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Post-Earthquake Evaluation and Emergency Repair of Damaged RC Bridge Columns Using CFRP Materials.

机译:使用CFRP材料的地震后评估和受损RC桥梁柱的紧急修复。

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摘要

The main objective of the study was to develop a rapid and effective repair method using carbon fiber reinforced polymer (CFRP) materials for earthquake-damaged reinforced concrete bridge columns. This study consisted of three main phases. In the first phase, a data base of 33 test columns was developed and analyzed and five distinct apparent seismic damage states were defined. The damage states were correlated to measured seismic response parameters in terms of drift, frequency, strains, and yield and ultimate displacements. Fragility curves were developed and applied for two case studies in performance-based design (PBD) and performance-based assessment (PBA) of bridge columns. Comprehensive experimental and analytical studies were conducted in the second phase of the study. Two standard single columns, one standard two-column bent, and two substandard columns were tested on a shake table, repaired using CFRP fabrics, and retested on the shake table to evaluate the proposed repair procedure. The measured data were extensively analyzed to investigate the performance of the repaired columns compared to the original column responses. It was concluded that the strength and ductility of the standard columns were successfully restored and those of sub-standard columns were upgraded to the current seismic standards after the repair. However, the stiffness was not restored due to material degradation during the original column tests. Even though the repair process was done rapidly and was treated as "emergency" repair with implication that it was a temporary measure, it can be treated as a permanent repair as long as the stiffness of repaired columns is sufficient for non-seismic loading. In the analytical studies, extensive static and dynamic nonlinear analyses were performed on the column models and a simple analytical method was developed for the repaired columns to account for stiffness degradation. Based on the results from the experimental and analytical studies, repair design recommendations were developed in the third phase to aid bridge engineers in quickly designing the number of layers of CFRP layers based on the apparent damage and basic information about the column fixity, size, and reinforcement.
机译:该研究的主要目的是开发一种用于地震破坏的钢筋混凝土桥柱的快速有效的修复方法,该方法使用碳纤维增强聚合物(CFRP)材料。这项研究包括三个主要阶段。在第一阶段,开发并分析了33个测试列的数据库,并定义了五个不同的表观地震破坏状态。在漂移,频率,应变,屈服和极限位移方面,损伤状态与测得的地震响应参数相关。开发了脆弱性曲线,并将其应用于桥柱基于性能的设计(PBD)和基于性能的评估(PBA)的两个案例研究。在研究的第二阶段进行了全面的实验和分析研究。在振动台上测试了两根标准单柱,一根标准的两列弯管和两根不合格的柱,使用CFRP织物进行了修复,然后在振动台上进行了重新测试,以评估建议的修复程序。对测量数据进行了广泛分析,以研究与原始色谱柱响应相比修复的色谱柱的性能。结论是,修复后,标准柱的强度和延性得到了成功恢复,次标准柱的强度和延性得到了提高,达到了现行的地震标准。但是,由于原始柱测试期间材料的降解,刚度并未恢复。即使修复过程很快完成,并被视为“紧急”修复,暗示这是一种临时措施,但只要修复后的柱子的刚度足以承受非地震载荷,就可以将其视为永久性修复。在分析研究中,对立柱模型进行了广泛的静态和动态非线性分析,并为修复后的立柱开发了一种简单的分析方法,以解决刚度下降的问题。根据实验和分析研究的结果,在第三阶段提出了维修设计建议,以帮助桥梁工程师根据表观损坏以及有关立柱固定性,尺寸和强度的基本信息,快速设计CFRP层数。加强。

著录项

  • 作者

    Vosooghi, Ashkan.;

  • 作者单位

    University of Nevada, Reno.;

  • 授予单位 University of Nevada, Reno.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 768 p.
  • 总页数 768
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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