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Looking back to interfacial tension prediction in the compatibilized polymer blends: Discrepancies between theories and experiments
Author(s) -
Hassanpour Asl Farzaneh,
Saeb Mohammad Reza,
Jafari Seyed Hassan,
Khonakdar Hossein Ali,
Rastin Hadi,
Pötschke Petra,
Vogel Roland,
Stadler Florian J.
Publication year - 2018
Publication title -
journal of applied polymer science
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.575
H-Index - 166
eISSN - 1097-4628
pISSN - 0021-8995
DOI - 10.1002/app.46144
Subject(s) - high density polyethylene , maleic anhydride , materials science , rheology , polyethylene , surface tension , polymer blend , composite material , polymer , compatibilization , tension (geology) , work (physics) , particle (ecology) , polyamide , polymer science , copolymer , thermodynamics , ultimate tensile strength , physics , oceanography , geology
Prediction of interfacial tension of compatibilized polymer blends is a challenging open problem, where experiments and theories hardly support each other. In this work, constitutive models proposed for quantifying the interfacial tension of compatibilized polymer blends were revisited and their limitations/capabilities were discussed. In view of available data in the literature, which could provide with possibility of comparison between interfacial tension values obtained in this work and those published before, high‐density polyethylene (HDPE)/polyamide‐6 and HDPE/polyethylene‐ co ‐vinyl alcohol pairs comprising varying amounts of HDPE‐ g ‐maleic anhydride compatibilizer precursor were prepared for obtaining model parameters. The inability of theories in monitoring the interfacial tension was accordingly uncovered. However, outcomes from both theoretical and experimental data provided some insights for elucidating the interplay between interfacial tension and rheological characteristics of the studied compatibilized blends. It was also attempted to uncover the relationships between particle size, particle size distribution, and rheological properties of blends compatibilized with different amounts of HDPE‐ g ‐maleic anhydride precursor. © 2018 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2018 , 135 , 46144.

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