[1] 魏高升, 张欣欣, 于帆. 超级绝热材料气凝胶的纳米孔结构与有效导热系数[J]. 热科学与技术, 2005, 4(2): 107-112. [2] Ni X Y, Wang J C, Liu G W, et al. Preparation and properties of super insulation material SiO2 aerogel[J]. Advanced Materials Research, 2012, 516-517: 1531-1535. [3] Gurav J L, Jung I K, Park H H, et al. Silica aerogel: synthesis and applications[J]. Journal of Nanomaterials, 2010, 2010(24): 139-143. [4] Hrubesh L W, Poco J F. Thin aerogel films for optical, thermal, acoustic and electric application[J]. Journal of Non-Crystalline Solids, 1995(188): 45-53. [5] Kelly E.P, Frederick M. Mechanical properties of silica aerogels[J]. Journal of Non-crystalline Solid, 199(223): 179-189. [6] Maleki H, Durães L, Portugal A. An overview on silica aerogels synthesis and different mechanical reinforcing strategies[J]. Journal of Non-Crystalline Solids, 2014, 385(2): 55-74. [7] Kim C Y, Lee J K, Kim B I. Synthesis and pore analysis of aerogel-glass fiber composites by ambient drying method[J]. Colloids & Surfaces A Physicochemical & Engineering Aspects, 2008, 313(1): 179-182. [8] Parmenter K E, Milstein F. Mechanical properties of silica aerogels[J]. Journal of Non-Crystalline Solids, 1998, 223(3): 179-189. [9] 马佳, 沈晓冬, 崔升, 等. 纤维增强二氧化硅气凝胶复合材料的制备和低温性能[J]. 材料导报, 2015, 29(20): 43-46. [10] 李涛. 低热导纤维复合隔热材料的制备研究[D]. 武汉: 武汉理工大学, 2011. [11] 高正楠, 江小波, 郭锴. KH550的水解工艺及其对SiO2表面改性的研究[J]. 北京化工大学学报(自然科学版), 2012, 39(2): 7-12. [12] Li X, He H, Ren L. Fabrication and characterization of the mono-lithic hydrophobic alumina aerogels[J]. Journal of Porous Materials, 2017, 24(3): 679-683. [13] Rao A P, Rao A V, Pajonk G M. Hydrophobic and physical properties of the ambient pressure dried silica aerogels with sodium sili-cate precursor using various surface modification agents[J]. Applied Surface Science, 2007, 253(14): 6032-6040. [14] 沈钟, 赵振国, 王果庭. 胶体与表面化学[M]. 北京: 化学工业出版社, 2004: 315-318. [15] 高庆福, 冯坚, 张长瑞, 等. 陶瓷纤维增强氧化硅气凝胶隔热复合材料的力学性能[J]. 硅酸盐学报, 2009, 37(1). [16] 彭程. SiO2气凝胶隔热复合材料的制备及传热性能研究[D]. 广州: 广州大学, 2012. |