations of the contact surface roughness, applied load, and bearing velocity. The friction coefficient decreased as a nonlinear function of the imposed vertical load. The maximum elastomer shear strain priorto sliding exhibited nonlinear increases with vertical load, resulting from the influence of the variable friction coefficient. Linear shear moduli were primarily influenced by the maximum shear strain imposed on the bearing, and showed shear stiffness reductions of approximately 40-50% following multiple, large displacement slip cycles, compared with 15-25% after reaching 50% shear strain. Multiple cycles of large displacement demands resulted in noticeable degradation in the friction coefficient over the duration of the tests. However, the bearings possessed a high degree of resiliency, considering that the specimens retained load-carrying capacity through total cumulative slip travel demands in the range of 3.5-4.5 m (140-180 in.).
机译:叠层的弹性桥梁轴承通常用于地震活动程度低到中等的区域,尽管这些应用通常是出于服务水平的考虑,例如桥梁上部结构的热运动。这些组件提供了潜在的位移能力源,在地震设计中经常被忽略。进行了一个实验程序,以评估未设计用于地震要求的钢增强层状弹性体轴承的行为特性和性能,作为允许地震发生的主要准隔离部件,它允许在轴承界面处打滑和子结构。轴承顶部的橡胶被硫化成一块钢板,然后用螺栓固定到测试框架上,以模拟与上部结构的连接。在轴承的底部,弹性体直接接触代表下部结构的混凝土,除了摩擦外没有任何水平运动的限制。在实验程序中研究的弹性轴承在滑动之前显示出近似线性的弹性响应,其初始摩擦系数在0.25-0.5的范围内(剪切应变介于125%和250%之间),取决于所施加的接触表面粗糙度的组合负载和轴承速度。摩擦系数作为施加的垂直载荷的非线性函数而减小。滑动之前的最大弹性体剪切应变随可变摩擦系数的影响而随垂直载荷呈现非线性增加。线性剪切模量主要受施加在轴承上的最大剪切应变的影响,在多次大位移滑动循环后,剪切刚度降低了约40-50%,而在达到50%剪切应变后降低了15-25%。在试验期间,大位移要求的多个循环导致摩擦系数明显下降。但是,考虑到试样在3.5-4.5 m(140-180英寸)范围内的总累积滑移行程要求下仍保持了承载能力,因此轴承具有很高的弹性。

著录项

  • 来源
    《Journal of bridge engineering》 |2013年第7期|612-623|共12页
  • 作者单位

    Dept. of Civil and Environmental Engineering, Univ. of Illinois at Urbana-Champaign, 205 N. Mathews Ave.,Urbana, IL 61801;

    Dept. of Civil and Environmental Engineering, Univ. of Illinois at Urbana-Champaign, 205 N. Mathews Ave., Urbana, IL 61801;

    Dept. of Civil and Environmental Engineering, Univ. of Illinois at Urbana-Champaign, 205 N. Mathews Ave., Urbana, IL 61801;

    Dept. of Civil and Environmental Engineering, Univ. of Illinois at Urbana-Champaign, 205 N. Mathews Ave., Urbana, IL 61801;

    Dept. of Civil and Environmental Engineering,Northeastern Univ., 360 Huntington Ave., Boston, MA 02115;

    Dept. of Civil and Environmental Engineering,Univ. of Illinois at Urbana-Champaign, 205 N. Mathews Ave., Urbana, IL 61801;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Elastomeric bearings; Quasi-isolation; Full-scale tests; Friction coefficient;

    机译:弹性轴承;准隔离全面测试;摩擦系数;

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