Title of article :
Preparation and properties of nitrile rubber/montmorillonite
nanocomposites via latex blending
Author/Authors :
M. A. Kader K. Kim Y.-S. Lee C. Nah، نويسنده ,
Issue Information :
دوهفته نامه با شماره پیاپی سال 2006
Abstract :
The nitrile rubber (NBR)/unmodified
montmorillonite (Na-MMT) clay nanocomposites were
prepared by latex blending method followed by melt
mixing of compounding ingredients by using two-roll
mill. The X-ray diffraction (XRD) studies showed an
increase in the basal spacing and broadening of peak
corresponding to crystal structure of Na-MMT indicating
the formation of intercalated/exfoliated clay
layers in the NBR matrix. Increase in clay content of
nanocomposite increased the XRD peak height due to
the formation of many of clay tactoids at higher loading.
The transmission electron microscopy (TEM)
strengthened the XRD finding by showing the presence
of intercalated/exfoliated morphology of clay platelets
having good dispersion. The modulus and tensile
properties of the nanocomposites were improved with
addition of Na-MMT which is proportional to clay
concentration. The retention of tensile properties of
aged nanocomposites, with all clay concentration, was
superior to either pure NBR and carbon black filled
NBR composite. The dynamic mechanical analysis
showed proportional increase in storage modulus
analogous to Na-MMT loading at all the temperature
ranges due to the confinement of polymer chains
between the clay layers. Nanocomposites with different
proportions of clay showed a decrease in tan dmax peak
height with a shift towards higher temperature indicating
the reduction in the segmental mobility of
polymer chain. A linear model was proposed to correlate
the influence of Na-MMT content on storage
modulus of nanocomposites. Differential scanning
calorimetry indicated a linear increase in glass transition
of nanocomposites which is proportional to clay
loading. Thermogravimetric analysis revealed a small
improvement in the thermal stability of nitrile rubber/
clay nanocomposites
Journal title :
Journal of Materials Science
Journal title :
Journal of Materials Science