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Repair and strengthening of pre-1970 reinforced concrete corner beam-column joints using CFRP composites.

机译:使用CFRP复合材料修复和加固1970年前的钢筋混凝土角梁-柱节点。

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摘要

The results of an experimental investigation are presented which examine the seismic adequacy of pre-1970 reinforced concrete (RC) corner beam-column joints and the efficacy of carbon fiber-reinforced polymer (CFRP) composites for both pre- and post-earthquake retrofit of such joints.;Four full-scale corner beam-column-slab subassemblages built with identical dimensions and pre-1970 reinforcement details were subjected to a reverse-cycle bidirectional displacement history consisting of alternate and simultaneous cycles in the two primary frame directions before and/or after retrofit. Two of the specimens were first subjected to severe and moderate levels of damage, respectively, then repaired by epoxy injection, and strengthened by adding a ;Pre-1970 RC corner beam-column joints were found to be severely inadequate in meeting seismic demands because of column bar yielding, joint shear failure, loss of anchorage of beam bottom bars, failure of column lap-splices, and the resulting loss of stiffness and strength that dominate their behavior even at relatively low interstory drift levels. Bidirectional loading played a significant role in such response. It was shown, however, that such joints can be strengthened easily both before and after earthquake damage by using CFRP composite schemes. Regardless of the level of existing damage and concrete strength, a "rigid" joint behavior up to interstory drift ratios of at least 2.4% and joint shear strength factors ranging from 1.06 to 1.41√MPa were achieved; such shear strength factors are larger than the value of 1.00√MPa recommended for use with seismically designed, code-conforming corner beam-column joints. A ductile beam hinging mechanism was achieved and energy dissipation capacity was improved efficiently for joints with concrete strengths ranging from 26 to 34 MPa. The subassemblage with significantly low-strength concrete (15 MPa) had low overall lateral stiffness and reduced reinforcement anchorages which prevented the formation of beam hinging. In cases of such low-strength concrete, more invasive operations may be required so that the improved joint shear strength can be mobilized. It is recommended that bidirectional loading be always considered in both pre- and post-retrofit evaluation of corner joints.
机译:提出了一项实验研究的结果,以检查1970年前的钢筋混凝土(RC)角梁-柱节点的抗震性以及碳纤维增强聚合物(CFRP)复合材料在地震前后改造中的功效。四个具有相同尺寸和1970年前加固细节的全尺寸角梁-柱-平板子组合件经历了反向循环双向位移历史,包括在两个主框架方向上交替的和同时的循环,以及/和或改造后。其中两个标本首先分别受到了严重和中等程度的破坏,然后通过环氧树脂注入进行了修复,并通过添加来进行加固;发现1970年前的RC角梁-柱节点严重不足以满足地震要求,原因是纵梁屈服,接头剪切破坏,梁底梁的锚固损失,纵梁搭接接头的破坏以及所导致的刚度和强度损失,即使在相对较低的层间漂移水平下,其行为仍占主导地位。双向加载在这种响应中起着重要作用。但是,结果表明,使用CFRP组合方案可以轻松地在地震破坏之前和之后加固此类节点。无论现有的破坏程度和混凝土强度如何,都可以达到“刚性”的接头性能,直至层间位移率至少为2.4%,接头的抗剪强度系数为1.06至1.41√MPa;这样的抗剪强度系数大于建议用于抗震设计,符合规范的角梁-柱节点的1.00√MPa值。对于具有26至34 MPa的混凝土强度的接头,实现了延性梁铰接机制,并有效地提高了能量消散能力。具有非常低强度的混凝土(15 MPa)的子组件具有较低的整体侧向刚度和减少的钢筋锚固,从而阻止了梁的铰接。在这种低强度混凝土的情况下,可能需要进行更具侵入性的操作,以便可以调动提高的联合剪切强度。建议在翻新前和翻新后评估角连接时始终考虑双向载荷。

著录项

  • 作者

    Engindeniz, Murat.;

  • 作者单位

    Georgia Institute of Technology.;

  • 授予单位 Georgia Institute of Technology.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 397 p.
  • 总页数 397
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

  • 入库时间 2022-08-17 11:39:20

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