Evolution of the structural and phase states of a Ti-6Al-4V alloy in forming submicrocrystalline structure with the use of temporary hydrogenation
| Parent link: | Russian Physics Journal Vol. 49, N 4.— 2006.— P. 442-447 |
|---|---|
| 其他作者: | Grabovetskaya G. P., Melnikova E. N., Kolobov Yu. R., Chernov I. P. Ivan Petrovich, Naidenkin E. V., Nikitenkov N. N., Mishin I. P. |
| 總結: | В фонде НТБ ТПУ отсутствует |
| 語言: | 英语 |
| 出版: |
2006
|
| 主題: | |
| 格式: | Book Chapter |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=599471 |
相似書籍
Influence of Hydrogenation on Evolution of Submicrocrystalline Structure of Ti–6Al–4V Alloy upon Exposure to Temperature and Stress; Russian Physics Journal; Vol. 57, iss. 4
出版: (2014)
出版: (2014)
Hydrogen Effect on the Evolution of the Structural-Phase State and Superplastic Properties of Ultrafine-Grained Ti-Al-V-Mo Alloy; Physical Mesomechanics; Vol. 25, iss. 5
出版: (2022)
出版: (2022)
Structural-phase state and mechanical properties of submicrocrystalline titanium alloy Ti-6Al-4V obtained with use of reversible hydrogen alloying; Bulletin of the Tomsk Polytechnic University; Vol. 311, № 2
由: Grabovetskaya G. P. Galina Petrovna
出版: (2007)
由: Grabovetskaya G. P. Galina Petrovna
出版: (2007)
Strain behavior of the hydrogenated submicrocrystalline Ti–6Al–4V alloy; Russian Physics Journal; Vol. 54, iss. 6
出版: (2011)
出版: (2011)
Effect of pulsed electron beams exposure on structural and phase states of submicrocrystalline Ti-6Al-4V-H alloy; Известия вузов. Физика; Т. 55, № 12-2
出版: (2012)
出版: (2012)
Effect of Hydrogen on the Structural and Phase State and Defect Structure of Titanium Alloy; AIP Conference Proceedings; Vol. 1772 : Prospects of Fundamental Sciences Development (PFSD-2016)
出版: (2016)
出版: (2016)
Effect of Hydrogen on the Development of Superplastic Deformation in the Submicrocrystalline Ti–6Al–4V Alloy; Materials Science Forum; Vol. 838-839
出版: (2016)
出版: (2016)
Effect of hydrogen redistribution during aging on the structure and phase state of nanocrystalline and coarse-grained TiNi alloys; Journal of Alloys and Compounds; Vol. 751
出版: (2018)
出版: (2018)
Evolution of the Structural-Phase State of a Titanium Alloy of the System Ti–Al–V–Mo During Formation of an Ultrafine-Grained Structure Using Reversible Hydrogenaтion; Russian Physics Journal; Vol. 62, iss. 8
出版: (2019)
出版: (2019)
Structure-phase status of the high-entropy AlNiNbTiCo alloy; Russian Physics Journal; Vol. 67, No. 2
出版: (2024)
出版: (2024)
Research of Hydrogenation and Dehydrogenation Effect on the Structural and Phase State of the Titanium Alloy; Key Engineering Materials; Vol. 683 : Multifunctional Materials: Development and Application
出版: (2016)
出版: (2016)
Electron-Beam Welding - Structural-Phase State and Microhardnes in the Weld Zone in a Submicrocrystalline Titanium Alloy Grade2; Materials Science Forum; Vol. 906 : Materials and Processing Technology
出版: (2017)
出版: (2017)
Structural and Phase State of Ti–Nb Alloy at Selective Laser Melting of the Composite Powder; Russian Physics Journal; Vol. 59, iss. 3
出版: (2016)
出版: (2016)
Hydrogen diffusion and the effect of hydrogen on structural transformations in binary TiNi based alloys; International Journal of Hydrogen Energy; Vol. 44, iss. 55
出版: (2019)
出版: (2019)
Structural and Phase State and Deformation Behavior of the Hydrogenated Ultrafine-Grained Zr-1Nb Alloy; AIP Conference Proceedings; Vol. 1783 : Advanced Materials with Hierarchical Structure for New Technologies and Reliable Structures 2016
出版: (2016)
出版: (2016)
Structure and mechanical properties of ultrafine-grained Ti-6Al-4V alloy made by applying reversible hydrogen alloying; Inorganic Materials: Applied Research; Vol. 4, iss. 2
出版: (2013)
出版: (2013)
Features of the structural phase state of a weld produced by electron-beam welding in the submicrocrystalline grade 2 titanium alloy; MATEC Web of Conferences; Vol. 143 : Youth, Science, Solutions: Ideas and Prospects (YSSIP-2017)
出版: (2018)
出版: (2018)
Structural-phase transformations and evolution of defect structure under thermal influence and hydrogenation of Cr-coated E110 zirconium alloy: Experimental research and first-principal calculations; Materials Chemistry and Physics; Vol. 335
出版: (2025)
出版: (2025)
Structural and Phase State Evolution in Friction Drilling on AA2024; AIP Conference Proceedings; Vol. 1909 : Advanced Materials with Hierarchical Structure for New Technologies and Reliable Structures 2017 (AMHS’17)
由: Fortuna S. Sergey
出版: (2017)
由: Fortuna S. Sergey
出版: (2017)
Effect of the Beam Current during the Electron-Beam Melting of Titanium Alloy Ti-6Al-4V on the Structural Features and Phase Transitions in Gas-Phase Hydrogenation; Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques; Vol. 13, No. 3
出版: (2019)
出版: (2019)
Effect of Ultrasonic Impact Treatment on Structural Phase Transformations in Ti-6Al-4V Titanium Alloy; Physical Mesomechanics; Vol. 25, iss. 3
出版: (2022)
出版: (2022)
Structural and phase state of ti surface layers modified by high-intensity implantation of al ions; Bulletin of the Russian Academy of Sciences: Physics; Vol. 69, № 7
出版: (2006)
出版: (2006)
Phase Composition and Structure of High Alloy Based on Ni-Al-Co; Mechanical Engineering, Automation and Control Systems (MEACS)
出版: (2015)
出版: (2015)
Structure Evolution and Distributions of Grain-Boundary Misorientainons in Submicrocrystalline Molybdenum Irradiated with a Pulsed Electron Beam; Russian Physics Journal; Vol. 61, iss. 1
出版: (2018)
出版: (2018)
Impact of Thermochemical Treatment on Structure and Phase State of Austenitic Alloy; AIP Conference Proceedings; Vol. 2167 : Advanced Materials with Hierarchical Structure for New Technologies and Reliable Structures 2019 (AMHS'19)
出版: (2019)
出版: (2019)
The Effect of the Sintering Temperature on the Structural Phase State of Powder Alloys Based on NiAl Intermetallic Compounds; AIP Conference Proceedings; Vol. 1783 : Advanced Materials with Hierarchical Structure for New Technologies and Reliable Structures 2016
出版: (2016)
出版: (2016)
Effect of Hydrogen on the Formation of Structure and Mechanical Properties of the Ultrafine-Grained Titanium Alloy of Ti-Al-V-Mo System; AIP Conference Proceedings; Vol. 2051 : Advanced Materials with Hierarchical Structure for New Technologies and Reliable Structures 2018 (AMHS’18)
出版: (2018)
出版: (2018)
Effect of hydrogen on the structural and phase state and the deformation behavior of the ultrafine-grained Zr–1Nb alloy; Journal of Alloys and Compounds; Vol. 645, iss. 1 suppl. : Proceedings from the 14th International Symposium on Metal-Hydrogen Systems: Fundamentals and Applications, 2014 (MH2014)
由: Stepanova E. N. Ekaterina Nikolaevna
出版: (2015)
由: Stepanova E. N. Ekaterina Nikolaevna
出版: (2015)
The Effect of Thermal Annealing on Structural-phase Changes in the Ni–Ti Alloy Implanted with Krypton Ions; Russian Physics Journal; Vol. 59, iss. 2
由: Poltavtseva V. P. Valentina Petrovna
出版: (2016)
由: Poltavtseva V. P. Valentina Petrovna
出版: (2016)
The Influence of Dimesions and Phase State of Structural Elements on Mechanical Properties of Binary Alloys of the Ti–Nb and Zr–Nb Systems; Russian Physics Journal; Vol. 61, iss. 10
出版: (2019)
出版: (2019)
Effect of Structure and Hydrogen on the Short-Term Creep of Titanium Ti-2.9Al-4.5V-4.8Mo Alloy; Materials; Vol. 15, iss. 11
出版: (2022)
出版: (2022)
Evolution of Structure and Phase Composition of Aluminum Alloy under Severe Plastic Deformation; Advanced Materials Research : Advanced materials, synthesis, development and application; Vol. 880 : Prospects of Fundamental Sciences Development (PFSD-2013)
由: Naydenkin E. V.
出版: (2014)
由: Naydenkin E. V.
出版: (2014)
Effect of High-Power Ion Beams on the Surface Topography and Structure of the Subsurface Layer of Submicrocrystalline Titanium Alloys; Russian Journal of Non-Ferrous Metals; Vol. 60, iss. 5
出版: (2019)
出版: (2019)
Structure and Phase Composition of Heat-Resistant Ni–Al–Co Alloy After Annealing and Creep; Russian Physics Journal; Vol. 61, iss. 12
出版: (2019)
出版: (2019)
Effect of Annealing on the Defect Structure, Desorption Properties, and Structural-Phase State in Nanoscale Multilayer Zr/Nb Structures after Hydrogenation; Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques; Vol. 17
出版: (2025)
出版: (2025)
Hydrogen-Induced Phase Transformation and Microstructure Evolution for Ti-6Al-4V Parts Produced by Electron Beam Melting; Metals; Vol. 8, iss. 5
出版: (2018)
出版: (2018)
The Structure and Properties of Microcrystalline and Submicrocrystalline Titanium Alloy VT1-0 in the Area of the Electron Beam Welding Seam; Russian Physics Journal; Vol. 60, iss. 6
出版: (2017)
出版: (2017)
Evolution of the electron structure and excitation spectrum in palladium as a result of hydrogen absorption; Doklady Physics; Vol. 53, N 6
出版: (2008)
出版: (2008)
Orientation and Faulted Structure of [gamma]-Phases in Lanthanum-Alloyed Ni-Al-Cr Superalloy; AIP Conference Proceedings; Vol. 1909 : Advanced Materials with Hierarchical Structure for New Technologies and Reliable Structures 2017 (AMHS’17)
出版: (2017)
出版: (2017)
The Microstructural and Phase Evolution of the 3D Printed Ti-6Al-4V Alloy during Mechanical Loading; Physics of Metals and Metallography; Vol. 124, iss. 2
出版: (2023)
出版: (2023)
相似書籍
-
Influence of Hydrogenation on Evolution of Submicrocrystalline Structure of Ti–6Al–4V Alloy upon Exposure to Temperature and Stress; Russian Physics Journal; Vol. 57, iss. 4
出版: (2014) -
Hydrogen Effect on the Evolution of the Structural-Phase State and Superplastic Properties of Ultrafine-Grained Ti-Al-V-Mo Alloy; Physical Mesomechanics; Vol. 25, iss. 5
出版: (2022) -
Structural-phase state and mechanical properties of submicrocrystalline titanium alloy Ti-6Al-4V obtained with use of reversible hydrogen alloying; Bulletin of the Tomsk Polytechnic University; Vol. 311, № 2
由: Grabovetskaya G. P. Galina Petrovna
出版: (2007) -
Strain behavior of the hydrogenated submicrocrystalline Ti–6Al–4V alloy; Russian Physics Journal; Vol. 54, iss. 6
出版: (2011) -
Effect of pulsed electron beams exposure on structural and phase states of submicrocrystalline Ti-6Al-4V-H alloy; Известия вузов. Физика; Т. 55, № 12-2
出版: (2012)