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Cyclic loading behavior of CFRP-wrapped non-ductile reinforced concrete beam-column joints.

机译:CFRP包裹非延性钢筋混凝土梁柱节点的循环荷载特性。

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摘要

Use of fiber reinforced polymer (FRP) material has been a good solution for many problems in many fields. FRP is available in different types (carbon and glass) and shapes (sheets, rods, and laminates). Civil engineers have used this material to overcome the weakness of concrete members that may have been caused by substandard design or due to changes in the load distribution or to correct the weakness of concrete structures over time specially those subjected to hostile weather conditions. The attachment of FRP material to concrete surfaces to promote the function of the concrete members within the frame system is called Externally Bonded Fiber Reinforced Polymer Systems. Another common way to use the FRP is called Near Surface Mounted (NSM) whereby the material is inserted into the concrete members through grooves within the concrete cover. Concrete beam-column joints designed and constructed before 1970s were characterized by weak column-strong beam. Lack of transverse reinforcement within the joint reign, hence lack of ductility in the joints, and weak concrete could be one of the main reasons that many concrete buildings failed during earthquakes around the world. A technique was used in the present work to compensate for the lack of transverse reinforcement in the beam-column joint by using the carbon fiber reinforced polymer (CFRP) sheets as an Externally Bonded Fiber Reinforced Polymer System in order to retrofit the joint region, and to transfer the failure to the concrete beams. Six specimens in one third scale were designed, constructed, and tested. The proposed retrofitting technique proved to be very effective in improving the behavior of non-ductile beam-column joints, and to change the final mode of failure. The comparison between beam-column joints before and after retrofitting is presented in this study as exhibited by load versus deflection, load versus CFRP strain, energy dissipation, and ductility.
机译:对于许多领域中的许多问题,使用纤维增强聚合物(FRP)材料已成为一个很好的解决方案。 FRP有不同类型(碳和玻璃)和形状(片,棒和层压板)。土木工程师已使用这种材料来克服混凝土构件的弱点,这种弱点可能是由于设计不合格或由于载荷分布的变化而引起的,或者是随着时间的流逝纠正了混凝土结构的弱点,特别是那些经受恶劣天气条件的混凝土构件。将FRP材料附着到混凝土表面以促进框架系统中混凝土构件的功能称为外部粘结纤维增强聚合物系统。使用FRP的另一种常见方式称为近表面安装(NSM),通过这种方式,材料可以通过混凝土盖内的凹槽插入混凝土构件中。 1970年代以前设计和建造的混凝土梁柱节点的特征是弱柱强梁。关节统治期间缺乏横向钢筋,因此关节缺乏延展性,而混凝土薄弱可能是世界上许多地震导致许多混凝土建筑物倒塌的主要原因之一。在当前工作中使用了一种技术,通过使用碳纤维增强聚合物(CFRP)薄板作为外部粘结的纤维增强聚合物系统来补偿梁柱区域的横向增强,以改进节点区域,并且将破坏转移到混凝土梁上。设计,构建和测试了三分之一比例的六个标本。所提出的改造技术被证明对于改善非延性梁柱节点的性能以及改变最终的破坏模式非常有效。在这项研究中,通过荷载与挠度,荷载与CFRP应变,能量耗散和延展性展示了在改造前后的梁柱节点之间的比较。

著录项

  • 作者

    Zerkane, Ali S. H.;

  • 作者单位

    Portland State University.;

  • 授予单位 Portland State University.;
  • 学科 Civil engineering.
  • 学位 M.S.
  • 年度 2016
  • 页码 209 p.
  • 总页数 209
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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