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综述了碳气凝胶耐超高温隔热材料的传热特性,分析了传热各组成部分的大小及影响因素,提出作为防隔热应用的碳气凝胶应具有的微观结构.介绍了碳气凝胶的在防隔热应用方面的研究进展及其未来需要解决的问题.

参考文献

[1] Lu X;Arduini-Schuster M C;Kuhn J et al.Thermal conductivity of monolithic organic aerogels[J].Science,1992,255:971-972.
[2] Pekala R W .Organic aerogels from the polycondensation of resorcinol with formaldehyde[J].Journal of Materials Science,1989,24:3221-3227.
[3] 赵南,冯坚,姜勇刚,高庆福,冯军宗.耐高温气凝胶隔热材料[J].宇航材料工艺,2010(05):10-14.
[4] 冯坚,高庆福,武纬,张长瑞,冯军宗,姜勇刚.硅含量对Al_2O_3-SiO_2气凝胶结构和性能的影响[J].无机化学学报,2009(10):1758-1763.
[5] 冯坚,高庆福,冯军宗,姜勇刚.纤维增强SiO_2气凝胶隔热复合材料的制备及其性能[J].国防科技大学学报,2010(01):40-44.
[6] 冯坚,高庆福,张长瑞,冯军宗,姜勇刚.SiO2溶胶配比对气凝胶隔热复合材料力学性能的影响[J].复合材料学报,2010(06):179-183.
[7] Bigall N C;Herrmann A K;Vogel M et al.Hydrogels and aerogels from noble metal nanoparticles.angew[J].Angewandte Chemie International Edition,2009,48:9731-9734.
[8] Inagaki M .Pores in carbon materials-importance of their control[J].New Carbon Materials,2009,24:193-232.
[9] Hanzawa Y;Hatori H;Yoshizawa N et al.Structural changes in carbon aerogels with high temperature treatment[J].Carbon,2002,40:575-581.
[10] Lu X;Nilsson O;Fricke J et al.Thermal and electrical conductivity of monolithic carbon aerogels[J].Journal of Applied Physics,1993,73:581-584.
[11] Lee D;Stevents P C;Zeng S Q et al.Thermal characterization of carbon-opacified silica aerogels[J].Journal of Non-Crystalline Solids,1995,186:285-290.
[12] Bock V;Nilsson O;Blumm J et al.Thermal properties of carbon aerogels[J].Journal of Non-Crystalline Solids,1995,185:233-239.
[13] Shaheen A. Al-Muhtaseb;James A. Ritter .Preparation and Properties of Resorcinol-Formaldehyde Organic and Carbon Gels[J].Advanced Materials,2003(2):101-114.
[14] Feng J;Jiang Y et al.Ultralow density carbon aerogels with low thermal conductivity up to 2000℃[J].Materials Letters,2011,65:3454-3456.
[15] Zhou W D;Liu B;Yu S K et al.Rarefied-gas heat transfer in micro-and nanoscale couette flows[J].Physical Review B:Condensed Matter,2010,81:011204.
[16] Wiener M;Reichenauer G;Hemberger F et al.Thermal conductivity of CAs as a function of pyrolysis temperature[J].International Journal of Theoretical Physics,2006,27:1826-1843.
[17] Hemberger F;Weis S;Reichenauer G et al.Thermal transport properties of functionally graded CAs[J].International Journal of Theoretical Physics,2009,30:1357-1371.
[18] Wiener M;Reichenauer G;Braxmeier S et al.CAbased high-temperature thermal insulation[J].International Journal of Theoretical Physics,2009,30:1372-1385.
[19] 李梦龙.化学数据速查手册[M].北京:化学工业出版社,2003
[20] K. Swimm;G. Reichenauer;S. Vidi;H. P. Ebert .Gas Pressure Dependence of the Heat Transport in Porous Solids with Pores Smaller than 10 μm[J].International Journal of Thermophysics,2009(4):1329-1342.
[21] 张向宇.实用化学手册[M].北京:国防工业出版社,1986
[22] Feng J;Zhang C.Thermal conductivity of low density carbon aerogels[J].Journal of Porous Materials,2011
[23] Hrubesh L W .Lightweight,high strength carbon aerogel composites and method of fabrication[P].US Patent,20030134916A1,2003.
[24] 秦仁喜,沈军,吴广明,周斌,王琴,倪星元,郭艳芝.碳气凝胶的常压干燥制备及结构控制[J].过程工程学报,2004(05):429-433.
[25] 王金凤,王朝阳,唐永建,高涛,刘伟民.对苯二酚-甲醛碳气凝胶的制备[J].强激光与粒子束,2005(11):1709-1711.
[26] 黄常刚,王朝阳,唐永建,闫红梅,王美丽,关峰.间苯三酚-甲醛气凝胶的制备及氢吸附性能研究[J].功能材料,2007(05):787-789,794.
[27] 吴丁财,刘晓方,符若文.炭气凝胶及其有机气凝胶前驱体的吸附性能[J].新型炭材料,2005(04):305-311.
[28] Junzong Feng;Jian Feng;Changrui Zhang .Shrinkage and pore structure in preparation of carbon aerogels[J].Journal of Sol-Gel Science and Technology,2011(2):371-380.
[29] 刘斌;邹军锋;詹万初 等.一种纤维复合碳气凝胶材料及其制备方法[P].中国专利,CN101698591A,2009.
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