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1. 苏州科技大学
2. 苏州科技大学环境科学与工程学院
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黄志国, 孙志高, 沈天锋. 蓄冷用二氧化钛-脲醛树脂复合壳层相变微胶囊制备及性能[J/OL]. 制冷学报, 2025.
Preparation and performance study of titanium dioxide- urea-formaldehyde resin composite shell phase change microcapsules for cold storage. [J/OL]. Journal of refrigeration, 2025.
结合有机壳层(韧性和防泄漏)和无机壳层(阻燃、机械强度和导热性能好)的优点
使用“两步法”制备了二氧化钛-脲醛树脂复合壳层相变微胶囊(TiO2-UF@Tet微胶囊)
研究了添加不同质量分数纳米TiO2对复合壳层相变微胶囊性能的影响。借助生物显微镜、扫描电子显微镜(SEM)、傅里叶红外光谱仪(FT-IR)、能谱分析仪(EDS)、差示扫描量热仪(DSC)和热重分析仪(TG)等对相变微胶囊的形貌、化学组成和热力学性质进行了研究。实验结果表明
通过“两步法”制备的微胶囊具有良好的复合壳层结构。随着TiO2添加量的增加
微胶囊的热稳定性不断增强
相变温度向低温方向偏移
相变潜热降低
导热系数增大。制备的微胶囊表面光滑
粒径分布均匀
平均粒径约为2.0μm。最佳组分相变温度和相变潜热分别为3.1℃和168.5J/g
包覆率和包覆效率分别为71.64%和69.08%。热循环100次后
相变焓趋于稳定
微观形貌良好
适用于空调系统蓄冷。
TiO2-UF@Tet microcapsules were prepared using two-step method
where the advantages of the organic shell layer (toughness and leakage prevention) and the inorganic shell layer (flame retardant
mechanical strength and good heat conduction) are combined. The effect of the mass fractions of TiO2 on the performance of composite shell phase change microcapsules were investigated. The morphology
chemical composition
and thermodynamic properties of the phase change microcapsules were investigated using biological microscopy
scanning electron microscopy (SEM)
Fourier transform infrared spectroscopy (FT-IR)
energy dispersive spectroscopy (EDS)
differential scanning calorimeter (DSC)
and thermogravimetric analysis (TG). The experimental results show that the microcapsules formed by TiO2 and UF have a good composite shell structure by two-step method. The phase transition temperature of the microcapsules shifted towards lower temperatures
the latent heat of phase transition decreased
and the thermal conductivity increased continuously with the increase of the mass fraction of TiO2. The prepared microcapsules have smooth surfaces
uniform particle size distribution
and an average particle size of approximately 2.0 μm. The phase transition temperature and latent heat of the optimal composition are 3.1℃ and 168.5 J/g
respectively
with a coating rate and coating efficiency of 71.64% and 69.08%
respectively. After 100 heating cycles
the phase transition temperature remains stable
and the microstructure is good. It is suitable for cold storage of air conditioning systems.
相变微胶囊二氧化钛脲醛树脂复合壳层蓄冷
phase change microcapsuletitanium dioxideurea-formaldehyde resincomposite shellcold storage
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