

TO PHYSICAL MODEL OF THE VACANCY CLUSTER TUBES FORMATION AND METAL PROPERTIES CHANGES AFTER DYNAMIC CENTRIFUGAL CASTING
https://doi.org/10.15518/isjaee.2016.15-18.096-103
Abstract
The experimental results on crystallization of Pb in dynamic centrifugal casting apparatus of a new type, with a rotor speed 3000 rev/min have considered. In the crystallized Pb, vacancy clusters with an average tube diameter 39 nm have revealed by scanning electron microscopy (SEM). After the dynamic centrifugal casting process, two Pb melting temperatures have been recorded by DSC method. A remarkable enhancement of the mechanical properties of recrystallized Pb have established by dynamic mechanical analysis (DMA). The paper is devoted to the physical model of the vacancy clusters conversion to nanopipes and possible change of physical properties of metals after dynamic centrifugal casting at speeds of the order 3000 rev/min.
About the Authors
E. M. SolovyovRussian Federation
Evgenij M. Soloviev: Ph.D., Major Constructor
V. I. Novikov
Russian Federation
Victor I. Novikov: Ph.D. (engineering), Head of Nanotechnology Department
B. V. Spitsyn
Russian Federation
Boris V. Spitsyn: D.Sc. (chemistry), Major Researcher
M. R. Kiselev
Russian Federation
Mikhail R. Kiselev: Ph.D. (chemistry), Senior Researcher
V. A. Sorokin
Russian Federation
Boris A. Sorokin: Ph.D. (mathematics), Head of Department
A. V. Kvachakidze
Russian Federation
Anatolj V. Kvachakidze: Head of Department
References
1. Novikov V.I., Lapovok V.N., Svirida S.V., et al. Obrazovanie neravnovesnyh vakansij pri rekristallizacii ul’tradispersnogo poroška Ni. FTT, 1983, vol. 25, no. 6, pp. 1846–1848 (in Russ.).
2. Novikov. V.I., Gryaznov V.G., Trusov L.I., et al. Razmernyj èffekt rekristallizacii. Poverhnost’. Fizika, himiâ, mehanika, 1985, no. 5, pp. 134–139 (in Russ.).
3. Trusov L.I., Novikov V.I., Gryaznov V.G., et al. Svojstva i primenenie dispersnyh poroškov. Kiev: Naukova dumka Publ., 1986, pp. 98–114 (in Russ.).
4. Novikov V.I., Trusov L.I., Gryaznov V.G. Tverdofaznye prevraŝeniâ, iniciirovannye migriruûŝimi granicami. Sb. Rost kristallov. Moscow: Nauka Publ., 1988, vol. 17, pp. 68–69 (in Russ.).
5. Novikov V.I., Lapovok V.N., Svirida S.V., et al. Obrazovanie neravnovesnyh vakansij v ul’tradispersnom poroške nikelâ pri plastičeskom tečenii pod davleniem. Fizika metallov I metallovedenie, 1984, vol. 57, iss. 4, pp. 718–721 (in Russ.).
6. Novikov V.I., Svirida S.V., Trusov L.I., et al. Aktivaciâ processov diffuzii i fazovyh prevraŝenij v ul’tradispersnyh sredah pri plastičeskoj deformacii. Metallofizika, 1984, vol. 6, no. 3, pp.114–115 (in Russ.).
Review
For citations:
Solovyov E.M., Novikov V.I., Spitsyn B.V., Kiselev M.R., Sorokin V.A., Kvachakidze A.V. TO PHYSICAL MODEL OF THE VACANCY CLUSTER TUBES FORMATION AND METAL PROPERTIES CHANGES AFTER DYNAMIC CENTRIFUGAL CASTING. Alternative Energy and Ecology (ISJAEE). 2016;(15-18):96-103. (In Russ.) https://doi.org/10.15518/isjaee.2016.15-18.096-103