Formation of grain boundary segregations in alloy Fe-Cr-Ni during strong deformation and under radiation
Segregation of nickel in grain boundaries (GBs) in the Fe-Cr-Ni alloy induced by radiation (RIS) or plastic deformation (DIS) has been studied in the framework of a model which considers the generation of point defects, their mutual recombination, and absorption in GBs. It has been demonstrated that...
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Published in | Physics of metals and metallography Vol. 113; no. 3; pp. 241 - 245 |
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Main Authors | , , , , , |
Format | Journal Article |
Language | English |
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Dordrecht
SP MAIK Nauka/Interperiodica
01.03.2012
Springer Springer Nature B.V |
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Abstract | Segregation of nickel in grain boundaries (GBs) in the Fe-Cr-Ni alloy induced by radiation (RIS) or plastic deformation (DIS) has been studied in the framework of a model which considers the generation of point defects, their mutual recombination, and absorption in GBs. It has been demonstrated that at sufficiently high rates of generation of point defects and in certain temperature ranges the achievement of a stationary state can be preceded by the stage of “rapid” segregation at which the Ni concentration in GBs reaches its maximum. Such mode of formation of segregations can be observed not only upon radiation (“rapid” RIS mode), but also under the conditions of severe deformation (cold rolling, equal-channel angular pressing); in the latter case, the segregates are inherited after the termination of deformation. |
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AbstractList | Segregation of nickel in grain boundaries (GBs) in the Fe-Cr-Ni alloy induced by radiation (RIS) or plastic deformation (DIS) has been studied in the framework of a model which considers the generation of point defects, their mutual recombination, and absorption in GBs. It has been demonstrated that at sufficiently high rates of generation of point defects and in certain temperature ranges the achievement of a stationary state can be preceded by the stage of "rapid" segregation at which the Ni concentration in GBs reaches its maximum. Such mode of formation of segregations can be observed not only upon radiation ("rapid" RIS mode), but also under the conditions of severe deformation (cold rolling, equal-channel angular pressing); in the latter case, the segregates are inherited after the termination of deformation. Keywords: deformation, radiation, Fe-Cr-Ni alloy, grain boundaries, segregation DOI: 10.1134/S0031918X12030155 Segregation of nickel in grain boundaries (GBs) in the Fe-Cr-Ni alloy induced by radiation (RIS) or plastic deformation (DIS) has been studied in the framework of a model which considers the generation of point defects, their mutual recombination, and absorption in GBs. It has been demonstrated that at sufficiently high rates of generation of point defects and in certain temperature ranges the achievement of a stationary state can be preceded by the stage of "rapid" segregation at which the Ni concentration in GBs reaches its maximum. Such mode of formation of segregations can be observed not only upon radiation ("rapid" RIS mode), but also under the conditions of severe deformation (cold rolling, equal-channel angular pressing); in the latter case, the segregates are inherited after the termination of deformation. Segregation of nickel in grain boundaries (GBs) in the Fe-Cr-Ni alloy induced by radiation (RIS) or plastic deformation (DIS) has been studied in the framework of a model which considers the generation of point defects, their mutual recombination, and absorption in GBs. It has been demonstrated that at sufficiently high rates of generation of point defects and in certain temperature ranges the achievement of a stationary state can be preceded by the stage of "rapid" segregation at which the Ni concentration in GBs reaches its maximum. Such mode of formation of segregations can be observed not only upon radiation ("rapid" RIS mode), but also under the conditions of severe deformation (cold rolling, equal-channel angular pressing); in the latter case, the segregates are inherited after the termination of deformation.[PUBLICATION ABSTRACT] |
Audience | Academic |
Author | Pechenkin, V. A. Sagaradze, V. V. Kuznetsov, A. R. Gornostyrev, Yu. N. Stepanov, I. A. Starikov, S. A. |
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Cites_doi | 10.1134/S0031918X10040113 10.1007/s11041-009-9083-2 10.1134/S0031918X08090093 10.1134/S0031918X06080035 10.1016/0022-3115(79)90596-8 10.1007/s11041-007-0094-6 10.4028/www.scientific.net/MSF.294-296.771 10.1016/j.jnucmat.2004.04.259 10.4028/www.scientific.net/MSF.294-296.775 10.1007/s11041-007-0093-7 10.1007/s11041-007-0095-5 |
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SubjectTerms | Alloys Analysis Chemistry and Materials Science Deformation Diffusion Equal channel angular pressing Ferrous alloys Grain boundaries Materials Science Metallic Materials Nickel Nuclear radiation Phase Transformations Plastic deformation Point defects Segregations Specialty metals industry Structure |
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Title | Formation of grain boundary segregations in alloy Fe-Cr-Ni during strong deformation and under radiation |
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