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Ideal blends depending on the amount of polymer modifiers added were found by using an experimental design procedure.
Results suggest that the amount of CFBCA can have significant effects on the properties of C-FG-based blends, depending on the composition.
The compatibilized blends, depending on the quantity of dual compatibilizers employed, exhibit higher viscosity, finer phase domain, and improved mechanical properties.
It was found that introducing filler in polymer blends depending on its amount lead either to the increase or to the decrease in the temperature of phase separation.
Hierarchical structures possessing double periodicity have been found for poly isoprene-b-2-vinylpyridine)/poly isoprene-b-2-vinylpyridine) blends depoly isoprene-b-2-vinylpyridines of compoly isoprene-b-2-vinylpyridine.
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The molecular motions of the blends depend on the total-molecular-weight-dependent Rouse dynamic behaviors of USB-SPCLs.
It was concluded that the properties of the blends depend on the individual properties of the binders.
It was observed that the miscibility of the PMMA/PVAc blends depends on the solvent.
The crystallization behaviour of PEEK in PEEK/PI blends depends on the crystallization condition of the blend sample as well as the chemical structure and the content of the PI added.
The KR05 phase of the blends exhibits lamellar morphology and phase separation from the MS-200 phase, and mechanical properties of the blends depend on the microstructural orientation and orderliness.
The inward shift of the glass transition temperature (Tg) of PAr and PA-6 and the depression of the melting temperature (Tm) of PA-6 in ternary blends depended on the block length as well as on the amount of the block copolymer added.
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