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Influence of Aerogel Morphology and Reinforcement Architecture on Gas Convection in Aerogel CompositesA variety of thermal protection applications require lightweight insulation capable of withstanding temperatures well above 900 C. Aerogels offer extremely low-density thermal insulation due to their mesoporous structure, which inhibits both gas convection and solid conduction. Silica aerogel systems are limited to use temperatures of 600-700 C, above which they sinter. Alumina aerogels maintain a porous structure to higher temperatures than silica, before transforming to -alumina and densifying. We have synthesized aluminosilicate aerogels capable of maintaining higher surface areas at temperatures above 1100 C than an all-alumina aerogel using -Boehmite as the aluminum source and tetraethoxysilane (TEOS) as the silicon source. The pore structure of these aerogels varies with thermal exposure temperature and time, as the aluminosilicate undergoes a variety of phase changes to form transition aluminas. Transformation to -alumina is inhibited by incorporation of silica into the alumina lattice. The aerogels are fragile, but can be reinforced using a large variety of ceramic papers, felts or fabrics. The objective of the current study is to characterize the influence of choice of reinforcement and architecture on gas permeability of the aerogel composites in both the as fabricated condition and following thermal exposure, as well as understand the effects of incorporating hydrophobic treatments in the composites.
Document ID
20170004364
Acquisition Source
Glenn Research Center
Document Type
Presentation
Authors
Hurwitz, Frances I.
(NASA Glenn Research Center Cleveland, OH United States)
Meyer, Matthew
(Universities Space Research Association Cleveland, OH, United States)
Guo, Haiquan
(Ohio Aerospace Inst. Cleveland, OH, United States)
Rogers, Richard B.
(NASA Glenn Research Center Cleveland, OH United States)
DeMange, Jeffrey J.
(Toledo Univ. Toledo, OH, United States)
Richardson, Hayley
(Universities Space Research Association Cleveland, OH, United States)
Date Acquired
May 4, 2017
Publication Date
October 23, 2016
Subject Category
Chemistry And Materials (General)
Report/Patent Number
GRC-E-DAA-TN36446
Meeting Information
Meeting: MS&T 16, Materials Science & Technology 2016 Conference & Exhibition
Location: Salt Lake City, UT
Country: United States
Start Date: October 23, 2016
End Date: October 27, 2016
Sponsors: American Ceramic Society
Funding Number(s)
WBS: WBS 725017.02.03.04.01
CONTRACT_GRANT: NNC13BA10B
CONTRACT_GRANT: NNC16QA09D
Distribution Limits
Public
Copyright
Public Use Permitted.
Keywords
aerogels
gas permeability
composites
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