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The degree of compatibility of the blends was characterized using the Δb parameter.
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The blends were characterized using IR, SEM, rheological measurement, and some mechanical properties were also determined.
The glass transition temperature (Tg -confinement effecTg -confinementyeffectsported finms of strongly miscible poly(2,6-dimethyl-1,4-phenylene oxide)/polysupportedPPO/PS) blends are characterized using ellipsometry and filmsescence, bofh of which report a stronglyreduced blend Tg upon confinemiscible
The trans-reacted products from heated PEN/PPT (50/50) blend were characterized using 1H NMR.
Thus, it was possible to use the ionomer as a compatibilizing agent for PVOH/polyolefin blends, which were characterized using most of the above techniques.
The toughness of the ductile blends was characterized by dynamic crack resistance curves (R-curves).
The miscibility of the blends was characterized by d.s.c.s.c
The blend was characterized by using FT-IR, XRD, TGA and DSC techniques.
The homopolymers and the blends were characterized over a wide experimental window using the time temperature superposition principle.
The modified blends were characterized by X-ray diffraction, Thermogravimetric analysis, and Scanning electron microscopy.
The products were further characterized using TEM (Figs. 2d f).
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