Search Results - "Shulov, V. A."
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1
Pulsed electron-beam technology for surface modification of metallic materials
Published in Journal of vacuum science & technology. A, Vacuum, surfaces, and films (01-07-1998)“…This article concerns the foundations of a new technology for surface modification of metallic materials based on the use of original sources of low-energy,…”
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2
Crater formation on the surface of metals and alloys during high power ion beam processing
Published in Nuclear instruments & methods in physics research. Section B, Beam interactions with materials and atoms (01-01-1999)“…The effect of high-power, pulsed ion-beam irradiation and various methods of the preliminary surface treatment on the crater formation process was examined…”
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3
Application of high-current pulsed electron beams for modifying the surface of gas-turbine engine blades
Published in Russian journal of non-ferrous metals (01-05-2016)“…Experimental data on the influence of irradiation by high-current pulsed electron beams (HCPBs) on the physicochemical state of surface layers and operational…”
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4
Formation of Residual Stresses in the Surface Layers of Titanium Alloy Targets Irradiated with High-Current Pulsed Electron Beams
Published in Inorganic materials : applied research (2019)“…X-ray diffraction analysis, optical metallography, and transmission electron microscopy demonstrated that irradiation with high-current pulsed electron beams…”
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5
Texture formation in the surface layer of VT6 alloy targets irradiated by intense pulsed electron beams
Published in Inorganic materials : applied research (2017)“…The texture formed in the surface layer of a recrystallized VT6 titanium alloy irradiated by highcurrent pulsed electron beams (HEBs) in a melting mode is…”
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6
High-power ion beam treatment application for properties modification of refractory alloys
Published in Surface & coatings technology (05-02-1998)“…This paper reviews the basic principles and applications of high-power pulsed ion beam (HPPIB) treatment for modification of turbine engine components service…”
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7
Crater formation on the surface of refractory alloys during high-power ion-beam processing
Published in Surface & coatings technology (05-08-2007)“…The effect of high-power, pulsed ion-beam irradiation and various methods of preliminary surface treatment on crater formation process was examined using Auger…”
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8
Erosion resistance of refractory alloys modified by ion beams
Published in Surface & coatings technology (05-08-2007)“…The objective of the present research is the critical analysis of test results, dedicated to the effect of ion-beam irradiation conditions upon the sand…”
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9
Modification of the properties of aircraft engine compressor blades by uninterrupted and pulsed-ion beams
Published in Surface & coatings technology (03-11-1997)“…The influence of uninterrupted and arc-pulsed ion implantation, high-power ion beam treatment and final annealing regimes on the chemical composition and…”
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10
The effect of crater creation on the fatigue strength and corrosion resistance of steels and titanium alloys irradiated by high-power pulsed ion beams
Published in Surface & coatings technology (01-09-2002)“…The effect of high-power pulsed ion-beam (HPPIB) irradiation and various methods of the surface treatment on the crater creation phenomenon (cratering) was…”
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11
Fatigue strength of metals and alloys modified by ion beams
Published in Surface & coatings technology (2002)“…The objective of the present research is the critical analysis of test results, dedicated to the effect of ion-beam irradiation conditions upon the fatigue…”
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12
Materials processing with intense pulsed ion beams
Published in Journal of Vacuum Science & Technology A: Vacuum, Surfaces, and Films (01-05-1997)“…We review research investigating the application of intense pulsed ion beams (IPIBs) for the surface treatment and coating of materials. The short range…”
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Ion-beam modification of the surface layers of titanium alloys
Published in Metal science and heat treatment (01-08-1990)“…See Met. A., 9102-56-0169…”
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14
Effect of ion-implanted alloying on the heat resistance of nickel and titanium alloys
Published in Metal science and heat treatment (01-10-1989)“…See Met. A., 9005-56-0606…”
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15
Application of high-current pulsed electron beams for the restoration of operational properties of the blades of gas-turbine engines
Published in Russian journal of non-ferrous metals (01-05-2015)“…The experimental data on the influence of irradiation modes by high-current pulsed electron beams (HEBs) on the ablation kinetics of the surface layer of a…”
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16
Synthesis of Ti3Al and TiAl based surface alloys by pulsed electron-beam melting of Al(film)/Ti(substrate) system
Published in Technical physics letters (01-03-2011)“…Phase formation and surface hardening in the 100-nm-thick Al(film)/Ti(substrate) system under conditions of pulsed electron-beam melting (∼15 keV, ∼3 μs, 3–4…”
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17
Structural-phase changes in surface layers of elements made of VT6 titanium alloy under irradiation by high-current pulsed electron beam
Published in Inorganic materials : applied research (01-05-2013)“…Transmission electron microscopy (TEM), optical metallography, and electron probe microanalysis (EPMA) were used to study the chemical composition and…”
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18
Effect of conditions of pulsed electron-beam melting for Al (film)/Ti (substrate) systems on phase formation and properties of Ti-Al surface alloys
Published in Technical physics letters (01-09-2012)“…Findings of comparative investigations are presented for phase formation, characteristics of hardening, tribological properties, and oxidation resistance of…”
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19
Surface doping of VT6 alloy with zirconium by pulsed electron-beam mixing of predeposited multilayer Zr/Ti film
Published in Technical physics letters (01-10-2008)“…We have studied characteristics of the surface doping of VT6 alloy (Ti-6Al-4V) with zirconium, which was effected in order to reduce the concentrations of Al…”
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20
Fatigue strength of metals and alloys modified by ion beams
Published in Surface & coatings technology (09-09-2001)“…The objective of the present research is the critical analysis of test results, dedicated to the effect of ion-beam irradiation conditions upon the fatigue…”
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