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首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >Preparation and thermal reliabilities of microencapsulated phase change materials with binary cores and acrylate-based polymer shells
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Preparation and thermal reliabilities of microencapsulated phase change materials with binary cores and acrylate-based polymer shells

机译:具有二元核和丙烯酸酯基聚合物壳的微胶囊相变材料的制备和热可靠性

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摘要

Using suspension-like polymerization method, a series of microencapsulated phase change materials(micro-PCMs) with acrylate-based polymer shells and binary core materials were prepared. The phase change properties of the binary mixtures composed of paraffin and butyl stearate were investigated. SEM photographs showed that these micro-PCMs have relatively spherical profiles and compact surfaces with diameter ranging from 10 to 80 μm. DSC results indicated that the microencapsulation ratio of these micro-PCMs ranging from 46 wt% to 68 wt%. Moreover, after being subjected to thermal-cycling test for 500 times, these micro-PCMs kept good thermal reliabilities that the microencapsulation ratio decreased by less than 4 wt%. TGA analysis demonstrated that these micro-PCMs can ensure their thermal stability below 210°C.
机译:采用悬浮样聚合法制备了一系列丙烯酸酯基聚合物壳和二元核材料的微囊相变材料(micro-PCMs)。研究了由石蜡和硬脂酸丁酯组成的二元混合物的相变特性。 SEM照片显示,这些微型PCM具有相对球形的轮廓和紧凑的表面,直径范围为10至80μm。 DSC结果表明,这些微型PCM的微囊化率在46wt%至68wt%的范围内。此外,在经受500次热循环测试之后,这些微PCM保持良好的热可靠性,使得微囊化率降低小于4重量%。 TGA分析表明,这些微型PCM可以确保其在210°C以下的热稳定性。

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