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Experimental study on engineering properties of concrete reinforced with hybrid recycled tyre steel and polypropylene fibres

机译:用杂交再生轮胎钢和聚丙烯纤维加固混凝土工程性能实验研究

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Recycled tyre steel fibre (RTSF) is considered as a potential and sustainable alternative to manufactured steel fibre (MSF), while RTSF resulted in lower energy absorption capacity and more serious corrosion problem in concrete compared to MSF. This paper presents an experimental study on engineering properties of concrete reinforced with hybrid RTSF (0.5%-0.9% V-f) and polypropylene fibre (PPF, 0.1%-0.5% V-f). Results show that combining RTSF with PPF could compensate the serious workability loss caused by RTSF and the workability was improved by 38.9%-66.7%. However, the compressive, splitting tensile and flexural strengths were weakened significantly when PPF was over 0.3% Vf in hybrid fibre reinforcement (total content of 1.0% V-f). The strain field shown in digital image correlation images suggests that hybrid RTSF and PPF can create a synergistic effect in restraining the crack growth and the post-cracking behaviour of concrete especially toughness that was enhanced with the presence of PPF. RTSF was more effective in restraining shrinkage of concrete than PPF. With the increase of PPF content in hybrid fibre reinforcement, the chloride migration coefficient of concrete was reduced by 4.9%-6.8% as compared with the mixture reinforced with only RTSF. (C) 2020 Published by Elsevier Ltd.
机译:再循环轮胎钢纤维(RTSF)被认为是制造钢纤维(MSF)的潜在和可持续的替代品,而RTSF与MSF相比,RTSF导致较低的能量吸收能力和混凝土中的更严重的腐蚀问题。本文介绍了用杂交RTSF(0.5%-0.9%V-F)和聚丙烯纤维(PPF,0.1%-0.5%V-F)加固混凝土工程性能的实验研究。结果表明,使用PPF的RTSF可以补偿RTSF引起的严重可加工性损失,并且可加工性提高了38.9%-66.7%。然而,当PPF在杂合纤维增强液中超过0.3%VF时显着减弱压缩,分裂拉伸和抗弯强度(总含量为1.0%V-F)。数字图像相关图像中所示的应变场表明,杂交RTSF和PPF可以在抑制裂纹生长和混凝土的后开裂行为方面产生协同效应,特别是通过PPF的存在而增强的韧性。 RTSF在限制混凝土的收缩方面比PPF更有效。随着杂交纤维增强中的PPF含量的增加,与仅用RTSF加强的混合物相比,混凝土的氯化物迁移系数减少了4.9%-6.8%。 (c)2020由elestvier有限公司发布

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