首页> 外文期刊>International Journal of Advanced Structural Engineering >Experimental tests on existing RC beams strengthened in flexure and retrofitted for shear by C-FRP in presence of negative moments
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Experimental tests on existing RC beams strengthened in flexure and retrofitted for shear by C-FRP in presence of negative moments

机译:在存在负弯矩的情况下,对已有钢筋混凝土梁进行抗弯加固并通过C-FRP进行抗剪加固的试验

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The shear strength of reinforced concrete beams extracted from existing buildings often reveals insufficient transversal steel reinforcement, mainly due to design or construction defects or increased design load requirements. FRP wrapping is one of the best solutions to improve beam shear strength as the retrofitting intervention is fast and the cost is modest. Design codes provide clear indication about the retrofitting design of simply supported beams, while the case of a beam with negative moments at the end is not considered, although this is in the case of a beam in a framed structure. One of the main uncertainties lies in the effectiveness of the FRP U sheet anchorage behavior in the area of negative bending moments with cracked concrete. This may limit the shear strength of the retrofitted beam. In this study, two beams extracted from an existing building constructed in the 1930s in Rome and retrofitted by carbon fiber-reinforced polymer (C-FRP) U strips placed at beam ends, where also negative bending moments were present, and have been evaluated with experimental tests at the laboratory of the Department of Architecture of Roma Tre University. Beam steel and concrete characteristics were evaluated by means of different tests. The experimental results are discussed considering the final results in terms of maximum shear resistance in the presence of negative bending moments. Load deflections at different points along the beam, shear-C-FRP deformation along the reinforcement strips and the damage state for different load levels, are presented. The importance of avoiding possible fragile mechanisms in the sections retrofitted with FRP is clearly shown.
机译:从现有建筑物中提取的钢筋混凝土梁的抗剪强度通常显示出横向钢筋不足,这主要是由于设计或施工缺陷或增加的设计载荷要求。 FRP包裹是提高梁抗剪强度的最佳解决方案之一,因为改造干预快且成本适中。设计规范提供了有关简单支撑梁的改型设计的明确指示,尽管在框架结构中的梁的情况下,末端的弯矩为负值的梁并未考虑。主要的不确定性之一在于在开裂混凝土的负弯矩区域内FRP U板的锚固性能是否有效。这可能会限制改装梁的抗剪强度。在这项研究中,从1930年代在罗马建造的一幢现有建筑物中提取了两根横梁,并通过将碳纤维增强聚合物(C-FRP)U形条置于横梁端进行了改造,其中还存在负弯矩,并进行了评估。罗马特雷大学建筑系实验室的实验测试。通过不同的测试评估了梁钢和混凝土的特性。在存在负弯矩的情况下,考虑最大剪切阻力的最终结果来讨论实验结果。给出了沿梁不同点的载荷挠度,沿增强条的剪切C-FRP变形以及不同载荷水平的破坏状态。在用FRP改装的部分中,清楚地表明了避免可能的脆弱机制的重要性。

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