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Experiment research and numerical simulation of an Innovative Seismic Isolating System designed for Long-span Continuous Girder Bridges

机译:用于长跨度连续梁桥设计的创新地震隔离系统的实验研究与数值模拟

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To enhance the earthquake resistance capacity of long-span continues bridge, theory and design of a new seismic isolating system are proposed based on the utilization of improved carbon structural steel material. Pseudo-static test result of the damping tenon, one essential energy dissipation component, proved the system's excellent characteristic of consuming earthquake energy. Comparative experiments of three models reflect the working stability of the damping tenon confronted with different stimulation. Finite Element simulation further validates accuracy of the experiment and helps analyzing the material's elastic and plastic developing status due to different load steps. Finally, this new seismic isolating system is recommended to long-span continues girder bridge designed on the basis of high level earthquake resistant standard.
机译:为了提高长跨度的抗震能力,基于利用改进的碳结构钢材的利用,提出了一种新的地震隔离系统的理论和设计。阻尼榫的伪静态试验结果,一个基本的能量耗散成分,证明了该系统的抗蚀地震能量的优异特性。三种模型的比较实验反映了阻尼榫抗面对不同的刺激的稳定性。有限元模拟进一步验证了实验的准确性,并有助于分析由于不同的负载步骤引起的材料的弹性和塑性显影状态。最后,建议新的地震隔离系统在基于高水平的地震抗性标准的基础上设计的长期跨度梁桥。

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