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  1. International Journal of Minerals, Metallurgy, and Materials
  2. International Journal of Minerals, Metallurgy, and Materials : Volume 20
  3. International Journal of Minerals, Metallurgy, and Materials : Volume 20, Issue 5, May 2013
  4. Densification of the packing structure under vibrations
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International Journal of Minerals, Metallurgy, and Materials : Volume 24
International Journal of Minerals, Metallurgy, and Materials : Volume 23
International Journal of Minerals, Metallurgy, and Materials : Volume 22
International Journal of Minerals, Metallurgy, and Materials : Volume 21
International Journal of Minerals, Metallurgy, and Materials : Volume 20
International Journal of Minerals, Metallurgy, and Materials : Volume 20, Issue 12, December 2013
International Journal of Minerals, Metallurgy, and Materials : Volume 20, Issue 11, November 2013
International Journal of Minerals, Metallurgy, and Materials : Volume 20, Issue 10, October 2013
International Journal of Minerals, Metallurgy, and Materials : Volume 20, Issue 9, September 2013
International Journal of Minerals, Metallurgy, and Materials : Volume 20, Issue 8, August 2013
International Journal of Minerals, Metallurgy, and Materials : Volume 20, Issue 7, July 2013
International Journal of Minerals, Metallurgy, and Materials : Volume 20, Issue 6, June 2013
International Journal of Minerals, Metallurgy, and Materials : Volume 20, Issue 5, May 2013
Recovery of iron from high phosphorus oolitic iron ore using coal-based reduction followed by magnetic separation
Zn release from fluid inclusions in a natural sphalerite
Kinetics of bainite-to-austenite transformation during continuous reheating in low carbon microalloyed steel
Microstructure and texture evolution of TRC A8006 alloy by homogenization
Effect of cooling rate on the magnetic properties of Fe$_{53}$Nd$_{37}$Al$_{10}$ alloy
Correlation between the glass-forming ability and activation energy of crystallization for Zr$_{75−x }$Ni$_{25}$Al$_{ x }$ metallic glasses
Effect of Y$_{2}$O$_{3}$ on the crystallization kinetics of TiO$_{2}$ nucleated LAS glass for the production of nanocrystalline transparent glass ceramics
Coating thickness control in continuously fabricating metallic glass-coated composite wires
Cellular lightweight concrete containing high-calcium fly ash and natural zeolite
Additive effects on tin electrodepositing in acid sulfate electrolytes
Characterization and optimization of pulse electrodeposition of Ni/nano-Al$_{2}$O$_{3}$ composite coatings
Shape control technology during electrochemical synthesis of gold nanoparticles
Kinetic study on the direct nitridation of silicon powders diluted with α-Si$_{3}$N$_{4}$ at normal pressure
Densification of the packing structure under vibrations
International Journal of Minerals, Metallurgy, and Materials : Volume 20, Issue 4, April 2013
International Journal of Minerals, Metallurgy, and Materials : Volume 20, Issue 3, March 2013
International Journal of Minerals, Metallurgy, and Materials : Volume 20, Issue 2, February 2013
International Journal of Minerals, Metallurgy, and Materials : Volume 20, Issue 1, January 2013
International Journal of Minerals, Metallurgy, and Materials : Volume 19
International Journal of Minerals, Metallurgy, and Materials : Volume 18
International Journal of Minerals, Metallurgy, and Materials : Volume 17

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Densification of the packing structure under vibrations

Content Provider Springer Nature Link
Author An, Xi zhong
Copyright Year 2013
Abstract Two packing structures with the maximum packing densities of 0.64 and 0.74 for the amorphous state and crystalline state, respectively, were numerically reproduced in the packing densification of equal spheres subjected to onedimensional and three-dimensional vibrations using the discrete element method (DEM), and the results were physically validated. These two packing structures were analyzed in terms of coordination number (CN), radial distribution function (RDF), angular distribution function (ADF), and pore size distribution (Voronoi/Delaunay tessellation). It is shown that CN distributions have the peak values of 7 and 12 for the amorphous state and crystalline state, respectively. RDF and ADF distributions show isolated peaks and orientation preferences for the crystalline state, indicating the long range and angle correlation among particles commonly observed in the crystalline state. Voronoi/Delaunay tessellation also shows smaller and narrower pore size distribution for the crystalline state.
Starting Page 499
Ending Page 503
Page Count 5
File Format PDF
ISSN 16744799
Journal International Journal of Minerals, Metallurgy, and Materials
Volume Number 20
Issue Number 5
e-ISSN 1869103X
Language English
Publisher University of Science and Technology Beijing
Publisher Date 2013-05-23
Publisher Place Beijing
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword particle packing densification vibrations discrete element method Materials Science Metallic Materials Characterization and Evaluation of Materials Ceramics, Glass, Composites, Natural Methods Surfaces and Interfaces, Thin Films Tribology, Corrosion and Coatings
Content Type Text
Resource Type Article
Subject Materials Chemistry Mechanics of Materials Metals and Alloys Geochemistry and Petrology Mechanical Engineering
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