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|Title:||Advanced composite alloys for constructional parts of robots|
|Authors:||Issin, D. K.|
Zholdubayeva, Zh. D.
Neshina, Y. G.
Alkina, A. D.
Rahimova, G. M.
|Keywords:||сплавы; детали; роботы; алюминиевые сплавы; композитные материалы; наноразмерные частицы; порошки; расплавы|
|Citation:||Advanced composite alloys for constructional parts of robots / D. K. Issin [et al.] // IOP Conference Series: Materials Science and Engineering. — Bristol : IOP Publishing, 2018. — Vol. 363 : Cognitive Robotics : II International Conference, 22–25 November 2017, Tomsk, Russian Federation : [proceedings]. — [012032, 5 p.].|
|Abstract:||In recent years all over the world special attention has been paid to the development and implementation of nanostructured materials possessing unique properties and opening fascinating prospects for the development of technical progress in various fields of human activities. A special place can be given to the development of service robots, the market of which is actively developing. There is problem associated mainly with the lack of heatstrengthened alloys which consists in low thermal stability of the alloy properties under the conditions of elevated variable temperatures and loads. The article presents studies to assess the effect of composition, the amounts of refractory nanoscale particles and methods for their introduction into the melt on the structure and properties in nanostructured composite aluminum alloys. The powders of metals, alloys, as well as silicon carbide and aluminum oxide were used to produce the nanostructured powder composite materials. As a result of the research, NPCM compositions containing micro-size particles of transition metals that are carriers of nanosized reinforcing particles and initiators of the formation of an intermetallide of endogenous origin in a melt.|
|Appears in Collections:||Материалы конференций|
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|doi.org-10.1088-1757-899X-363-1-012032.pdf||168,08 kB||Adobe PDF||View/Open|
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