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Experimental analysis of the shear behaviour of prestressed and reinforced concrete beams

机译:预应力和钢筋混凝土梁剪切行为的实验分析

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This paper presents the detailed experimental results of 23 full-scale rectangular and I-shaped prestressed and reinforced concrete beams. All beams were designed to fail in shear and were subjected to a four-point bending test with monotonically increasing load until failure. The main investigated parameters were the amount of prestressing, the amount of longitudinal and shear reinforcement ratio and the shear span-to-effective depth ratio respectively. An extensive set of displacement and deformation data were gathered during the experiments using both traditional mechanical measurement devices and advanced optical(-numerical) measurement techniques. The experimentally measured failure loads are compared to analytical predictions obtained from current Eurocode 2 shear design equations. In general, a poor correlation was found between the reported experimental results and analytical predictions (mean experimental to predicted failure load ratio equal to 1.77; coefficient of variation equal to 31.6%). Based on the measured deformation fields, it was observed that, in the case of rectangular beams and prestressed I-shaped beams with shear reinforcement, the applied load is primarily carried by means of a direct compression strut which significantly increased the failure load.
机译:本文介绍了23个全规模矩形和I形预应力和钢筋混凝土梁的详细实验结果。所有光束都设计成在剪切中失效,并进行四分弯曲试验,单调增加负载直至发生故障。主要调查的参数分别是预应力的量,纵向和剪切钢筋的量分别和剪切跨度与有效深度比。在使用传统的机械测量装置和先进的光学(毫安)测量技术的实验期间聚集了一系列广泛的位移和变形数据。将实验测量的故障载荷与从当前欧元建2剪切设计方程获得的分析预测进行比较。通常,在报告的实验结果和分析预测之间发现了不良的相关性(平均实验到预测失效负载比等于1.77;变异系数等于31.6%)。基于测量的变形场,观察到,在具有剪切增强的矩形梁和预应力的I形梁的情况下,施加的负载主要通过直接压缩支柱携带,这显着增加了故障负载。

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