The Structure and Mechanical Characteristics of the Hypereutectic Silumin (Al-22-24 wt.% Si), Irradiated by a Pulsed Electron Beam; Energy Fluxes and Radiation Effects (EFRE-2020 online)
| Parent link: | Energy Fluxes and Radiation Effects (EFRE-2020 online).— 2020.— [P. 460-463] |
|---|---|
| Beste egile batzuk: | Petrikova E. Elizaveta, Ivanov Yu. F. Yuriy Fedorovich, Rygina M. Maria, Prudnicov A. Alexander, Teresov A. Anton, Vorobjev (Vorobyov) M. S. Maksim Sergeevich |
| Gaia: | Title screen Irradiation ("SOLO" setup, High-Current Electronics Institute SB RAS) of hypereutectic Al- (22-24) Si composition silumin samples with an intense pulsed electron beam was carried out. The formation of a multiphase submicron nanocrystalline structure is revealed. It was found that after modification, the hardness of silumin surface layer increases by more than 2 times. Tensile tests were carried out for flat proportional silumin samples in the initial and after irradiation states. An increase in the ductility of irradiated samples was demonstrated. AM_Agreement |
| Hizkuntza: | ingelesa |
| Argitaratua: |
2020
|
| Gaiak: | |
| Sarrera elektronikoa: | https://doi.org/10.1109/EFRE47760.2020.9241979 |
| Formatua: | Baliabide elektronikoa Liburu kapitulua |
| KOHA link: | https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=663043 |
Antzeko izenburuak
Mechanical Properties and Structure of the Hypereutectic Silumin Treated by an Electron Beam; Key Engineering Materials; Vol. 743 : High Technology: Research and Applications (HTRA 2016)
Argitaratua: (2017)
Argitaratua: (2017)
Структурно-фазовое состояние силумина заэвтектического состава, облученного импульсным электронным пучком; Физико-химические аспекты изучения кластеров, наноструктур и наноматериалов; № 12
Argitaratua: (2020)
Argitaratua: (2020)
Modification of Hypereutectic Silumin by Ion-Electron-Plasma Method; Key Engineering Materials; Vol. 769 : High Technology: Research and Applications (HTRA 2017)
Argitaratua: (2018)
Argitaratua: (2018)
Treatment of silumin surface by a modulated submillisecond electron beam; High Temperature Material Processes: An International Quarterly of High-Technology Plasma Processes; Vol. 26, iss. 4
Argitaratua: (2022)
Argitaratua: (2022)
Deformation of samples of silumin AK5M2 doped with titanium by irradiation of the film/substrate system with a pulsed electron beam; Materials in External Fields ((ISMEF 2022) )
Argitaratua: (2022)
Argitaratua: (2022)
The influence of ion irradiation on the properties of ceramic silicon carbide; Energy Fluxes and Radiation Effects (EFRE-2016)
Argitaratua: (2016)
Argitaratua: (2016)
Structure and Properties of Silumin Surface after Vacuum Arc Plasma-Assisted Deposition of Coatings Irradiated by Low Energy High Current Pulsed Electron Beam; Russian Physics Journal; Vol. 62, iss. 11
Argitaratua: (2020)
Argitaratua: (2020)
Свойства и структура заэвтектического силумина, обработанного интенсивным импульсным электронным пучком; Высокие технологии в современной науке и технике (ВТСНТ-2016)
nork: Рыгина М. Е.
Argitaratua: (2016)
nork: Рыгина М. Е.
Argitaratua: (2016)
Нанесение покрытия zrticu на заэвтектический силумин (20-22 вес.% Si) ионно-плазменным методом; Перспективы развития фундаментальных наук; Т. 1 : Физика
nork: Рыгина М. Е.
Argitaratua: (2017)
nork: Рыгина М. Е.
Argitaratua: (2017)
Структура, формирующаяся при обработке поверхности заэвтектического силумина высокоинтенсивным электронным пучком; Материаловедение, технологии и экология в третьем тысячелетии
Argitaratua: (2016)
Argitaratua: (2016)
Структура и свойства заэвтектического силумина, подвергнутого легированию при обработке системы пленка/подложка интенсивным импульсным электронным пучком; Роль технических наук в развитии общества
Argitaratua: (2017)
Argitaratua: (2017)
Experimental Study and Mathematical Modeling of the Processes Occurring in ZrN Coating/Silumin Substrate Systems under Pulsed Electron Beam Irradiation; Coatings; Vol. 11, iss. 12
Argitaratua: (2021)
Argitaratua: (2021)
Effect on mechanics properties and microstructure of molybdenum by high intensity pulsed ion beam irradiation; Surface and Coatings Technology; Vol. 384
Argitaratua: (2020)
Argitaratua: (2020)
A method of real-time monitoring beam output stability of intense pulsed ion beam; Acta Physica Sinica; Vol. 72, iss. 17
Argitaratua: (2023)
Argitaratua: (2023)
Surface microstructure and phase structure of zirconia ceramics under intense pulsed ion beam irradiation; Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms; Vol. 542
Argitaratua: (2023)
Argitaratua: (2023)
Shielding of energy deposition by ablation of plastics under intense pulsed ion beam irradiation; Vacuum; Vol. 174
Argitaratua: (2020)
Argitaratua: (2020)
Effect on microstructure of Fe80B13Si7 metallic glass irradiated by high intensity pulsed ion beam and He ions; Surface and Coatings Technology; Vol. 449
Argitaratua: (2022)
Argitaratua: (2022)
Changing Mechanisms of High-Temperature Oxidation of Zr-1%Nb Alloy in Air and Steam by Surface Modification with Charged Particles; Journal of Materials Engineering and Performance; Vol. 34, iss. 13
Argitaratua: (2025)
Argitaratua: (2025)
Effects on structure and properties of Zr55Al 10Cu30Ni5 metallic glass irradiated by high intensity pulsed ion beam; Applied Surface Science; Vol. 313
Argitaratua: (2014)
Argitaratua: (2014)
Influence of the high-power ion-beam irradiation of a hydroxyapatite target on the properties of formed calcium phosphate coatings; Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques; Vol. 7, iss. 5
nork: Bleykher (Bleicher) G. A. Galina Alekseevna
Argitaratua: (2013)
nork: Bleykher (Bleicher) G. A. Galina Alekseevna
Argitaratua: (2013)
Focusing of intense pulsed ion beam by magnetically insulated diode for material research; Surface and Coatings Technology; Vol. 384
Argitaratua: (2020)
Argitaratua: (2020)
Effect of Preliminary Irradiation of 321 Steel Substrates with High-Intense Pulsed Ion Beams on Scratch Test Results of Subsequently Deposited AlN Coatings; Coatings; Vol. 11, iss. 10
Argitaratua: (2021)
Argitaratua: (2021)
DIN 1.7035 Steel Modification with High Intensity Nitrogen Ion Implantation; Russian Physics Journal; Vol. 61, iss. 2
Argitaratua: (2018)
Argitaratua: (2018)
Influence of magnetic field of a radial focusing external magnetically insulated diode on emission behavior of intense pulsed ion beam; Nuclear Instruments and Methods in Physics Research B; Vol. 537
Argitaratua: (2023)
Argitaratua: (2023)
Study of phase transformation and surface microstructure of alumina ceramic under irradiation of intense pulsed ion beam; Vacuum; Vol. 187
Argitaratua: (2021)
Argitaratua: (2021)
Surface Modification of ZrO2-3Y2O3 with Highintensity Pulsed N2+ Ion Beams; Russian Physics Journal; Vol. 63, iss. 1
Argitaratua: (2020)
Argitaratua: (2020)
The Influence of Metal Surface Topography on Ablation Behavior During Intense Pulsed Ion Beam Irradiation; Surface Modification of Materials by Ion Beams (SMMIB-2019)
Argitaratua: (2019)
Argitaratua: (2019)
Study on the damage of Zr63.5Cu23Al9Fe4.5 amorphous and crystalline alloys irradiated by high intensity pulsed ion beam; Journal of Alloys and Compounds; Vol. 923
Argitaratua: (2022)
Argitaratua: (2022)
Ablation induced by intense pulsed ion beam and its effects on energy deposition on solid target; Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms; Vol. 461
Argitaratua: (2019)
Argitaratua: (2019)
Study on the damage of Fe80B13Si7 alloy with different structure by high-intensity pulsed ion beam irradiation; Surface and Coatings Technology; Vol. 395
Argitaratua: (2020)
Argitaratua: (2020)
Study of the Regularities of Low- and Super-Low-Energy High-intensity Metal Ion Beams Formation; Energy Fluxes and Radiation Effects (EFRE-2020 online)
Argitaratua: (2020)
Argitaratua: (2020)
The ablation of plastics by intense pulsed ion beam; Surface and Coatings Technology; Vol. 384
Argitaratua: (2020)
Argitaratua: (2020)
Thermal field induced by intense pulsed ion beam and its possible application in thermal diffusivity measurement; Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms; Vol. 409
Argitaratua: (2017)
Argitaratua: (2017)
Grain-boundary diffusion of titanium in Zr-1 wt.%Nb alloy under irradiation with a pulsed electron beam; Russian Physics Journal; Vol. 66, No. 11
Argitaratua: (2024)
Argitaratua: (2024)
Plasma-immersion formation of high-intensity gaseous ion beams; Vacuum; Vol. 165
Argitaratua: (2019)
Argitaratua: (2019)
Formation of nanoscale carbon structures in the surface layer of metals under the impact of high intensity ion beam; Applied Surface Science; Vol. 310
Argitaratua: (2014)
Argitaratua: (2014)
Low energy, high intensity metal ion implantation method for deep dopant containing layer formation; Surface and Coatings Technology; Vol. 355
Argitaratua: (2018)
Argitaratua: (2018)
Study on thermal shock irradiation resistance of CoCrFeMnNi high entropy alloy by high intensity pulsed ion beam; Journal of Nuclear Materials; Vol. 559
Argitaratua: (2022)
Argitaratua: (2022)
Dose Depth Distribution of Pulsed Electron Beam with Wide Electron Kinetic Energy Spectrum for Polyethylene Target; Energy Fluxes and Radiation Effects (EFRE-2020 online)
nork: Serebrennikov M. A. Maksim Anatolevich
Argitaratua: (2020)
nork: Serebrennikov M. A. Maksim Anatolevich
Argitaratua: (2020)
Metallization of the surface of B[4]C ceramics by combined electron-ion-plasma method; Energy Fluxes and Radiation Effects (EFRE-2016)
nork: Bikbaeva Z. G. Zulfa Gadilzanovna
Argitaratua: (2016)
nork: Bikbaeva Z. G. Zulfa Gadilzanovna
Argitaratua: (2016)
Antzeko izenburuak
-
Mechanical Properties and Structure of the Hypereutectic Silumin Treated by an Electron Beam; Key Engineering Materials; Vol. 743 : High Technology: Research and Applications (HTRA 2016)
Argitaratua: (2017) -
Структурно-фазовое состояние силумина заэвтектического состава, облученного импульсным электронным пучком; Физико-химические аспекты изучения кластеров, наноструктур и наноматериалов; № 12
Argitaratua: (2020) -
Modification of Hypereutectic Silumin by Ion-Electron-Plasma Method; Key Engineering Materials; Vol. 769 : High Technology: Research and Applications (HTRA 2017)
Argitaratua: (2018) -
Treatment of silumin surface by a modulated submillisecond electron beam; High Temperature Material Processes: An International Quarterly of High-Technology Plasma Processes; Vol. 26, iss. 4
Argitaratua: (2022) -
Deformation of samples of silumin AK5M2 doped with titanium by irradiation of the film/substrate system with a pulsed electron beam; Materials in External Fields ((ISMEF 2022) )
Argitaratua: (2022)