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Mechanical properties of reactive powder concrete containing industrial and waste steel fibres at different ratios under compression

机译:含工业和废钢纤维不同比例的反应性粉末混凝土的压缩力学性能

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This paper investigates experimentally the influence of type, content and geometry of steel fibre (industrial/waste) on the mechanical properties of reactive powder concrete (RPC) in terms of compressive strength, tensile strength, modulus of elasticity and stress-strain behaviour under compression. Three types of steel fibres were used: industrial micro steel fibre (MF), industrial deformed steel fibre (DF) and waste steel fibre recovered from discarded tyres (WF). Steel fibres were added to RPC at 1%, 2%, 3% and 4% of the total volume. Two forms of steel fibres' hybridizations were explored: industrial hybridization (HF) and waste-industrial hybridization (WHF). Results of testing demonstrate that the addition of DF and WF up to 3% and 4%, respectively, significantly affected the flowability of RPC. The addition of 4% MF achieved the highest increase in the compressive strength, tensile strength, modulus of elasticity, peak stress and the corresponding strain. The inclusion of HF increased the RPC toughness by 245%. Moreover, the inclusion of the waste steel fibre as full replacement (WF) or partial replacement (WHF) was comparable to the industrial steel fibre in enhancing the mechanical properties of RPC in addition to the increase in the toughness of RPC by 158.8% and 211%, respectively. Finally, WF is considered as a promising material in the structural applications and can fully or partially replace industrial steel fibres in RPC. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文从抗压强度,抗拉强度,弹性模量和受压应力行为方面,通过实验研究了钢纤维(工业/废料)的类型,含量和几何形状对活性粉末混凝土(RPC)力学性能的影响。 。使用了三种类型的钢纤维:工业微钢纤维(MF),工业变形钢纤维(DF)和从废弃轮胎(WF)中回收的废钢纤维。将钢纤维以总体积的1%,2%,3%和4%添加到RPC中。探索了两种形式的钢纤维杂交:工业杂交(HF)和废物工业杂交(WHF)。测试结果表明,分别添加高达3%和4%的DF和WF会显着影响RPC的流动性。添加4%的MF在抗压强度,拉伸强度,弹性模量,峰值应力和相应的应变方面实现了最高的增长。 HF的加入使RPC韧性提高了245%。此外,除了增强RPC的韧性158.8%和211之外,将废钢纤维作为完全替代品(WF)或部分替代品(WHF)的使用在提高RPC的机械性能方面与工业钢纤维相当。 %, 分别。最后,WF被认为是结构应用中的一种有前途的材料,可以完全或部分替代RPC中的工业钢纤维。 (C)2017 Elsevier Ltd.保留所有权利。

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