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Computer Simulation on Aggregated Structure of Fine Particles in Slurry [Translated]†
The property of a shaped body by slip casting in ceramic processing greatly depends on the dispersive state in the slurry. The agglomerate process in a high densed slurry we studied by three dimensional computer simulation. The movement of particles was determined by cohesion probability between particles. The aggregative and this process was discussed from the view points of the aggregation rate, the coordination number and the aggregative ratio by using cohesion probability. The experimental results from the measurement of viscosity and SEM observational dried slurries supported this simulation well.† This report was originally printed in J. Soc. Powder Technology, Japan. 27(4), 218-224 (1990) in Japanese, before being translated into English by KONA Editorial Committee with the permission of the editorial committee of the Soc. Powder Technology, Japan.
Computer Simulation on Aggregated Structure of Fine Particles in Slurry [Translated]†
The property of a shaped body by slip casting in ceramic processing greatly depends on the dispersive state in the slurry. The agglomerate process in a high densed slurry we studied by three dimensional computer simulation. The movement of particles was determined by cohesion probability between particles. The aggregative and this process was discussed from the view points of the aggregation rate, the coordination number and the aggregative ratio by using cohesion probability. The experimental results from the measurement of viscosity and SEM observational dried slurries supported this simulation well.† This report was originally printed in J. Soc. Powder Technology, Japan. 27(4), 218-224 (1990) in Japanese, before being translated into English by KONA Editorial Committee with the permission of the editorial committee of the Soc. Powder Technology, Japan.
Computer Simulation on Aggregated Structure of Fine Particles in Slurry [Translated]†
Takatoshi Kimura (author) / Masafumi Arakawa (author) / Kiyoshi Hirota (author) / Hitoshi Murata (author)
2014
Article (Journal)
Electronic Resource
Unknown
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