Investigation of thermal insulation performance of glass/carbon fiber-reinforced silica aerogel composites

被引:0
作者
Wei-Cheng Hung
Richard S. Horng
Rung-En Shia
机构
[1] University of California,Department of Civil and Environmental Engineering
[2] Los Angeles,Department of Chemical Engineering
[3] I-Shou University,undefined
来源
Journal of Sol-Gel Science and Technology | 2021年 / 97卷
关键词
Silica aerogel; Thermal conductivity; Glass fiber; Carbon fiber; Aerogel composites;
D O I
暂无
中图分类号
学科分类号
摘要
Silica aerogels have been widely used as thermal insulators, but their fragility has hindered the potential applications. In this work, a novel way of improving aerogel skeletal structure was proposed where composites were reinforced by three functional layers of glass fiber (GF)/ carbon fiber (CF). Heat insulation performance of fiber-reinforced aerogel composites was also investigated in a simulated solar radiation system. Composites composed of three layers of fiber were prepared by a sol-gel process under ambient pressure drying. The results showed that, as three layers were all GF blankets, the composite heat conductivity increased with increasing glass fiber content. Flexural strength increased initially and reached a maximum at 20% glass fiber content before decreasing. To find a balance between promoting heat insulation performance and strengthening the composite structure, two layers of 5% glass fiber blankets were used as structure strengthening layers and one carding 5% carbon fiber as the heat insulation layer were recommended. Under these conditions, the composite showed extremely low thermal conductivity (0.031 W/m K), almost comparable to that of pure aerogel (0.036 W/m K) while maintaining high flexural strength (2.846 MPa), superior than previous studies. Composites with other ratios of glass/carbon fibers with sandwiched alignments also demonstrated better flexural strength and lower thermal conductivity than GF aerogel composites. This work provided an alternative way to prepare robust and sustainable heat insulation aerogel composites for practical uses.
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页码:414 / 421
页数:7
相关论文
共 58 条
[1]  
Cotana F(2014)“Multipurpose characterization of glazing systems with silica aerogel: In-field experimental analysis of thermal-energy, lighting and acoustic performance.” Build Environ 81 92-102
[2]  
Pisello AL(2014)“Insulating glazing units with silica aerogel granules: the impact of particle size.” Appl Energy 128 27-34
[3]  
Moretti E(1931)“Coherent expanded aerogels and jellies” Nature 127 741-741
[4]  
Buratti C(2007)“Hydrophobic and physical properties of the ambient pressure dried silica aerogels with sodium silicate precursor using various surface modification agents” Appl Surf Sci 253 6032-6040
[5]  
Gao T(2009)“Synthesis and characterization of low density and hydrophobic silica aerogels dried at ambient pressure using sodium silicate precursor” J Porous Mater 16 101-108
[6]  
Jelle BP(1998)“High strength SiO2 aerogel insulation” J Non-crystalline Solids 225 101-104
[7]  
Ihara T(2009)“A new class of opacified monolithic aerogels of ultralow high-temperature thermal conductivities” J Phys Chem C 113 7424-7428
[8]  
Gustavsen A(2014)“Engineering thermal and mechanical properties of multilayer aligned fiber-reinforced aerogel composites” Heat Transf Eng 35 1061-1070
[9]  
Kistler SS(2011)“Experimental investigation on mechanical properties of a fiber-reinforced silica aerogel composite” Mater Sci Eng: A 528 4830-4836
[10]  
Rao AP(2012)“Experimental investigation and modeling of the creep behavior of ceramic fiber-reinforced SiO2 aerogel” J Non-crystalline Solids 358 519-524