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An Experimental Investigation of Unbonded Laminated Elastomeric Bearings and the Seismic Evaluations of Highway Bridges with Tested Bearing Components

机译:用测试轴承部件对非合并层压弹性体轴承及公路桥梁地震评价的实验研究

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摘要

This paper presents an experimental program performed to investigate the behavioral characteristics of unbonded steel-reinforced laminated elastomeric bearings (U-SLEBs), which have been widely used for highway bridges in China. The influences on the friction behaviors, stiffness, and energy dissipations of the different parameters, such as compressive stresses, loading rates, and rubber material, were discussed. The responses of the U-SLEBs were compared with those of the bonded steel-reinforced laminated elastomeric bearings (B-SLEBs). Then, effective analytical models were developed, which considered the mechanical degradation of the U-SLEBs and simulated the realistic behaviors of the B-SLEBs. The seismic responses of a multispan continuous bridge with tested bearing components were also evaluated. The results showed that the mechanical properties of the U-SLEBs tended to degrade due to friction sliding. However, the degrees of the decrease were found to be dependent on the influencing parameters. Meanwhile, the B-SLEBs exhibited stiffening behaviors that led to tearing under large displacement demands. The bridges using U-SLEBs were found to suffer less damage due to the reliable sliding behavior of U-SLEBs. It is recommended that shear keys, which are reasonably designed in the transverse direction, be constructed in order to achieve better seismic performance.
机译:本文介绍了对研究未粘附的钢筋混凝土弹性体轴承(U形速素)的行为特性进行的实验程序,这些计划已广泛用于中国的公路桥梁。讨论了对不同参数的摩擦行为,刚度和能量耗散的影响,例如压缩应力,装载速率和橡胶材料。将U形簧B的反应与粘合的钢筋增强层叠弹性体轴承(B盘)进行了比较。然后,开发了有效的分析模型,这考虑了U形簧的机械劣化,并模拟了B盘的现实行为。还评估了多纸包连续桥与经过测试轴承组分的地震反应。结果表明,由于摩擦滑动,U形簧布的机械性能倾向于降解。然而,发现减少的程度依赖于影响参数。同时,B-Slebs表现出加强行为,导致在大的位移需求下撕裂。由于U形速素的可靠滑动行为,发现使用u形簧布的桥梁遭受较小的损坏。建议在横向上合理设计的剪切键,以实现更好的地震性能。

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