The morphology of the dispersed phase in immiscible polymer blends can have a significant effect on the final may be omitted physical properties. Laminar dispersion of an ethylene vinyl alcohol copolymer (EVOH) with high oxygen barrier properties was obtained in the matrix of low density polyethylene (LDPE) when extruded through an annular blown film die. A large range of morphology was observed and indicated that the main factors determining the morphology of the blends were the composition, the viscosity ratio of the components, the processing conditions, and the elongational fields at the exit of the die. Increasing amount of EVOH (from 5 to 20 vol%) resulted in increasing number of stacked layers. Highly elongated laminar structure was ...
The formation of a lubricant layer at the polymer-metal die interface, when a blend of high density ...
ABSTRACT: The purpose of this study is to generate polypropylene (PP) blend films with improved oxyg...
Rheological and processing behavior of a number of linear low-density polyethylene(LLDPE)/low-densit...
Morphology and oxygen barrier properties of LDPE/EVOH blends have been studied. Laminar dispersion o...
Studies of the morphology of extruded polymer blend systems have shown that it is feasible to produc...
M.Sc. (Chemistry)Abstract: This study evaluates the use of low density polyethylene (LDPE)/ethylene ...
The present work attempts to obtain deeper understanding of the development of laminar morphology in...
The phase morphology of injection moulded blends of polypropylene (PP) and ethylene vinyl alcohol co...
Blends containing polyethylene (LDPE, LLDPE, or LDPE‐LLDPE) with different weight percent of styrene...
This work demonstrates a greater than expected enhancement of oxygen barrier properties in linear lo...
The processing, morphology, and tensile properties of blown films prepared from polyamide-6 (PA6) an...
In this research, high oxygen-barrier films were organized based on low-density polyethylene (LDPE)/...
The purpose of this research project has been to evaluate the feasibility of improving the impact pr...
Blends containing 85% polyethylene (LDPE/LLDPE) and 15% styrene-isoprene-styrene triblock copolymers...
ABSTRACT: The processing, morphology, and tensile properties of blown films prepared from polyamide-...
The formation of a lubricant layer at the polymer-metal die interface, when a blend of high density ...
ABSTRACT: The purpose of this study is to generate polypropylene (PP) blend films with improved oxyg...
Rheological and processing behavior of a number of linear low-density polyethylene(LLDPE)/low-densit...
Morphology and oxygen barrier properties of LDPE/EVOH blends have been studied. Laminar dispersion o...
Studies of the morphology of extruded polymer blend systems have shown that it is feasible to produc...
M.Sc. (Chemistry)Abstract: This study evaluates the use of low density polyethylene (LDPE)/ethylene ...
The present work attempts to obtain deeper understanding of the development of laminar morphology in...
The phase morphology of injection moulded blends of polypropylene (PP) and ethylene vinyl alcohol co...
Blends containing polyethylene (LDPE, LLDPE, or LDPE‐LLDPE) with different weight percent of styrene...
This work demonstrates a greater than expected enhancement of oxygen barrier properties in linear lo...
The processing, morphology, and tensile properties of blown films prepared from polyamide-6 (PA6) an...
In this research, high oxygen-barrier films were organized based on low-density polyethylene (LDPE)/...
The purpose of this research project has been to evaluate the feasibility of improving the impact pr...
Blends containing 85% polyethylene (LDPE/LLDPE) and 15% styrene-isoprene-styrene triblock copolymers...
ABSTRACT: The processing, morphology, and tensile properties of blown films prepared from polyamide-...
The formation of a lubricant layer at the polymer-metal die interface, when a blend of high density ...
ABSTRACT: The purpose of this study is to generate polypropylene (PP) blend films with improved oxyg...
Rheological and processing behavior of a number of linear low-density polyethylene(LLDPE)/low-densit...