A multi-scale approach to radiation-induced segregation at various grain boundaries
We investigated the dependence of radiation-induced segregation (RIS) in austenitic stainless steels on grain boundary orientation by numerical calculations. A new rate equation model for RIS that incorporates the grain boundary sink strength for point defects was developed. The sink strength was de...
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Published in | Journal of nuclear materials Vol. 329; pp. 1166 - 1169 |
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Main Authors | , , , |
Format | Journal Article |
Language | English |
Published |
Elsevier B.V
01.08.2004
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Abstract | We investigated the dependence of radiation-induced segregation (RIS) in austenitic stainless steels on grain boundary orientation by numerical calculations. A new rate equation model for RIS that incorporates the grain boundary sink strength for point defects was developed. The sink strength was determined as functions of misorientation angle and
Σ values using interaction energies of vacancy near grain boundaries as determined by molecular dynamics (MD) and statics (MS). It was shown that the calculated results can reproduce the experimental data obtained by electron and proton irradiation experiments. The good agreement supports the validity of the present model. |
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AbstractList | We investigated the dependence of radiation-induced segregation (RIS) in austenitic stainless steels on grain boundary orientation by numerical calculations. A new rate equation model for RIS that incorporates the grain boundary sink strength for point defects was developed. The sink strength was determined as functions of misorientation angle and
Σ values using interaction energies of vacancy near grain boundaries as determined by molecular dynamics (MD) and statics (MS). It was shown that the calculated results can reproduce the experimental data obtained by electron and proton irradiation experiments. The good agreement supports the validity of the present model. We investigated the dependence of radiation-induced segregation (RIS) in austenitic stainless steels on grain boundary orientation by numerical calculations. A new rate equation model for RIS that incorporates the grain boundary sink strength for point defects was developed. The sink strength was determined as functions of misorientation angle and *S values using interaction energies of vacancy near grain boundaries as determined by molecular dynamics (MD) and statics (MS). It was shown that the calculated results can reproduce the experimental data obtained by electron and proton irradiation experiments. The good agreement supports the validity of the present model. |
Author | Watanabe, S Sakaguchi, N Takahashi, H Faulkner, R.G |
Author_xml | – sequence: 1 givenname: N surname: Sakaguchi fullname: Sakaguchi, N email: sakagu@ufml.caret.hokudai.ac.jp organization: Center for Advanced Research of Energy Technology, Hokkaido University, Kita-13, Nishi-8, Kita-ku, Sapporo 060-8628, Japan – sequence: 2 givenname: S surname: Watanabe fullname: Watanabe, S organization: Faculty of Engineering, Department of Materials Science and Engineering, Hokkaido University, Sapporo 060-8628, Japan – sequence: 3 givenname: H surname: Takahashi fullname: Takahashi, H organization: Center for Advanced Research of Energy Technology, Hokkaido University, Kita-13, Nishi-8, Kita-ku, Sapporo 060-8628, Japan – sequence: 4 givenname: R.G surname: Faulkner fullname: Faulkner, R.G organization: Institute of Polymer Technology and Materials Engineering, Loughborough University, Leicestershire LE11 3TU, UK |
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Cites_doi | 10.1103/PhysRevB.59.3393 10.1016/S0022-3115(00)00255-5 10.1016/S0022-3115(96)00487-4 10.1080/14786437308225821 10.1016/0001-6160(66)90168-4 10.1016/S0022-3115(00)00204-X 10.1016/0022-3115(95)00057-7 10.1016/0022-3115(79)90587-7 |
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