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MICROSTRUCTURE OF THE SURFACE OF THE TITANIUM ALLOY VT6 AFTER ELECTROEXPLOSIVE CARBOBORIZATION AND SUBSEQUENT ELECTRON BEAM TREATMENT

Abstract

Analysis of the structure of VT6 alloy samples after electroexplosive carboborization showed the formation of a hardening zone with a highly developed relief up to 50 microns thick, heterogeneous in thickness, elemental composition and structural-phase state. Subsequent electron-beam processing leads to a decrease in surface roughness and a more uniform distribution of alloying elements. The thickness of the hardening zone increases to 60 microns.

Analysis of the structure of VT6 alloy samples after electroexplosive carboborization showed the formation of a hardening zone with a highly developed relief up to 50 microns thick, heterogeneous in thickness, elemental composition and structural-phase state. Subsequent electron-beam processing leads to a decrease in surface roughness and a more uniform distribution of alloying elements. The thickness of the hardening zone increases to 60 microns.

About the Authors

Ekaterina S. Vashchuk
Branch of the Kuzbass State Technical University named after T.F. Gorbachev in Prokopyevsk
Russian Federation

Cand. Sci (Eng.), Associate Professor of the Department of Natural Sciences



Krestina V. Aksenova
Siberian State Industrial University

Cand. Sci (Eng.), Associate Professor of the Department of Natural Sciences



Lyudmila P. Bashchenko
Siberian State Industrial University

Cand. Sci (Eng.), Associate Professor of the Department of Heat Power Engineering and Ecology



Evgeny A. Budovskikh
Siberian State Industrial University

Dr. Sci. (Eng.), Professor, Senior Researcher of the Department of Scientific Research



Viktor E. Gromov
Siberian State Industrial University

Dr. Sci. (Phys.-Math.), Professor, Head of the Department of Natural Sciences



References

1. Bagautdinov A.Ya., Budovskikh E.A., Ivanov Yu.F., Gromov V.E. Physical bases of electro-explosive alloying of metals and alloys. Novokuznetsk: izd. SibGIU, 2007, 304 p. (In Russ.).

2. Raikov S.V., Budovskikh E.A., Gromov V.E., Ivanov Yu.F., Vashchuk E.S. Formation of structural-phase states and surface properties of titanium alloys during electroexplosive alloying and subsequent electron beam processing. Novokuznetsk: Inter-Kuzbass, 2014, 267 p. (In Russ.).

3. Karpii S.V., Budovskikh E.A., Ivanov Yu.F., etc. Formation of surface layers of titanium alloys during electroexplosive alloying with aluminum. Fundamental'nye problemy sovremennogo materialovedeniya. 2009. vol. 6, no. 1, pp. 46–48. (In Russ.).

4. Gromov V.E., Ivanov Yu.F., Vorobiev S.V., Konovalov S.V. Fatigue of steels modified by high intensity electron beams. Cambridge: Cambridge International Science Publishing Ltd, 2015, 272 p.

5. Strizhalo V.A. Cyclic strength and creep of metals under low-cycle fatigue loading at low and high temperatures. Kiev: Naukova dumka, 1978, 241 p. (In Russ.).

6. Brandon D., Kaplan U. Microstructure of materials. Methods of research and control. Moscow: Tekhnosfera, 2006, 384 p. (In Russ.).


Review

For citations:


Vashchuk E., Aksenova K., Bashchenko L., Budovskikh E., Gromov V. MICROSTRUCTURE OF THE SURFACE OF THE TITANIUM ALLOY VT6 AFTER ELECTROEXPLOSIVE CARBOBORIZATION AND SUBSEQUENT ELECTRON BEAM TREATMENT. Bulletin of the Siberian State Industrial University. 2021;(3):3-12. (In Russ.)

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ISSN 2304 - 4497 (Print)
ISSN 2307-1710 (Online)