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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:无粘结层状弹性体轴承的试验研究及公路桥梁的抗震评估

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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:本文提出了一个实验程序,以研究在中国公路桥梁中广泛使用的非粘结钢增强叠层弹性轴承(U-SLEB)的行为特性。讨论了不同参数(如压缩应力,加载速率和橡胶材料)对摩擦性能,刚度和能量耗散的影响。将U-SLEB的响应与粘结的钢增强层压弹性轴承(B-SLEB)的响应进行了比较。然后,开发了有效的分析模型,该模型考虑了U-SLEB的机械降解并模拟了B-SLEB的实际行为。还评估了具有测试轴承部件的多跨连续桥的地震响应。结果表明,由于摩擦滑动,U-SLEB的机械性能趋于下降。但是,发现减小的程度取决于影响参数。同时,B-SLEB表现出的变硬行为导致在大位移需求下会发生撕裂。由于U-SLEB的可靠滑动性能,使用U-SLEB的桥梁受到的损坏较小。建议构造在横向上合理设计的剪力键,以实现更好的抗震性能。

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