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ION-INDUCED STRUCTURAL-PHASE TRANSFORMATIONS IN AUSTENITE STAINLESS STEEL 12Cr18ni10Ti, AISI 316 AND AISI 304

https://doi.org/10.52676/1729-7885-2019-4-17-22

Abstract

In this paper the ion-induced structural-phase transformations in austenitic stainless steels 12Cr18Ni10Ti, AISI 316 and AISI 304 have been studied by the Mössbauer spectroscopy of conversion electrons, X-ray diffraction and scanning microscopy. It has been established, that the electronic structure of the Mössbauer atoms in stainless steels AISI 304 and AISI 316 are different. Consequently, molybdenum does not affect the short-range order of 57Fe in AISI 316 steel. Implantation of its own atoms (57Fe) in AISI 316 steel leads, as in case with AISI 304 and 12Cr18Ni10Ti steel, to martensitic transformations. Among three steels AISI 316 was found to be the most stable to the ion-induced structural phase transformations.

About the Authors

К. A. Bedelbekova
Institute of Nuclear Physics; K.I. Satpaev Kazakh National Research Technical University
Kazakhstan
Almaty


A. N. Ozernoy
Institute of Nuclear Physics
Kazakhstan
Almaty


M. F. Vereshchak
Institute of Nuclear Physics
Kazakhstan
Almaty


I. A. Manakova
Institute of Nuclear Physics
Kazakhstan
Almaty


A. S. Degtyareva
K.I. Satpaev Kazakh National Research Technical University
Kazakhstan
Almaty


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For citations:


Bedelbekova К.A., Ozernoy A.N., Vereshchak M.F., Manakova I.A., Degtyareva A.S. ION-INDUCED STRUCTURAL-PHASE TRANSFORMATIONS IN AUSTENITE STAINLESS STEEL 12Cr18ni10Ti, AISI 316 AND AISI 304. NNC RK Bulletin. 2019;1(4):17-22. (In Russ.) https://doi.org/10.52676/1729-7885-2019-4-17-22

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ISSN 1729-7516 (Print)
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