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Description
  • It is very important to have a lot of information about composite composition, particles distribution in epoxy resin and particles size and finally the mechanical properties of nanocomposites for design and dimension of mechanical and other parts made from nanocomposite materials. Nanoparticles type, size and their distribution in matrix have a great influence on mechanical properties of nanocomposite materials. The size of particles used in nanocomposites is about few nanometers. When dry nanoparticles are first added into a liquid, clusters as large as hundreds of microns can be formed. It is caused by mechanical forces and physical-chemical forces. Nanocomposite materials require break down of these clusters in the liquid, followed by the de-agglomeration and dispersion, ideally down to the primary nanoparticle size. The aim of this paper is uses and adjusts three roll mill and high shear impeller for this case.
  • It is very important to have a lot of information about composite composition, particles distribution in epoxy resin and particles size and finally the mechanical properties of nanocomposites for design and dimension of mechanical and other parts made from nanocomposite materials. Nanoparticles type, size and their distribution in matrix have a great influence on mechanical properties of nanocomposite materials. The size of particles used in nanocomposites is about few nanometers. When dry nanoparticles are first added into a liquid, clusters as large as hundreds of microns can be formed. It is caused by mechanical forces and physical-chemical forces. Nanocomposite materials require break down of these clusters in the liquid, followed by the de-agglomeration and dispersion, ideally down to the primary nanoparticle size. The aim of this paper is uses and adjusts three roll mill and high shear impeller for this case. (en)
  • Cílem práce bylo posoudit jednotlivé metody použitelné pro dispergaci nano-částic do matrice. Úrovň dispergace částic ovlivňuje mechanické vlastnosti výsledného výrobku z tohoto kompozitního materiálu. Na základě rešerše i vlastních esperimentálních výsledků byly navrženy koncepce zařízení pro dostatečnou dispergaci. (cs)
Title
  • Dispersion Methods and Equipment for Carbon Nanoparticles Composite
  • Metody a zařízení pro dispergaci nano-kompozitů (cs)
  • Dispersion Methods and Equipment for Carbon Nanoparticles Composite (en)
skos:prefLabel
  • Dispersion Methods and Equipment for Carbon Nanoparticles Composite
  • Metody a zařízení pro dispergaci nano-kompozitů (cs)
  • Dispersion Methods and Equipment for Carbon Nanoparticles Composite (en)
skos:notation
  • RIV/68407700:21220/08:02144128!RIV09-MSM-21220___
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  • S, Z(MSM6840770015)
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  • 363833
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  • RIV/68407700:21220/08:02144128
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  • Dispersion method; High shear impeller; Nanocomposites; Nanoparticles; Three roll mill (en)
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http://linked.open...ontrolniKodProRIV
  • [4A2BF903B044]
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  • Praha
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  • Praha
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  • Proceedings of Workshop 2008
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  • Jirout, Tomáš
  • Černý, Miroslav
  • Čuprová, Dita
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http://linked.open.../riv/zahajeniAkce
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number of pages
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  • České vysoké učení technické v Praze
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  • 978-80-01-04016-4
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  • 21220
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