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Impact of microcapsules wettability on thermal conductivity of microencapsulated phase change material(MPCM) suspensions

机译:微胶囊的润湿性对微胶囊相变材料(MPCM)悬浮液导热系数的影响

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The purpose of this paper is to investigate the effect of the wettability on MPCM suspensions thermal conductivity. The wettability of the capsules, characterized by contact angle between solid capsules and carrying fluid, was modified by mixing two selected surfactants into the suspensions, i.e.,cetyltrimethylammonium bromide (CTAB) and sodium dodecyl sulfate(SDS) and changing such surfactants’ additive amount. Meanwhile, the Hot Disk 2500s thermal analyzer was applied to test the static thermal conductivity of the MPCM suspensions in which the mass fraction of capsules is 10wt.% and obtained the relation between the thermal conductivity and the contact angle. The results indicated, when the mass fraction of surfactants falls into the range of 0 -0.05wt.%, the effect of the CTAB is more significant than the SDS. However, when the mass fraction of surfactants continue to increase from 0.05wt.%, the significance of the SDS exceeded the CTAB. It was also found that the decrease in the contact angle led to the growth in thermal conductivity for both Maxwell model’s theoretical value and experimental results. When the contact angle fell into the range of 45°-95°, the Maxwell model’s theoretical results of the thermal conductivity could predict the thermal conductivity of MPCM suspensions with a good accuracy, but inversely when the contact angles were smaller than 45°, a significant gap was found between the two results. To remove such gap a correction factor “A” which is associated with contact angles was proposed.
机译:本文的目的是研究润湿性对MPCM悬浮液导热系数的影响。通过将两种选定的表面活性剂(即鲸蜡基三甲基溴化铵(CTAB)和十二烷基硫酸钠(SDS))混入悬浮液中,并改变这些表面活性剂的添加量,可以改变以固体胶囊与载液之间的接触角为特征的胶囊的润湿性。同时,用Hot Disk 2500s热分析仪测试了胶囊质量分数为10wt。%的MPCM悬浮液的静态热导率,得到了热导率与接触角的关系。结果表明,当表面活性剂的质量分数在0 -0.05wt。%的范围内时,CTAB的作用比SDS更显着。然而,当表面活性剂的质量分数从0.05wt。%继续增加时,SDS的重要性超过了CTAB。还发现,对于麦克斯韦模型的理论值和实验结果,接触角的减小都会导致导热系数的增加。当接触角在45°-95°范围内时,麦克斯韦模型的导热系数理论结果可以很好地预测MPCM悬架的导热系数,但是当接触角小于45°时,则反之。发现两个结果之间存在显着差距。为了消除这种间隙,提出了与接触角相关的校正因子“ A”。

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