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Strengthening of Composite Steel-Concrete Beams Openings by Adopting Different Reinforcement Methods

机译:采用不同的加固方法加固钢-混凝土组合梁开口

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This paper presents an experimental and numerical study carried out to investigate the flexural and shear behavior of concrete-steel composite beams with circular web openings strengthened using two different techniques around openings. The experimental program conducted on nine simply supported beams which were constructed with different variables. One steel beam and eight concrete-steel composite beams were experimentally tested. The tested beams are of 1500 mm length and BFI cross section of steel beam but composite beams were BFI steel section connected with concrete slab had 300 mm width and 70 mm depth, while this connection is done by headed stud shear connector. The tested specimens subjected to positive bending were loaded by one or two line load across the width of the concrete slab. The main parameters were the type of beams, web openings effect, location of web openings, strengthening techniques around openings externally CFRP strips and vertical steel links using steel plates placed on the top and bottom surface of beams anchored with fine threads, and number of CFRP strips layers. The effect of these parameters on the failure of modes, ultimate load, first cracking load and deflection were investigated. Moreover, a finite element models were developed by ANSYS (version 14) to simulate all the tested specimens, experimental test results were compared with FE results obtained. The experimental results showed that both strengthening systems applied in this research were remarkably increased the beam strength, and the capacity retrieve of beams without openings. This study approved that steel links technique gave more prominent simplicity of use and low cost. FEM models were in good agreement with the corresponding experimental ones. However, the calculated ultimate loads were slightly higher than the experimental ultimate loads up to 10%.
机译:本文提出了一项实验和数值研究,以研究采用两种不同的开口技术加固的圆形腹板开口的钢筋混凝土组合梁的弯曲和剪切性能。实验程序在九个简单支撑的梁上进行,这些梁由不同的变量构成。对一根钢梁和八根混凝土-钢组合梁进行了试验测试。试验梁的长度为1500 mm,钢梁的BFI截面为截面,而复合梁为BFI钢截面,与混凝土板的宽度为300 mm,深度为70 mm,而这种连接是通过有头螺栓剪切连接器完成的。承受正弯曲的测试样品在混凝土板的整个宽度上承受一到两根线的载荷。主要参数是梁的类型,腹板开口效果,腹板开口的位置,外部开口处的加固技术CFRP条和竖向钢链节(使用放置在具有细螺纹的梁的顶部和底部表面上的钢板的钢板)以及CFRP的数量剥离层。研究了这些参数对模态破坏,极限载荷,初裂载荷和挠度的影响。此外,ANSYS(第14版)开发了一个有限元模型来模拟所有测试样本,并将实验测试结果与有限元结果进行了比较。实验结果表明,在本研究中应用的两种加固系统均显着提高了梁的强度,并提高了无开口梁的承载能力。这项研究证实,钢连接技术使使用更简单,成本更低。有限元模型与相应的实验模型吻合良好。但是,计算得出的极限载荷比实验极限载荷略高,最高可达10%。

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