Zobrazeno 1 - 10
of 23
pro vyhledávání: '"V. I. Chelpanov"'
Publikováno v:
Inorganic Materials. 56:1314-1318
We have experimentally demonstrated continuity of hypoeutectoid and pearlite ferrites in aggregates in the microstructure of low-carbon, low-alloy ferrite–pearlite steel. Such ferrite aggregates of various origins have been repeatedly observed alon
Publikováno v:
Inorganic Materials. 53:874-882
Using high-temperature X-ray diffraction, differential scanning calorimetry, and electron microscopy, we have studied the formation of yttrium aluminates and Nd:YAG (YAG) activated garnet nanoparticles during the thermal decomposition of a poorly cry
Autor:
V. S. Zhdanov, V.G. Kornilov, A.A. Volkov, V. I. Chelpanov, Victor D. Selemir, P. I. Golyakov, Alexander E. Dubinov
Publikováno v:
Technical Physics. 54:142-145
The collective acceleration of xenon ions in a plasma-anode vircator is studied. It is shown that the energy of accelerated ions may reach 900 MeV. The image of a bremsstrahlung source on the target suggests effective transport of relativistic electr
Autor:
B. V. Alekhin, N. V. Stepanov, O. A. Shamro, Alexander E. Dubinov, Victor D. Selemir, K. E. Mikheev, V. S. Zhdanov, V. I. Chelpanov, V.G. Kornilov
Publikováno v:
High Temperature. 43:19-30
A method of producing compact long-lived plasma formations (plasmoids) is described. The method is based on the effect of capture of a high-current relativistic electron beam under conditions of significant overcompensation of space charge of the bea
Autor:
B. V. Alekhin, A. E. Dubinov, V. S. Zhdanov, V. G Kornilov, K. E. Mikheev, V. D. Selemir, N. V. Stepanov, V. I. Chelpanov, O. A. Shamro
Publikováno v:
High Temperature. 42:851-857
Autor:
A. A. Khizhnyakov, Alexander S. Boriskin, V. S. Zhdanov, V. V. Borovkov, V.G. Kornilov, S.Yu. Kornilov, E.A. Tsareva, V. I. Chelpanov, Sergey A. Kazakov, Victor D. Selemir, K. I. Almazova, A.V. Ivanovsky, E.P. Volkov, D. A. Tolshmyakov, Vasily A. Demidov, E. V. Shapovalov
Publikováno v:
Technical Physics. 48:920-927
A plasma opening switch fed by a helical magnetic explosion generator is developed. A plasma sheath with an axial length of ≈4 cm and an electron density of ∼1017 cm−3 is produced in the electrode gap of the switch by six coaxial gaseous-plasma
Autor:
V. I. Chelpanov, C. Yu. Kornilov, K. I. Almazova, A. A. Khizhnyakov, Victor D. Selemir, D. A. Tolshmyakov, E.P. Volkov, V.G. Kornilov, V. V. Borovkov
Publikováno v:
Technical Physics. 48:415-420
A plasma injector with pulsed gas filling is investigated experimentally. Interferometric measurements of the formation dynamics of the plasma channel are carried out. Under optimal operating conditions, the injector is capable of producing a plasma
Autor:
V. S. Zhdanov, Victor D. Selemir, V. A. Demidov, V. I. Chelpanov, V.G. Kornilov, E.A. Tsareva, Yu.V. Vlasov, V.F. Bukharov, A. V. Ivanovskii
Publikováno v:
Technical Physics. 46:326-338
The operation mechanism of a microsecond megaampere-current plasma opening switch is considered. The magnetic field penetrates into the plasma via near-electrode diffusion. The increase in the degree of plasma magnetization due to electron heating re
Autor:
N.V. Stepan, V.G. Kornilov, V. I. Chelpanov, A.A. Sidorov, A.I. Pavlovskii, A.L. Babkin, V.D. Selemir
Publikováno v:
Ninth IEEE International Pulsed Power Conference.