Abstract
The results of experimental and theoretical research on radiation amorphization are presented in this analytical review. Mechanism and driving forces of radiation amorphization are described, kinetic and thermodynamic conditions of amorphization are formulated. Compositional criteria of radiation amorphization are presented, that allow to predict irradiation behaviour of materials, their tendency to radiation amorphization. Mechanism of transition from crystalline state to amorphous state are considered depending on dose, temperature, structure of primary radiation damage and flux level. (author). 134 refs., 4 tab., 25 fig.
Citation Formats
Neklyudov, I M, and Chernyaeva, T P.
Radiation amorphization of materials.; Radiatsionnaya amorfizatsiya materialov..
Ukraine: N. p.,
1993.
Web.
Neklyudov, I M, & Chernyaeva, T P.
Radiation amorphization of materials.; Radiatsionnaya amorfizatsiya materialov..
Ukraine.
Neklyudov, I M, and Chernyaeva, T P.
1993.
"Radiation amorphization of materials.; Radiatsionnaya amorfizatsiya materialov."
Ukraine.
@misc{etde_10152624,
title = {Radiation amorphization of materials.; Radiatsionnaya amorfizatsiya materialov.}
author = {Neklyudov, I M, and Chernyaeva, T P}
abstractNote = {The results of experimental and theoretical research on radiation amorphization are presented in this analytical review. Mechanism and driving forces of radiation amorphization are described, kinetic and thermodynamic conditions of amorphization are formulated. Compositional criteria of radiation amorphization are presented, that allow to predict irradiation behaviour of materials, their tendency to radiation amorphization. Mechanism of transition from crystalline state to amorphous state are considered depending on dose, temperature, structure of primary radiation damage and flux level. (author). 134 refs., 4 tab., 25 fig.}
place = {Ukraine}
year = {1993}
month = {Dec}
}
title = {Radiation amorphization of materials.; Radiatsionnaya amorfizatsiya materialov.}
author = {Neklyudov, I M, and Chernyaeva, T P}
abstractNote = {The results of experimental and theoretical research on radiation amorphization are presented in this analytical review. Mechanism and driving forces of radiation amorphization are described, kinetic and thermodynamic conditions of amorphization are formulated. Compositional criteria of radiation amorphization are presented, that allow to predict irradiation behaviour of materials, their tendency to radiation amorphization. Mechanism of transition from crystalline state to amorphous state are considered depending on dose, temperature, structure of primary radiation damage and flux level. (author). 134 refs., 4 tab., 25 fig.}
place = {Ukraine}
year = {1993}
month = {Dec}
}