Search results for "Ultima"

showing 10 items of 396 documents

Improvement of photo-stability of LLDPE-based nanocomposites

2006

LLDPE-based nanocomposites undergo faster photo-oxidation than the unfilled matrix and the extent of their physical properties deterioration, namely elongation at break and tensile strength, is dependent on the organo-nanoclay loading. The observed acceleration is not due to faster photo-oxidation but rather due to a reduction of the oxidation induction time. The presence in the organoclays of trace amounts of metal ions may be promoting catalytic photodegradation. While UV absorbers provide useful protection, use of a metal deactivator has been found to greatly enhance the photo-stability of the LLDPE-based nanocomposites. Combinations of a metal deactivator and UV absorber yield synergist…

Yield (engineering)NanocompositeMaterials sciencePolymers and PlasticsMetal ions in aqueous solutionCondensed Matter PhysicsLinear low-density polyethyleneMetalMetal deactivatorMechanics of Materialsvisual_artUltimate tensile strengthMaterials Chemistryvisual_art.visual_art_mediumComposite materialPhotodegradation
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Adaptative memory and animacy effect

2017

According to the adaptive memory view, human memory was shaped in the distant past to remember fitness relevant information (e.g., finding food, protecting ourselves from predators). An increasing number of studies favor this view, by showing that information related to to survival is memorized better than information not related to survival (Nairne, Thompson, & Pandeirada, 2007). Recently, a new type of findings further supports this functional approach of memory: animacy effects, that is to say the observation that animates (living things able of independent movements; e.g., baby, grasshopper) are remembered better than inanimates (non-living things e.g., teakettle, rope). One account of …

[SHS.PSY] Humanities and Social Sciences/PsychologyExplication ultime/proximaleMémoire adaptativeEffet animéAdaptative memoryEpisodic memoryUltimate/Proximate explanationMémoire épisodiqueAnimacy effectProximate mechanismsMécanismes proximaux
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Effects of defects on the tensile strength of short-fibre composite materials

2014

Abstract. Heterogeneous materials tend to fail at the weakest cross-section, where the presence of microstructural heterogeneities or defects controls the tensile strength. Short-fibre composites are an example of heterogeneous materials, where unwanted fibre agglomerates are likely to initiate tensile failure. In this study, the dimensions and orientation of fibre agglomerates have been analysed from three-dimensional images obtained by X-ray microtomography. The geometry of the specific agglomerate responsible for failure initiation has been identified and correlated with the strength. At the plane of fracture, a defect in the form of a large fibre agglomerate was almost inevitably found.…

agglomerationMaterials scienceta114composite materialsMetallurgyWeak correlationX-ray microtomographyMechanics of MaterialsAgglomerateUltimate tensile strengthFracture (geology)General Materials ScienceComposite materialstrengthInstrumentationStress intensity factorStress concentrationMechanics of Materials
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Characterization of Food Packaging Films with Blackcurrant Fruit Waste as a Source of Antioxidant and Color Sensing Intelligent Material

2021

Chitosan and pectin films were enriched with blackcurrant pomace powder (10 and 20% (w/w)), as bio-based material, to minimize food production losses and to increase the functional properties of produced films aimed at food coatings and wrappers. Water vapor permeability of active films increased up to 25%, moisture content for 27% in pectin-based ones, but water solubility was not significantly modified. Mechanical properties (tensile strength, elongation at break and Young’s modulus) were mainly decreased due to the residual insoluble particles present in blackcurrant waste. FTIR analysis showed no significant changes between the film samples. The degradation temperatures, determined by D…

antioxidantPectinChemical Phenomena030309 nutrition & dieteticsPharmaceutical ScienceOrganic chemistryBiocompatible MaterialsPRIRODNE ZNANOSTI. Kemija.AntioxidantsAnalytical ChemistryChitosanchemistry.chemical_compoundQD241-441Drug DiscoveryFood scienceWater contentchemistry.chemical_classificationpectin0303 health sciencesChemistryFood Packaging04 agricultural and veterinary sciencesPolymer040401 food scienceFood packagingSmart MaterialsChemistry (miscellaneous)Molecular MedicineLightnessfood.ingredientNATURAL SCIENCES. Chemistry.Article03 medical and health sciences0404 agricultural biotechnologyfoodintelligent sensingUltimate tensile strengthblackcurrant wasteblackcurrant waste ; chitosan ; pectin ; antioxidant ; intelligent sensing ; color changing ; packaging filmsPhysical and Theoretical ChemistryMechanical Phenomenapackaging filmsWaste ProductsChitosanSpectrum AnalysisPomaceMembranes ArtificialFruitcolor changingchitosan
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New Polylactic Acid Composites Reinforced with Artichoke Fibers

2015

In this work, artichoke fibers were used for the first time to prepare poly(lactic acid) (PLA)-based biocomposites. In particular, two PLA/artichoke composites with the same fiber loading (10% w/w) were prepared by the film-stacking method: the first one (UNID) reinforced with unidirectional long artichoke fibers, the second one (RANDOM) reinforced by randomly-oriented long artichoke fibers. Both composites were mechanically characterized in tensile mode by quasi-static and dynamic mechanical tests. The morphology of the fracture surfaces was analyzed through scanning electron microscopy (SEM). Moreover, a theoretical model, i.e., Hill's method, was used to fit the experimental Young's modu…

biocompositeScanning electron microscopy (SEM)Materials scienceMorphology (linguistics)Scanning electron microscopequasi-static tensile testsDynamic mechanical analysis (DMA)Moduluslcsh:TechnologyArticlefilm stackingFilm stackingQuasi-static tensile testschemistry.chemical_compoundMaterials Science(all)Polylactic acidArtichoke fiberPLA; artichoke fiber; biocomposites; film stacking; quasi-static tensile tests; dynamic mechanical analysis (DMA); scanning electron microscopy (SEM)Ultimate tensile strengthmedicinescanning electron microscopy (SEM).General Materials ScienceFiberComposite materiallcsh:Microscopylcsh:QC120-168.85biocompositesBiocompositesartichoke fiberlcsh:QH201-278.5lcsh:TPLA; artichoke fiber; biocomposites; film stacking; quasi-static tensile tests; dynamic mechanical analysis (DMA); scanning electron microscopy (SEM).Stiffnessdynamic mechanical analysis (DMA)Settore ING-IND/22 - Scienza E Tecnologia Dei Materiali/dk/atira/pure/subjectarea/asjc/2500chemistrylcsh:TA1-2040PLAlcsh:Descriptive and experimental mechanicslcsh:Electrical engineering. Electronics. Nuclear engineeringmedicine.symptomscanning electron microscopy (SEM)lcsh:Engineering (General). Civil engineering (General)lcsh:TK1-9971quasi-static tensile testMaterials
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Creep Behavior of Poly(lactic acid) Based Biocomposites

2017

Polymer composites containing natural fibers are receiving growing attention as possible alternatives for composites containing synthetic fibers. The use of biodegradable matrices obtained from renewable sources in replacement for synthetic ones is also increasing. However, only limited information is available about the creep behavior of the obtained composites. In this work, the tensile creep behavior of PLA based composites, containing flax and jute twill weave woven fabrics, produced through compression molding, was investigated. Tensile creep tests were performed at different temperatures (i.e., 40 and 60 °C). The results showed that the creep behavior of the composites is strongly inf…

biocomposites; PLA; flax; jute; creepMaterials scienceflaxjuteCompression molding02 engineering and technologyBiocomposites; Creep; Flax; Jute; PLA010402 general chemistry01 natural scienceslcsh:TechnologyArticlecreepchemistry.chemical_compoundUltimate tensile strengthGeneral Materials ScienceComposite materiallcsh:Microscopylcsh:QC120-168.85biocompositeslcsh:QH201-278.5lcsh:TAdhesion021001 nanoscience & nanotechnology0104 chemical sciencesLactic acidSynthetic fiberSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiCreepchemistrylcsh:TA1-2040Polymer compositesPLAlcsh:Descriptive and experimental mechanicslcsh:Electrical engineering. Electronics. Nuclear engineering0210 nano-technologylcsh:Engineering (General). Civil engineering (General)Biocompositelcsh:TK1-9971Materials
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1986

Ultimate tensile properties and dart impact behaviour of coextruded films of LDPE and LLDPE were compared with those of films made from blends of the same resins. The effect of composition and of both blow up ratio and axial draw ratio of the blowing process on film properties was explored. The results indicate that, at least for semicompatible systems like that considered here, films made from blends and coextruded ones have mechanical properties very close to each other. Die Festigkeitseigenschaf ten und das Verhalten beim Kugelfalltest von coextrudiertcn Filmen aus LDPE und LLDPE wurden mit den entsprechenden Eigenschaften von aus Mischungen dieser Polymere hergestellten Filmen vergliche…

business.product_categoryMaterials sciencePolymers and PlasticsLinear polymerGeneral Chemical EngineeringIzod impact strength testLinear low-density polyethyleneDraw ratioLow-density polyethyleneUltimate tensile strengthDie (manufacturing)Composite materialbusinessTensile testingActa Polymerica
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Reinforcement Efficiency of Cellulose Microfibers for the Tensile Stiffness and Strength of Rigid Low-Density Polyurethane Foams

2020

Rigid low-density closed-cell polyurethane (PU) foams are widely used in both thermal insulation and structural applications. The sustainability of PU foam production can be increased by using bio-based components and fillers that ensure both enhanced mechanical properties and higher renewable material content. Such bio-based foams were produced using polyols derived from rapeseed oil and microcrystalline cellulose (MCC) fibers as filler. The effect of MCC fiber loading of up to 10 wt % on the morphology, tensile stiffness, and strength of foams has been evaluated. For estimation of the mechanical reinforcement efficiency of foams, a model allowing for the partial alignment of filler fibers…

business.product_categoryMaterials scienceYoung's modulus02 engineering and technology010402 general chemistry01 natural scienceslcsh:TechnologyArticlesymbols.namesakechemistry.chemical_compoundmicrocrystalline cellulose fibersThermal insulationMicrofiberUltimate tensile strengthpolymer matrix compositesGeneral Materials ScienceFiberYoung’s modulusCelluloseComposite materiallcsh:MicroscopyPolyurethanelcsh:QC120-168.85lcsh:QH201-278.5business.industrylcsh:T021001 nanoscience & nanotechnologyrigid polyurethane foams0104 chemical sciencesMicrocrystalline cellulosechemistrytensile strengthlcsh:TA1-2040symbolslcsh:Descriptive and experimental mechanicslcsh:Electrical engineering. Electronics. Nuclear engineering0210 nano-technologybusinesslcsh:Engineering (General). Civil engineering (General)lcsh:TK1-9971Materials
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High performance PA6/CNTs nanohybrid fibers prepared in the melt

2012

Commercial and home-made carbon nanotubes (CNTs) were plasma treated under oxygen atmosphere and then added to polyamide 6 (PA6) in order to prepare fibres by melt spinning. For comparison, pristine nanofillers were used too. The effect of functionalization and of filler characteristics on the morphological, rheological, mechanical and electrical properties of the fibres was studied by TEM and SEM, rheological measurements, tensile and electrical conductivity tests. The results demonstrated that the functionalization led to a better mechanical performance and the morphological analysis confirmed that the adhesion, the dispersion and the alignment of the nanotubes within the polymer matrix w…

chemistry.chemical_classificationCarbon nanotubes; Electrical properties; Elastic properties; Raman spectroscopy; Melt-spinningElectrical propertieMaterials scienceElastic propertieGeneral EngineeringMechanical properties of carbon nanotubesPolymerCarbon nanotubeConductivityMelt-spinningCarbon nanotubelaw.inventionchemistrylawRaman spectroscopyPolyamideUltimate tensile strengthCeramics and CompositesSurface modificationComposite materialMelt spinningComposites Science and Technology
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Performance-based characterization of recycled polymer modified asphalt mixture

2021

Due to the introduction of secondary materials, the asphalt mixtures to be designed and tested in our laboratories are constantly becoming much more complex than traditional asphalt mixtures making difficult to use conventional laboratory procedure and/or predict expected results. This study proposes a comprehensive characterization of asphalt mixture modified with recycled polymer compound by using both wet and dry process proposing adjustments to laboratory mixing and sample compaction procedure. Accordingly, three AC20 Hot Asphalt Mixture (HMA) were designed and their conventional and performance related properties were assessed by looking at a) Indirect Tensile test (ITS) a) moisture da…

chemistry.chemical_classificationDry proceMaterials scienceDry processRutPioneering mixing processCompactionMixing (process engineering)Pioneering mixing proceBuilding and ConstructionPolymerModified asphalt mixturesModified asphalt mixtureRecycled polymer compoundCrackingchemistryAsphaltPlastic wasteUltimate tensile strengthPMBGeneral Materials ScienceComposite materialCivil and Structural EngineeringTensile testingConstruction and Building Materials
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