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Comparative evaluation of steel mesh, steel fibre and high-performance polypropylene fibre reinforced shotcrete in panel test

机译:面板试验中钢网,钢纤维和高性能聚丙烯纤维增强喷射混凝土的比较评估

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摘要

In this study, experimental investigations were performed on steel mesh (SM), steel fibre (SF) and high-performance polypropylene fibre (HPPF) reinforced shotcrete (HPPFRS) panels to evaluate performance characteristics such as toughness, flexural ductility, energy absorption and load capacity. The panel tests, in accordance with European specification for sprayed concrete (EFNARC), were made on 18 prismatic specimens having the same mix designs and were cured for 28 days but reinforced with various fibres. In addition, the rebound characteristics of these mixes were determined to compare the actual in situ fibre contents. Test results show that all reinforcements, including HPPFs that are low-modulus fibres, greatly improved the flexural ductility, toughness, and load-carrying capacity of the brittle matrix. It was seen that there was a positive synergy effect between steel and polypropylene fibre in hybrid fibre usage from a performance point of view. According to results, it can be concluded that a hybrid polypropylene-SF can be used alternatively instead of SM and monosteel fibre as a reinforcement in shotcrete applications to get better efficiency in mechanical properties of composite.
机译:在这项研究中,对钢网(SM),钢纤维(SF)和高性能聚丙烯纤维(HPPF)增强喷射混凝土(HPPFRS)面板进行了实验研究,以评估性能特性,例如韧性,挠曲延性,能量吸收和载荷容量。根据欧洲喷射混凝土规范(EFNARC),在18个棱柱形试样上进行了面板测试,这些试样具有相同的混合设计,并固化了28天,但用各种纤维加固了。另外,确定这些混合物的回弹特性以比较实际的原位纤维含量。测试结果表明,所有增强材料,包括低模量纤维的HPPF,都极大地改善了脆性基体的挠曲延展性,韧性和承载能力。从性能的角度看,在混合纤维的使用中,钢纤维和聚丙烯纤维之间具有积极的协同作用。根据结果​​,可以得出结论,在喷射混凝土应用中,可替代地使用混合聚丙烯-SF代替SM和单钢纤维作为增强材料,以提高复合材料的机械性能效率。

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