Search results for "Low-density polyethylene"

showing 10 items of 99 documents

Structure and dynamics of polyethylene/clay films

2006

The relationships between structure and rheology of polyethylene/clay hybrid composite blown films were investigated through rheological tests both in shear and elongational flow. Two polymer matrices (low density polyethylene, LDPE and linear low density polyethylene, LLDPE) with different relaxation kinetics were used. Independently from the matrix, morphological analyses (TEM, XRD, and SEM) indicate that the hybrid structures are similarly constituted of delaminated platelets or tactoids having a relevant degree of orientation along the draw direction. This strongly affects the rheological behavior of materials. However, despite the similarities emerged from morphological analyses, both …

Materials sciencePolymers and PlasticspolymerPopulationstructure-rheology relationshipYoung's modulusfilmchemistry.chemical_compoundsymbols.namesakeRheologyMaterials ChemistryStress relaxationnanolayersComposite materialeducationpolyethylene (PE)education.field_of_studynanocompositepolymer; nanocomposite; structure properties relationshipsGeneral ChemistryPolyethylenestructure properties relationshipsSurfaces Coatings and FilmsLinear low-density polyethyleneLow-density polyethylenechemistrysymbolsrheologyShear flow
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Model of partial crystallization and melting derived from small-angle X-ray scattering and electron microscopic studies on low-density polyethylene

1980

A temperature-dependent small-angle x-ray scattering and electron microscopic study on a sample of low-density polyethylene affords a determination of the structure changes in a heating and cooling cycle and suggests a new model of partial crystallization and melting. The analysis of SAXS data is based upon some general properties of the electron-density correlation function. Electron micrographs are obtained from stained sections γ irradiated at elevated temperatures and are analyzed quantitatively by statistical means. According to the model proposed here the thickness distribution in the amorphous layers, rather than that of the crystalline regions, is the essential factor governing the …

Materials scienceScatteringSmall-angle X-ray scatteringGeneral EngineeringThermodynamicsPolyethyleneAmorphous solidlaw.inventionchemistry.chemical_compoundLow-density polyethyleneCrystallographyCorrelation function (statistical mechanics)chemistrylawsense organsIrradiationCrystallizationJournal of Polymer Science: Polymer Physics Edition
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Effect of different matrices and nanofillers on the rheological behavior of polymer-clay nanocomposites

2009

In this work, a comprehensive study of the rheological behavior under shear and isothermal and nonisothermal elongational flow of low density polyethylene (LDPE) and ethylene-vinyl acetate copolymer (EVA) based nanocomposites was reported to evaluate their "filmability", that is, the ability of these material to be processed for film forming applications. The influence of two different kinds of organoclay - namely Cloisite 15A and Cloisite 30B - and their concentration was evaluated. The presence of filler clearly affects the rheological behavior in oscillatory state of polyolefin-based nanocomposites but the increase of complex viscosity and the shear thinning are not dramatic. A larger st…

Materials scienceShear thinningPolymers and PlasticsRheometryengineering.materialCondensed Matter PhysicsPolyolefinPolymer clayLow-density polyethylenechemistry.chemical_compoundRheologychemistryUltimate tensile strengthMaterials ChemistryengineeringOrganoclayPhysical and Theoretical ChemistryComposite materialJournal of Polymer Science Part B: Polymer Physics
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Injection moldability and properties of compatibilized PA6/LDPE blends

2004

An ethylene-acrylic acid copolymer (EAA), either alone or combined with a low molar mass bis-oxazoline compound (PBO), has been used as a compatibilization promoter for blends of polyamide-6 (PA6) with low-density polyethylene (LDPE). The effect of compatibilization on blend processability in injection molding operations and on the properties of the molded specimens has been studied. In the absence of compatibilization, the injection molded articles were shown to have low-quality surface appearance and poor mechanical properties. Both these characteristics were appreciably improved as a result of reactive compatibilization of the blends with EAA and, even more, with the EAA-PBO couple. In f…

Molar massMaterials sciencePolymers and Plasticstechnology industry and agricultureConcentration effectGeneral ChemistryCompatibilizationMolding (process)Polyethylenechemistry.chemical_compoundLow-density polyethylenechemistryMaterials ChemistryCopolymerPolymer blendComposite material
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Reactive compatibilization of PA6/LDPE blends with an ethylene–acrylic acid copolymer and a low molar mass bis-oxazoline

2003

Abstract A sample of polyamide-6 (PA) was blended with low density polyethylene (LDPE) in the 80/20 wt/wt ratio, either without and with 2 phr of an ethylene–acrylic acid copolymer (EAA), Which was known to behave as a compatibilizer precursor, and the effect of the addition of small amounts (0.2 or 0.35 phr) of a fourth component, 2,2′-(1,3-phenylene)-bis(2-oxazoline) (PBO), was investigated. The reactions of PBO with EAA, PA and their blends were studied by recording as a function of time the torque applied to the blending apparatuses and by studying the solubility behavior of the products in formic acid. The PALDPE blends were prepared in a co-rotating twin screw extruder and were charac…

Molar massPolymers and PlasticsFormic acidOrganic Chemistryreactive compatibilizationchemistry.chemical_compoundLow-density polyethylenePA/LDPE blendDifferential scanning calorimetrySettore ING-IND/22 - Scienza E Tecnologia Dei MaterialichemistryChemical engineeringPolymer chemistryMaterials ChemistryCopolymerPolymer blendSolubilityIonomeroxazoline
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Morphology of melt-crystallized linear polyethylene fractions and its dependence on molecular weight and crystallization temperature

1980

Replicas and thin-section electron microscopic studies were made of fractions of linear polyethylene covering the molecular weight range 2.78 × 104 to 6.0 × 106 for a variety of crystallizing conditions. Lamellar crystallites were found under all circumstances; and the supermolecular structure, or crystalline morphology, is in agreement with that previously reported from an analysis of the small-angle light-scattering patterns of the same samples under similar crystallization conditions. Details of the crystalline microstructure are also described, which range from truncated hollow pyramids which degenerate as the molecular weight or the undercooling are increased. From these results, it is…

Morphology (linguistics)Materials scienceGeneral EngineeringPolyethyleneMicrostructurelaw.inventionLinear low-density polyethylenechemistry.chemical_compoundCrystallographychemistrylawLamellar structureCrystalliteCrystallizationSupercoolingJournal of Polymer Science: Polymer Physics Edition
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Comparative Study of Different Maleic Anhydride Grafted Compatibilizer Precursors toward LDPE/PA6 Blends: Morphology and Mechanical Properties

2005

The study deals with the effectiveness of maleic anhydride grafted styrene-b-ethylene-co-propylene copolymer (SEPMA) as compatibilizer precursor (CP) for blends of low density polyethylene (LDPE) with polyamide-6 (PA). The CP was produced by grafting MA onto SEP in the melt. The specific interactions between the CP and the blends components have been investigated through characterizations of the binary LDPE/CP and PA/CP blends. The compatibilizing efficiency of the MA-grafted SEP, as revealed by the thermal properties and the morphology of the compatibilized blends, has been shown to be excellent. The morphology, as well as the mechanical properties of the compatibilized with SEPMA 75/25 w/…

Morphology (linguistics)Materials sciencePolymers and PlasticsOrganic ChemistryMaleic anhydrideConcentration effectGraftingmorphology and mechanical propertiesLDPE/PA6 blendchemistry.chemical_compoundLow-density polyethylenechemistryChemical engineeringMA-functionalized compatibilizer precursorMaterials ChemistryCopolymerPolymer blendHigh-density polyethyleneComposite material
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Morphology and mechanical properties of extruded ribbons of LDPE/PA6 blends compatibilized with an ethylene-acrylic acid copolymer

2003

Two grades of low density polyethylene (LDPE) were blended with polyamide-6 (PA) in the 75/25 and 25/75 wt/wt ratios and shaped into ribbons with a Brabender single screw extruder. An ethylene-acrylic acid copolymer (EAA) was used in the 2 phr concentration as a compatibilizer precursor (CP). The morphology of the ribbons and its evolution during high temperature annealing were investigated by scanning electron microscopy (SEM). The results confirmed that EAA does actually behave as a reactive compatibilizer for the LDPE/PA blends. In fact, in the presence of EAA, the interfacial adhesion is improved, the dispersion of the minor phase particles is enhanced and their tendency toward fibrilla…

MorphologyMolar massMaterials sciencePolymers and PlasticsAnnealing (metallurgy)Scanning electron microscopeeducationOrganic ChemistryPlastics extrusionBlendCondensed Matter PhysicsLow-density polyethylenechemistry.chemical_compoundImpact resistanceLow density polyethyleneSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialichemistryPolyamide-6Materials ChemistryCopolymerPolymer blendComposite materialIonomerMechanical propertie
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Photo-oxidation behaviour of polyethylene/polyamide 6 blends filled with organomodified clay: Improvement of the photo-resistance through morphology …

2010

Abstract The impact of small amounts of organomodified clay (OMMT) on the photo-degradation behaviour of two blends obtained by mixing either low-density polyethylene (LDPE) or high density polyethylene (HDPE) with polyamide 6 (PA6) (LDPE/PA6 and HDPE/PA6 75/25 wt-%) was studied. The complex photo-degradation behaviour was followed by monitoring the main physical–mechanical properties of the blends. In particular, mechanical and spectroscopic tests were performed in conditions of accelerated artificial aging. An accurate mechanical and morphological characterization was previously carried out. The presence of the OMMT promotes the unexpected formation of a co-continuous morphology for the H…

Nanocomposite polymer blendNanocompositeMaterials sciencePolymers and PlasticsPhoto-oxidation behaviour; Nanocomposite polymer blends; Microstructure; Mechanical propertiesMechanical propertiesPolyethylenePhoto-oxidation behaviourCondensed Matter PhysicsMicrostructureLow-density polyethylenechemistry.chemical_compoundMontmorillonitechemistryMechanics of MaterialsPolyamideMaterials ChemistryHigh-density polyethylenePolymer blendComposite materialMicrostructurePolymer Degradation and Stability
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Low-density polyethylene/polyamide/clay blend nanocomposites: Effect of morphology of clay on their photooxidation resistance

2017

The photooxidation behaviour of low-density polyethylene (LDPE)/polyamide (PA) blends, containing polyamide 11 (PA11) or polyamide 6 (PA6), has been investigated in the absence and presence of a small amount of commercial organomodified clay (OMMT). The polymer blends LDPE/PA11 and LDPE/PA6 at 75/25 wt./wt.%, with and without OMMT, have been prepared by a two-step procedure: extrusion and sheet formulation. The formulated complex systems have been subjected to accurate morphological analysis in order to evaluate the effect of the OMMT presence on the refinement of the blend morphology. Furthermore, the produced sheets have been subjected to arterial UVB exposure and the variations of the me…

NanocompositeMaterials scienceMorphology (linguistics)Article SubjectPolymer blends Nanoparticles Morphology Photooxidation Polyethylenes02 engineering and technologyPolyethylene010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesLow-density polyethylenechemistry.chemical_compoundchemistryPolyamidelcsh:Technology (General)lcsh:T1-995General Materials ScienceExtrusionMaterials Science (all)Polymer blendComposite material0210 nano-technologyPhotodegradation
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