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Mechanical properties of SFRC using blended Recycled Tyre Steel Cords (RTSC) and Recycled Tyre Steel Fibres (RTSF)

机译:SFRC使用再生轮胎钢丝帘线(RTSC)和再生轮胎钢纤维(RTSF)的机械性能

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Processed high-specification steel cords (RTSC) extracted from un-vulcanised rubber belt off-cuts have the potential to substitute (manufactured steel fibres) MSF in concrete, leading to enhanced structural performance and significant environmental benefits. The target of this research is to demonstrate that recycled-only fibre mixes could meet or exceed the performance of MSF-only mixes, at the same total fibre dosage. Direct tensile and single-fibre pull-out tests are carried out, to evaluate the tensile strength of RTSC and the interfacial bond behaviour between RTSC and concrete matrix, respectively. It is found that RTSC have a tensile strength greater than 2600 MPa and their critical embedded length is in the range of 25-40 mm. The flexural characteristics of 8 steel fibre reinforced concrete (SFRC) mixes at fibre dosages of 30 and 45 kg/m(3) are examined by using EN 14651:2005 3-point notched prism tests. RTSC with lengths of 60 mm are used on their own, or blended with post-processed steel fibres recovered from end-of-life tyres (RTSF) at varying dosages. The performance of two manufactured steel fibres (MSF)-only mixes and one RTSF-only mix is also examined. Comparisons in terms of flexural performance are made between MSF-only mixes versus recycled-fibre (RTSC on their own or blended with RTSF) mixes at the same total dosage. RTSC are found to be extremely well mobilised at larger crack widths and the post cracking strength of recycled-fibre mixes is significantly higher (up to 103%) than MSF-only mixes at the same total fibre dosage. In addition, the flexural performance of concrete with recycled-fibre blends improves with increasing amounts of RTSC. (C) 2018 Elsevier Ltd. All rights reserved.
机译:从未硫化的橡胶带残料中提取的经过加工的高规格钢丝绳(RTSC)有可能在混凝土中替代MSF(制造的钢纤维),从而提高结构性能并带来明显的环境效益。这项研究的目的是证明在相同的总纤维用量下,仅再生纤维混合物可以达到或超过仅MSF混合物的性能。进行直接拉伸和单纤维拉拔试验,分别评估RTSC的拉伸强度以及RTSC与混凝土基体之间的界面粘结行为。发现RTSC具有大于2600MPa的抗拉强度,并且它们的临界嵌入长度在25-40mm的范围内。通过使用EN 14651:2005三点刻角棱镜测试来检查8种钢纤维混凝土(SFRC)在30和45 kg / m 3的纤维剂量下的挠曲特性。长度为60 mm的RTSC可以单独使用,也可以与以不同剂量从报废轮胎(RTSF)中回收的后加工钢纤维混合使用。还检查了两种仅制造钢纤维(MSF)的混合物和一种仅RTSF的混合物的性能。在相同总剂量下,仅MSF混合物与再生纤维(RTSC本身或与RTSF混合)混合物之间的挠曲性能进行了比较。发现在较大的裂缝宽度下,RTSC的流动性极好,并且在相同的总纤维剂量下,再生纤维混合物的后裂强度明显高于纯MSF混合物(高达103%)。此外,随着RTSC用量的增加,掺有再生纤维混合料的混凝土的抗弯性能也会提高。 (C)2018 Elsevier Ltd.保留所有权利。

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