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Rheological and thermal properties of suspensions of microcapsules containing phase change materials

机译:包含相变材料的微胶囊悬浮液的流变学和热学性质

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摘要

The thermal and rheological properties of suspensions of microencapsulated phase change materials (MPCM) in glycerol were investigated. When the microcapsule concentration is raised, the heat storage capacity of the suspensions becomes higher and a slight decline in the thermal conductivity of the suspensions is observed. The temperature-dependent shear-thinning behaviour of the suspensions was found to be strongly affected by non-encapsulated phase change materials (PCM). Accordingly, the rheological properties of the MPCM suspensions could be described by the Cross model below the PCM melting point while a power law model best described the data above the PCM melting point. The MPCM suspensions are interesting for energy storage and heat transfer applications. However, the non-encapsulated PCM contributes to the agglomeration of the microcapsules, which can lead to higher pumping consumption and clogging of piping systems.
机译:研究了微囊相变材料(MPCM)在甘油中的悬浮液的热学和流变学性质。当微胶囊浓度升高时,悬浮液的储热容量变高,并且观察到悬浮液的热导率略有下降。发现悬浮液的温度依赖性剪切稀化行为受到非封装相变材料(PCM)的强烈影响。因此,MPCM悬浮液的流变特性可以用低于PCM熔点的Cross模型描述,而幂律模型可以最好地描述高于PCM熔点的数据。 MPCM悬架对于能量存储和传热应用很有趣。但是,未封装的PCM会导致微囊的团聚,这可能导致更高的泵送消耗和管道系统堵塞。

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