About: Influence of Constrition Phenomenon to Conductivity in Composite Containing Conductive Carbon Particles     Goto   Sponge   NotDistinct   Permalink

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  • Solution of constriction phenomenon in polymer composites filled with conductive carbon particles is presented it this paper. Constriction phenomenon in polymer composites filled with conductive carbon particles is solved in plane at use of two models. 1st Model: Contact of spherical particles. It is assumed that carbon particles in composites can not only contact each other (as metals) but also grow through each other. 2nd Model: Connecting of two spherical particles by means of conductive bridge. Those models were solved both in the analog devices with conductive graphite paper, and numerically in the program COMSOL - Multiphysics.
  • Solution of constriction phenomenon in polymer composites filled with conductive carbon particles is presented it this paper. Constriction phenomenon in polymer composites filled with conductive carbon particles is solved in plane at use of two models. 1st Model: Contact of spherical particles. It is assumed that carbon particles in composites can not only contact each other (as metals) but also grow through each other. 2nd Model: Connecting of two spherical particles by means of conductive bridge. Those models were solved both in the analog devices with conductive graphite paper, and numerically in the program COMSOL - Multiphysics. (en)
Title
  • Influence of Constrition Phenomenon to Conductivity in Composite Containing Conductive Carbon Particles
  • Influence of Constrition Phenomenon to Conductivity in Composite Containing Conductive Carbon Particles (en)
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  • Influence of Constrition Phenomenon to Conductivity in Composite Containing Conductive Carbon Particles
  • Influence of Constrition Phenomenon to Conductivity in Composite Containing Conductive Carbon Particles (en)
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  • RIV/68407700:21230/10:00177254!RIV11-MSM-21230___
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  • Z(MSM6840770021)
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  • 263586
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  • RIV/68407700:21230/10:00177254
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  • polymer composites; carbon black; modelling; constriction phenomenon; resistivity; contact of conductive particles; COMSOL - Multiphysics (en)
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  • [5931F7FC735E]
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  • Olomouc
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  • Ostrava
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  • NANOCON 2010 WoS
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  • Jirků, Slavomír
  • Pilarčíková, Ivana
  • Hampl, Josef
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  • TANGER, spol.s r.o
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  • 978-80-87294-19-2
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  • 21230
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