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Competitive domain-structure development and homogenization under annealing were investigated via time-resolved light scattering and 1H n.m.r. in melt-quenched blends of partially miscible poly ethylene naphthalene-2,6-dicarboxylate) (PEN) and poly ethylene terephthalate) (PET) loaded with/without PEN-PET random copolymer as a compatibilizer.
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In the interval 0.40blends consisted of partially co-continuous components.
The compatibility of melt-mixed blends of a partially neutralized poly ethylene-co-methacrylic acid-co-isobutyl acrylate) Zn2+ ionomer with a poly ethylene-co-methacrylic(poly ethylene-co-methacrylichis work, allowed application of the ionomer as a compatibilizer for incompacid-co-isobutylensionomeryethylene (HDPE) blends.
One of these materials is a recycled 75/25 blend of outdoors, partially degraded low density polyethylene (LDPE) and high density polyethylene (HDPE).
Lamellar thickness calculated for two conjugated phases in the partially miscible blends showed different values in agreement with the two peaks observed in SAXS profiles of partially miscible blends, suggesting dual lamellar crystal structure.
Blends of an immiscible and partially miscible TLCP with a poly ether imide) (PEI) were injection-moulded into mini-tensile bars and rectangular plaques, and their mechanical properties were evaluated.
Rheological methods have been frequently used to study the phase separation behavior of partially miscible polymer blends.
Spinodal decomposition of partially miscible polymer blends has the potential to generate well-defined polymeric nanostructured materials, with precise control of length scale and connectivity, and applications ranging from membranes and scaffolds to photovoltaics.
Quasi-isothermal MTDSC measurements contain information on the kinetics of demixing and remixing, emphasizing the added value of MTDSC to follow in situ the diffusion-controlled phase separation processes of partially miscible polymer blends.
The phase behaviour of poly ethylene oxide) (PEO) and poly methyl methacrylate) (PMMA) blends, a partially miscible system, and of PEO/PMMA block copolymers, all cast from acetonitrile, were determined in the presence of added NaSCN.
A star polymer with a γ-CD core and PS arms (CD-star) is used to partially compatibilize blends of the immiscible polymers polystyrene (PS) and poly(dimethylsiloxane) (PDMS).
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