粉煤灰、偏高岭土和不同类型钢纤维对混凝土力学性能的耦合效应

Mavoori Hitesh Kumar, I. Saikrishnamacharyulu, Ujjwal Kumar, Satyaprakash Jena, N. Mohanta, S. Samantaray
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引用次数: 3

摘要

本研究旨在研究四种钢纤维中最有效和最有潜力的钢纤维,即钩形、卷曲、扭曲和直形,这些钢纤维有助于提高混凝土的性能和质量。研究了几种混凝土混合料,分别以不同比例(FA15%+MK4.5%, FA20%+MK9%, FA25%+MK13.5%, FA30%+MK18%)掺入粉煤灰(FA)和超高岭土(MK),并在每种组合料中添加0%、0.5%、1%和1.5%的钢纤维,以研究钢纤维在28天和56天养护期内提高混凝土性能的潜力。经过专门的试验,最终确定了钩形钢纤维复合混凝土配合比在所有类型的钢纤维中性能最好,而直形钢纤维相比其他钢纤维性能最差,从而确立了钢纤维及其对混凝土性能提升的重要意义和贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coupling effect of fly ash, metakaoline and different types of steel fibers on mechanical performance of concrete
This research aims to investigate the most efficient and potential steel fiber among all four i.e. hooked, crimped, twisted and straight, that contributes in boosting the performance and quality of concrete after extensive examinations. Several concrete mixes were examined, incorporated with fly ash (FA) and metakaoline (MK) in various proportions i.e. FA15%+MK4.5%, FA20%+MK9%, FA25%+MK13.5%, FA30%+MK18% and each composition is reinforced with four types of steel fibers in varying fractions of 0%, 0.5%, 1% and 1.5% to examine the potential of steel fibers in enhancing the properties of concrete for 28 days and 56 days curing period. After exclusive experimentations, it was finally confirmed that hooked steel fibers composite concrete mixes contributed the best performance among all other types of steel fibers whereas straight steel fibers showed a minimal performance compared to other steel fibers, which establish more important significance of steel fibers and its contributions in enhancing the performance of concrete.
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