Abstract
Radiation creep of austenitic steels 016H15M3B and 0X16H15M3B doped with Sc under irradiation with 10...20 MeV electron are studied.It is shown, that irradiation by more powerful pulses of electrons (with the same average current density) leads to an increase of radiation creep. Growth of radiation creep did not depend on initial steel treatment or Sc addition. This result indicates that the mechanism acting in steels under electron irradiation is the ``climb plus getiding`` - mechanism. The increase of radiation creep is discussed in terms of the so-called dynamic preference, arising from nonstationary of point defect fluxes to dislocations.
Klimenko, S P;
Reznichenko, Eh A
[1]
- Natsional`nyi Nauchnyi Tsentr, Kharkov (Ukraine). Khar`kovskij Fiziko-Tekhnicheskij Inst.
Citation Formats
Klimenko, S P, and Reznichenko, Eh A.
The effect of electron pulsed irradiation on the creep of stainless steel.; O vliyanii impul`snogo ehlektronnogo oblucheniya na polzuchest` nerzhaveyushchej stali..
Ukraine: N. p.,
1995.
Web.
Klimenko, S P, & Reznichenko, Eh A.
The effect of electron pulsed irradiation on the creep of stainless steel.; O vliyanii impul`snogo ehlektronnogo oblucheniya na polzuchest` nerzhaveyushchej stali..
Ukraine.
Klimenko, S P, and Reznichenko, Eh A.
1995.
"The effect of electron pulsed irradiation on the creep of stainless steel.; O vliyanii impul`snogo ehlektronnogo oblucheniya na polzuchest` nerzhaveyushchej stali."
Ukraine.
@misc{etde_101546,
title = {The effect of electron pulsed irradiation on the creep of stainless steel.; O vliyanii impul`snogo ehlektronnogo oblucheniya na polzuchest` nerzhaveyushchej stali.}
author = {Klimenko, S P, and Reznichenko, Eh A}
abstractNote = {Radiation creep of austenitic steels 016H15M3B and 0X16H15M3B doped with Sc under irradiation with 10...20 MeV electron are studied.It is shown, that irradiation by more powerful pulses of electrons (with the same average current density) leads to an increase of radiation creep. Growth of radiation creep did not depend on initial steel treatment or Sc addition. This result indicates that the mechanism acting in steels under electron irradiation is the ``climb plus getiding`` - mechanism. The increase of radiation creep is discussed in terms of the so-called dynamic preference, arising from nonstationary of point defect fluxes to dislocations.}
journal = []
issue = {60}
volume = {1}
journal type = {AC}
place = {Ukraine}
year = {1995}
month = {Oct}
}
title = {The effect of electron pulsed irradiation on the creep of stainless steel.; O vliyanii impul`snogo ehlektronnogo oblucheniya na polzuchest` nerzhaveyushchej stali.}
author = {Klimenko, S P, and Reznichenko, Eh A}
abstractNote = {Radiation creep of austenitic steels 016H15M3B and 0X16H15M3B doped with Sc under irradiation with 10...20 MeV electron are studied.It is shown, that irradiation by more powerful pulses of electrons (with the same average current density) leads to an increase of radiation creep. Growth of radiation creep did not depend on initial steel treatment or Sc addition. This result indicates that the mechanism acting in steels under electron irradiation is the ``climb plus getiding`` - mechanism. The increase of radiation creep is discussed in terms of the so-called dynamic preference, arising from nonstationary of point defect fluxes to dislocations.}
journal = []
issue = {60}
volume = {1}
journal type = {AC}
place = {Ukraine}
year = {1995}
month = {Oct}
}