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Integration Science and Technology of Advanced Ceramics for Energy and Environmental ApplicationsThe discovery of new and innovative materials has been known to culminate in major turning points in human history. The transformative impact and functional manifestation of new materials have been demonstrated in every historical era by their integration into new products, systems, assemblies, and devices. In modern times, the integration of new materials into usable products has a special relevance for the technological development and economic competitiveness of industrial societies. Advanced ceramic technologies dramatically impact the energy and environmental landscape due to potential wide scale applications in all aspects of energy production, storage, distribution, conservation, and efficiency. Examples include gas turbine propulsion systems, fuel cells, thermoelectrics, photovoltaics, distribution and transmission systems based on superconductors, nuclear power generation, and waste disposal. Robust ceramic integration technologies enable hierarchical design and manufacturing of intricate ceramic components starting with geometrically simpler units that are subsequently joined to themselves and/or to metals to create components with progressively higher levels of complexity and functionality. However, for the development of robust and reliable integrated systems with optimum performance under different operating conditions, the detailed understanding of various thermochemical and thermomechanical factors is critical. Different approaches are required for the integration of ceramic-metal and ceramic-ceramic systems across length scales (macro to nano). In this presentation, a few examples of integration of ceramic to metals and ceramic to ceramic systems will be presented. Various challenges and opportunities in design, fabrication, and testing of integrated similar (ceramic-ceramic) and dissimilar (ceramic-metal) material systems will be discussed. Potential opportunities and need for the development of innovative design philosophies, approaches, and integrated system testing under simulated application conditions will also be presented.
Document ID
20150009975
Acquisition Source
Glenn Research Center
Document Type
Presentation
Authors
Singh, M.
(Ohio Aerospace Inst. Cleveland, OH, United States)
Date Acquired
June 5, 2015
Publication Date
September 22, 2012
Subject Category
Composite Materials
Report/Patent Number
E-664458
Report Number: E-664458
Meeting Information
Meeting: International Conference of Brazilian Materials Research Society (SBPMat)
Location: Florianopolis
Country: Brazil
Start Date: September 22, 2012
End Date: September 27, 2012
Funding Number(s)
WBS: WBS 877868.02.07.03.05.03.01
CONTRACT_GRANT: NNC07TB09T
Distribution Limits
Public
Copyright
Public Use Permitted.
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