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Morphology and rheology of HDPE/LCP blends compatibilized by a novel PE-g-LCP copolymer

โœ Scribed by L. I. Minkova; M. Velcheva; M. Paci; P. Magagnini; F. P. La Mantia; D. Sek


Publisher
John Wiley and Sons
Year
1999
Tongue
English
Weight
439 KB
Volume
73
Category
Article
ISSN
0021-8995

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โœฆ Synopsis


A novel graft copolymer (PE-g-LCP) consisting of polyethylene (PE) backbones and liquid crystalline polymer (LCP) branches was synthesized via reactive blending of an acrylic acid-functionalized PE (Escor 5000 by Exxon) with a semiflexible LCP (SBH 1 : 1 : 2 by Eniricerche S.p.A.). The crude reactive blending product (COP) was shown by investigation of the fractions soluble in boiling toluene and xylene and of the residue to contain unreacted Escor and SBH, together with the graft copolymer forming the interphase. The compatibilizing activity of COP for PE/SBH blends, compared to that of pure Escor, was investigated using two PE grades. The COP addition into 80/20 PE/SBH blends caused a much stronger reduction of the SBH droplet dimensions and morphology stabilization than did that of pure Escor. The rheological behavior of the samples showed that COP leads to a slight increase of interfacial adhesion in the melt as well and that the effect is more pronounced when lower molar mass PE grade is used as the blend matrix. Melt-spinning tests demonstrated that deformation of the SBH droplets into highly oriented fibrils can be obtained for the blends of lower molar mass PE, compatibilized with small amounts of the novel PE-g-SBH copolymer.


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Effect of the components' molar mass and
โœ F. P. La Mantia; R. Scaffaro; P. L. Magagnini; M. Paci; L. I. Minkova; Ts. Mitev ๐Ÿ“‚ Article ๐Ÿ“… 1999 ๐Ÿ› John Wiley and Sons ๐ŸŒ English โš– 337 KB ๐Ÿ‘ 1 views

The rheology, morphology, and mechanical properties of blends of highdensity polyethylene (HDPE) with a semiflexible liquid crystalline copolyester (SBH) were studied in order to assess the compatibilizing ability of added PE-g-SBH copolymers, and its dependence on the molar mass of the PE matrix, a