硅酸铝纤维和玻璃纤维复合二氧化硅气凝胶材料的制备与性能
收稿日期: 2020-04-16
网络出版日期: 2020-11-24
基金资助
国家重点研发计划课题(2016YFC0800605);应急管理部四川消防研究所基本科研业务费专项项目(T2018880103)
Preparation and properties of aluminum silicate fiber and glass fiber composite silica aerogel materials
Received date: 2020-04-16
Online published: 2020-11-24
张怡 , 葛欣国 , 卢国建 , 赵长征 . 硅酸铝纤维和玻璃纤维复合二氧化硅气凝胶材料的制备与性能[J]. 无机盐工业, 2020 , 52(10) : 68 -71 . DOI: 10.11962/1006-4990.2019-0608
The fiber composite silica aerogel materials were prepared using alumina silicate fiber or glass fiber as framework via sol-gel process and ambient pressure drying technology.The structure and properties of the produced materials were tested and analyzed.The results showed that silica aerogels were attached to the fiber surfaces which improve the mechanical properties of the materials.The sound insulation performance of alumina silicate fiber composite silica aerogel material was better than that of glass fiber composite silica aerogel material.The two kinds of fiber composite silica aerogel materials met the requirement of Level A on high thermal resistance and combustibility.The alumina silicate fiber composite silica aerogel material and glass fiber composite silica aerogel material met the requirement of Level AQ1 and Level AQ2 on smoke toxicity,respectively.And their thermal conductivities were 0.034 W/(m·K) and 0.033 W/(m·K),respectively.
Key words: silica aerogel; fiber; composite; fireproofing; heat insulation
[1] | Zhao S Y, Malfait W J, Demilecamps A, et al. Strong,thermally superinsulating biopolymer-silica aerogel hybrids by cogelation of silicic acid with pectin[J]. Angew.Chem.Int.Ed., 2015,54(48):14282-14286. |
[2] | Wang X, Jana S C. Synergistic hybrid organic-inorganic aerogels[J]. ACS Appl.Mater.Interfaces, 2013,5(13):6423-6429. |
[3] | Cuce E, Cuce P M, Wood C J, et al. Toward aerogel based thermal superinsulation in buildings:a comprehensive review[J]. Renew.Sust.Energ.Rev., 2014,34:273-299. |
[4] | Randall J P, Meador M A B, Jana S C. Tailoring mechanical properties of aerogels for aerospace applications[J]. ACS Appl.Mater.Interfaces, 2011,3(3):613-626. |
[5] | 胡银, 张和平, 黄冬梅, 等. 柔韧性块体疏水二氧化硅气凝胶的制备及表征[J]. 硅酸盐学报, 2013,41(8):1037-1041. |
[6] | 邵在东, 张颖, 程璇. 新型力学性能增强二氧化硅气凝胶块体隔热材料[J]. 化学进展, 2014,26(8):1329-1338. |
[7] | 王宝民, 韩瑜, 宋凯. SiO2气凝胶增强增韧方法研究进展[J]. 材料导报A:综述篇, 2011,25(12):55-58. |
[8] | 赵洪凯, 许亚军. 硅气凝胶增强增韧的研究进展[J]. 无机盐工业, 2019,51(1):12-15. |
[9] | 朱建军, 姜德立, 魏巍, 等. 纤维增强型二氧化硅气凝胶复合材料常压制备及表征[J]. 无机盐工业, 2014,46(3):23-25. |
[10] | Li Y, Kang Z, Yan X Q, et al. A three-dimensional reticulate CNT-aerogel for a high mechanical flexibility fiber supercapacitor[J]. Nanoscale, 2018,10(19):9360-9368. |
[11] | Shafi S, Navik R, Ding X, et al. Improved heat insulation and mechanical properties of silica aerogel/glass fiber composite by impregnating silica gel[J]. J.Non-Cryst.Solids, 2019,503/504:78-83. |
[12] | Kim Y, Kim H S, Jo S M, et al. Thermally insulating,fire-retardant,smokeless and flexible polyvinylidene fluoride nanofibers filled with silica aerogels[J]. Chem.Eng.J., 2018,351:473-481. |
[13] | Li Z, Gong L L, Cheng X D, et al. Flexible silica aerogel composites strengthened with aramid fibers and their thermal behavior[J]. Mater.Design, 2016,99:349-355. |
[14] | Liao Y D, Wu H J, Ding Y F, et al. Engineering thermal and mechanical properties of flexible fiber-reinforced aerogel composites[J]. J.Sol-Gel Sci.Technol., 2012,63:445-456. |
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