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EFFECT OF BOND ON THE BEHAVIOR OF STEEL FIBRE REINFORCED CONCRETE BEAMS

机译:粘结对钢纤维混凝土梁性能的影响

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摘要

This paper investigates the effect of concrete-rebar bond and fibre content on the capacity and ductility of steel fibre reinforced concrete beams. In this paper, beams with different proportions of steel fibre and different bar types are tested. Three sets of steel fibre reinforced concrete beams are made with 0 %, 1 %, and 2 % steel fibres by volume. All beams are singly reinforced with three different bar types; deformed bars, plain round bars, and deformed bars unbonded in the central one-third length. All beams are designed for flexure failure, and two equal point loads are applied symmetrically to generate a constant moment region in the central span between the point loads. Test results show that beams containing steel fibres have higher yield load, possess better post-yield load carrying capacity, and are more ductile than the beams made of plain concrete. Although beams with deformed bars possess higher post-yield load carrying capacity and are more ductile than beams with round and unbonded bars, this difference diminishes with the addition of fibres.
机译:本文研究了混凝土-钢筋粘结和纤维含量对钢纤维增强混凝土梁的承载力和延性的影响。在本文中,测试了具有不同比例的钢纤维和不同钢筋类型的梁。用0%,1%和2%的钢纤维制成三组钢纤维增强混凝土梁。所有横梁都通过三种不同的钢筋类型进行了单独加固。变形钢筋,普通圆钢筋和变形钢筋,未在中心长度的三分之一处粘结。所有梁都针对挠性破坏而设计,并且对称地施加两个相等的点载荷,以在点载荷之间的中心跨度中生成恒定的矩量区域。试验结果表明,与普通混凝土制成的梁相比,含钢纤维的梁具有更高的屈服荷载,具有更好的屈服后承载能力,并且延展性更好。尽管具有变形钢筋的梁比具有圆形和未粘结钢筋的梁具有更高的屈服后承载能力,并且更具延展性,但这种差异随着纤维的添加而减小。

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