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Innovative Triaxially Braided Ductile FRP Fabric for Strengthening Structures

机译:创新的三轴编织韧性FRP织物,用于增强结构

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摘要

This paperdeals with the effectiveness of a new triaxially braided ductile Fiber Reinforced Polymer (FRP) fabric for flexural strengthening of continuous reinforced concrete beams. The tested continuous beams had two spans strengthened in flexure along their positive and negative moment regions and loaded with a concentrated load at the middle of each span. One beam was not strengthened and was tested as a control beam. The behaviors of the beams strengthened with the new fabric were investigated and compared with the behaviors of similar beams strengthened using a commercially available carbon fiber sheet. The responses of the beams were examined in terms of deflections, strains, and failure modes. The beams strengthened with the new fabric showed greater ductility than those strengthened with the carbon fiber sheet. The new fabric provided reasonable ductility due to the formation of plastic hinges that allowed forthe redistribution of moment between the positive and negative moment zones of the strengthened continuous beam. Redistribution of the moment enabled the full utilization of the strength of the beam at cross sections of maximum positive and negative bending moments.
机译:本文探讨了一种新型的三轴编织延展性纤维增强聚合物(FRP)织物对连续钢筋混凝土梁进行抗弯加固的有效性。测试的连续梁沿其正负弯矩区域具有两个在挠曲上加强的跨度,并在每个跨度的中部施加集中载荷。一个梁没有得到加强,并作为控制梁进行了测试。研究了用新织物加固的梁的性能,并将其与使用市售碳纤维片加固的类似梁的性能进行了比较。根据挠度,应变和破坏模式检查了梁的响应。用新织物加固的梁比用碳纤维板加固的梁具有更大的延展性。由于塑料铰链的形成,新的织物提供了合理的延展性,该铰链允许在加强的连续梁的正负弯矩区域之间重新分配弯矩。力矩的重新分配使得能够在最大正弯矩和负弯矩的横截面上充分利用梁的强度。

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