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Thermal conductivity of aerated concrete (AC) composites containing micro-encapsulated phase change materials

机译:含有微包覆相变材料的曝气混凝土(AC)复合材料的导热系数

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摘要

Aerated concrete (AC) was incorporated with micro-encapsulated phase change materials (PCMs) to form a novel PCM-composite AC with improved thermal storage capacity. RT25 paraffin was selected as the PCM and the composite materials were prepared by adding micro-encapsulated paraffin as an ingredient at various loadings. The effective thermal conductivity of the composite samples was measured at both 17 oC and 35 oC, while the paraffin was in solid and liquid phases, respectively. The volumetric heat capacity of the composites were also measured. Results showed that both the thermal conductivity and volumetric heat capacity increase upon adding the micro-encapsulated paraffin. However, they were found to decrease when further increase the paraffin loading. The maximum thermal conductivity and volumetric heat capacity were enhanced by approximately 35% and 30% when the paraffin loadings were 1% wt. and 3% wt., respectively. Since the increase of thermal conductivity leads to the deterioration of the thermal insulation performance, the composite samples with 3% wt. micro-encapsulated paraffin with lower thermal conductivity but the highest volumetric heat capacity was exhibited to be more appropriate.
机译:加气混凝土(AC)与微包覆的相变材料(PCM)掺入,以形成新的PCM复合AC,具有改善的热存储容量。选择RT25石蜡作为PCM,通过在各种载荷处添加微包封的石蜡来制备复合材料。在17℃和35℃下测量复合样品的有效导热率,同时石蜡分别为固体和液相。还测量复合材料的体积热容量。结果表明,在添加微包覆的石蜡时,导热率和体积热容量均增加。然而,当进一步增加石蜡时,它们被发现减少。当石蜡加载量为1%时,最大导热率和体积热容量提高了大约35%和30%。和3%wt。分别为3%。由于导热性的增加导致绝热性能的劣化,因此具有3%wt的复合样品。具有较低导热性的微包覆的石蜡,但最高的体积热容量被表现为更合适。

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