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High Performance Arcjet EnginesThis effort sought to exploit advanced single crystal tungsten-tantalum alloy material for fabrication of a high strength, high temperature arcjet anode. The use of this material is expected to result in improved strength, temperature resistance, and lifetime compared to state of the art polycrystalline alloys. In addition, the use of high electrical and thermal conductivity carbon-carbon composites was considered, and is believed to be a feasible approach. Highly conductive carbon-carbon composite anode capability represents enabling technology for rotating-arc designs derived from the Russian Scientific Research Institute of Thermal Processes (NIITP) because of high heat fluxes at the anode surface. However, for US designs the anode heat flux is much smaller, and thus the benefits are not as great as in the case of NIITP-derived designs. Still, it does appear that the tensile properties of carbon-carbon can be even better than those of single crystal tungsten alloys, especially when nearly-single-crystal fibers such as vapor grown carbon fiber (VGCF) are used. Composites fabricated from such materials must be coated with a refractory carbide coating in order to ensure compatibility with high temperature hydrogen. Fabrication of tungsten alloy single crystals in the sizes required for fabrication of an arcjet anode has been shown to be feasible. Test data indicate that the material can be expected to be at least the equal of W-Re-HfC polycrystalline alloy in terms of its tensile properties, and possibly superior. We are also informed by our colleagues at Scientific Production Association Luch (NP0 Luch) that it is possible to use Russian technology to fabricate polycrystalline W-Re-HfC or other high strength alloys if desired. This is important because existing engines must rely on previously accumulated stocks of these materials, and a fabrication capability for future requirements is not assured.
Document ID
19950007284
Acquisition Source
Legacy CDMS
Document Type
Contractor Report (CR)
Authors
Kennel, Elliot B.
(Space Exploration Association Cedarville, OH, United States)
Ivanov, Alexey Nikolayevich
(Space Exploration Association Cedarville, OH, United States)
Nikolayev, Yuri Vyacheslavovich
(Space Exploration Association Cedarville, OH, United States)
Date Acquired
September 6, 2013
Publication Date
October 1, 1994
Subject Category
Spacecraft Propulsion And Power
Report/Patent Number
NAS 1.26:195397
E-9199
NASA-CR-195397
Report Number: NAS 1.26:195397
Report Number: E-9199
Report Number: NASA-CR-195397
Accession Number
95N13697
Funding Number(s)
CONTRACT_GRANT: NAS3-27023
PROJECT: RTOP 140-20-0A
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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