相变温度可调的导热复合共晶相变材料制备及性能
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1.石河子大学化学化工学院;2.四川大学高分子科学与工程学院

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TB34

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国家重点研发计划项目(2022YFB3806500)


Preparation and performance of thermally conductive composite eutectic phase change materials with high energy storage density and adjustable phase change temperature
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1.School of Chemistry and Chemical Engineering,Shihezi University;2.College of Polymer Science and Engineering,Sichuan University

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    摘要:

    以十水合硫酸钠(SSD)和十二水合磷酸氢二钠(DHPD)为二元共晶组分,通过物理共混并加入细菌纤维素(BC)、成核剂(硼砂和五水硫代硫酸钠)制备复合共晶相变材料(SD),再引入氮化硼(BN)制备导热增强的导热复合共晶相变材料。基于相变温度和相变潜热的测定,考察了m(SSD)∶m(DHPD)对SD的物性参数影响,并优选最佳比例;通过对导热复合共晶相变材料表征,以及过冷、相分离、热导率和热循环测试,考察BN对导热复合共晶相变材料传热性能和循环稳定性能的影响;将导热复合共晶相变材料应用于建筑模型热管理中,评价其热管理能力。结果表明,加入质量分数3%(SSD和DHPD总质量的百分数,下同)成核剂,SD的过冷度低于3.4 ℃;加入质量分数为0.5%的BC,消除了SD的相分离现象;制备的SD可以实现相变温度在31~38 ℃之间的有效调控;添加质量分数为5%的BN(SD64的质量百分数,下同),复合共晶相变材料5BN-SD64的热导率从SD64的0.81 W/(m·K)增加到了1.20 W/(m·K),相变潜热仅从SD64的205.3 J/g下降到199.6 J/g,相变温度维持在31.2 ℃;经过50次的热循环,5BN-SD64的相变潜热保留率高于93%。5BN-SD64应用于建筑的热管理,能够减少模型建筑室内5.6 ℃的温度波动。

    Abstract:

    Based on sodium sulfate decahydrate (SSD) and disodium hydrogen phosphate (DHPD) as binary eutectic components, the composite eutectic phase change materials (SD) were prepared by physical blending with the addition of bacterial cellulose (BC) and nucleating agent (borax and sodium thiosulfate pentahydrate). After that boron nitride (BN) was introduced to prepare composite eutectic phase change materials with enhanced thermal conductivity. The effect of m(SSD)∶m(DHPD) on the physical properties of SD were investigated based on the measurement of phase change temperature and latent heat, and the optimal ratio was selected. The effect of BN on heat transfer and cyclic stability of thermally conductive composite eutectic phase change materials were evaluated through characterizations with subcooling, phase separation, thermal conductivity and thermal cycling tests. The resulting thermally conductive composite eutectic phase change materials were applied to thermal management of model buildings to evaluate their thermal management capability. The results showed that the supercooling degree of SD was reduced to 3.4 °C after adding a mass fraction of 3% nucleating agents (percentage of the total mass of SSD and DHPD, the same below). The phase separation phenomenon of SD was eliminated after adding BC with a mass fraction of 0.5%. Effective control of the phase change temperature between 31 and 38 °C was achieved for the prepared SD. When adding a mass fraction of 5% BN (mass percentage of SD64, the same below), the thermal conductivity of composite eutectic phase change materials 5BN-SD64 increased from 0.81 of SD64 to 1.20 W/(m·K), and their phase change latent heat decreased from 205.3 J/g of SD64 to 199.6 J/g, while maintaining a phase change temperature of 31.2 °C. Moreover, the latent heat retention rate of the 5BN-SD64 was more than 93% after 50 thermal cycles. The 5BN-SD64 was used for the thermal management application of model buildings, reducing indoor temperature fluctuation of 5.6 °C.

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张鑫炎,杨洁,魏忠,杨伟.相变温度可调的导热复合共晶相变材料制备及性能[J].精细化工,2025,42(3):

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  • 收稿日期:2024-02-02
  • 最后修改日期:2024-04-11
  • 录用日期:2024-03-21
  • 在线发布日期: 2025-03-14
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