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The efect of particle filler in PPH Matrix on thoughness behaviour

Identyfikatory
Warianty tytułu
CS
Vliv částicového plniva na houževnatost PPH matrice
Konferencja
Metody oceny struktury oraz własności materiałów i wyrobów/sympozjum ( XXII ; 6-8.XI.2007 ; Svratka, Czechy)
Języki publikacji
CS
Abstrakty
EN
The use of commodity polymers in many technical applications is limited due to its material behavior - thermal stability, barrier properties, toughness or mechanical strength. That is the reason why to modify the basic polymer with fillers, reinforcement at different macroscale, microscale as well as nanoscale level. All the physical and chemical properties can be modified by way of fillers. The goal is find the way how to enhance the toughness of this system by keeping its stiffness.[l,2,3,] The first step is to modify relevant parameters of the matrix at molecular as well as super molecular level (adding a and p nucleation agent). Effect of particles on the properties and behavior of system strongly depends on its size, shape, surface coating and distribution. Mechanisms of toughening (creation of shear bands) can starts after releasing the stress concentration on the interface. [4,5,6] The system PP matrix filled with rigid submicroscopic particles of CaCC>3 was confrontate with system PP/kaolin, PP/ talc. Tensile test was applied to estimate the tensile properties. The fracture mechanics approach was chosen to describe the toughness of the system. Particularly, the J-R curve procedure was used. The results were reviewed with microscopy observation.
Słowa kluczowe
Rocznik
Strony
47--47
Opis fizyczny
Bibliogr. 4 poz., il., tab., wykr.
Twórcy
autor
autor
autor
  • VUT Brno FSI, Ústav materiálových věd a inženýrství
Bibliografia
  • [1] ZUIDERDUIN W.C.J., WESTZAAN C., HUÉTINK J., GAYMANS R.J.: Toughening of polypropylene with calcium carbonate particles. Polymer 44 (2003) 261 –275.
  • [2] WEON J.I., SUE H.J.: Mechanical properties of talc and caco3 reinforced high-crystallinity polypropylene composites. Material science 4 (2006), 2291-2300.
  • [3] KIM G.M., MICHLER G.H.: Micromechanical deformation processes in toughened and particle filled semicrystalline polymers. Polymer 39 (1998) 5699 –5703.
  • [4] MOCNO J., FEKETE E., LASZLO K., PUKANSZKY B.: Macromolecular Symposia 194, 111 (2003).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPOG-0035-0008
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