The effect of ionizing and displacive radiation on the thermal conductivity of alumina
- 1 March 1993
- journal article
- research article
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 73 (5) , 2254-2258
- https://doi.org/10.1063/1.353130
Abstract
The effects of ionizing and displacive radiation on the thermal conductivity of alumina at high temperatures have been studied. The phononscatteringrelaxation times for several scattering mechanisms have been used to determine the effect on the thermal conductivity. The scattering mechanisms considered are scattering by electrons excited into the conduction band,vacancies,aluminum precipitates, and voids. It is found that under irradiation conditions where the electrical conductivity and dielectric loss tangent are greatly increased there is not a significant decrease in the thermal conductivity due to phonon‐electron scattering. The conditions under which the scattering due to vacancies,aluminum precipitates, and voids each produces a significant reduction in the thermal conductivity are discussed.This publication has 16 references indexed in Scilit:
- Measurement of dielectric properties in ceramics under ionizing and displacive irradiation conditionsJournal of Nuclear Materials, 1992
- Lifetime evaluation of ceramic windows in microwave heating tubes for fusion reactorsJournal of Nuclear Materials, 1990
- Dielectric changes in neutron-irradiated rf window materialsJournal of Nuclear Materials, 1988
- Radiation effects on the electrical properties of alumina from dc to 65 MHzJournal of Nuclear Materials, 1986
- Electrical conductivity of alumina in a radiation field at temperatures up to 700°CRadiation Effects, 1986
- Mechanical reliability of ceramic windows in high frequency microwave heating devicesJournal of Materials Science, 1984
- Mechanical reliability of ceramic windows in high frequency microwave heating devicesJournal of Materials Science, 1984
- Radiation-induced conductivity of: Experiment and theoryPhysical Review B, 1980
- Thermal Resistance due to Point Defects at High TemperaturesPhysical Review B, 1960
- The thermal conductivity of dielectric solids at low temperatures (Theoretical)Proceedings of the Royal Society of London. Series A. Mathematical and Physical Sciences, 1951