Metal Vapor Vacuum Arc (MEVVA) ion source (IS) is a unique tool for production of high intensity metal ion beam that can be used for material surface modification. From the other hand, the duoplasmatron ion source provides the high intensity gas ion beams. The MEVVA and duoplasmatron IS developed in Institute for Theoretical and Experimental Physics were used for the reactor steel surface modification experiments. Response of ferritic-martensitic steel specimens on titanium and nitrogen ions implantation and consequent vacuum annealing was investigated. Increase in microhardness of near surface region of irradiated specimens was observed. Local chemical analysis shows atom mixing and redistribution in the implanted layer followed with formation of ultrafine precipitates after annealing.
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February 2016
Research Article|
October 09 2015
Surface modification of ferritic steels using MEVVA and duoplasmatron ion sources
Timur V. Kulevoy;
Timur V. Kulevoy
a)
1
State Scientific Center of the Russian Federation
, Institute for Theoretical and Experimental Physics of National Research Centre “Kurchatov Institute,” Moscow, Russia
2
National Research Nuclear University MEPhI (Moscow Engineering Physics Institute)
, Moscow, Russia
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Boris B. Chalyhk;
Boris B. Chalyhk
1
State Scientific Center of the Russian Federation
, Institute for Theoretical and Experimental Physics of National Research Centre “Kurchatov Institute,” Moscow, Russia
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Petr A. Fedin;
Petr A. Fedin
1
State Scientific Center of the Russian Federation
, Institute for Theoretical and Experimental Physics of National Research Centre “Kurchatov Institute,” Moscow, Russia
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Alexey L. Sitnikov;
Alexey L. Sitnikov
1
State Scientific Center of the Russian Federation
, Institute for Theoretical and Experimental Physics of National Research Centre “Kurchatov Institute,” Moscow, Russia
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Alexander V. Kozlov;
Alexander V. Kozlov
1
State Scientific Center of the Russian Federation
, Institute for Theoretical and Experimental Physics of National Research Centre “Kurchatov Institute,” Moscow, Russia
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Rostislav P. Kuibeda;
Rostislav P. Kuibeda
1
State Scientific Center of the Russian Federation
, Institute for Theoretical and Experimental Physics of National Research Centre “Kurchatov Institute,” Moscow, Russia
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Stanislav L. Andrianov;
Stanislav L. Andrianov
1
State Scientific Center of the Russian Federation
, Institute for Theoretical and Experimental Physics of National Research Centre “Kurchatov Institute,” Moscow, Russia
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Nikolay N. Orlov;
Nikolay N. Orlov
1
State Scientific Center of the Russian Federation
, Institute for Theoretical and Experimental Physics of National Research Centre “Kurchatov Institute,” Moscow, Russia
2
National Research Nuclear University MEPhI (Moscow Engineering Physics Institute)
, Moscow, Russia
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Konstantin S. Kravchuk;
Konstantin S. Kravchuk
3
Technological Institute for Superhard and Novel Carbon Materials
, Moscow, Russia
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Sergey V. Rogozhkin;
Sergey V. Rogozhkin
1
State Scientific Center of the Russian Federation
, Institute for Theoretical and Experimental Physics of National Research Centre “Kurchatov Institute,” Moscow, Russia
2
National Research Nuclear University MEPhI (Moscow Engineering Physics Institute)
, Moscow, Russia
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Alexey S. Useinov;
Alexey S. Useinov
3
Technological Institute for Superhard and Novel Carbon Materials
, Moscow, Russia
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Efim M. Oks;
Efim M. Oks
4
Institute of High Current Electronics SB RAS
, Tomsk, Russia
5
Tomsk State University of Control System and Radioelectronics
, Tomsk, Russia
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Alexey A. Bogachev;
Alexey A. Bogachev
1
State Scientific Center of the Russian Federation
, Institute for Theoretical and Experimental Physics of National Research Centre “Kurchatov Institute,” Moscow, Russia
2
National Research Nuclear University MEPhI (Moscow Engineering Physics Institute)
, Moscow, Russia
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Alexander A. Nikitin;
Alexander A. Nikitin
1
State Scientific Center of the Russian Federation
, Institute for Theoretical and Experimental Physics of National Research Centre “Kurchatov Institute,” Moscow, Russia
2
National Research Nuclear University MEPhI (Moscow Engineering Physics Institute)
, Moscow, Russia
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Nasib A. Iskandarov;
Nasib A. Iskandarov
1
State Scientific Center of the Russian Federation
, Institute for Theoretical and Experimental Physics of National Research Centre “Kurchatov Institute,” Moscow, Russia
2
National Research Nuclear University MEPhI (Moscow Engineering Physics Institute)
, Moscow, Russia
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Alexander A. Golubev
Alexander A. Golubev
1
State Scientific Center of the Russian Federation
, Institute for Theoretical and Experimental Physics of National Research Centre “Kurchatov Institute,” Moscow, Russia
2
National Research Nuclear University MEPhI (Moscow Engineering Physics Institute)
, Moscow, Russia
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a)
Author to whom correspondence should be addressed. Electronic mail: [email protected]
Contributed paper, published as part of the Proceedings of the 16th International Conference on Ion Sources, New York, New York, USA, August 2015.
Rev. Sci. Instrum. 87, 02C102 (2016)
Article history
Received:
August 21 2015
Accepted:
September 18 2015
Citation
Timur V. Kulevoy, Boris B. Chalyhk, Petr A. Fedin, Alexey L. Sitnikov, Alexander V. Kozlov, Rostislav P. Kuibeda, Stanislav L. Andrianov, Nikolay N. Orlov, Konstantin S. Kravchuk, Sergey V. Rogozhkin, Alexey S. Useinov, Efim M. Oks, Alexey A. Bogachev, Alexander A. Nikitin, Nasib A. Iskandarov, Alexander A. Golubev; Surface modification of ferritic steels using MEVVA and duoplasmatron ion sources. Rev. Sci. Instrum. 1 February 2016; 87 (2): 02C102. https://doi.org/10.1063/1.4932386
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