Punching shear in concrete reinforced flat slabs with steel fibers and shear reinforcement

T. H. Musse, E. A. Liberati, L. Trautwein, R. B. Gomes, G. N. Guimarães
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引用次数: 11

Abstract

Abstract Steel fibers in reinforced concrete increase the performance of slab-column connection once they increase ductility and energy absorption capacity of the concrete. The use of fibers in flat slabs may increase strength and change the mode of failure. The objective of this work is to present an experimental evaluation of punching shear strength of reinforced concrete flat slab with steel fibers and punching shear reinforcement. Eight square slabs, size 1800 mm by 1800 mm by 130mm, were loaded until failure by punching shear around the column. The models were divided in two groups, depending on the type of the concrete used (with or without steel fibers). The steel fiber volume used in the slabs of second group was of 0.9%. Each group was composed of four slabs: one without shear reinforcement and three with shear reinforcement (studs) distributed radially around the column. The use of steel fibers increased the ultimate strength of all flat slabs. In one of the slabs, the association of steel fibers with shear reinforcement changed the failure surface from outside to inside the punching shear reinforcement region.
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钢筋混凝土配筋平板的冲剪研究
摘要钢筋混凝土中的钢纤维增加了混凝土的延性和吸能能力,从而提高了板柱连接的性能。在平板中使用纤维可以增加强度并改变破坏模式。本文的目的是对钢纤维和冲剪配筋的钢筋混凝土平板的冲剪强度进行试验评价。8块尺寸为1800mm × 1800mm × 130mm的方形板在柱周围通过冲孔剪切加载直至破坏。根据使用的混凝土类型(含或不含钢纤维),模型分为两组。第二组板的钢纤维用量为0.9%。每组由四块板组成:一块无抗剪钢筋,三块有抗剪钢筋(螺柱),沿柱径向分布。钢纤维的使用提高了所有平板的极限强度。在其中一块板中,钢纤维与抗剪钢筋的结合使破坏面由外向内改变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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