New perspectives of additional doping and restructuring of cast metal materials
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...
Main Authors: | , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Belarusian National Technical University
2019-01-01
|
Series: | Litʹë i Metallurgiâ |
Subjects: | |
Online Access: | https://lim.bntu.by/jour/article/view/2431 |
id |
doaj-055a954e26344794a5a1c31ccb88a3dc |
---|---|
record_format |
Article |
spelling |
doaj-055a954e26344794a5a1c31ccb88a3dc2021-07-29T08:34:07ZengBelarusian National Technical UniversityLitʹë i Metallurgiâ1683-60652414-04062019-01-0104343110.21122/1683-6065-2018-4-34-312398New perspectives of additional doping and restructuring of cast metal materialsE. I. Marukovich0S. M. Usherenko1Yu. S. Usherenko2Институт технологии металлов НАН БеларусиBelarusian National Technical UniversityBranch of the BNTU «Institute of improvement of professional skills and staff retraining on new directions of engineering, technology and economy»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.https://lim.bntu.by/jour/article/view/2431. the collision of bunches of microparticles with metalssuper-deep penetrationsthe big energy consumptionsmicroexplosions in metala nuclear fusion of chemical elements |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
E. I. Marukovich S. M. Usherenko Yu. S. Usherenko |
spellingShingle |
E. I. Marukovich S. M. Usherenko Yu. S. Usherenko New perspectives of additional doping and restructuring of cast metal materials Litʹë i Metallurgiâ . the collision of bunches of microparticles with metals super-deep penetrations the big energy consumptions microexplosions in metal a nuclear fusion of chemical elements |
author_facet |
E. I. Marukovich S. M. Usherenko Yu. S. Usherenko |
author_sort |
E. I. Marukovich |
title |
New perspectives of additional doping and restructuring of cast metal materials |
title_short |
New perspectives of additional doping and restructuring of cast metal materials |
title_full |
New perspectives of additional doping and restructuring of cast metal materials |
title_fullStr |
New perspectives of additional doping and restructuring of cast metal materials |
title_full_unstemmed |
New perspectives of additional doping and restructuring of cast metal materials |
title_sort |
new perspectives of additional doping and restructuring of cast metal materials |
publisher |
Belarusian National Technical University |
series |
Litʹë i Metallurgiâ |
issn |
1683-6065 2414-0406 |
publishDate |
2019-01-01 |
description |
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. |
topic |
. the collision of bunches of microparticles with metals super-deep penetrations the big energy consumptions microexplosions in metal a nuclear fusion of chemical elements |
url |
https://lim.bntu.by/jour/article/view/2431 |
work_keys_str_mv |
AT eimarukovich newperspectivesofadditionaldopingandrestructuringofcastmetalmaterials AT smusherenko newperspectivesofadditionaldopingandrestructuringofcastmetalmaterials AT yususherenko newperspectivesofadditionaldopingandrestructuringofcastmetalmaterials |
_version_ |
1721254222703362048 |