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Shear connection in composite secondary beams with trapezoidal profiled fibre reinforced concrete slabs

机译:具有梯形型纤维纤维钢筋混凝土板复合二次梁的剪切连接

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This paper presents the results of experiments on deep trapezoidal slabs acting as secondary beams in composite steel/concrete floors using fibre reinforced concrete. Because of the voids in the slabs near the location of the stud shear connectors, many designers feel that the strength and ductility of the shear connection is compromised. Previous recent tests on deep trapezoidal slabs with plain concrete have shown this is not the case. The reason for using fibre reinforced concrete is to possibly further enhance the ductility and strength of the shear connection region in the slab, and this paper considers push tests in a pilot testing procedure to determine the optimum fibre dosage prior to embarking on detailed push tests and full-scale beam testing. The horizontal push-testing methodology is explained first, and results are then provided for six slabs with Dramix RC-65/60-BN nominal steel fibre dosages of 20, 40 and 60 kg/m~(3), each with and without conventional transverse reinforcement. Based on the test results reported herein, conclusions are drawn on the strength and ductility advantages accruing to the use of fibre reinforced concrete.
机译:本文介绍了使用纤维增强混凝土在复合钢/混凝土地板中作为二次梁的深层梯形板的实验结果。由于螺柱剪切连接器的位置附近的板坯中的空隙,许多设计人员认为剪切连接的强度和延展性受到损害。最后的最近在具有普通混凝土的深层梯形板上的测试已经表明了这不是这种情况。增强之所以使用纤维混凝土是可能进一步增强在板坯剪切连接区域的延展性和强度,以及本文认为在中试测试程序推测试之前确定最佳纤维剂量着手详细推测试和全尺度光束测试。水平推入检测方法是首先说明和结果然后被提供六个板坯20的的Dramix RC-65/60-BN标称钢纤维的剂量,40和60公斤/米〜(3),每个具有和不具有常规横向加固。基于本文报道的试验结果,得出了纤维钢筋混凝土的强度和延展性优势的结论。

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