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Axial compressive behavior of confined steel fiber reinforced high strength concrete

机译:承压钢纤维增强高强混凝土的轴向压缩性能

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摘要

Concrete is brittle in nature which is why different materials have been used to improve this inherent behavior of concrete. In this experimental study, the effect of simultaneous use of steel fibers and confinement on high strength concrete and the corresponding post peak response of fiber reinforced concrete is investigated. A total of 39 high-strength concrete (incorporating varying amounts of steel fibers) cylinders were casted. The steel fiber volume fraction (V-f) was varied as 0.5%, 1.5% and 2.5%. 18 samples were confined with Carbon Fiber Reinforced Polymer (CFRP) sheet, and 9 samples were casted in steel pipe confinement, whereas 12 control specimens (without confinement) were also prepared. The samples were tested under axial compression. The results confirmed that the use of steel fiber had minute effect on the compressive strength, whereas it significantly improved the ductility and enhanced the post peak behavior of concrete. The confinement significantly contributed towards the compressive strength increase. The combined use of steel fibers and confinement in concrete columns can be viewed as extremely beneficial as it not only increases the concrete compressive strength but also solves the issue of brittle failure to an appreciable extent. (C) 2019 Elsevier Ltd. All rights reserved.
机译:混凝土本质上是脆性的,这就是为什么使用不同的材料来改善混凝土的这种固有性能的原因。在本实验研究中,研究了同时使用钢纤维和约束对高强度混凝土的影响以及相应的纤维增强混凝土的峰后响应。共浇铸了39个高强度混凝土(掺入不同数量的钢纤维)圆柱体。钢纤维体积分数(V-f)变化为0.5%,1.5%和2.5%。将18个样品限制在碳纤维增强聚合物(CFRP)板中,将9个样品浇铸在钢管中,同时准备12个对照样品(无限制)。在轴向压缩下测试样品。结果证实,使用钢纤维对抗压强度影响不大,而显着改善了延性并增强了混凝土的峰后性能。该限制显着有助于抗压强度的增加。钢纤维和在混凝土柱中的约束的组合使用可以被认为是非常有益的,因为它不仅可以提高混凝土的抗压强度,而且可以在一定程度上解决脆性破坏的问题。 (C)2019 Elsevier Ltd.保留所有权利。

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