High intensity plasma immersion metal ion beam source for surface modification of materials; Energy Fluxes and Radiation Effects (EFRE-2016)
| Parent link: | Energy Fluxes and Radiation Effects (EFRE-2016).— 2016.— [P. 178] |
|---|---|
| Autor Corporativo: | Национальный исследовательский Томский политехнический университет (ТПУ) Физико-технический институт (ФТИ) Лаборатория № 22 |
| Outros autores: | Ryabchikov A. I. Aleksandr Ilyich, Ananin P. S. Petr Semenovich, Dektyarev S. V. Sergey Valentinovich, Shevelev A. E. Aleksey Eduardovich, Sivin D. O. Denis Olegovich |
| Summary: | Title screen |
| Idioma: | inglés |
| Publicado: |
2016
|
| Subjects: | |
| Acceso en liña: | http://earchive.tpu.ru/handle/11683/37223 |
| Formato: | Electrónico Capítulo de libro |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=622380 |
Títulos similares
Joint influence of steered vacuum arc and negative repetitively pulsed bias on titanium macroparticles suppression; Energy Fluxes and Radiation Effects (EFRE-2016)
Publicado: (2016)
Publicado: (2016)
Study of the Regularities of Low- and Super-Low-Energy High-intensity Metal Ion Beams Formation; Energy Fluxes and Radiation Effects (EFRE-2020 online)
Publicado: (2020)
Publicado: (2020)
Plasma-immersion formation of high-intensity gaseous ion beams; Vacuum; Vol. 165
Publicado: (2019)
Publicado: (2019)
Accumulation of macroparticles on a substrate in vacuum arc titanium plasma; Известия вузов. Физика; Т. 57, № 12, ч. 3
Publicado: (2014)
Publicado: (2014)
High-intensity ion beams with submillisecond duration for synergistic of ion implantation and energy impact on the surface; Energy Fluxes and Radiation Effects (EFRE); International Conference on Modification of Materials with Particle Beams and Plasma Flows (16th CMM)
Publicado: (2022)
Publicado: (2022)
Influence of repetitively-pulsed plasma immersion low energy on implantation to tin coating properties formation; Energy Fluxes and Radiation Effects (EFRE-2016)
Publicado: (2016)
Publicado: (2016)
Special Aspects of High-Intensity Low-Energy Ion Implantation; Russian Physics Journal; Vol. 63, iss. 10
Publicado: (2021)
Publicado: (2021)
Investigation of Regularities of High-Intensity Ion Implantation in Combination with Subsequent Exposure to the Surface of a High-Current Electron Beam; Energy Fluxes and Radiation Effects (EFRE-2020 online)
Publicado: (2020)
Publicado: (2020)
Formation of High-Power Pulsed Titanium Ion Beams of Submillisecond Duration from Vacuum Arc Plasma; Russian Physics Journal; Vol. 65, iss. 11
Publicado: (2023)
Publicado: (2023)
Formation, Focusing and Transport of Highintensity, Low-Energy Metal Ion Beams; Russian Physics Journal; Vol. 63, iss. 10
Publicado: (2021)
Publicado: (2021)
DIN 1.7035 Steel Modification with High Intensity Nitrogen Ion Implantation; Russian Physics Journal; Vol. 61, iss. 2
Publicado: (2018)
Publicado: (2018)
Simulation and experimental studies on the formation of high-power titanium ion beams for the synergy of ion implantation and energy impact on the surface; Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms; Vol. 533
Publicado: (2022)
Publicado: (2022)
Modification of AISI 420 Steel under Repetitively Pulsed Energetic Impact on the Surface of a Powerful Ion Beam of Submillisecond Duration; Russian Physics Journal; Vol. 67, iss. 5
por: Merzlyakov I. Ivan
Publicado: (2024)
por: Merzlyakov I. Ivan
Publicado: (2024)
Investigation of the Features of High-Intensity Implantation of Nitrogen Ions into Titanium; Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques; Vol. 17, s. 1
Publicado: (2023)
Publicado: (2023)
Estimation of the Al Metal-Puff Density Profile on the Generator GIT-12; Energy Fluxes and Radiation Effects (EFRE-2020 online)
Publicado: (2020)
Publicado: (2020)
Comparative Analysis of the Rayleigh-Taylor Instability Suppression During Compression of Metallic Gas-Puff Z Pinch at the MIG and GIT-12 Facilities; Energy Fluxes and Radiation Effects (EFRE-2020 online)
Publicado: (2020)
Publicado: (2020)
“Zippering” Effect at Aluminum Metal-Puff Liner Implosions on the GIT-12 Pulse Power Generator; Energy Fluxes and Radiation Effects (EFRE-2020 online)
Publicado: (2020)
Publicado: (2020)
Regularities of Plasma-Immersion Formation of Long-Pulse High-Intensity Titanium Ion Beams; Russian Physics Journal; Vol. 61, iss. 7
Publicado: (2018)
Publicado: (2018)
Formation and Dynamics of the Current Sheath in the Plasma Shell of a Z-Pinch in the Microsecond Implosion Regime; Energy Fluxes and Radiation Effects (EFRE-2020 online)
Publicado: (2020)
Publicado: (2020)
Influence of Repetitively Pulsed Negative Bias Parameters on Macroparticle Surface Density; Journal of Industrial Pollution Control; Vol. 32, iss. 2
Publicado: (2016)
Publicado: (2016)
Electrical Explosion of Flat Conductors in Megagauss Magnetic Fields; Energy Fluxes and Radiation Effects (EFRE-2020 online)
Publicado: (2020)
Publicado: (2020)
Formation of hardened layer in WC-TiC-Co alloy by treatment of high intensity pulse ion beam and compression plasma flows; Surface and Coatings Technology; Vol. 204, iss. 12-13
Publicado: (2010)
Publicado: (2010)
Study of the influence of a powerful pulsed ion beam on titanium deeply-doped with aluminum; Vacuum; Vol. 217
Publicado: (2023)
Publicado: (2023)
Submillisecond Chromium Ion Beams with High-Pulse Power Density; Russian Physics Journal; Vol. 67, iss. 9
por: Gurulev A. V. Aleksandr Valerjevich
Publicado: (2024)
por: Gurulev A. V. Aleksandr Valerjevich
Publicado: (2024)
Repetitive source of pulsed electron beams; Известия вузов. Физика; Т. 55, № 10-3
Publicado: (2012)
Publicado: (2012)
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)
Publicado: (2023)
Publicado: (2023)
High-Current Pulsed Induction Plasma Source for Generation of High Intensity Ion Beams of Various Gases; Surface Modification of Materials by Ion Beams (SMMIB-2019)
Publicado: (2019)
Publicado: (2019)
Effect on microstructure of Fe80B13Si7 metallic glass irradiated by high intensity pulsed ion beam and He ions; Surface and Coatings Technology; Vol. 449
Publicado: (2022)
Publicado: (2022)
Hard Metal Waste Recycling by the Atmospheric Direct Current Arc Plasma; Energy Fluxes and Radiation Effects (EFRE-2020 online)
por: Kokorina A. I. Aleksandra Ivanovna
Publicado: (2020)
por: Kokorina A. I. Aleksandra Ivanovna
Publicado: (2020)
High-intensity pulsed ion beam focusing by its own space charge; Laser and Particle Beams; Vol. 36, iss. 4
Publicado: (2018)
Publicado: (2018)
Supersonic Flow of Vacuum Arc Plasma in a Magnetic Field; IEEE Transactions on Plasma Science; Vol. 49, iss. 9
Publicado: (2021)
Publicado: (2021)
Craters on the Surface Metal After HPIB of Carbon Ions; Surface Modification of Materials by Ion Beams (SMMIB-2019)
por: Potemkin G. V. Gely Valerjyanovich
Publicado: (2019)
por: Potemkin G. V. Gely Valerjyanovich
Publicado: (2019)
High-power ion beam sources for industrial application; Surface and Coatings Technology; Vol. 96, iss. 1
Publicado: (1997)
Publicado: (1997)
Formation of Pulsed-Periodic Beam of Metal Ions of Submillisecond Duration with High Power Density; Instruments and Experimental Techniques; Vol. 68, iss. 1
por: Ryabchikov A. I. Aleksandr Ilyich
Publicado: (2025)
por: Ryabchikov A. I. Aleksandr Ilyich
Publicado: (2025)
Structure and phase composition of tungsten alloys modified by compression plasma flows and high-intense pulsed ion beam impacts; Applied Surface Science; Vol. 491
Publicado: (2019)
Publicado: (2019)
A method of real-time monitoring beam output stability of intense pulsed ion beam; Acta Physica Sinica; Vol. 72, iss. 17
Publicado: (2023)
Publicado: (2023)
Experimental demonstration of a single capillary, water-activated cathode for a sub-microsecond electron accelerator; Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment; Vol. 943
Publicado: (2019)
Publicado: (2019)
The Influence of Metal Surface Topography on Ablation Behavior During Intense Pulsed Ion Beam Irradiation; Surface Modification of Materials by Ion Beams (SMMIB-2019)
Publicado: (2019)
Publicado: (2019)
Investigation of High-Intensity Implantation of Titanium Ions into Silicon under Conditions of Beam Energy Impact on the Surface; Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques; Vol. 18, iss. 5
Publicado: (2024)
Publicado: (2024)
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
Publicado: (2024)
Publicado: (2024)
Títulos similares
-
Joint influence of steered vacuum arc and negative repetitively pulsed bias on titanium macroparticles suppression; Energy Fluxes and Radiation Effects (EFRE-2016)
Publicado: (2016) -
Study of the Regularities of Low- and Super-Low-Energy High-intensity Metal Ion Beams Formation; Energy Fluxes and Radiation Effects (EFRE-2020 online)
Publicado: (2020) -
Plasma-immersion formation of high-intensity gaseous ion beams; Vacuum; Vol. 165
Publicado: (2019) -
Accumulation of macroparticles on a substrate in vacuum arc titanium plasma; Известия вузов. Физика; Т. 57, № 12, ч. 3
Publicado: (2014) -
High-intensity ion beams with submillisecond duration for synergistic of ion implantation and energy impact on the surface; Energy Fluxes and Radiation Effects (EFRE); International Conference on Modification of Materials with Particle Beams and Plasma Flows (16th CMM)
Publicado: (2022)