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These blends were studied using a variety of methods including thermal microscopy, FTIR and DSC.
The blends were studied using differential scanning calorimetry, optical microscopy, fluorescence and UV spectroscopy.
The relationship between peak height ratio with their rheological properties and weight percent SBR of vulcanized NR-SBR blends were studied using thermogravimetric analysis.
The morphology and dynamic mechanical behavior of the blends were studied using scanning electron microscopy (SEM) and dynamic mechanic thermal analysis (DMTA).
The linear viscoelastic properties of two types of olefinic thermoplastic elastomer blends were studied using dynamic rheology.
Tensile mechanical properties of polypropylene (PP /cycloolefin copolymer (COC) blends were studied using an Instron tensile tester.
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Crystallization behavior of the PA6 phase in the blends was studied using DSC, WAXD and SAXS techniques.
Orientation of amorphous, miscible poly vinyl phenol) (PVPh -poly ethylene terePVPh -poly ethyleneends is sterephthalateexPETimental and modelling techniques.
The miscibility behaviour of various poly styrene-co-methacrylonitrile) (SMAN)/poly styrene-co-methacrylonitrileed using differential scanning calorimetry.
The effect of carbon nanotubes on morphological stabilization in polyamide (PA)/ethylene methyl acrylate random copolymer (EA) blends is studied using electronic microscopy techniques.
Morphology of the uncured and cured blends was studied using small angle light scattering (SALS) and polarizing microscopy for samples crystallized at different temperatures at all levels of the epoxy resin.
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