New perspectives of additional doping and restructuring of cast metal materials
https://doi.org/10.21122/1683-6065-2018-4-34-31
Abstract
Possibilities of creation of composites with application of a method of super-deep penetration (SDP) are considered. At drifting of metals and alloys in a regime of super-deep penetration powdered particles penetrate to depths into tens and hundreds millimetres. Results are brought, that at driving in a metal lower die (in the enclosed system) powdered particles generate additional energy. The filaments (channels) doped by substance introduced by powders and synthesised materials are besides, shaped. It is shown, that doping in regime SDP is localised in reinforcing zones and occurs at the expense of a heading of a material of microparticles and synthesis in high pressure zones.
About the Authors
E. I. MarukovichBelarus
Mogilev, Belarus, 11, Bialynitskogo-Biruli str.
S. M. Usherenko
Belarus
Minsk, Belarus, 65, Nezavisimosti ave.
Yu. S. Usherenko
Belarus
References
1. Usherenko S. M. Osobennosti vzaimodejstvija potoka mikrochastic s metallami i sozdanie processov ob`emnogo uprochnenija instrumental’nyh materialov. Diss. dokt. tekhn. nauk [Features of the interaction of the flow of microparticles with metals and the creation of processes of volumetric hardening of tool materials. Dr. tech. sci. diss]. 1998, 236 p.
2. Usherenko S. M. Modern notions of the effect of superdeep penetration// Journal of Physics and Themophysics, 2002, Vol. 75, no. 3, pp. 753–770.
3. Usherenko S. M., Koval O. I., Usherenko Yu. S. Estimation of the energy expended for superdeep penetration//. Journal of engineering physics and thermophysics, 2004, Vol. 77, no. 3, pp. 641–646.
4. The physics of superdeep penetration phenomenon. J. Owsik, K. Jach, S. Usherenko and other. Journal of Technical Physics, J. Tech. Phys., 2008, Vol. 49, no. 1, pp. 3–25.
5. Maki K., Takano T., Fujiwara A., Yamori A. Radio-wave emission due to hypervelocity impacts in relation to optical observation and projectile speed, Adv. Space Res. 34(5), 1085 (2004).
6. Fletcher A., Close S. «Particle-in-cell simulations of an RF emission mechanism associated with hypervelocity impact plasmas», Physics of plasmas 24, 053102 (2017).
7. High-Energy Method of Transformation of Casting Metals and Alloys to the Composite Materials / Y. Usherenko, S. Usherenko, J. Yazdani // Key Engineering Materials, Vol. 721, pp. 290–294.
8. Composite Materials for Steel Cutting and Concrete Crushing /Y. Usherenko, S. Ushereno, J. Yazdani // Procedia Engineering 172, 2017, рр. 1198–1203.
9. Usherenko S. M., Usherenko Ju. S., Kiriljuk V. P. Jenergetika processa sverhglubokogo pronikanija [Energy of the process of ultra-deep penetration]. Sbornik nauchnyh trudov, posvjashhennyh 40-letiju kafedry «Materialovedenie v mashinostroenii» «Perspektivy razvitija poverhnostnogo i ob`emnogo uprochnenija splavov» [Collection of scientific papers devoted to the 40th anniversary of the department «Materials science in mechanical engineering» «Prospects for the development of surface and bulk hardening of alloys»]. Minsk, BNTU Publ., 2004, pp. 37–47.
10. Sobolev V. V., Usherenko S. M. Shock-wave initiation of nuclear transmutation of chemical elements// J. Phys, IY France, 2006, Vol. 134 134, P. 977–982.
Review
For citations:
Marukovich E.I., Usherenko S.M., Usherenko Yu.S. New perspectives of additional doping and restructuring of cast metal materials. Litiyo i Metallurgiya (FOUNDRY PRODUCTION AND METALLURGY). 2018;(4):34-31. (In Russ.) https://doi.org/10.21122/1683-6065-2018-4-34-31