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PUNCHING SHEAR BEHAVIOUR OF HIGH STRENGTH CONCRETE SLAB-COLUMN CONNECTIONS REINFORCED WITH GFRP BARS

机译:GFRP筋加固高强度混凝土板-柱连接的冲剪性能

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The catastrophic nature of punching shear failure exhibited by flat plate system requires a great attention and robust predictions of the behaviour of slab column connections. This paper presents an experimental study carried out to investigate the punching shear behaviour of fibre-reinforced polymer (FRP) reinforced concrete (RC) interior slab-column connections made of high strength concrete (HSC). Three full-scale HSC specimens were constructed and tested up to failure. The three connections were reinforced with GFRP sand-coated bars with reinforcement ratios of 1.0, 1.5 and 2.0% without any shear reinforcement. The typical dimensions of the test specimens were 2800 × 2800 × 200 mm with a 300 mm square column extending 1000 mm above and below the slab, representing the region of negative bending moment around an interior supporting column of a parking structure. All specimens were simply-supported along all four edges with the corners free to lift. The connections were subjected to vertical load and unbalanced moment that were monotonically applied through the column tips. The behaviour of the specimens in terms of the deformation and strength characteristics is discussed. Increasing the reinforcement ratio increased the punching shear capacity and decreased the reinforcement strains and deflections at the same load level. The test results were also compared to the predictions of the relevant North American codes where applicable.
机译:平板系统表现出的冲剪破坏的灾难性性质需要引起人们的极大关注,并需要对板柱连接的性能做出可靠的预测。本文提出了一项实验研究,以研究由高强度混凝土(HSC)制成的纤维增强聚合物(FRP)增强混凝土(RC)内部板-柱连接的冲切剪切性能。构造了三个完整的HSC标本,并进行了测试直至失效。用GFRP砂涂钢筋加固了这三个连接,钢筋比例为1.0%,1.5%和2.0%,没有任何剪力加固。试样的典型尺寸为2800×2800×200 mm,其中300 mm方柱在平板上方和下方延伸1000 mm,代表了停放结构内部支撑柱周围的负弯矩区域。沿所有四个边缘简单地支撑所有样本,并且角部可以自由抬起。通过柱尖单调施加的连接承受垂直负载和不平衡力矩。讨论了试样在变形和强度特性方面的行为。在相同的载荷水平下,增加配筋率可以增加冲剪能力,并减小补强应变和挠度。在适用的情况下,还将测试结果与相关北美法规的预测结果进行了比较。

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