Interfacial modification and ultra-low concentration sol impregnation: A combined approach for tailoring the pore structure and improving the thermal insulation performance of fumed silica compact
暂无分享,去创建一个
Hailong Yang | Zijun Hu | Yue Zhang | Chencheng Sun | Junning Li | Tao Xia | Chaoshuai Lei
[1] Xudong Luo,et al. A novel way to fabricate fibrous mullite ceramic using sol-gel vacuum impregnation , 2018 .
[2] Jinlong Yang,et al. Enhanced mechanical properties and decreased thermal conductivity of porous alumina ceramics by optimizing pore structure , 2018, Ceramics International.
[3] Yazheng Yang,et al. Porous carbon -bonded carbon fiber composites impregnated with SiO 2 -Al 2 O 3 aerogel with enhanced thermal insulation and mechanical properties , 2018 .
[4] Xiaolei Li,et al. A novel aerogels/porous Si 3 N 4 ceramics composite with high strength and improved thermal insulation property , 2017 .
[5] Huaihe Song,et al. A general strategy for improving the thermal insulation performance of aerogels by multiple impregnation , 2017 .
[6] Chao Xu,et al. Thermal conductivity investigations of granular and powdered silica aerogels at different temperatures and pressures , 2016 .
[7] T. Ohmura,et al. Effect of fumed silica properties on the thermal insulation performance of fibrous compact , 2015 .
[8] Zhenyou Li,et al. Surface modification of bacterial cellulose aerogels' web-like skeleton for oil/water separation. , 2015, ACS applied materials & interfaces.
[9] Leon R. Glicksman,et al. Thermal conductivity and characterization of compacted, granular silica aerogel , 2014 .
[10] Harjit Singh,et al. Experimental characterisation and evaluation of the thermo-physical properties of expanded perlite—Fumed silica composite for effective vacuum insulation panel (VIP) core , 2014 .
[11] Youngseok Oh,et al. Mechanical and Thermal Management Characteristics of Ultrahigh Surface Area Single‐Walled Carbon Nanotube Aerogels , 2013 .
[12] Jun-Jie Zhao,et al. Effects of solid–gas coupling and pore and particle microstructures on the effective gaseous thermal conductivity in aerogels , 2012, Journal of Nanoparticle Research.
[13] Xingyi Huang,et al. Role of interface on the thermal conductivity of highly filled dielectric epoxy/AlN composites , 2012 .
[14] Xiao-dong Wang,et al. A 3-D numerical heat transfer model for silica aerogels based on the porous secondary nanoparticle aggregate structure , 2012 .
[15] Xiao-dong Wang,et al. Effects of non-ideal structures and high temperatures on the insulation properties of aerogel-based composite materials , 2011 .
[16] Mukesh Limbachiya,et al. Vacuum insulation panels (VIPs) for building construction industry: a review of the contemporary developments and future directions , 2011 .
[17] Hongtao Yu,et al. Effects of nanoparticle shape on the morphology and properties of porous CdSe assemblies (aerogels). , 2008, ACS nano.
[18] T. Nussbaumer,et al. Experimental and numerical investigation of the thermal performance of a protected vacuum-insulation system applied to a concrete wall , 2006 .
[19] H. Abe,et al. Dry Powder Processing of Fibrous Fumed Silica Compacts for Thermal Insulation , 2005 .
[20] Thomas Sattelmayer,et al. Theoretical studies of high-temperature multilayer thermal insulations using radiation scaling , 2004 .
[21] S. Kim,et al. Determination of mesopore size of aerogels from thermal conductivity measurements , 2002 .
[22] Se-Young Choi,et al. Ambient-dried silica aerogel doped with TiO2 powder for thermal insulation , 2000 .
[23] Henderson,et al. Mechanism and Kinetics of Hexamethyldisilazane Reaction with a Fumed Silica Surface. , 2000, Journal of colloid and interface science.
[24] G. Scherer. Adsorption in aerogel networks , 1998 .
[25] H. Barthel. Surface interactions of dimethylsiloxy group-modified fumed silica , 1995 .
[26] A. Hunt,et al. Transport properties of gas in silica aerogel , 1995 .
[27] J. Fricke,et al. Integration of mineral powders into SiO2 aerogels , 1995 .
[28] K. Sing. Reporting physisorption data for gas/solid systems with special reference to the determination of surface area and porosity (Recommendations 1984) , 1985 .
[29] James A. Ritter,et al. Effect of synthesis pH on the structure of carbon xerogels , 1997 .
[30] L. Hrubesh,et al. Transparent ultralow-density silica aerogels prepared by a two-step sol-gel process , 1992 .