Electron microscopic study of the contact zone "plasma coating (molybdenum high-speed steel) – substrate (medium carbon steel)"
- 作者: Gromov V.E1, Ivanov Y.F2, Baklushina I.V1, Chapaykin A.S1, Litovchenko I.Y.3
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隶属关系:
- Siberian State Industrial University
- Institute of High Current Electronics, SB RAS
- Institute of Strength Physics and Materials Science
- 期: 卷 525, 编号 1 (2025)
- 页面: 88-96
- 栏目: ТЕХНИЧЕСКИЕ НАУКИ
- URL: https://ogarev-online.ru/2686-7400/article/view/375787
- DOI: https://doi.org/10.7868/S3034508125060109
- ID: 375787
如何引用文章
详细
The structural and phase states, as well as the elemental composition of the transition zone in the "plasma coating (molybdenum high-speed steel) – substrate (medium carbon steel)" system, have been investigated. It has been established that the transition layer, approximately 100 μm thick, contains an α-phase, γ-phase, complex carbide phases (Me23C6, Me6C), as well as MoC and cementite. No microcracks or microdiscontinuities were detected in the transition layer.
作者简介
V. Gromov
Siberian State Industrial University
编辑信件的主要联系方式.
Email: gromov@physics.sibsiu.ru
Novokuznetsk, Russian Federation
Yu. Ivanov
Institute of High Current Electronics, SB RAS
Email: yufi55@mail.ru
Tomsk, Russian Federation
I. Baklushina
Siberian State Industrial University
Email: baklushina@rambler.ru
Novokuznetsk, Russian Federation
A. Chapaykin
Siberian State Industrial University
Email: tchapajkin.s@yandex.ru
Novokuznetsk, Russian Federation
I. Litovchenko
Institute of Strength Physics and Materials Science
Email: litovchenko@spti.tsu.ru
Tomsk, Russian Federation
参考
- Darmawan W., Quesada J., Marchal R. Characteristics of laser melted AISI-T1 high speed steel and its wear resistance // Surf. Eng. 2007. V. 23. No. 2. P. 112–119.
- Нефедьев С.П., Емелюшин А.Н. Плазменное упрочнение поверхности: монография. Старый Оскол: ТНТ, 2021. 156 с.
- Nefed’ev, S.P. and Emelyushin, A.N. Surface Plasma Hardening: Monograph. Stary Oskol: TNT, 2021, 156 pp.
- Мозговой И.В., Шнейдер Е.А. Наплавка быстрорежущей стали. Омск: ОмГТУ, 2016. 200 с.
- Mozgovoi, I.V. and Shneider, E.A. Overlay Welding of High-Speed Steel. Omsk: OmGTU, 2016, 200 pp.
- Emelyushin A.N., Petrochenko E.V., Nefed′ev S.P. Inverstigation of the structure and impact-abrasive resistance of coatings of the Fe–C–Cr–Mn–Si system, additionally alloyed with nitrogen // Welding International. 2013. V. 27. № 2. P. 150–153.
- Нефедьев С.П., Емелюшин А.Н. Влияние азота на формирование структуры и свойств плазменных покрытий типа 10Р6М5 // Вестн. Югорского гос. ун-та. 2021. № 3 (62). С. 33–45. doi: 10.17816/byusu20210233-45
- Nefed’ev, S.P. and Emelyushin, A.N. Effect of Nitrogen on the Formation of Structure and Properties of Plasma Coatings of the 10R6M5 Type. Vestnik of Yugra State University, 2021, No. 3 (62), p. 33–45. doi: 10.17816/byusu20210233-45
- Емелюшин А.Н., Петроченко Е.В., Нефедьев С.П. Исследование структуры и ударно-абразивной износостойкости покрытий системы Fe–C–Cr–Mn–Si, дополнительно легированных азотом // Сварочное производство. 2011. № 10. С. 18–22.
- Emelyushin, A.N., Petrochenko, E.V., and Nefed’ev, S.P. Study of the Structure and Impact-Abrasive Wear Resistance of Coatings of the Fe–C–Cr–Mn–Si System, Additionally Alloyed with Nitrogen. Svarochnoe Proizvodstvo, 2011, No. 10, p. 18–22.
- Rakhadilov B.K., Zhurerova L.G., Scheffler M., Khassenov A.K. Change in high temperature wear resistance of high-speed steel by plasma nitriding // Bulletin of the Karaganda University. Physics Series. 2018. V. 3 (91). P. 59–65.
- Ivanov Yu.F., Gromov V.E., Yuryev A.B., Minenko S.S., Semin A.P., Chapaikin A.S. Structure, Phase Composition, and Surface Properties of R2M9 High-Speed Steel // J. Surface Investigation: X-ray, Synchrotron and Neutron Techniques. 2024. V. 18. No. 6. P. 1395–1400.
- Kremnev L.S. From High-Speed Tungsten Steel to High-Temperature Molybdenum Steel: A Century of High-Speed Steel // Steel in Translation. 2009. V. 39. № 12. P. 1111–1118.
- Кремнев Л.С., Онегина А.К., Виноградова Л.А. Особенности превращений, структуры и свойств молибденовых быстрорежущих сталей // Металловедение и термическая обработка металлов. 2009. № 12 (654). С. 13–19. EDN: KZSBKP.
- Kremnev, L.S., Onegina, A.K., and Vinogradova, L.A. Features of Transformations, Structure and Properties of Molybdenum High-Speed Steels. Metallovedenie i Termicheskaya Obrabotka Metallov, 2009, No. 12 (654), p. 13–19. EDN: KZSBKP.
- Кремнев Л.С. Теория легирования и создание на ее основе теплостойких инструментальных сталей и сплавов // МиТОМ. 2008. № 11. С. 18–28. EDN: KVXKKF.
- Kremnev, L.S. Theory of Alloying and the Development of Heat-Resistant Tool Steels and Alloys on Its Basis. MiTOM, 2008, No. 11, p. 18–28. EDN: KVXKKF.
- Купалова И.К. Фазовый анализ и фазовый состав быстрорежущих сталей (обзор) // Заводская лаборатория. 1983. № 1. С. 27–40.
- Kupalova, I.K. Phase Analysis and Phase Composition of High-Speed Steels (Review). Zavodskaya Laboratoriya, 1983, No. 1, p. 27–40.
- Громов В.Е., Юрьев А.Б., Иванов Ю.Ф., Миненко С.С., Коновалов С.В. Электронно-микроскопическое исследование зоны контакта “наплавка (быстрорежущая сталь – Р2М9) – подложка (сталь 30ХГСА)” // Вестник СибГИУ, 2025. № 2 (52). С. 3–8.
- Gromov, V.E., Yuryev, A.B., Ivanov, Yu.F., Minenko, S.S., and Konovalov, S.V. Electron-Microscopic Study of the Contact Zone “Overlay (High-Speed Steel – R2M9) – Substrate (30KhGSA Steel)”. Vestnik SibGIU, 2025, No. 2 (52), p. 3–8.
- Potekaev A.I., Gromov V.E., Yuriev A.B., Ivanov Yu.F., Konovalov S.V., Minenko S.S., Semin A.P., Chapaikin A.S., Litovchenko I.Yu. Transition zone structure in the fast-cutting surfaced layer – substrate system // Russian Physics Journal. 2024. V. 67. № 8. P. 1107–1113.
- Egerton F.R. Physical Principles of Electron Microscopy. Basel: Springer International Publishing, 2016. 196 р.
- Kumar C.S.S.R. Transmission Electron Microscopy. Characterization of Nanomaterials. N.Y.: Springer, 2014. 717 р.
- Carter C.B., Williams D.B. Transmission Electron Microscopy. Berlin: Springer International Publishing, 2016. 518 р.
- Курдюмов В.Г., Утевский Л.М., Энтин Р.И. Превращения в железе и стали. М.: Наука, 1977. 236 с.
- Kurdyumov, V.G., Utevsky, L.M., and Entin, R.I. Transformations in Iron and Steel. Moscow: Nauka, 1977, 236 pp.
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