Structural Formation and Properties of Eco-Friendly Foam Concrete Modified with Coal Dust

IF 3 Q2 MATERIALS SCIENCE, COMPOSITES
S. A. Stel’makh, E. Shcherban’, A. Beskopylny, L. Mailyan, B. Meskhi, A. Shilov, Alexander L. Mailyan, N. Zakieva, A. Chernil’nik, D. El'shaeva
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Abstract

Foam concrete is a popular energy-efficient construction material with a fairly wide range of usage in buildings and structures. Increasing ecological efficiency and reducing construction costs by the application of different types of industrial waste in the manufacturing technology of this composite is a promising direction. The main goal of this study is to investigate the possibility of coal dust (CD) waste inclusion in the technology of energy-efficient cellular concrete produced by foam concrete technology. Test samples of foam concrete were made using coal dust by partially replacing cement in the range of 0–10% in increments of 2%. The following primary characteristics of foam concrete were studied: fluidity of mixtures; compressive strength; density; thermal conductivity of foam concrete. An X-ray diffraction analysis of foam concrete composites was performed, which showed changes in their phase composition when using coal dust as a modifier. Coal dust in rational quantities from 2% to 6% improves the physical and mechanical characteristics of foam concrete and increases the structure uniformity. The optimal values of the foam concrete characteristics were recorded at a dosage of coal dust of 6%. At the same time, the density decreased by 2.3%, the compressive strength increased by 15.6%, and the thermal conductivity coefficient decreased by 8.9% compared to the ordinary composition. The use of the resulting foam concrete is advisable in enclosing structures to create high energy efficiency of buildings and structures due to the improved structure and properties.
煤粉改性的环保型泡沫混凝土的结构形成与性能
泡沫混凝土是一种流行的节能建筑材料,在建筑物和结构中的应用相当广泛。通过在这种复合材料的制造技术中应用不同类型的工业废料来提高生态效率和降低建筑成本是一个很有前景的方向。本研究的主要目标是调查在泡沫混凝土技术生产的节能蜂窝混凝土技术中加入煤粉(CD)废料的可能性。使用煤粉制作了泡沫混凝土试验样品,以 2% 为增量,在 0-10% 的范围内部分替代水泥。研究了泡沫混凝土的以下主要特征:混合物的流动性、抗压强度、密度、泡沫混凝土的导热性。对泡沫混凝土复合材料进行的 X 射线衍射分析表明,使用煤粉作为改性剂时,其相组成发生了变化。合理添加 2% 至 6% 的煤粉可改善泡沫混凝土的物理和机械特性,并提高结构的均匀性。当煤粉用量为 6% 时,泡沫混凝土的特性达到了最佳值。同时,与普通成分相比,密度降低了 2.3%,抗压强度提高了 15.6%,导热系数降低了 8.9%。由于结构和性能得到改善,泡沫混凝土可用于围护结构,以提高建筑物和结构的能效。
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来源期刊
Journal of Composites Science
Journal of Composites Science MATERIALS SCIENCE, COMPOSITES-
CiteScore
5.00
自引率
9.10%
发文量
328
审稿时长
11 weeks
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