Microstructure of Titanium Alloy Modified by High-Intensity Implantation of Low- and MediumEnergy Aluminum Ions; Surface Modification of Materials by Ion Beams (SMMIB-2019)
| Parent link: | Surface Modification of Materials by Ion Beams (SMMIB-2019).— 2019.— [P. 42] |
|---|---|
| Korporace: | Национальный исследовательский Томский политехнический университет Инженерная школа ядерных технологий Научная лаборатория высокоинтенсивной имплантации ионов, Национальный исследовательский Томский политехнический университет Инженерная школа новых производственных технологий Отделение материаловедения |
| Další autoři: | Shevelev A. E. Aleksey Eduardovich, Ryabchikov A. I. Aleksandr Ilyich, Sivin D. O. Denis Olegovich, Bozhko I. A. Irina Aleksandrovna, Stepanov I. B. Igor Borisovich |
| Shrnutí: | Заглавие с экрана |
| Jazyk: | angličtina |
| Vydáno: |
2019
|
| Edice: | Ion Beam Processing of Materials. Poster Session |
| Témata: | |
| On-line přístup: | https://smmib.ru/assets/files/SMMIB2019_TOMSK_full.pdf#page=43 |
| Médium: | MixedMaterials Elektronický zdroj Kapitola |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=660867 |
Podobné jednotky
Surface Modification of E110 Alloy by High-Intensity Low Ion Energy Cr Implantation; Surface Modification of Materials by Ion Beams (SMMIB-2019)
Vydáno: (2019)
Vydáno: (2019)
Microstructure of titanium alloy modified by high-intensity implantation of low- and high-energy aluminium ions; Surface and Coatings Technology; Vol. 391
Vydáno: (2020)
Vydáno: (2020)
Modification of Microstructure and Properties of Martensitic Stainless Steel by High-Intensity Implantation of Nitrogen Ions; Surface Modification of Materials by Ion Beams (SMMIB-2019)
Vydáno: (2019)
Vydáno: (2019)
High-intensity low energy titanium ion implantation into zirconium alloy; Applied Surface Science; Vol. 439
Vydáno: (2018)
Vydáno: (2018)
High Intensity low Aluminum Ion Energy Implantation into Titanium; Ion Implantation Technology (IIT 2018)
Vydáno: (2018)
Vydáno: (2018)
Progress in High Intensity, Low Ion Energy Implantation Method Development; Surface Modification of Materials by Ion Beams (SMMIB-2019)
Autor: Ryabchikov A. I. Aleksandr Ilyich
Vydáno: (2019)
Autor: Ryabchikov A. I. Aleksandr Ilyich
Vydáno: (2019)
High-Intensity Implantation of Metal Ions in Conditions of Minimizing Ion Sputtering of the Material Surface; Surface Modification of Materials by Ion Beams (SMMIB-2019)
Vydáno: (2019)
Vydáno: (2019)
Temperature Gradients in the Irradiated Targets During High-Intensity Implantation and Their Influence on Ion-Modified Layer Properties; Surface Modification of Materials by Ion Beams (SMMIB-2019)
Vydáno: (2019)
Vydáno: (2019)
Hydrogen Interaction with Deep Surface Modified Zr-1Nb Alloy by High Intensity Ti Ion Implantation; Metals; Vol. 8, iss. 12
Vydáno: (2018)
Vydáno: (2018)
Thermal-Diffusion Model of Ion Implantation with Soret and Dufour Effects; Surface Modification of Materials by Ion Beams (SMMIB-2019)
Autor: Chepak-Gizbrekht M. V. Mariya Vladimirovna
Vydáno: (2019)
Autor: Chepak-Gizbrekht M. V. Mariya Vladimirovna
Vydáno: (2019)
Titanium Surface Roughness Modification Using Ion Beam and Mechanical Method; Surface Modification of Materials by Ion Beams (SMMIB-2019)
Vydáno: (2019)
Vydáno: (2019)
High Intensity Implantation of Aluminium Ions into Titanium; 7 International conference on modification of materials with particle beams and plasma flows
Vydáno: (2004)
Vydáno: (2004)
Surface modification of Al by high-intensity low-energy Ti-ion implantation: Microstructure, mechanical and tribological properties; Surface and Coatings Technology; Vol. 372
Vydáno: (2019)
Vydáno: (2019)
High-intensity chromium ion implantation into Zr-1Nb alloy; Surface and Coatings Technology; Vol. 383
Vydáno: (2020)
Vydáno: (2020)
Modification of Structural Phase State and Mechanical Properties of Poly-Grained Titanium Alloy Implanted by Aluminum Ions; IOP Conference Series: Materials Science and Engineering; Vol. 112 : Fundamental Aspects of Rare-earth Elements Mining and Separation and Modern Materials Engineering (REES-2015)
Vydáno: (2016)
Vydáno: (2016)
Influence of the plasma-immersion ion implantation of titanium on the structure, morphology, and composition of the surface layer of Zr–1Nb alloy; Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques; Vol. 11, iss. 2
Vydáno: (2017)
Vydáno: (2017)
Modification of the microstructure and properties of martensitic steel during ultra-high dose high-intensity implantation of nitrogen ions; Surface and Coatings Technology; Vol. 388
Vydáno: (2020)
Vydáno: (2020)
RF-Magnetron Sputtering of Calcium Phosphates for Medical Implants: Structure and Properties; Surface Modification of Materials by Ion Beams (SMMIB-2019)
Vydáno: (2019)
Vydáno: (2019)
Study of the synergy effect of high-intensity aluminum ions implantation into titanium and energy impact on the surface; Materials. Technologies. Design; Т. 5, № 3 (13)
Vydáno: (2023)
Vydáno: (2023)
Craters on the Surface Metal After HPIB of Carbon Ions; Surface Modification of Materials by Ion Beams (SMMIB-2019)
Autor: Potemkin G. V. Gely Valerjyanovich
Vydáno: (2019)
Autor: Potemkin G. V. Gely Valerjyanovich
Vydáno: (2019)
Influence of Surface Modification of Nitinol with Silicon Using Plasma-Immersion Ion Implantation on the Alloy Corrosion Resistance in Artificial Physiological Solutions; AIP Conference Proceedings; Vol. 1683 : Advanced Materials with Hierarchical Structure for New Technologies and Reliable Structures
Vydáno: (2015)
Vydáno: (2015)
Grain shape and size and structural and phase conditions modified by aluminum ion implantation in UFG titanium; AIP Conference Proceedings; Vol. 1772 : Prospects of Fundamental Sciences Development (PFSD-2016)
Vydáno: (2016)
Vydáno: (2016)
Modeling of carbon penetration into silicon structure under the action of pulsed high-intensity ion beam; Surface and Coatings Technology; Vol. 306, Pt. A : Surface Modification of Materials by Ion Beams (SMMIB 2015)
Autor: Aktaev N. E. Nurken Erbolatovich
Vydáno: (2016)
Autor: Aktaev N. E. Nurken Erbolatovich
Vydáno: (2016)
High intensity, low ion energy implantation of nitrogen in AISI 5140 alloy steel; Surface and Coatings Technology; Vol. 355
Vydáno: (2018)
Vydáno: (2018)
Pulsed plasma-immersion ion implantation of aluminum into VT1-0 titanium; Bulletin of the Russian Academy of Sciences: Physics; Vol. 80, iss. 2
Vydáno: (2016)
Vydáno: (2016)
Temperature gradients in targets with high-intensity implantation and their influence on the characteristics of ion-modified layers; Gas Discharge Plasmas and Their Applications (GDP 2019)
Vydáno: (2019)
Vydáno: (2019)
Oxidation Behavior of Zr-1Nb Corroded in Air at 400 °C after Plasma Immersion Titanium Implantation; Metals; Vol. 8, iss. 1
Vydáno: (2018)
Vydáno: (2018)
The Structural Thermal Stability of the Fe80Si7 B13 Alloys Under the Irradiation of High-Intensity Pulsed Ion Beam; Surface Modification of Materials by Ion Beams (SMMIB-2019)
Vydáno: (2019)
Vydáno: (2019)
Modification of silicon under synergy of high-intensity implantation of titanium ions and energy influence of a high-power ion beam on a surface; Materials. Technologies. Design; Т. 6, № 1
Vydáno: (2024)
Vydáno: (2024)
Effect of Surface Modification of Zr-1%Nb Alloy on Corrosion Resistance and High-Temperature Oxidation; Surface Modification of Materials by Ion Beams (SMMIB-2019)
Autor: Slobodyan M. S. Mikhail Stepanovich
Vydáno: (2019)
Autor: Slobodyan M. S. Mikhail Stepanovich
Vydáno: (2019)
Hydrogen-Permeability of Titanium-Nitride (TiN) Coatings Obtained via the Plasma-Immersion Ion Implantation of Titanium and TiN Vacuum-Arc Deposition on Zr-1%Nb Alloy; Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques; Vol. 12, iss. 4
Vydáno: (2018)
Vydáno: (2018)
Temperature gradients in targets at low energy high-intensity ion implantation; Surface and Coatings Technology; Vol. 389
Vydáno: (2020)
Vydáno: (2020)
Grain size effect on yield strength of titanium alloy implanted with aluminum ions; AIP Conference Proceedings; Vol. 1698 : Advanced Materials in Technology and Construction, AMTC-2015
Vydáno: (2016)
Vydáno: (2016)
Radiation Hardening of Ni-Ti Alloy Under Implantation of Inert Gases Heavy Ions; IOP Conference Series: Materials Science and Engineering; Vol. 110 : Radiation-Thermal Effects and Processes in Inorganic Materials (RTEP2015)
Vydáno: (2016)
Vydáno: (2016)
Microstructure and Wear Resistance of Surface Layer of Copper Modified by N+ Ion High Fluencies Implantation; Advanced Materials Research; Vol. 1085 : Prospects of Fundamental Sciences Development (PFSD-2014)
Vydáno: (2015)
Vydáno: (2015)
Ultra high fluence implantation of aluminum ions into CP–Ti; Journal of Alloys and Compounds; Vol. 793
Vydáno: (2019)
Vydáno: (2019)
Microstructure, Fatigue Strength and Erosion Resistance of MAX-Phase Embedded Ti-Si-B Nanostructured Coatings on Ti-6Al-4V; Surface Modification of Materials by Ion Beams (SMMIB-2019)
Vydáno: (2019)
Vydáno: (2019)
Special Aspects of High-Intensity Low-Energy Ion Implantation; Russian Physics Journal; Vol. 63, iss. 10
Vydáno: (2021)
Vydáno: (2021)
Influence of Implantation on the Grain Size and Structural-Phase State of UFG-Titanium; AIP Conference Proceedings; Vol. 2167 : Advanced Materials with Hierarchical Structure for New Technologies and Reliable Structures 2019 (AMHS'19)
Vydáno: (2019)
Vydáno: (2019)
Modifying physico-chemical properties of biocompatible polymers by ion implantation method; Перспективы развития фундаментальных наук; Т. 2 : Химия
Autor: Korostelev V. O.
Vydáno: (2018)
Autor: Korostelev V. O.
Vydáno: (2018)
Podobné jednotky
-
Surface Modification of E110 Alloy by High-Intensity Low Ion Energy Cr Implantation; Surface Modification of Materials by Ion Beams (SMMIB-2019)
Vydáno: (2019) -
Microstructure of titanium alloy modified by high-intensity implantation of low- and high-energy aluminium ions; Surface and Coatings Technology; Vol. 391
Vydáno: (2020) -
Modification of Microstructure and Properties of Martensitic Stainless Steel by High-Intensity Implantation of Nitrogen Ions; Surface Modification of Materials by Ion Beams (SMMIB-2019)
Vydáno: (2019) -
High-intensity low energy titanium ion implantation into zirconium alloy; Applied Surface Science; Vol. 439
Vydáno: (2018) -
High Intensity low Aluminum Ion Energy Implantation into Titanium; Ion Implantation Technology (IIT 2018)
Vydáno: (2018)