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Thermal, mechanical and microstructural analysis of concrete containing microencapsulated phase change materials

机译:含微胶囊相变材料的混凝土的热,机械和微结构分析

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摘要

This paper studies the thermal, mechanical and microstructural aspects of concrete containing different amounts of microencapsulated phase change materials (PCMs). In addition, numerical simulation is carried out to study the potential application of PCM-modified concrete for reduction in summer surface temperature. It is shown that increasing PCM content in concrete led to lower thermal conductivity and an increase in the heat storage ability of concrete. However, the compressive and flexural strength of concrete significantly decreased. Microstructural analysis showed that PCMs appear to remain intact during mixing; however, PCM particles appear to fail by bursting under loading, creating hemispherical voids and crack initiation points as well as possible entrapped air behaviour. The result of numerical simulation revealed that reduction in summer concrete pavement surface temperature by several degrees was possible, with implications for reduction in concrete thermal stresses, shrinkage and urban heat island effect.
机译:本文研究了包含不同数量的微囊化相变材料(PCM)的混凝土的热,机械和微观结构方面。此外,进行了数值模拟,以研究PCM改性混凝土在降低夏季表面温度方面的潜在应用。结果表明,增加混凝土中的PCM含量会导致较低的热导率并提高混凝土的储热能力。但是,混凝土的抗压强度和抗折强度明显下降。显微组织分析表明,在混合过程中,PCM似乎保持完整。但是,PCM颗粒似乎会由于在载荷作用下破裂而破裂,从而形成半球形空隙和裂纹萌生点,以及可能存在的残留空气行为。数值模拟结果表明,夏季混凝土路面的表面温度可能会降低几度,这可能会降低混凝土的热应力,收缩和城市热岛效应。

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