Search results for " polyethylene"

showing 10 items of 229 documents

On the compatibilization of PET/HDPE blends through a new class of copolyesters

2000

Polyethyleneterephthalate (PET) and polyethylene are incompatible polymers and their blends show, in general, poor properties. Compatibilization is then a necessary step to obtain blends with good mechanical and barrier properties. In this work different compatibilizing agents were used, i.e. a maleic anhydride elastomer and some new products containing graft-copolymers having polyester segments grafted onto polyethylene backbone chains. Both the functionalized elastomer and the new products drastically improve the morphology and the ductility of the blend. In the case of the modified elastomer the compatibilizing action has been attributed to the formation of H-bonds whereas the copolymers…

chemistry.chemical_classificationPOLYETHYLENEMaterials sciencecompatibilizationPolymers and PlasticsOrganic ChemistryPET/HDPE blendsMaleic anhydridePolymerCompatibilizationPolyethyleneElastomercopolyestersLIQUID-CRYSTALLINE POLYMERPolyesterchemistry.chemical_compoundPET/HDPE blends; copolyesters; compatibilization; LIQUID-CRYSTALLINE POLYMER; POLYETHYLENEchemistryChemical engineeringMaterials ChemistryPolymer blendHigh-density polyethyleneComposite materialPolymer
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Constant stretching rate experiments on low density polyethylene

1985

A simple apparatus for elongational test of molten polymers is presented. Its realiability is demonstrated by means of stress growth in constant stretching rate experiments and relaxation test on a low density polyethylene sample.

chemistry.chemical_classificationPolymers and PlasticsChemistryTesting equipmentRelaxation testGeneral ChemistryPolymerCondensed Matter PhysicsStress (mechanics)Low-density polyethyleneMolten statePolymer chemistryMaterials ChemistryComposite materialConstant (mathematics)Polymer Bulletin
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Gamma-radiation ageing of a low density polyethylene. Effects of irradiation temperature and dose rate

1993

Abstract Ageing due to gamma radiation of a low density polyethylene at various dose rates and temperatures is studied; the effect of thermal treatment only is also considered. The modifications induced in the molecular and crystallinity behaviour of the polymer are investigated by means of gel extraction, measurements of intrinsic viscosity and thermal analysis. Results indicate the occurrence of both crosslinking and oxidative degradation; the extent of the latter increases on decreasing the irradiation dose rate and on increasing the irradiation temperature. Some exceptions are found because of the increase in the mobility of free radicals at high temperature. These effects modify also t…

chemistry.chemical_classificationPolymers and PlasticsIntrinsic viscosityOrganic ChemistryGeneral Physics and AstronomyMineralogyPolymerThermal treatmentCrystallinityLow-density polyethylenechemistryChemical engineeringAgeingMaterials ChemistryIrradiationThermal analysisEuropean Polymer Journal
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New Thermoshrinkable Materials of Radiation Modified Polypropylene-Elastomer Composites with Cross-Linking Agents

2014

In this work, electron beam modified heterogeneous composites of isotactic polypropylene (PP) with chlorinated polyethylene (CPE) have been investigated. The PP/CPE blend composites with an excess of elastomer (30/70 wt%) have been modified with trimethylolpropane triacrylate (TMPTA) and bisphenol-A-dimethacrylate (BPDMA) cross-linking agents and have been irradiated with accelerated electrons up to ionizing radiation doses from 25 to 150 kGy. The internal stresses characterizing the thermoshrinkage properties (TMP) thermorelaxation stresses formed in thermal heating and the residual stresses resulting in the process of full setting and cooling of materials have been investigated for radiat…

chemistry.chemical_classificationPolypropyleneMaterials scienceMechanical EngineeringComposite numberPolymerTMPTAElastomerchemistry.chemical_compoundLow-density polyethylenechemistryMechanics of MaterialsResidual stressTacticityGeneral Materials ScienceComposite materialKey Engineering Materials
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Rheological behaviour, filmability and mechanical properties of biodegradable polymer films

2014

The rheological properties in shear flow and non isothermal elongational flow of two biodegradable polymers, belonging to two different classes of materials, have been measured and compared with those of a film blowing grade high density polyethylene in order to assess the filmability of these polymers. The mechanical properties of isotropic and anisotropic samples have been also reported.

chemistry.chemical_classificationQuantitative Biology::BiomoleculesMaterials scienceIsotropytechnology industry and agriculturePolymerBiodegradable polymerIsothermal processCondensed Matter::Soft Condensed MatterRheologychemistryHigh-density polyethyleneComposite materialAnisotropyShear flowbiodegradable filmAIP Conference Proceedings
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Carboxylation of a linear low density polyethylene via gamma irradiation in presence of carbon dioxide in subcritical and supercritical conditions

1994

Abstract In this work the molecular modifications induced in a linear low density polyethylene gamma irradiated in presence of carbon dioxide both in subcritical and supercritical conditions are presented. The obtained results indicate that this process can be a new and interesting way in order to graft oxidized groups in the polyethylene chains. Moreover it is worth noting that, together with these functionalization reactions, also a significant crosslinking occurs, with improvement in some mechanical tensile behaviour.

chemistry.chemical_classificationRadiationMaterials sciencePolymerPolyethyleneSupercritical fluidLinear low-density polyethylenechemistry.chemical_compoundchemistryPolymerizationCarboxylationChemical engineeringCarbon dioxideCompounds of carbonNuclear chemistryRadiation Physics and Chemistry
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Molecular modifications—Mechanical behaviour relationships for gamma irradiated LLDPE/PA6 blends

1994

Abstract The molecular modifications, due to γ radiation under vacuum, of linear low density polyethylene/polyamide 6 blends are presented and related to their mechanical behaviour. Solubility and melt viscosity tests indicate that in blends the polyethylene component undergoes mainly crosslinking phenomena, whereas the main effect on polyamide is chain branching. According to these molecular modifications, the most relevant effect is the increase of the tensile modulus for the polyethylene rich blends and the increase of the impact strength for the polyamide rich blends.

chemistry.chemical_classificationRadiationMaterials scienceeducationtechnology industry and agricultureYoung's modulusIzod impact strength testPolymerPolyethyleneBranching (polymer chemistry)Linear low-density polyethylenesymbols.namesakechemistry.chemical_compoundPolymerizationchemistryPolymer chemistryPolyamidesymbolsComposite materialRadiation Physics and Chemistry
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Structural induced modifications in blends of polyamide with gamma irradiated low density polyethylene

1992

Abstract Blends of gamma irradiated and unirradiated low density polyethylene and polyamide 6 were made in order to study possible modifications induced by this irradiation. Results indicate that blends with gamma irradiated polyethylene have structure and properties significantly different with respect to blends made with the unirradiated one. This difference has been ascribed to the formation of functionalized groups in the polyethylene chains, which interact with polyamide.

chemistry.chemical_classificationRadicaleducationtechnology industry and agricultureInfrared spectroscopyGeneral MedicinePolymerPolyethyleneLow-density polyethylenechemistry.chemical_compoundChemical engineeringchemistryPolyamidePolymer chemistryMoleculeIrradiationInternational Journal of Radiation Applications and Instrumentation. Part C. Radiation Physics and Chemistry
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Small angle scattering study of the structure of isotactic polypropylene-hydrogenated oligo(cyclopentadiene) blends

1996

Abstract Blends of isotactic polypropylene ( i PP) and hydrogenated oligo cyclopentadiene (HOCP) have been studied by means of small angle X-ray scattering in the temperature range 70–160°C. The structure of blends containing less than 25% HOCP is very similar to the one of plain i PP, i.e. lamellae whose thickness increases by increasing the temperature. Blends containing more than 25% HOCP are characterized by two kinds of lamellae formed by layers of i PP and amorphous material rich in i PP and in HOCP, respectively. The crystallizable i PP present in both phases crystallizes from the melt, in analogy to what happens in HDPE/HOCP blends and in agreement with the values of the crystallini…

chemistry.chemical_classificationSmall-angle X-ray scatteringOrganic ChemistryPolymerAtmospheric temperature rangeAnalytical ChemistryAmorphous solidInorganic ChemistryCrystallinitychemistryChemical engineeringTacticityPolymer chemistryHigh-density polyethylenePolymer blendSpectroscopyJournal of Molecular Structure
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Effects of organoclay on morphology and properties of nanocomposites based on LDPE/PA-6 blends without and with SEBS-g-MA compatibilizer

2009

LDPE/PA-6 blends (75/25 wt/wt) were added with SEBS-g-MA (S) and/or an organoclay (20A) using different compounding sequences and the morphology and the properties of the blends or composites were investigated. An XRD study of the nanocomposites with pure polymers showed that 20A is intercalated by LDPE or PA-6 chains, whereas it is exfoliated by S if the clay concentration does not exceed 10 wt%. The SEM investigation showed that both S and 20A behave as efficient emulsifying agents for the LDPE/PA-6 blends. However, their effect on the mechanical properties was found to be opposite: S enhanced toughness but lowered the stiffness, whereas 20A improved the elastic modulus but impaired the i…

chemistry.chemical_classificationToughnessNanocompositeMaterials scienceMorphology (linguistics)Polymers and PlasticsGeneral ChemistryPolymerorganoclayLow-density polyethyleneSEBS-g-MA compatibilizerchemistryCompoundingMaterials ChemistryOrganoclayComposite materialElastic modulusLDPE/PA-6 blend
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