Heat pipe thermionic converter development Quarterly report, 1 Oct. 1966 - 10 Jan. 1967
Heat pipe thermionic converter
SEARCH · Search NASA
Search indexed NASA NTRS and DOE OSTI research on propulsion, heat transfer, battery materials and energy systems. Follow report and document links to the original sources.
Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.
Heat pipe thermionic converter
Thermionic converter research - electrode materials evaluation and theory of vacuum double diode
Fabrication and testing of solar thermionic converter and generator
Life expectancies of thermionic cathodes
Design modifications for six converter solar thermionic generator
Temperature coefficients of reactivity due to Doppler broadening of resonances in materials for in-pile thermionic reactor materials
Cesium fluoride and argon plasma additive effects in thermionic converters
Thermionic converter performance, electron emission and work functions of vapor-deposited rhenium samples, and electron emission microscope design and micrographs
Solar thermionic converter testing with electron bombardment filament
Thermionic emission from silicate and aluminosilicate ion exchangers
Niobium and nickel as thermionic converter collector materials, comparing characteristics
Thermionic converter life-test results and failure mechanisms noting braze failure, collector deposit, emitter warpage and separation and cesium reservoir leak
Thermionic converter performance in presence of inert gases under conditions which avoid previous difficulties
Calorimetric measurements of thermionic converter/ heat pipe system, discussing electron cooling of emitter, thermal emissivity and thermal balance
Thermionic planar electrode converter and generator tests, noting test equipment and performance tables
Oxygen as steady state electronegative additive in cesium thermionic converter shown to improve performance without surface corrosion
Anisotropy of electronic metal work functions for zero and high electric fields perpendicular to surface measured by field emission and thermionic techniques
Vacuum thermionic work function and thermal stability measurements on crystal surfaces, discussing results on carbides, diborides and disilicades