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Structural behavior of composite steel beams strengthened/repaired with carbon fiber reinforced polymer plates.

机译:碳纤维增强聚合物板加固/修复的复合钢梁的结构性能。

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摘要

Of the approximately 600,000 bridges in the United States, more than 110,000 are either structurally deficient or functionally obsolete. Causes of deterioration are attributed to the age of the structure, steady increase in legal load limits, increase in traffic density, deterioration due to environmental attack, and the lack of proper maintenance. A large number of these bridges are constructed out of structural steel. One significant cause of deterioration in these structures is corrosion due to extensive use of de-icing salts in severe winter weather. These bridges either have to be replaced or strengthened to extend their service life. In most cases, strengthening of these structures is more cost effective than replacement. Among the popular strengthening methods used in the past on steel bridges are post-tensioning and the bonding of steel plates to the tension flange of the girders. However, these methods are labor intensive and disturbance to the traffic flow is inevitable. This investigation focused on the behavior of steel composite beams strengthened with carbon fiber reinforced polymer (CFRP) plates attached to their tension side. In the experimental part of this study, a total of ten beams were tested under a four-point bending; six of the beams were in the undamaged state (two control beams and four strengthened), while the remaining four beams were damaged and repaired (one control beam and three repaired). Since this technique depends on the shear strength of the adhesive, extensive instrumentation was utilized to measure shear stresses along the CFRP plate in all load ranges (i.e. elastic and inelastic); this is something that was not emphasized in the previous research available. Another contribution of this work was the study of the effect of damage on the stiffness and strength of the section as well as the effect of repair schemes in restoring both the lost stiffness and strength of the section. The test results showed a significant increase in the strength and the stiffness of the strengthened/repaired beams. To help implement this strengthening technique, a nonlinear analytical procedure was developed to predict the behavior of the section/member in the elastic, inelastic, and ultimate states. A parametric study was also conducted to investigate the effect of some of the important variables on the behavior of the composite section. In addition, damage analyses of a bridge system were completed using grillage analysis to investigate the influence of the damage in the girders on load distribution. Based on the damage analyses results, an analysis/design methodology to determine the required repair or strengthening system was developed.
机译:在美国大约600,000座桥梁中,超过110,000座在结构上或功能上已过时。恶化的原因归因于结构的老化,合法载荷极限的稳定增加,交通密度的增加,由于环境攻击而导致的恶化以及缺乏适当的维护。这些桥梁中的许多都是用结构钢建造的。这些结构劣化的一个重要原因是由于在严冬的天气中大量使用了除冰盐而导致的腐蚀。这些桥必须更换或加固以延长其使用寿命。在大多数情况下,加强这些结构比更换更具成本效益。过去在钢桥上使用的流行加固方法包括后张紧以及将钢板粘结到大梁的张紧翼缘上。然而,这些方法是劳动密集型的,并且不可避免地干扰交通流量。这项研究的重点是在碳纤维增强聚合物(CFRP)板的受拉侧加固后的钢复合梁的性能。在这项研究的实验部分中,在四点弯曲下总共测试了十个光束;其中六根梁处于未损坏状态(两根控制梁,四根已加固),而其余四根梁则受到损坏和修复(一根控制梁,三根已修复)。由于该技术取决于粘合剂的剪切强度,因此使用了广泛的仪器来测量在所有载荷范围(即弹性和非弹性)下沿着CFRP板的剪切应力;在以前的可用研究中并未强调这一点。这项工作的另一个贡献是研究了损伤对截面刚度和强度的影响,以及修复方案在恢复截面刚度和强度损失方面的效果。测试结果表明,加固/修复后的梁的强度和刚度显着提高。为了帮助实施这种加固技术,开发了一种非线性分析程序来预测截面/构件在弹性,非弹性和极限状态下的行为。还进行了参数研究,以研究一些重要变量对复合截面性能的影响。此外,使用格栅分析完成了桥梁系统的损伤分析,以研究大梁中的损伤对载荷分布的影响。根据损伤分析结果,开发了一种用于确定所需维修或加固系统的分析/设计方法。

著录项

  • 作者

    Al-Saidy, Abdullah Hilal.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 193 p.
  • 总页数 193
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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