Steel Surface Doped with Nb via Modulated Electron-Beam Irradiation: Structure and Properties
暂无分享,去创建一个
Y. Ivanov | N. Koval | N. Prokopenko | E. Petrikova | T. Koval | P. Moskvin | M. Vorobyov | V. Shin | R. A. Kartavtsov | Dmitry Alekseevich Shpanov
[1] Xiang Gao,et al. Evolution of Microstructures and Mechanical Properties of Nb-V Alloyed Ultra-High Strength Hot Stamping Steel in Austenitizing Process , 2022, Materials.
[2] Y. Ivanov,et al. Oxidation behavior of TiCr and TiMo alloys formed by low-energy pulsed electron beam impact , 2022, Surface and Coatings Technology.
[3] Yu. A. Rubannikova,et al. Improvement of Functional Properties of Alloys by Electron Beam Treatment , 2022, Steel in Translation.
[4] N. Koval,et al. Controlling the Specimen Surface Temperature During Irradiation With a Submillisecond Electron Beam Produced by a Plasma-Cathode Electron Source , 2021, IEEE Transactions on Plasma Science.
[5] V. Devyatkov,et al. Dynamic Power Control of a Submillisecond Pulsed Megawatt Electron Beam in a Source with a Plasma Cathode , 2021, Technical Physics Letters.
[6] V. Orlov,et al. Cold-Resistant Steels: Structure, Properties, and Technologies , 2021, Physics of Metals and Metallography.
[7] A. Posti. Effect of micro alloying of steel with niobium on the mechanical properties of heat-strengthened rebar , 2021 .
[8] V. Buranich,et al. Protective coatings with nanoscale multilayer architecture: current state and main trends , 2020, Physics-Uspekhi.
[9] O. Krysina,et al. QUINTA equipment for ion-plasma modification of materials and products surface and vacuum arc plasma-assisted deposition of coatings , 2019, Journal of Physics: Conference Series.
[10] A. Teresov,et al. Electron beam generation with variable current amplitude during its pulse in a source with a grid plasma cathode , 2019, Journal of Physics: Conference Series.
[11] V. N. Kravchenko,et al. The application of strengthening vacuum ion-plasma treating for the surface layer of constructional metal materials in mechanical engineering and the features of its formation , 2019, Journal of Physics: Conference Series.
[12] Zhexu Zhang,et al. Influence of Heat-Treatment on Enhancement of Yield Strength and Hardness by Ti-V-Nb Alloying in High-Manganese Austenitic Steel , 2019, Metals.
[13] V. S. Mukhin,et al. An experimental study of the effect of vacuum ion-plasma coating deposition on the GTE part cylindrical surface accuracy , 2015 .
[14] N. Koval,et al. Effect of Intensified Emission During the Generation of a Submillisecond Low-Energy Electron Beam in a Plasma-Cathode Diode , 2009, IEEE Transactions on Plasma Science.
[15] Michael F. McGuire,et al. Stainless Steels for Design Engineers , 2008 .
[16] N. R. Baddoo,et al. Stainless steel in construction: A review of research, applications, challenges and opportunities , 2008 .
[17] Raymond L. Boxman,et al. Vacuum arc deposition devices , 2006 .
[18] J. M. Rodriguez-Ibabe,et al. Dynamic recrystallization behavior covering a wide austenite grain size range in Nb and Nb–Ti microalloyed steels , 2003 .
[19] Y. Ivanov,et al. Surface modification of steels by complex diffusion saturation in low pressure arc discharge , 2003 .
[20] K. Ishida,et al. Calculation of Phase Equilibria between Austenite and (Nb, Ti, V)(C, N) in Microalloyed Steels , 2001 .
[21] H. Imai. Introduction to Stainless Steels , 1990 .
[22] W. Hosford,et al. Iron and Steel: Frontmatter , 2012 .
[23] Y. Ivanov,et al. Element and Phase Composition, Mechanical Properties of Titanium Surface Layer Alloyed by Zr, Nb, Al Under the Action of Compression Plasma Flows , 2022, High Temperature Material Processes: An International Quarterly of High-Technology Plasma Processes.
[24] Y. Ivanov,et al. Borating of steel initiated by a pulsed electron beam , 2022, PROCEEDINGS OF THE INTERNATIONAL CONFERENCE “PHYSICAL MESOMECHANICS. MATERIALS WITH MULTILEVEL HIERARCHICAL STRUCTURE AND INTELLIGENT MANUFACTURING TECHNOLOGY”.
[25] Y. Ivanov,et al. ELECTRON-ION-PLASMA MODIFICATION OF CARBON STEEL , 2021 .
[26] Y. Ka. Microstructure of plasma Nb-alloyed layer on 40Cr13 stainless steel , 2015 .