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Melting and crystallisation behaviours of the blends were analysed by differential scanning calorimetry (DSC).
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The compatibility and degradation behaviour of the blends were investigated.
The behaviour of the blends with matrices of nylon and polystyrene is qualitatively similar.
scanning rate on the crystallization and the melting behaviour of the blends was investigated.
This was reflected by the stress strain and rheological behaviour of the blends.
ODT behaviour of the blends further reveals that the blends shift from weak-segregation to intermediate-segregation strength with the increase in LN3 content.
The influence of dynamic vulcanization of the rubber phase on the flow behaviour of the blends has been analysed.
The dynamic rheological behaviour of the blends is a weighted contribution of the properties of the two individual phases.
The tensile behaviour of the blends and composites are in intimate relation with the morphological characteristics of these materials.
The physical properties and rheological behaviour of the blends were examined in order to elucidate the mechanism.
The phase behaviour of the blends has been studied by means of differential scanning calorimetry (d.s.c).s.c
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