Thermal insulation and hydrophobization of wood impregnated with silica aerogel powder

被引:0
作者
Hong Chen
Yutian Zhang
Tuhua Zhong
Zhihui Wu
Xianxu Zhan
Jiaoyou Ye
机构
[1] Nanjing Forestry University,College of Furnishings and Industrial Design
[2] Washington State University,Composite Materials and Engineering Center
[3] Dehua Tubao New Decoration Material Co.,undefined
[4] Ltd,undefined
来源
Journal of Wood Science | 2020年 / 66卷
关键词
Wood; Silica aerogel powder; Impregnation; Thermal insulation; Hydrophobicity;
D O I
暂无
中图分类号
学科分类号
摘要
The aim of the study was to develop a simple and cost-effective method to improve thermal insulation and hydrophobicity of wood. Herein, we attempted to use commercially available silica aerogel powders suspended in ethanol to treat the wood by a simple vacuum impregnation process. The effects of particle size (20 µm and 40 nm) of silica aerogels and the number of impregnation cycles (1, 3, and 5 cycles) were examined on the thermal conductivity and the surface hydrophobicity. The results showed that the thermal conductivity of silica aerogel-impregnated wood decreased by approximately 38%. The water contact angle of the impregnated wood increased up to the maximum values 153° with a comparison with 80° of the untreated wood, indicating effective hydrophobization after silica aerogel impregnation. The tensile properties of the impregnated wood were found slightly improved. The results indicate that the impregnation of silica aerogel powders in wood can be a facile and efficient approach to prepare wood with thermal insulation and hydrophobicity, which may hold great promise to be employed in manufacturing wood-based materials used in interior decoration and buildings.
引用
收藏
相关论文
共 61 条
[1]  
Sedighi Gilani M(2016)Design of a hierarchically structured hybrid material: via in situ assembly of a silica aerogel into a wood cellular structure RSC Adv 6 62825-62832
[2]  
Zhao S(2020)Wood and the activity of dead tissue Adv Mater 2001412 1-15
[3]  
Gaan S(2015)Advances of thermal conductivity models of nanoscale silica aerogel insulation material Appl Therm Eng 81 28-50
[4]  
Koebel MM(2008)Silica aerogel; synthesis, properties and characterization J Mater Process Technol 199 10-26
[5]  
Zimmermann T(2020)Improvement of mechanical, hydrophobicity and thermal properties of Chinese fir wood by impregnation of nano silica sol Polymers 12 1632-2208
[6]  
Eder M(2018)Fabrication of silica aerogel composite blankets from an aqueous silica aerogel slurry Ceram Int 44 2204-355
[7]  
Schäffner W(2016)Flexible silica aerogel composites strengthened with aramid fibers and their thermal behavior Mater Des 99 349-59
[8]  
Burgert I(2017)Mechanical, thermal and flammability properties of glass fiber film/silica aerogel composites J Non Cryst Solids 457 52-121
[9]  
Fratzl P(2017)Thermal superinsulating silica aerogels reinforced with short man-made cellulose fibers Compos Part A Appl Sci Manuf 103 113-110
[10]  
He YL(2018)Thermally insulating lightweight cement-based composites incorporating glass beads and nano-silica aerogels for sustainably energy-saving buildings Energy Build 174 97-393