New Nanoparticles Dispersing Beads Mill with Ultra Small Beads and its Application

Two of the major problems related to nanoparticle dispersion with a conventional beads mill are re-agglomeration and damage to the crystalline structure of the particles. The Ultra Apex Mill was developed to solve these problems by enabling the use of ultra-small beads with a diameter of less than 0...

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Veröffentlicht in:IOP conference series. Materials Science and Engineering 2011-10, Vol.18 (6), p.062002-4
Hauptverfasser: Inkyo, M, Tahara, T, Imajyo, Y
Format: Artikel
Sprache:eng
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Zusammenfassung:Two of the major problems related to nanoparticle dispersion with a conventional beads mill are re-agglomeration and damage to the crystalline structure of the particles. The Ultra Apex Mill was developed to solve these problems by enabling the use of ultra-small beads with a diameter of less than 0.1mm. The core of this breakthrough development is centrifugation technology which allows the use of beads as small as 0.015mm. When dispersing agglomerated nanoparticles the impulse of the small beads is very low which means there is little influence on the particles. The surface energy of the nanoparticles remains low so the properties are not likely to change. As a result, stable nanoparticle dispersions can be achieved without re-cohesion. The Ultra Apex Mill is superior to conventional beads mills that are limited to much larger bead sizes. The technology of the Ultra Apex Mill has pioneered practical applications for nanoparticles in various fields: composition materials for LCD screens, ink-jet printing, ceramic condensers and cosmetics.
ISSN:1757-899X
1757-8981
1757-899X
DOI:10.1088/1757-899X/18/6/062002