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Comparative evaluation of virgin and recycled polypropylene fibre reinforced concrete

机译:原生和再生聚丙烯纤维增强混凝土的比较评估

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摘要

Use of macro recycled plastic fibres in reinforcing concrete footpaths and precast panels offers significant economic and environmental benefits over traditionally used virgin plastic fibres or steel fibre and mesh. However, wide adoption of recycled plastic fibres by construction industries has not yet been seen due to limited data available on their durability, mechanical properties and performance in concrete. This paper reports findings from a laboratory study on the alkali resistance and performance of recycled polypropylene (PP) fibres in the 25 MPa and 40 MPa concretes, used for footpaths and precast panels, respectively. The recycled PP fibre was proven to have very good alkali resistance in the concrete and other alkaline environments. The recycled PP fibre showed excellent post-cracking performance in concrete, bringing in significant ductility. In the 40 MPa concrete the effectiveness of reinforcement of PP fibres depended on their Young's modulus and tensile strength in the crack mouth opening displacement (CMOD) test. Since the recycled PP fibre was found to have lower tensile strength but higher Young's modulus than those of virgin PP fibre, the recycled PP fibre produced similar or slightly lower reinforcement than that of virgin PP fibre. In the 25 MPa concrete, the Young's modulus of fibres was more effective on their reinforcement than the tensile strength, thus the recycled PP fibre produced better reinforcement than that of virgin PP fibre.
机译:与传统使用的原始塑料纤维或钢纤维和网眼相比,使用大量再生塑料纤维加固混凝土人行道和预制板可带来显着的经济和环境效益。但是,由于可再生塑料纤维的耐久性,机械性能和混凝土性能方面的数据有限,因此尚未被建筑业广泛采用。本文报告了一项实验室研究的发现,该研究针对分别用于人行道和预制面板的25 MPa和40 MPa混凝土中的再生聚丙烯(PP)纤维的耐碱性和性能。实践证明,再生PP纤维在混凝土和其他碱性环境中具有非常好的耐碱性。再生PP纤维在混凝土中表现出出色的开裂后性能,从而具有显着的延展性。在40 MPa混凝土中,PP纤维的增强效果取决于裂纹口张开位移(CMOD)测试中的杨氏模量和拉伸强度。由于发现再生PP纤维比原始PP纤维具有更低的拉伸强度但具有更高的杨氏模量,因此再生PP纤维与原始PP纤维相比具有相似的或略微更低的增强。在25 MPa的混凝土中,纤维的杨氏模量比其抗张强度更有效,因此再生PP纤维比纯PP纤维具有更好的增强作用。

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