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STATIC BEHAVIOR OF LONG-SPAN RC CABLE-STAYED BRIDGE WITH FRP CABLES

机译:具有FRP电缆的长跨度RC斜拉桥的静态行为

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Based on previous studies of thousand-meter scale cable-stayed bridge with FRP cables,the design method of cables and the static behavior of FRP long-span RC cable-stayed bridge are further investigated in this paper,which focuses on the limitation of insufficient use of FRP cables and potential extension of their applicable spans. The static and fatigue properties of FRP cables were first experimental studied,based on which design method aiming at high-efficiency use was proposed. A three-dimensional finite element simulation was adopted to study the static behavior of RC cable-stayed bridge with different FRP cable including carbon FRP (CFRP),basalt FRP (BFRP),hybrid basalt and carbon FRP (B/CFRP) and basalt and steelwire FRP (B/SFRP). The major results show that (1) hybrid design of FRP can enhance the integrated behavior of FRP and obtain mechanical behavior required by cable-stayed bridge; (2) the design stress of FRP cable determined by fatigue strength benefits improving of the utilization efficiency and overcoming the limitation of strength and stiffness equivalent design methods; (3) compared to RC cablestayed bridge with steel cables,cable-stayed bridges with FRP cables exhibit sufficient stiffness under the state of serviceability and cause slight influence to the structural behavior of main girder.
机译:基于以前的千米米秤斜拉桥与FRP电缆的研究,本文进一步研究了FRP长跨度RC电缆储存桥的电缆设计方法及FRP长跨度RC斜拉桥的静态行为,专注于不足的限制使用FRP电缆和适用跨度的潜在延伸。 FRP电缆的静态和疲劳性能是第一次实验研究,基于提出了旨在高效使用的设计方法。采用三维有限元模拟研究RC斜拉桥与不同FRP电缆的静态行为,包括碳FRP(CFRP),玄武岩FRP(BFRP),杂交玄武岩和碳FRP(B / CFRP)和玄武岩SteelWire FRP(B / SFRP)。主要结果表明,(1)FRP的混合式设计可以增强FRP的综合行为,并获得斜拉桥所需的机械行为; (2)通过疲劳强度确定FRP电缆的设计应力效益提高利用效率,克服强度和刚度等同的设计方法的限制; (3)与RC CableStayed桥与钢电缆相比,具有FRP电缆的缆绳桥在可维护性状态下表现出足够的刚度,并对主要梁的结构行为略微影响。

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