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Description
  • The constriction phenomenon in polymer composites filled with conductive carbon particles is handled in plane and space using two models. 1st Model: Contact of spherical particles 2nd Model: Connecting of two spherical particles by means of conductive bridge For solving the above mentioned models, we will use the equation defining the electric current field in a conductive environment. The COMSOL Multiphysics program environment was used to resolve the stated boundary conditions for various values of overlapping particles or bridge widths. The current density and current I conducted through electrodes will be evaluated from the obtained electric fields. The models for the joining of conductive carbon particles in an electrically non-conductive environment show the impact the shape of the field has on the electric resistance of the studied system.
  • The constriction phenomenon in polymer composites filled with conductive carbon particles is handled in plane and space using two models. 1st Model: Contact of spherical particles 2nd Model: Connecting of two spherical particles by means of conductive bridge For solving the above mentioned models, we will use the equation defining the electric current field in a conductive environment. The COMSOL Multiphysics program environment was used to resolve the stated boundary conditions for various values of overlapping particles or bridge widths. The current density and current I conducted through electrodes will be evaluated from the obtained electric fields. The models for the joining of conductive carbon particles in an electrically non-conductive environment show the impact the shape of the field has on the electric resistance of the studied system. (en)
Title
  • Modeling the Constriction Phenomenon on Composites with Conductive Carbon Particles in COMSOL
  • Modeling the Constriction Phenomenon on Composites with Conductive Carbon Particles in COMSOL (en)
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  • Modeling the Constriction Phenomenon on Composites with Conductive Carbon Particles in COMSOL
  • Modeling the Constriction Phenomenon on Composites with Conductive Carbon Particles in COMSOL (en)
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  • RIV/68407700:21230/11:00183680!RIV12-MSM-21230___
http://linked.open...avai/riv/aktivita
http://linked.open...avai/riv/aktivity
  • Z(MSM6840770021)
http://linked.open...vai/riv/dodaniDat
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  • 213035
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  • RIV/68407700:21230/11:00183680
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  • constriction phenomenon; polymer composites; COMSOL Multiphysics (en)
http://linked.open.../riv/klicoveSlovo
http://linked.open...ontrolniKodProRIV
  • [E3211D28A7EA]
http://linked.open...v/mistoKonaniAkce
  • Brno
http://linked.open...i/riv/mistoVydani
  • Ostrava
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  • Nanocon 2011, Conference Proceedings
http://linked.open...in/vavai/riv/obor
http://linked.open...ichTvurcuVysledku
http://linked.open...cetTvurcuVysledku
http://linked.open...UplatneniVysledku
http://linked.open...iv/tvurceVysledku
  • Hampl, J.
  • Jirků, Slavomír
  • Pilarčíková, Ivana
http://linked.open...vavai/riv/typAkce
http://linked.open.../riv/zahajeniAkce
http://linked.open...n/vavai/riv/zamer
number of pages
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  • TANGER, spol.s r.o
https://schema.org/isbn
  • 978-80-87294-23-9
http://localhost/t...ganizacniJednotka
  • 21230
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