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Punching Shear Capacity of Steel Fiber Reinforced Concrete Slab-Column Connections

机译:钢纤维钢筋混凝土平板连接的冲压剪切容量

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To design flat slabs directly supported on columns, the punching shear resistance of the slab is a main factor. It can be increased in the vicinity of the slab-column connection with punching shear reinforcement, like bent up bars or shear studs, to bear the high reaction forces. However, the usage of punching shear reinforcement requires the knowledge of special design rules and often leads to problems and deficiencies in construction. Fiber reinforced concrete seems to be a promising alternative to conventional punching shear reinforcement. To investigate the load bearing behavior of the slab-column connection using fiber reinforced concrete, a total of eight punching shear tests were performed. The specimens were realized with a typical top and bottom flexural reinforcement, but without punching shear reinforcement. Varied parameters were the slab thickness with 250 mm and 300 mm and the fiber content V_f with 0.5 Vol.-% and 1.0 Vol.-%. To investigate the influence of modern fiber types, normal- and high-strength steel fibers with normal- and double-hooked-ends were used. In all eight experimental tests, the intended punching shear failure was achieved. The capable load using fiber reinforced concrete increased by 20 % to 50 % compared to the reference tests without steel fibers, depending on the fiber type and the fiber content V_f. Additionally, this load increase was accompanied by a significant improvement in ductility. The post-cracking behavior was noticeably influenced by the used steel fiber type. An influence of the slab thickness or steel fiber type on the shear strength contributed by the fiber reinforced concrete could not be determined.
机译:为了设计直接支撑在柱上的平板,板坯的冲压剪切电阻是主要因素。它可以在与冲压剪切加强件的平板连接附近增加,如弯曲的杆或剪切柱,以承受高反作用力。然而,冲压剪切强化的使用需要特殊设计规则的知识,并且通常会导致建筑问题和缺陷。纤维钢筋混凝土似乎是传统冲压剪切钢筋的有希望的替代品。为了研究使用纤维钢筋混凝土的平板连接的负载承载行为,进行了总共8个冲压剪切试验。用典型的顶部和底部弯曲加固实现样品,但没有冲压剪切钢筋。变化的参数是平板厚度,250 mm和300mm,纤维含量V_F,0.5 Vol.%和1.0 Vol.-%。为了研究现代纤维类型的影响,使用具有正常和双钩末端的正常和高强度钢纤维。在所有八个实验测试中,实现了预期的冲压剪切故障。与没有钢纤维的参考测试相比,使用纤维增强混凝土的能力载荷增加了20%至50%,这取决于纤维型和纤维含量V_F。另外,该负荷增加伴随着延展性的显着改善。裂解后的行为明显受钢纤维型的影响。板坯厚度或钢纤维类型对纤维增强混凝土贡献的剪切强度的影响无法确定。

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