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Research on Cable Anchorage Systems for Self-Anchored Suspension Bridges with Steel Box Girders

机译:钢箱梁自锚式悬索桥锚索系统研究

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摘要

A new type of steel-concrete composite cable anchorage system is conceived and investigated preliminarily for self-anchored suspension bridges with steel box girders to optimize the mechanical behavior of the conventional cable anchorage systems. Model tests and 3D elaborate finite-element analysis (FEA) of the pure steel and steel-concrete composite cable anchorage systems are carried out for the Qingdao Bay Bridge Project, which is under construction in China. For the pure steel anchorage system, a complex stress distribution with obvious stress concentration is observed in the test. The FEA results of the stress distribution correlate well with the experimental measurements. The pure steel anchorage system adopted in the final design of the Qingdao Bay Bridge Project is reliable with a sufficient safety margin. In the contrast test of the composite anchorage system, owing to the composite effect between the steel and concrete, the stress level is reduced significantly and the stress distribution becomes more uniform in comparison with the pure steel anchorage system. The measured stress reduction rate of the composite anchorage averages approximately 40%, which is slightly smaller than the FEA results, and indicates the partial composite effect between the steel and concrete. The proposed composite anchorage system can effectively reduce the thickness and consumption of the steel plates, improve the mechanical behavior of the anchorage system, and simplify the fabrication and construction procedures.
机译:构想并研究了一种新型的钢-混凝土复合电缆锚固系统,用于带有钢箱梁的自锚式悬索桥,以优化常规电缆锚固系统的机械性能。对正在建设中的青岛湾跨海大桥项目,进行了纯钢和钢-混凝土复合电缆锚固系统的模型测试和3D精细化有限元分析(FEA)。对于纯钢锚固系统,在测试中观察到了具有明显应力集中的复杂应力分布。应力分布的有限元分析结果与实验测量值很好地相关。青岛湾跨海大桥项目最终设计中采用的纯钢锚固系统可靠,具有足够的安全裕度。在复合锚固系统的对比试验中,由于钢与混凝土之间的复合作用,与纯钢锚固系统相比,应力水平显着降低,应力分布更加均匀。测得的复合锚固的应力降低率平均约为40%,略小于有限元分析的结果,表明了钢和混凝土之间的局部复合效应。提出的复合锚固系统可以有效地减少钢板的厚度和消耗,改善锚固系统的机械性能,并简化制造和施工程序。

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