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Flexural Behaviour of Fibre Reinforced Concrete Beams with Different Aspect Ratios

机译:不同纵横比的纤维混凝土梁的抗弯性能

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摘要

The performance of conventional concrete is enhanced by the addition of fibres in concrete. Consequently the brittleness in concrete is reduced, and its acceptable ductility is also ensured by this addition. In this paper the strength of concrete cubes, cylinders and beams cast using M25 grade concrete and reinforced with steel and polypropylene fibres is presented. Also hybrid fibres with crimped steel and polypropylene were used in a concrete matrix to study improvements in the strength properties of steel, polypropylene and hybrid polypropylene as well as steel (crimped) fibres of various proportion i.e., 0.25%, 0.5%, 0.75%, 1% and 0.5% (0.25% of steel and 0.25% of polypropylene), 0.75% (0.5% of steel and 0.25% of polypropylene, 0.25% of steel and 0.5% of polypropylene) and 1% of various combinations of hybrid fibres for 7,14 and 28 days. The main reason for synthetic fibres in the concrete matrix is to improve the post cracking response of the concrete to improve the energy absorption capacity and ductility as well as to provide crack resistance and control. The introduction of this type of concrete was brought in as a solution to develop concrete with enhanced flexural and tensile strength. In this paper we analysed and present a comparison between conventional concrete and fibre reinforced concrete, leading to a crack free structure.
机译:通过在混凝土中添加纤维来增强常规混凝土的性能。因此,降低了混凝土的脆性,并且通过这种添加也确保了其可接受的延展性。本文介绍了使用M25级混凝土并用钢和聚丙烯纤维增强的混凝土立方体,圆柱体和梁的强度。此外,在混凝土基质中还使用了具有卷曲钢和聚丙烯的混合纤维,以研究钢,聚丙烯和混合聚丙烯以及各种比例(即0.25%,0.5%,0.75%, 1%和0.5%(0.25%的钢和0.25%的聚丙烯),0.75%(0.5%的钢和0.25%的聚丙烯,0.25%的钢和0.5%的聚丙烯)和1%的混合纤维的各种组合7,14和28天。在混凝土基体中合成纤维的主要原因是改善混凝土的后开裂响应,以提高能量吸收能力和延展性,以及提供抗裂性和控制能力。引入这种类型的混凝土是作为开发具有增强的抗弯强度和抗拉强度的混凝土的解决方案。在本文中,我们分析并提出了常规混凝土与纤维增强混凝土之间的比较,从而形成了无裂缝的结构。

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