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Combined effect of waste glass powder and recycled steel fibers on mechanical behavior of concrete

机译:废玻璃粉和再生钢纤维对混凝土力学行为的综合作用

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摘要

Several attempts upon inclusion of industrial waste materials such as fly ash, silica fume, GGBS, metakaolin and copperslag in concrete have already been experimented that exerted a significant impact on concrete with enhanced mechanicaland improved durability properties. There were numerous authentic researches that reported the significance of steel fibersin strengthening the flexural property of concrete. The paper investigates the combined effect of waste glass powder(WGP) that has been utilized as a substitution for fine aggregate in varying percentages of 0%, 3%, 6%, 9%, 12% and 15%and further reinforcing it with recycled steel fibers (RSF), drawn from waste tires by volume of concrete. WGP was used as0%, 3%, 6%, 9%, 12%, 15% by mass replacement of fine aggregate with four different volume fractions of recycled steelfiber (i.e., 0, 0.5, 1 and 1.5%), respectively. All proportions of concrete mixes were investigated to study the variations incompressive, flexural and split tensile strength with varied replacements levels of WGP along with various fractions ofRSF for 7 and 28 days curing. A mix of 9% WGP exhibited the maximum compressive, flexural and split tensile strength.It was found that mechanical properties of concrete rose up to 9% replacement level of WGP and later declined. Also itwas confirmed that increase in the amount of RSF further boosted the compressive and flexural behavior of concrete.Overall, an optimum concrete mix with 9% replacement of WGP, reinforced with 1% inclusion of RSF, reported the bestperformance compared to other mixes.
机译:几次尝试包含工业废物材料,如粉煤灰,硅粉,GGB,甲状腺素和铜混凝土中的炉渣已经进行了实验,对混凝土产生了重大影响,具有增强的机械和改善的耐久性。有许多真实的研究报告了钢纤维的意义加强混凝土弯曲性能。本文研究了废玻璃粉末的综合作用(WGP)已被用作不同百分比0%,3%,6%,9%,12%和15%的百分比的细骨料的替代物并进一步加强其与再生钢纤维(RSF),由混凝土体积从废轮胎中抽取。 WGP被用作0%,3%,6%,9%,12%,大规模替代细骨料,具有四种不同的再生钢体积分数分别分别纤维(即0,0.5,1和1.5%)。研究了所有比例的混凝土混合物,以研究变化压缩,弯曲和分裂拉伸强度,具有不同替代水平的WGP以及各种部分RSF 7和28天固化。 9%WGP的混合物表现出最大压缩,弯曲和分裂拉伸强度。结果发现,混凝土的机械性能高达9%的WGP,后来下降。也是如此确认,RSF的增加进一步提高了混凝土的压缩和弯曲行为。总的来说,最佳混凝土混合与9%更换WGP的混凝土混合,加强了1%纳入RSF,报告了最好的与其他混合物相比的性能。

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