Hydrodynamics of CNT dispersion in high shear dispersion mixers

In this work, we investigate the carbon nanotube (CNT) fragmentation mechanism and dispersion in high shear homogenizers as a plausible dispersion technique, correlating with device geometries and processing conditions, for mass production of CNT-aluminum composites for automobile industries. A CNT...

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Veröffentlicht in:Korea-Australia rheology journal 2014, 26(4), , pp.347-353
Hauptverfasser: Park, Young Min, Lee, Dong Hyun, Hwang, Wook Ryol, Lee, Sang Bok, Jung, Seung-Il
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Sprache:eng
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Zusammenfassung:In this work, we investigate the carbon nanotube (CNT) fragmentation mechanism and dispersion in high shear homogenizers as a plausible dispersion technique, correlating with device geometries and processing conditions, for mass production of CNT-aluminum composites for automobile industries. A CNT dispersion model has been established in a turbulent flow regime and an experimental method in characterizing the critical yield stress of CNT flocs are presented. Considering CNT dispersion in ethanol as a model system, we tested two different geometries of high shear mixers — blade-stirrer type and rotor-stator type homogenizers — and reported the particle size distributions in time and the comparison has been made with the modeling approach and partly with the computational results.
ISSN:1226-119X
2093-7660
DOI:10.1007/s13367-014-0040-2