Influence of low content of steel fibre on concretes produced with recycled coarse aggregates with varying densities

A. Figueiredo, I. Pietra, Luís Antônio Guimarães Bitencourt Júnior
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引用次数: 1

Abstract

The use of construction and demolition (C&D) waste as aggregate in concrete results in a reduction in strength due to its porosity. To compensate, mix designs often require higher cement contents, which increase the material's environmental impact. This study presents an experimental and numerical analysis of the effect of steel fibres on the mechanical properties of the concrete produced with recycled C&D aggregates with varying densities. The variation in fibre content did not present any influence on the compressive strength of concrete, which is significantly affected by the lower density of the recycled C&D aggregate. The fibres collaborate to mitigate the loss of flexural strength of the steel fibre reinforcement in recycled coarse aggregate concrete (SFRRCAC) provoked by lower density of recycled aggregates when the water-to-cement ratio is lower. When the water-to-cement ratio is above 0.65, there is a great reduction of the matrix strengths due to the paste porosity and the influence of aggregate density and fibre content was insignificant.
低含量钢纤维对不同密度再生粗骨料混凝土的影响
在混凝土中使用建筑和拆除(C&D)废物作为骨料,由于其孔隙率而导致强度降低。为了弥补这一点,混合设计通常需要更高的水泥含量,这增加了材料对环境的影响。本研究提出了钢纤维对不同密度的再生C&D骨料混凝土力学性能影响的实验和数值分析。纤维含量的变化对混凝土的抗压强度没有任何影响,而再生C&D骨料的密度较低对混凝土的抗压强度有显著影响。当水灰比较低时,再生粗骨料混凝土(SFRRCAC)中由于再生骨料密度较低而引起的钢纤维钢筋抗弯强度损失,纤维协同作用减轻。当水灰比大于0.65时,膏体孔隙率对基体强度的影响较大,骨料密度和纤维含量的影响不显著。
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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