Zobrazeno 1 - 9
of 9
pro vyhledávání: '"Yu. Kharlamov"'
Publikováno v:
Bulletin of Belgorod State Technological University named after. V. G. Shukhov. 8:121-131
The assessment of the physical deterioration of buildings and structures is an expensive, lengthy and to some extent subjective process. The process of making a decision on the need for repair, reconstruction or demolition of a building is stretched
Autor:
M. Yu. Kharlamov, Vladimir Jordan, P Yu Gulyaev, O. I. Demyanov, A. V. Dolmatov, I. V. Krivtsun, V. M. Korzhyk, I. P. Gulyaev
Publikováno v:
Journal of Thermal Spray Technology. 24:1566-1573
In the present paper, we report on the results of an experimental study of heat- and mass-transfer processes in a Plazer 30-PL-W plasma-jet facility used for arc-plasma wire spraying. Using an original optical diagnostic system, we have studied melti
Publikováno v:
Yugra State University Bulletin. 11:33-41
Results of theoretical researches are generalized and the scheme of complex mathematical modeling of plasma-arc spraying processes is proposed. Features of modeling of its separate stages are considered.
Autor:
M. Yu. Kharlamov, P Yu Gulyaev, A.I. Demianov, V.N. Korzhik, A. V. Dolmatov, I. P. Gulyaev, I. V. Krivtsun, V I Iordan
Publikováno v:
The Paton Welding Journal. 2015:36-41
Publikováno v:
Journal of Thermal Spray Technology. 24:659-670
The mathematical model for the process of plasma-arc wire spraying is proposed, which describes behavior of molten metal droplets in the plasma jet, allowing for the processes of their deformation and gas-dynamic breakup. Numerical analysis of the pr
Publikováno v:
Journal of Thermal Spray Technology. 23:420-430
The dynamic mathematical model is suggested, describing the jet flow of a molten wire material and formation of droplets, i.e. spraying particles, under conditions of plasma-arc wire spraying. Numerical analysis of the processes of formation and deta
Publikováno v:
IOP Conference Series: Materials Science and Engineering. 110:012057
For the first time, a phenomenon of high-velocity outbursts ejected from the surface of liquid tungsten microparticles in a flow of argon-air plasma under atmospheric pressure was observed. As tungsten particles sized 50 to 200 μm moved in a plasma
Publikováno v:
IOP Conference Series: Materials Science & Engineering; 2016, Vol. 110 Issue 1, p1-1, 1p
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