0000000000722545

AUTHOR

M. Biondo

showing 2 related works from this author

In-line monitoring of the photooxidation behaviour of a PP/clay nanocomposite through creep measurements

2016

Abstract The photooxidation behaviour of a polypropylene/organomodified clay nanocomposite sample has been monitored by means of a new apparatus through the record of the creep curves measured while the sample is subjected to the contemporary action of temperature, tensile strength and UV radiation. The creep curves of the irradiated samples are higher than those of the non-irradiated samples and the curves diverge when the molecular weight begins to decrease because of the degradation. At the same the formation of carbonyl groups is observed. The creep curves of the non-irradiated and irradiated samples give, then, an immediate evaluation of the begin and of the development of the photooxi…

Polypropylene010407 polymersMaterials scienceNanocompositePolymers and PlasticsKineticsPP/clay02 engineering and technologyCreep021001 nanoscience & nanotechnologyCondensed Matter Physics01 natural sciences0104 chemical scienceschemistry.chemical_compoundCreepchemistryMechanics of MaterialsUltimate tensile strengthMaterials ChemistryDegradation (geology)IrradiationComposite materialPhotooxidation0210 nano-technologyLine (formation)Polymer Degradation and Stability
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Photooxidation Behavior of a LDPE/Clay Nanocomposite Monitored through Creep Measurements

2017

Creep behavior of polymer nanocomposites has not been extensively investigated so far, especially when its effects are combined with those due to photooxidation, which are usually studied in completely independent ways. In this work, the photooxidation behavior of a low density polyethylene/organomodified clay nanocomposite system was monitored by measuring the creep curves obtained while subjecting the sample to the combined action of temperature, tensile stress, and UV radiation. The creep curves of the irradiated samples were found to be lower than those of the non-irradiated ones and progressively diverging, because of the formation of branching and cross-linking due to photooxidation. …

Materials sciencePolymers and PlasticsPolymer nanocompositeIntrinsic viscosityKinetics02 engineering and technology010402 general chemistry01 natural sciencesArticlecreeplcsh:QD241-441lcsh:Organic chemistrynanocompositesIrradiationComposite materialMelt flow indexNanocompositeNanocompositephotooxidationChemistry (all)General Chemistrycreep; photooxidation; nanocomposites021001 nanoscience & nanotechnology0104 chemical sciencesLow-density polyethyleneCreep0210 nano-technologyPolymers
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