Experimental Investigation of Mechanical Properties of Concrete Mix with Lightweight Expanded Polystyrene and Steel Fibers

CivilEng Pub Date : 2024-02-17 DOI:10.3390/civileng5010011
Syed Jahanzaib Shah, Asad Naeem, Farzad Hejazi, Waqas Ahmed Mahar, Abdul Haseeb
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Abstract

The demand for lightweight aggregates in concrete compositions for diverse structural and non-structural applications in contemporary building construction has increased. This is to achieve a controllable low-density lightweight concrete, which reduces the overall structural weight. However, the challenge lies in achieving an appropriate strength in lightweight concrete while maintaining a lower unit weight. This research aims to evaluate the performance of lightweight concrete by integrating expanded polystyrene (EPS) as a partial replacement for coarse aggregate. Test specimens were cast by blending EPS with coarse aggregate at varying proportions of 0%, 15%, 30%, and 45%, while maintaining a constant water-to-binder ratio of 0.60. To enhance the bonding and structural capabilities of the proposed lightweight concrete mixes, reinforcement with 2% and 4% steel fibers by volume of the total concrete mix was incorporated. Silica fume was introduced into the mix to counteract the water hydrophobicity of EPS material and enhance the durability of lightweight concrete, added at a rate of 10% by weight of cement in all specimens. A total of 60 samples, including cylinders and beams, were prepared and cured over 28 days. The physical and mechanical properties of the lightweight EPS-based concrete were systematically examined through experimental testing and compared against a standard concrete mix. The analysis of the results indicates that EPS-based concrete exhibits a controllable low density. It also reveals that incorporating reinforcement materials, such as steel fibers, enhances the overall strength of lightweight concrete.
轻质膨胀聚苯乙烯和钢纤维混凝土拌合物力学性能的实验研究
在当代建筑施工中,各种结构和非结构应用对混凝土成分中轻质骨料的需求不断增加。这是为了获得可控的低密度轻质混凝土,从而减轻整体结构重量。然而,如何在轻质混凝土中实现适当的强度,同时保持较低的单位重量是一项挑战。本研究旨在评估用发泡聚苯乙烯(EPS)部分替代粗骨料的轻质混凝土的性能。通过将发泡聚苯乙烯与粗骨料按 0%、15%、30% 和 45% 的不同比例混合,同时保持 0.60 的恒定水粘结比,浇注了测试试样。为了增强拟议轻质混凝土拌合物的粘结和结构能力,掺入了占混凝土拌合物总量 2% 和 4% 的钢纤维。为了抵消 EPS 材料的憎水性并提高轻质混凝土的耐久性,在混合料中加入了硅灰,加入量为所有试样水泥重量的 10%。共制备了 60 个样本,包括圆柱体和横梁,并进行了 28 天的养护。通过实验测试系统地检验了基于 EPS 的轻质混凝土的物理和机械性能,并与标准混凝土混合料进行了比较。结果分析表明,EPS 混凝土具有可控的低密度。分析还表明,加入钢纤维等加固材料可提高轻质混凝土的整体强度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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