Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7887293 | Ceramics International | 2018 | 24 Pages |
Abstract
The large-scale fibrous/aerogels composites are prepared by using zirconia fibrofelt (ZFF) as skeleton to give high strength and ZrO2-SiO2 aerogels (ZSA) as filler to give excellent thermal insulation through vacuum impregnation. The ZFF/ZSA with a low density of 0.302â¯g/cm3 and a high porosity (89%) exhibits large size of 180â¯mm in length, 180â¯mm in width and 25â¯mm in height which is larger than other fibrous aerogels. Meanwhile, the ZFF/ZSA exhibits high compressive strength of up to 0.17â¯MPa which is approximately six times higher than that of ZFF (0.028â¯MPa). The ZFF/ZSA shows a much lower thermal conductivity of 0.0341â¯Wâ¯mâ1 Kâ1 at room temperature and 0.0460-0.096â¯mâ1 Kâ1 during 500â¯Â°C and 1100â¯Â°C which are lower than that of conventional fibrous materials, indicating its excellent thermal insulation property in a wide temperature range, and the thermal insulation mechanism is analyzed. Thus, the large-scale, low density, high strength, and low thermal conductivity of ZFF/ZSA composites show enormous potential application in the fields of architecture, engineering pipes and aerospace for thermal insulation and protection.
Related Topics
Physical Sciences and Engineering
Materials Science
Ceramics and Composites
Authors
Jian He, Hangyuan Zhao, Xiaolei Li, Dong Su, Huiming Ji, Huijun Yu, Zhipeng Hu,