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Different simulations have been performed in order to study and compare pure homopolymer blends with blends characterized by the presence of PET/PEN block copolymers acting as compatibilizer.
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The miscibility of the blends was characterized by d.s.c.s.c
The modified blends were characterized by X-ray diffraction, Thermogravimetric analysis, and Scanning electron microscopy.
The toughness of the ductile blends was characterized by dynamic crack resistance curves (R-curves).
All blends were characterized by high amounts of additions, the Portland cement (PC) fraction ranging only from 20 to 60%.
The dynamic mechanical properties of PP/PN blends were characterized by dynamic mechanical analyser (DMA).
DGEBA and the DGEBA/ELO blends were characterized by their biodegradability, thermal properties, and fracture toughness.
Morphology of the blends was characterized by image analysis on SEM pictures and light scattering.
The properties of the SFPAE-P VDF-co-HFP) blendSFPAE-P VDF-co-HFPed by atomic force microSFPAE-P VDF-co-HFPl SFPAE-P VDF-co-HFPry, and Fourier transform infrared spectroscopy.
The surface phase separations of PMMA/SAN blends were characterized by virtue of atomic force microscopy (AFM).
The resulting blends were characterized by means of scanning electron microscopy, thermal analysis and testing of mechanical properties.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com