首页> 外文期刊>Journal of Composites for Construction >Effect of FRP Spike Anchor Installation Quality and Concrete Repair on the Seismic Behavior of FRP-Strengthened RC Columns
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Effect of FRP Spike Anchor Installation Quality and Concrete Repair on the Seismic Behavior of FRP-Strengthened RC Columns

机译:FRP穗锚定安装质量和混凝土修复对FRP加强RC柱地震行为的影响

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摘要

The use of fiber-reinforced polymer (FRP) to repair and seismically strengthen existing deficient or damaged structural elements is now widespread. FRP anchors have become an important component of such FRP strengthening. However, while reasonable quality control and field quality assurance measures exist for FRP fabrics and plates, such attention has not yet been given to FRP anchors. It seems logical to expect that poor FRP anchor installation will adversely impact the performance of the repaired element. This experimental program was envisaged to assess the level of such an adverse impact. It consists of six RC columns subjected to axial load and quasi-static cyclic load. Of the six columns cast for the experimental work, three columns had good concrete placement, while the remaining three showed poor consolidation, with substantial honeycombing and segregation at the base. It was decided that the latter columns could be used as examples of damaged concrete and so they were repaired by a local contractor by removing the poor concrete and replacing it with a commercially available bagged concrete repair material. One column of each set of three was designated as a control column without any FRP strengthening, while the four remaining columns were strengthened using longitudinal FRP sheets for flexural strengthening, anchors to develop the FRP into the foundation, and transverse FRP sheets for confinement. It was observed that the concrete repair did not adversely affect the behavior of the columns or the interaction between the concrete and the FRP. The FRP anchors were installed to replicate poor installation in the field. Those with improperly placed fans, or splays, did not perform at all as intended and it is recommended that such anchors be removed and replaced without exception. Inadequately saturated anchors were able to achieve their design rupture capacity but failed in a more brittle manner than adequately saturated anchors. Based on the observations from the experimental program, several ideas and options are proposed to enhance the quality of FRP anchors. Accompanied with onsite testing and mockups, these suggestions will substantially contribute to the mitigation of the associated variability in the performance of the rehabilitation.
机译:使用纤维增强聚合物(FRP)来修复和地震增强现有的缺陷或受损的结构元素现在普遍存在。 FRP锚已成为这种FRP强化的重要组成部分。然而,虽然FRP织物和板材的合理质量控制和现场质量保证措施存在,但尚未给出这种谨慎的锚点。期望良好的FRP锚固安装对修复元件的性能产生不利影响,看起来符合逻辑。设想了该实验计划,以评估这种不利影响的水平。它由六个RC柱组成,经过轴向载荷和准静态循环负载。在为实验工作的六个柱中,三柱具有良好的混凝土放置,而其余的三个柱子显示出差的固结差,底部具有大量蜂窝和偏析。据确定,后一柱可以用作损坏的混凝土的例子,因此通过将较差的混凝土取代并用市售的袋装混凝土修复材料取代它们,通过当地承包商进行修复。每组三个一列被指定为控制柱,无需任何FRP强化,而使用纵向FRP板材加强了四个剩余的柱,用于弯曲强化,锚点将FRP开发到基础上,以及用于限制的横向FRP板。据观察,具体修复不会对柱子的行为产生不利影响或混凝土与FRP之间的相互作用。安装FRP锚点以复制该领域的差。粉丝放置不当的人或戏剧性的人只在预期的那样完全表现,建议在没有异常的情况下移除并更换这样的锚点。饱和的锚固件能够实现其设计破裂容量,但以比充分饱和的锚点更脆的方式失效。根据实验计划的观察,提出了几种思路和选择来提高FRP锚的质量。伴随着现场测试和模型,这些建议将大大努力减轻康复表现的相关变异性。

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