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High-Temperature, Lightweight, Self-Healing Ceramic Composites for Aircraft Engine ApplicationsThe use of reliable, high-temperature, lightweight materials in the manufacture of aircraft engines is expected to result in lower fossil and biofuel consumption, thereby leading to cost savings and lower carbon emissions due to air travel. Although nickel-based superalloy blades and vanes have been successfully used in aircraft engines for several decades, there has been an increased effort to develop high-temperature, lightweight, creep-resistant substitute materials under various NASA programs over the last two decades. As a result, there has been a great deal of interest in developing SiC/SiC ceramic matrix composites (CMCs) due to their higher damage tolerance compared to monolithic ceramics. Current-generation SiC/SiC ceramic matrix composites rely almost entirely on the SiC fibers to carry the load, owing to the premature cracking of the matrix during loading. Thus, the high-temperature usefulness of these CMCs falls well below their theoretical capabilities. The objective of this work is to develop a new class of high-temperature, lightweight, self-healing, SiC fiber-reinforced, engineered matrix ceramic composites.
Document ID
20130009813
Acquisition Source
Glenn Research Center
Document Type
Other - NASA Tech Brief
Authors
Raj, Sai V.
(NASA Glenn Research Center Cleveland, OH, United States)
Bhatt, Ramkrishna
(Ohio Aerospace Inst. Brook Park, OH, United States)
Date Acquired
August 27, 2013
Publication Date
February 1, 2013
Publication Information
Publication: NASA Tech Briefs, Februrary 2013
Subject Category
Man/System Technology And Life Support
Report/Patent Number
LEW-18964-1
Distribution Limits
Public
Copyright
Public Use Permitted.
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