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毕业论文网 > 任务书 > 材料类 > 材料科学与工程 > 正文

PEG/石墨烯气凝胶相变复合材料的制备以及热学性能任务书

 2020-04-18 07:04  

1. 毕业设计(论文)的内容和要求

本论文的主要内容是对peg/石墨烯气凝胶相变复合材料国内外的研究现状、应用与发展进行了简要的阐述。

简述peg/石墨烯气凝胶相变复合材料的结构特点、制备工艺和应用前景。

对peg/石墨烯气凝胶相变复合材料的制备参数及其性能表征进行了研究。

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2. 参考文献

[1] X. Huang,W. Xia,R. Zou, Nanoconfinement of phase change materials within carbon aerogels: phase transition behaviours and photo-to-thermal energy storage, J Mater Chem a. 2 (2014) 19963-19968. [2] 马爱洁,张秋禹,张和鹏,炊萍, 十二醇相变储热微胶囊的制备及其热性能研究, 西安工业大学学报 (2013) [3] 孟新,张焕芝,赵梓名,孙立贤,徐芬,张箭,焦庆祝,鲍艳,马建中, 三元脂肪酸/膨胀石墨复合相变材料的制备、包覆定形及热性能, 高等学校化学学报 (2012) [4] X. Huang,Z. Liu,W. Xia,R. Zou,R.P.S. Han, Alkylated phase change composites for thermal energy storage based on surface-modified silica aerogels, J Mater Chem a. 3 (2015) 1935-1940. [5] T. Xie,Y. He,Z. Tong, Analysis of insulation performance of multilayer thermal insulation doped with phase change material, Int J Heat Mass Tran. 102 (2016) 934-943. [6] Z. Fan,F. Gong,S.T. Nguyen,H.M. Duong, Advanced multifunctional graphene aerogel - Poly (methyl methacrylate) composites: Experiments and modeling, Carbon. 81 (2015) 396-404. [7] A. Shaid,L. Wang,S. Islam,J.Y. Cai,R. Padhye, Preparation of aerogel-eicosane microparticles for thermoregulatory coating on textile, Appl Therm Eng. 107 (2016) 602-611. [8] T. Xie,Y. He,Z. Tong,W. Yan,X. Xie, Transient heat transfer characteristic of silica aerogel insulating material considering its endothermic reaction, Int J Heat Mass Tran. 68 (2014) 633-640. [9] H. Zhang,G. Song,H. Su,H. Ren,J. Cao, An exploration of enhancing thermal protective clothing performance by incorporating aerogel and phase change materials, Fire Mater. 41 (2017) 953-963. [10] W. Luo,Y. Wang,E. Hitz,Y. Lin,B. Yang,L. Hu, Solution Processed Boron Nitride Nanosheets: Synthesis, Assemblies and Emerging Applications, Adv Funct Mater. 27 (2017) [11] Y. Xia,W. Cui,H. Zhang,F. Xu,L. Sun,Y. Zou,H. Chu,E. Yan, Synthesis of three-dimensional graphene aerogel encapsulated n-octadecane for enhancing phase-change behavior and thermal conductivity, J Mater Chem a. 5 (2017) 15191-15199. [12] X. Fang,P. Hao,B. Song,C. Tuan,C. Wong,Z. Yu, Form-stable phase change material embedded with chitosan-derived carbon aerogel, Mater Lett. 195 (2017) 79-81. [13] Y. Xu,A.S. Fleischer,G. Feng, Reinforcement and shape stabilization of phase-change material via graphene oxide aerogel, Carbon. 114 (2017) 334-346. [14] G. Qi,J. Yang,R. Bao,D. Xia,M. Cao,W. Yang,M. Yang,D. Wei, Hierarchical graphene foam-based phase change materials with enhanced thermal conductivity and shape stability for efficient solar-to-thermal energy conversion and storage, Nano Res. 10 (2017) 802-813. [15] Y. Shang,D. Zhang, Preparation and characterization of three-dimensional graphene network encapsulating 1-hexadecanol composite, Appl Therm Eng. 111 (2017) 353-357. [16] M. Khalaj,A. Allahbakhsh,A.R. Bahramian,A. Sharif, Structural, mechanical and thermal behaviors of novolac/graphene oxide nanocomposite aerogels, J Non-Cryst Solids. 460 (2017) 19-28. [17] J. Yang,E. Zhang,X. Li,Y. Zhang,J. Qu,Z. Yu, Cellulose/graphene aerogel supported phase change composites with high thermal conductivity and good shape stability for thermal energy storage, Carbon. 98 (2016) 50-57. [18] K. Liang,L. Shi,J. Zhang,J. Cheng,X. Wang, Fabrication of shape-stable composite phase change materials based on lauric acid and graphene/graphene oxide complex aerogels for enhancement of thermal energy storage and electrical conduction, Thermochim Acta. 664 (2018) 1-15. [19] S. Tian,X. Fang,Z. Yu, Fractal model of thermal conductivity of GA-based composite phase change material with hole sub-model, J Therm Sci Tech-Jpn. 15 (2016) 438-443. [20] C. Yu,S.H. Yang,S.Y. Pak,J.R. Youn,Y.S. Song, Graphene embedded form stable phase change materials for drawing the thermo-electric energy harvesting, Energ Convers Manage. 169 (2018) 88-96. [21] 孟多,赵薇, 新戊二醇/环氧树脂复合相变材料的制备和性能, 新型建筑材料 (2014) [22] 苏磊静,丁雪佳,雷晓慧,何金迎,王林生,李熙然, 聚烯烃包覆石蜡相变材料的结构和初步热性能, 化工进展 (2013)

3. 毕业设计(论文)进程安排

2019.2.25~2019.3.08 查阅文献资料 2019.3.09~2019.3.27 拟定实验方案,撰写开题报告 2019.3.28~2019.4.10 完成初步实验工作,并开展初步测试 2019.4.10~2019.5.31 进行中期检查,完成实验和测试 4.5~4.7清明假期 5.1~5.4五一假期 2019.6.1~2019.6.20 撰写毕业论文,答辩 6.7~6.9 端午假期

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