Morphology, structure, and properties of in situ compatibilized linear low-density polyethylene/polystyrene and linear low-density polyethylene/high-impact polystyrene blends
Data(s) |
2003
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Resumo |
Blends of linear low-density polyethylene (LLDPE) with polystyrene (PS) and blends of LLDPE with high-impact polystyrene (HIPS) were prepared through a reactive extrusion method. For increased compatibility of the two blending components, a Lewis acid catalyst, aluminum chloride (AlCl3), was adopted to initiate the Friedel-Crafts alkylation reaction between the blending components. Spectra data from Raman spectra of the LLDPE/PS/AlCl3 blends extracted with tetrahydrofuran verified that LLDPE segments were grafted to the para position of the benzene rings of PS, and this confirmed the graft structure of the Friedel-Crafts reaction between the polyolefin and PS. Because the in situ generated LLDPE-g-PS and LLDPE-g-HIPS copolymers acted as compatibilizers in the relative blending systems, the mechanical properties of the LLDPE/PS and LLDPE/HIPS blending systems were greatly improved. For example, after compatibilization, the Izod impact strength of an LLDPE/PS blend (80/20 w/w) was increased from 88.5 to 401.6 J/m, and its elongation at break increased from 370 to 790%. For an LLDPE/HIPS (60/40 w/w) blend, its Charpy impact strength was increased from 284.2 to 495.8 kJ/m(2). Scanning electron microscopy micrographs showed that the size of the domains decreased from 4-5 to less than 1 mum, depending on the content of added AlCl3. |
Identificador | |
Idioma(s) |
英语 |
Fonte |
Gao Y;Huang HL;Yao ZH;Shi D;Ke Z;Yin JH.Morphology, structure, and properties of in situ compatibilized linear low-density polyethylene/polystyrene and linear low-density polyethylene/high-impact polystyrene blends,JOURNAL OF POLYMER SCIENCE PART B-POLYMER PHYSICS,2003,41(15):1837-1849 |
Palavras-Chave | #MULTICOMPONENT POLYMER SYSTEMS #COPOLYMER HOMOPOLYMER BLENDS #FRIEDEL-CRAFTS ALKYLATION #FRACTIONATED CRYSTALLIZATION #MOLECULAR DESIGN #BLOCK-COPOLYMERS #MECHANICAL-PROPERTIES #CO-POLYMERS #PHASE #POLYOLEFINS |
Tipo |
期刊论文 |