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碳纤维-纳米石墨片网络体导热增强石蜡相变储能复合材料的制备及表征 被引量:18

Preparation and characterization of paraffin phase change composites reinforced by carbon fiber-graphite nanoplatelets network
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摘要 以石蜡为代表的固-液相变储能材料存在导热率低和热稳定性差两大问题,为了提高其导热性能,以酚醛树脂为碳质黏结剂前驱体,采用浆料成型法制备碳纤维-纳米石墨片(CF-GNP)复合网络体,并通过真空浸渍石蜡,制得CF-GNP/石蜡复合材料。表征和分析了CF和GNP含量对CF-GNP网络体微观形貌和CFGNP/石蜡相变储能复合材料导热效率及热稳定性的影响。结果表明,CF-GNP/石蜡复合材料的导热效率较纯石蜡大幅增加。CF-GNP网络体中CF含量越低,GNP导热增强效应越明显。CF-GNP网络体中CF和GNP含量分别为50wt%、10wt%时,CF-GNP/石蜡复合材料的升温时间较CF含量为50wt%的CF/石蜡复合材料缩短了39.9%,当CF含量分别为70wt%和85wt%时,分别缩短了24.5%和9.4%。40次热循环稳定性测试表明,CF-GNP/石蜡复合材料具有良好热稳定性。 Two main drawbacks of most phase change materials are the low thermal conductivity and thermal stability. To address the above-mentioned problems, carbon bonded carbon fiber-graphite nanoplatelets(CF-GNP)network was first prepared using a slurry molding method. And molten paraffin was infiltrated into the CF-GNP network to form a CF-GNP/paraffin phase change composites. The effects of CF and GNP contents on the structure of the CF-GNP network and thermal properties of the CF-GNP/paraffin composites were systematically studied. The results show that the melting-solidifying rates are greatly accelerated for the CF-GNP/paraffin composites comparing to pure paraffin. The less the CF loading amount is, the more the effect of GNP on heat enhancement is. For the CF-GNP/paraffin composites with 50 wt% CF and 10 wt% GNP in the CF-GNP network, the melting time is shortened by 39.9% comparing with the CF/paraffin composite with only 50 wt% CF in network. The decrements are 24.5% and9.4% for CF/paraffin composite with CF loading of 70 wt% and 85 wt%, respectively. The tests of 40 thermal cycles indicate that the CF-GNP/paraffin composites prepared in this study show good thermal stability.
作者 李果 欧阳婷 蒋朝 陈云博 LI Guo;OUYANG Ting;JIANG Zhao;CHEN YunBo(College of Materials Science and Engineering,Hunan University,Changsha 410082,China)
出处 《复合材料学报》 EI CAS CSCD 北大核心 2020年第5期1130-1137,共8页 Acta Materiae Compositae Sinica
基金 湖南省自然科学基金(2018JJ3044)。
关键词 碳纤维 纳米石墨片 高导热性 相变复合材料 热稳定性 carbon fiber graphite nanoplatelet(GNP) high thermal conductivity phase change composites thermal stability
作者简介 通信作者:欧阳婷,博士,副教授,硕士生导师,研究方向为炭纤维、中间相沥青、相变储能、高导热复合材料.E-mail:oyt@hnu.edu.cn。
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  • 1王立新,任晓亮,任丽,苏峻峰.原位聚合法制备相变材料微胶囊及其致密性[J].复合材料学报,2006,23(2):53-58. 被引量:34
  • 2时雨荃,蔡明健.纳米复合膜相变微胶囊的制备及性质[J].化学工业与工程,2006,23(3):224-227. 被引量:21
  • 3Cho J S, Kwon A, Cho C G. Microencapsulation of octadeeane as a phasc-change material by interracial polymerization in an emulsion system[J]. Collid Polym. Sci., 2002, (280): 260-266.
  • 4Torini L, Argillier J F, Zydowicz N. Interracial polycondensation encapsulation in miniemulsion[J ]. Macromolecules, 2005, 38:3225-3236.
  • 5Siddtmn P, Jassal M, A, grawal A K. Core content and stability of n- octadecane- containing polyurea microencapsules produced by interracial polymerization [J]. J. Appl. Polym. Sci., 2007, 106: 775 -785.
  • 6Su J F, Wang L X, Ren L, et al. Preparation and characterization of polyurethane microcapsules containing n-octadecane with styrene- maleic anhydride as a surfactant by interracial polycondensation [J ]. J. Appl. Polym. Sci., 2007, 102: 4996-5006.
  • 7Fan Y F, Zhang X X, Wu S Z, et al. Thermal stability and permeability of microencapsulated n-octadecane and cyclohexane[J ]. Themochimica Acta, 2005, 429: 25-29.
  • 8Zhang X X, Tao X M, Yick K L, et al. Structure and thermal stability of microencapsulated phase-change materials [J ].Golloid Polyrn. Sci., 2004, 282: 330-336.
  • 9叶晓江,陈焕新,周朝霞.热舒适温度与建筑节能[J].建筑节能,2008,36(9):63-65. 被引量:16
  • 10马天信.聚乙二醇对三聚氰胺甲醛树脂的改性研究[J].粘接,1999,20(2):23-25. 被引量:24

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