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Feasibility of using carbon fiber reinforced plastic tendons in prestressed concrete Double-Tee bridge system.

机译:在预应力混凝土双T形桥梁系统中使用碳纤维增强塑料筋的可行性。

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摘要

One of the major problems the construction industry faces today is corrosion of reinforcing and prestressing steel, which significantly affects the durability of concrete structures. Fiber reinforced plastics (FRPs) are highly regarded as prospective replacement for steel in prestressed concrete structures under corrosive environment. This investigation was conducted to establish the feasibility of using Carbon Fiber Composite (CFC) cables as reinforcing/prestressing elements in concrete bridge structures. Besides investigating durability of CFC cables and pretensioned concrete beams with CFC cables in adverse environments (alkali and seawater), flexure and shear tests were performed on single Double-Tee beams, together with service load behavior, fatigue strength and ultimate load capacity tests on a half scale model Double-Tee girder bridge system prestressed with CFC cables. Exposure to seawater and alkali environments has no adverse effect on the strength of the CFRP tendons as well as the pretensioned beams with CFRP. Based on the flexural strength tests on Double-Tee beams, the bond between CFRP tendons and concrete is satisfactory. The Double-Tee bridge system exhibited good fatigue resistance and adequate ductility under ultimate load conditions. The ultimate load capacity of the bridge is approximately three times the service load corresponding to two HS20-44 trucks and equals 2.4 times the first crack load. Finite element analyses were carried out to predict elastic deformations and collapse load of the Double-Tee bridge prestressed with CFC cables. Feasibility of using CFC cables in bridge structures is assessed based on the experimental and analytical parameters such as deflections, strains, crack distributions and crack widths.
机译:当今建筑业面临的主要问题之一是钢筋和预应力钢的腐蚀,这严重影响了混凝土结构的耐久性。纤维增强塑料(FRP)在腐蚀环境下被认为是预应力混凝土结构中钢的潜在替代品。进行这项研究是为了确定在混凝土桥梁结构中使用碳纤维复合材料(CFC)电缆作为增强/预应力元件的可行性。除了研究CFC电缆和含CFC电缆的预应力混凝土梁在恶劣环境(碱性和海水)中的耐久性外,还对单个Double-Tee梁进行了挠曲和剪切测试,并在某处进行了工作载荷性能,疲劳强度和极限载荷测试半比例模型采用CFC电缆预应力的双T型梁桥系统。暴露在海水和碱性环境中对CFRP筋束以及带有CFRP的预应力梁的强度没有不利影响。根据双T型梁的抗弯强度试验,CFRP筋与混凝土之间的粘结效果令人满意。双T型桥系统在极限载荷条件下表现出良好的抗疲劳性和足够的延展性。桥梁的极限载荷能力大约是对应于两辆HS20-44卡车的服务载荷的三倍,等于第一裂纹载荷的2.4倍。进行了有限元分析,以预测用CFC电缆预应力的Double-Tee桥的弹性变形和倒塌载荷。根据实验和分析参数(例如挠度,应变,裂缝分布和裂缝宽度)评估在桥梁结构中使用CFC电缆的可行性。

著录项

  • 作者

    Zhuang, Ming.;

  • 作者单位

    Florida Atlantic University.;

  • 授予单位 Florida Atlantic University.;
  • 学科 Engineering Civil.; Engineering Materials Science.; Engineering Marine and Ocean.
  • 学位 Ph.D.
  • 年度 1996
  • 页码 265 p.
  • 总页数 265
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;工程材料学;海洋工程;
  • 关键词

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