Home / Publications / Numerical simulation of a new mechanochemical method for the formation of amorphous solids and nanocomposites

Numerical simulation of a new mechanochemical method for the formation of amorphous solids and nanocomposites

9
Share
Cite this
GOST
 | 
Cite this
GOST Copy
Urakaev F. K. Numerical simulation of a new mechanochemical method for the formation of amorphous solids and nanocomposites // Mendeleev Communications. 2005. Vol. 15. No. 3. pp. 106-111.
GOST all authors (up to 50) Copy
Urakaev F. K. Numerical simulation of a new mechanochemical method for the formation of amorphous solids and nanocomposites // Mendeleev Communications. 2005. Vol. 15. No. 3. pp. 106-111.
RIS
 | 
Cite this
RIS Copy
TY - JOUR
DO - 10.1070/MC2005v015n03ABEH001956
UR - https://mendcomm.colab.ws/publications/10.1070/MC2005v015n03ABEH001956
TI - Numerical simulation of a new mechanochemical method for the formation of amorphous solids and nanocomposites
T2 - Mendeleev Communications
AU - Urakaev, Farit Khisamutdinovich
PY - 2005
DA - 2005/05/04
PB - Mendeleev Communications
SP - 106-111
IS - 3
VL - 15
ER -
BibTex
 | 
Cite this
BibTex (up to 50 authors) Copy
@article{2005_Urakaev,
author = {Farit Khisamutdinovich Urakaev},
title = {Numerical simulation of a new mechanochemical method for the formation of amorphous solids and nanocomposites},
journal = {Mendeleev Communications},
year = {2005},
volume = {15},
publisher = {Mendeleev Communications},
month = {May},
url = {https://mendcomm.colab.ws/publications/10.1070/MC2005v015n03ABEH001956},
number = {3},
pages = {106--111},
doi = {10.1070/MC2005v015n03ABEH001956}
}
MLA
Cite this
MLA Copy
Urakaev, Farit Khisamutdinovich. “Numerical simulation of a new mechanochemical method for the formation of amorphous solids and nanocomposites.” Mendeleev Communications, vol. 15, no. 3, May. 2005, pp. 106-111. https://mendcomm.colab.ws/publications/10.1070/MC2005v015n03ABEH001956.

Abstract

Numerical simulation of the mechanism of amorphous sulfur formation and the chemical interaction of sulfur with abrasives and steel material of milling tools in an AGO-2 mill is carried out.

References

3.
A mathematical analysis of milling mechanics in a planetary ball mill
Chattopadhyay P.P., Manna I., Talapatra S., Pabi S.K.
Materials Chemistry and Physics, 2001
4.
Effects of rotational direction and rotation-to-revolution speed ratio in planetary ball milling
Mio H., Kano J., Saito F., Kaneko K.
Materials Science & Engineering A: Structural Materials: Properties, Microstructure and Processing, 2002
5.
Mechanical alloying and milling
Suryanarayana C.
Progress in Materials Science, 2001
6.
Self-sustaining reactions induced by ball milling
7.
10.1070/MC2005v015n03ABEH001956_bib7
Kulebakin
Aktivatsiya vskrytiya mineral’nogo syr’ya, 1999
8.
10.1070/MC2005v015n03ABEH001956_bib8
Balaz
2000
9.
Application of Mechanically Stimulated Combustion Reactions in Processing of Geological Materials
Urakaev F.K., Shevchenko V.S., Chupakhin A.P., Yusupov T.S., Boldyrev V.V.
Journal of Mining Science, 2001
10.
10.1070/MC2005v015n03ABEH001956_bib10
Urakaev
Chem. Sustainable Development, 2002
11.
10.1070/MC2005v015n03ABEH001956_bib11
Urakaev
Dokl. Earth Sci., 2004
12.
Laboratory studies on ball wear in the grinding of a chalcopyrite ore
Natarajan K.A.
International Journal of Mineral Processing, 1996
13.
10.1070/MC2005v015n03ABEH001956_bib13
Konygin
Chem. Sustainable Development, 2002
14.
Contamination of quartz by iron in energy-intensive grinding in air and liquids of various polarity
15.
Machanosynthesis of iron sulphides
Baláž P., Havlík T., Bastl Z., Briančin J.
Journal of Materials Science Letters, 1995
16.
Mechanochemical Synthesis of Fe–S Materials
Jiang J.Z., Larsen R.K., Lin R., Mørup S., Chorkendorff I., Nielsen K., Hansen K., West K.
Journal of Solid State Chemistry, 1998
17.
Gradual and Combustive Mechanochemical Reactions in the Sn–Zn–S System
Takacs L., Susol M.A.
Journal of Solid State Chemistry, 1996
18.
Mechanochemical Reactions in the Sn–Zn–S System: Further Studies
Bakhshai A., Soika V., Susol M.A., Takacs L.
Journal of Solid State Chemistry, 2000
19.
10.1070/MC2005v015n03ABEH001956_bib19
Elemental, Sulfur, Chemistry, Physics, 1965
20.
Structure and dynamics of liquid sulphur
Tse J.S., Klug D.D.
Physical Review B, 1999
21.
10.1070/MC2005v015n03ABEH001956_bib21
Urakaev
Zh. Fiz. Khim., 2002
23.
10.1070/MC2005v015n03ABEH001956_bib23
Schneider
Aufbereitungs – Technik, 1968
24.
10.1070/MC2005v015n03ABEH001956_bib24
Anderson
1965
25.
10.1070/MC2005v015n03ABEH001956_bib25
Voronkova
Opticheskie materialy dlya infrakrasnoi tekhniki, Spravochnoe izdanie, 1965
26.
A discrete element method investigation of the charge motion and power draw of an experimental two-dimensional mill
van Nierop M.A., Glover G., Hinde A.L., Moys M.H.
International Journal of Mineral Processing, 2001
27.
10.1070/MC2005v015n03ABEH001956_bib27
Lykov
Teoriya teploprovodnosti, 1967
28.
Deformation, heating and melting of solids in high-speed friction
Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, 1961
29.
10.1070/MC2005v015n03ABEH001956_bib29
Urakaev
Dokl. Akad. Nauk, 2001
30.
10.1070/MC2005v015n03ABEH001956_bib30
Physics, Chemistry of, II–VI Compounds, 1967
31.
10.1070/MC2005v015n03ABEH001956_bib31
Sirota
Dokl. Akad. Nauk BSSR, 1962
33.
10.1070/MC2005v015n03ABEH001956_bib33
Regel’
Kineticheskaya kontseptsiya prochnosti tverdykh tel, 1974
34.
10.1070/MC2005v015n03ABEH001956_bib34
Urakaev
Zh. Fiz. Khim., 2004
35.
Complex Investigation into the Abrasion-Reaction Modification of Quartz Particle Surface by Amorphous Iron Compounds
Urakaev F.K., Ketegenov T.A., Petrushin E.I., Savintsev Y.P., Tyumentseva O.A., Chupakhin A.P., Shevchenko V.S., Yusupov T.S., Boldyrev V.V.
Journal of Mining Science, 2003