Подписаться
B. A. Timerkaev
B. A. Timerkaev
Казанский национальный исследовательский технический университет им. А.Н.Туполева (КНИТУ-КАИ)
Подтвержден адрес электронной почты в домене kai.ru
Название
Процитировано
Процитировано
Год
Carbon nanotubes formation in the decomposition of heavy hydrocarbons creeping along the surface of the glow discharge
BA Timerkaev, AO Sofronitskiy, AA Andreeva
Journal of Physics: Conference Series 669 (1), 012062, 2016
412016
Генераторы неравновесной газоразрядной плазмы
ГЮ Даутов, БА Тимеркаев
Казань: Изд-во АН РТ, 1996
361996
Longitudinal distribution of electrical parameters in normal glow discharge
BA Timerkaev, MM Ahmetov, BR Zalyaliev, OA Petrova, DI Israfilov
Jornal of Phisics: Conference Series 567, 012036, 2014
352014
Germanium catalyst for plasma-chemical synthesis of diamonds
BA Timerkaev, AA Kaleeva, DB Timerkaeva, AI Saifutdinov
High Energy Chemistry 53, 390-395, 2019
342019
Numerical simulation of temperature fields in a direct-current plasma torch
AI Saifutdinov, BA Timerkaev, AR Ibragimov
Technical Physics Letters 44, 164-166, 2018
312018
Glow discharge in a transverse supersonic gas flow at low pressures
BA Timerkaev, BR Zalyaliev
High Temperature 52 (4), 471-474, 2014
302014
Features of transient processes in DC microdischarges in molecular gases: From a glow discharge to an arc discharge with a unfree or free cathode regime
AI Saifutdinov, BA Timerkaev, AA Saifutdinov
JETP Letters 112, 405-412, 2020
292020
Numerical study of the voltage waveform effect on the spatiotemporal characteristics of a dielectric barrier microdischarge in argon
AI Saifutdinov, AA Saifutdinova, BA Timerkaev
Plasma Physics Reports 44, 359-368, 2018
292018
Drift model of a glow discharge with account for the nonlocal value of the electric field strength in the ionization source
AI Saifutdinov, BA Timerkaev
Journal of Engineering Physics and Thermophysics 85 (5), 1202-1208, 2012
292012
Creation of silicon nanostructures in electric arc discharge
BA Timerkaev, BR Shakirov, DB Timerkaeva
High Energy Chemistry 53, 162-166, 2019
282019
Control of the glow discharge parameters at low pressures by means of a transverse supersonic gas flow
AI Saifutdinov, BA Timerkaev, BR Zalyaliev
High Temperature 54, 632-638, 2016
282016
Control of glow discharge parameters using transverse supersonic gas flow-numerical experiment
AI Saifutdinov, BA Timerkaev, BR Zalyaliev
Journal of Physics: Conference Series 567 (1), 012031, 2014
282014
Effect of acoustic flows on the structure of a constricted glow discharge in argon
AI Saifutdinov, SA Fadeev, AA Saifutdinova, NF Kashapov
JETP letters 102, 637-642, 2015
272015
Glow discharge characteristics in transverse supersonic air flow
BA Timerkaev, BR Zalyaliev, AI Saifutdinov
Journal of Physics: Conference Series 567 (1), 012032, 2014
272014
Plasma-Chemical Decomposition of Hydrocarbons on the Basis of the Micro-Arc Discharge with Disc Electrodes Rotating in the Bulk of Raw Materials
AA Saifutdinova, AO Sofronitskiy, BA Timerkaev, AI Saifutdinov
Russian Physics Journal 62, 2132-2136, 2020
262020
Growing of carbon nanotubes from hydrocarbons in an arc plasma
BA Timerkaev, GR Ganieva, AA Kaleeva, ZK Israfilov, AO Sofronitskii
Journal of Engineering Physics and Thermophysics 92, 1248-1252, 2019
242019
Разложение тяжелых углеводородов в утопленной дуге
ГР Ганиева, ИГ Галеев, НК Гисматуллин, ДИ Зиганшин, БА Тимеркаев
Вестник Казанского государственного технического университета им. АН …, 2012
242012
Study of gas discharge with a liquid cathode at maximum thermal load to the cathode
GK Tazmeev, BA Timerkaev, KK Tazmeev, IM Arslanov, BK Tazmeev, ...
Journal of Physics: Conference Series 789 (1), 012060, 2017
232017
Electric microdischarges in liquids and prospects of their use in plasma chemistry
GR Ganieva, DI Ziganshin, MM Aukhadeev, BA Timerkaev
Journal of Engineering Physics and Thermophysics 87 (3), 699-704, 2014
232014
Technology of growing silicon nanotubes
BA Timerkaev, AA Andreeva
Journal of Physics: Conference Series 1058 (1), 012071, 2018
222018
В данный момент система не может выполнить эту операцию. Повторите попытку позднее.
Статьи 1–20