DocumentCode :
638489
Title :
Optimal design of the spiral type of collector die for dry powder compaction
Author :
Edgar, Dvilis ; Oleg, Khasanov ; Prakorb, Chartpuk ; Vitaly, Sokolov
Author_Institution :
Nano-Centre of Tomsk Polytech. Univ., Tomsk, Russia
Volume :
1
fYear :
2013
fDate :
June 28 2013-July 1 2013
Firstpage :
25
Lastpage :
28
Abstract :
This research presents a new die on principle of the collector method. The collector die of spiral type for uniaxial dry compacting homogeneously dense powdered bodies of complex shape without macroscopic defects has been developed. To reduce the die-wall friction effects collector method is based on the self-alignment of uniform density regions within a green compact. The purpose of this work is comparison of statistical dispersion of local deformation in the volume of ceramic powders compacted using collector die of spiral type and by conventional collector die at certain conditions. A collector die of spiral type was designed for shaping cylindrical compacts (diameter 14 mm, height 40 mm) with 2-12 alternating, oppositely-moving parts of the passive shaping surface of sliders, twisted at an angle of 80 degrees. The results of comparative simulation by FEM showed that dispersion of powder layer deformation for collector die of spiral type can be reduced up to 4-20% if friction coefficient μ=0.1 and can be reduced up to 5-15% if friction coefficient μ=0.05. It was shown, that density distribution into powder green compact can be minimized by increasing the number of moving parts of passive shaping surface. Thus it is possible to decrease the density gradients. The collector die of spiral type can be apply to shape uniform-dense cylindrical articles from dry ceramic poly- and nano-sized powders.
Keywords :
ceramics; compaction; deformation; design engineering; dies (machine tools); finite element analysis; friction; powder technology; powders; production engineering computing; solid modelling; statistical analysis; FEM; SolidWorks; ceramic nanosize powders; ceramic polysize powders; cylindrical compacts; density distribution; design; die-wall friction effect reduction; dry powder compaction; finite element method; friction coefficient; local deformation; sliders; spiral type collector die; statistical dispersion; Shape; ceramics; collector pressing; powder compaction; uniform density distribution;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Strategic Technology (IFOST), 2013 8th International Forum on
Conference_Location :
Ulaanbaatar
Print_ISBN :
978-1-4799-0931-5
Type :
conf
DOI :
10.1109/IFOST.2013.6616979
Filename :
6616979
Link To Document :
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