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含聚丙烯酸和保形涂层的复合相变材料的热性能研究

Thermal Performance Study of Composite Phase Change Material with Polyacrylicand Conformal Coating.

作者信息

Kee Shin Yiing, Munusamy Yamuna, Ong Kok Seng, Cornelis Metselaar Hendrik Simon, Chee Swee Yong, Lai Koon Chun

机构信息

Faculty of Engineering and Green Technology, Universiti Tunku Abdul Rahman, Kampar 31900, Malaysia.

Department of Mechanical Engineering and Advanced Material Research Center, University of Malaya, Kuala Lumpur 50603, Malaysia.

出版信息

Materials (Basel). 2017 Jul 28;10(8):873. doi: 10.3390/ma10080873.

Abstract

The composite PCM was prepared by blending polymethyl methacrylate (PMMA) and myristic acid (MA) in different weight percentages. The MA and PMMA were selected as PCM and supporting material, respectively. As liquid MA may leak out during the phase transition, this study proposes the use of two coatings, namely a polyacrylic coating and a conformal coating to overcome the leakage problem. Both coatings were studied in terms of the leakage test, chemical compatibility, thermal stability, morphology, and reliability. No leakage was found in the PCMs with coatings compared to those without under the same proportions of MA/PMMA, thus justifying the use of coatings in the present study. The chemically compatibility was confirmed by FTIR spectra: the functional groups of PCMs were in accordance with those of coatings. DSC showed that the coatings did not significantly change the melting and freezing temperatures, however, they improved the thermal stability of composite PCMs as seen in TGA analysis. Furthermore, the composite PCMs demonstrated good thermal reliability after 1000 times thermal cycling. The latent heat of melting reduced by only 0.16% and 1.02% for the PCMs coated with conformal coating and polyacrylic coating, respectively. Therefore, the proposed coatings can be considered in preparing fatty acid/PMMA blends attributed to the good stability, compatibility and leakage prevention.

摘要

通过将聚甲基丙烯酸甲酯(PMMA)和肉豆蔻酸(MA)按不同重量百分比混合来制备复合相变材料(PCM)。分别选用MA和PMMA作为相变材料和支撑材料。由于液态MA在相变过程中可能会泄漏,本研究提出使用两种涂层,即聚丙烯酸涂层和保形涂层来解决泄漏问题。对这两种涂层都进行了泄漏测试、化学相容性、热稳定性、形态学和可靠性方面的研究。在相同的MA/PMMA比例下,与未涂覆涂层的PCM相比,涂覆涂层的PCM未发现泄漏,因此证明了本研究中使用涂层的合理性。通过傅里叶变换红外光谱(FTIR)证实了化学相容性:PCM的官能团与涂层的官能团一致。差示扫描量热法(DSC)表明,涂层并没有显著改变熔点和凝固点温度,然而,从热重分析(TGA)可以看出,它们提高了复合相变材料的热稳定性。此外,复合相变材料在1000次热循环后表现出良好的热可靠性。涂有保形涂层和聚丙烯酸涂层的PCM的熔化潜热分别仅降低了0.16%和1.02%。因此,由于所提出的涂层具有良好的稳定性、相容性和防泄漏性能,在制备脂肪酸/PMMA共混物时可以考虑使用。

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