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Behaviour of a masonry arch bridge repaired using fibre-reinforced polymer composites

机译:纤维增强聚合物复合材料修复的砌体拱桥的行为

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摘要

This paper describes a series of laboratory tests investigating the behaviour of a large model masonry arch bridge repaired with externally bonded fibre-reinforced polymer (FRP) on its intrados. Many similar masonry arch bridges form critical links in the world's transport infrastructure, but they are often not suited to the increased demands of modern traffic loading, especially in ageing arch structures that have suffered structural deterioration. FRP plates, adhesively bonded to the intrados of the masonry arch are a convenient method for strengthening arch bridges. The tests described in this paper demonstrated that FRP strengthening is an effective technique for improving the structural performance of a masonry arch bridge. A two-span, single-ring semi-circular brick arch bridge was tested in this study, complete with fill material. Each of the spans was initially loaded to investigate their response and to establish a four-hinge collapse mechanism, simulating damage prior to strengthening. FRP strengthening was then applied to the two arches, and each of the spans was again tested separately until the failure of the strengthening system. The global (load and deflection) and local (crack width and FRP strain) response of the structure was recorded. The FRP strengthening resisted flexural crack opening in the masonry, and hence prevented a four-hinge mechanism collapse. Failure instead occurred when the FRP strengthening debonded from the masonry adjacent to an existing intrados hinge crack. As well as shear debonding adjacent to flexural cracks in the masonry, peel debonding occurred where shear deformation occurred across a masonry crack. Catastrophic collapse did not occur, as the FRP continued to contribute to the load capacity by acting as a tie after the ultimate load had been reached.
机译:本文描述了一系列的实验室测试,研究了用内部粘结的纤维增强聚合物(FRP)修复的大型砌体拱桥的行为。许多类似的砌体拱桥构成了世界运输基础设施中的关键环节,但它们通常不适合现代交通负荷的不断增长的需求,尤其是在老化且结构恶化的拱门结构中。粘结到砌体拱内部的FRP板是加固拱桥的便捷方法。本文所述的测试表明,FRP加固是提高砌体拱桥结构性能的有效技术。这项研究对两跨,单环半圆砖拱桥进行了测试,并配有填充材料。最初对每个跨度加载以调查其响应并建立四铰合坍塌机制,以模拟加固之前的破坏。然后将FRP加固应用于两个拱门,并再次分别测试每个跨度,直到加固系统失效为止。记录结构的整体(荷载和挠度)和局部(裂缝宽度和FRP应变)响应。 FRP加固可抵抗砌体中的挠性裂缝开裂,因此可防止四铰机制崩溃。相反,当FRP加固从与现有的室内门铰链裂缝相邻的砖石中剥离时,发生了失败。除了与砌体中的挠性裂缝相邻的剪切脱胶外,还发生了剥离脱胶,即在整个砌体裂缝中发生了剪切变形。并未发生灾难性的崩溃,因为在达到最终载荷后,FRP通过充当拉索继续为载荷能力做出贡献。

著录项

  • 来源
    《Engineering Structures》 |2011年第5期|p.1594-1606|共13页
  • 作者单位

    Institute for Infrastructure and Environment, School of Engineering, The University of Edinburgh, The King's Buildings, Edinburgh, EH9 3JL, UK;

    Institute for Infrastructure and Environment, School of Engineering, The University of Edinburgh, The King's Buildings, Edinburgh, EH9 3JL, UK;

    Institute for Infrastructure and Environment, School of Engineering, The University of Edinburgh, The King's Buildings, Edinburgh, EH9 3JL, UK;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    masonry arch; frp; repair; experiment; failure mode; debonding;

    机译:砌体拱frp;修理;实验;故障模式;脱胶;

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