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Properties and Microstructure Distribution of High-Performance Thermal Insulation Concrete

机译:高性能隔热混凝土的性能和微观结构分布

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摘要

The aim of this experimental study is to develop high strength and lightweight concrete mixture suitable for structural applications. This work investigates the effect of replacing normal aggregate either partially or totally with expanded perlite aggregate. This material allows for better thermal insulation properties, thus decreasing the energy usage within the life cycle of the concrete structure. Expanded perlite aggregate was used in concrete by 20%, 40%, 60%, 80%, and 100% in replacement of the natural aggregate. Material characterization tests of compressive strength, flexural strength, and thermal conductivity were carried out for six concrete mixtures. In addition, microstructure analysis was performed with the aid of a micro-computed tomography system to investigate the effects and relation of microstructure quantities on material properties. The proposed concrete mixture, which has 100% of expanded perlite aggregate, has a unit weight of 1703 kg/m and achieved reduction percentage of thermal conductivity around 62% (1.81 to 0.69 W·m ·K ) and a compressive strength of 42 MPa at 28 days; and thus is ideal for structural applications with enhanced properties.
机译:该实验研究的目的是开发适合结构应用的高强度轻质混凝土混合物。这项工作研究了用膨胀珍珠岩骨料部分或全部替代普通骨料的效果。这种材料具有更好的隔热性能,从而减少了混凝土结构生命周期内的能耗。膨胀珍珠岩骨料用于混凝土中的比例为20%,40%,60%,80%和100%,以代替天然骨料。对六种混凝土混合物进行了抗压强度,抗弯强度和导热系数的材料表征测试。另外,借助于微计算机断层摄影系统进行了微结构分析,以研究微结构量对材料性能的影响和关系。所提议的混凝土混合物具有100%的膨胀珍珠岩骨料,单位重量为1703 kg / m,导热系数降低了约62%(1.81至0.69 W·m·K),抗压强度为42 MPa。 28天;因此非常适合具有增强性能的结构应用。

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