Search results for "BEAM"

showing 10 items of 2126 documents

Optical Field-Induced Mass Transport in Soft Materials

2013

Abstract The dependence of the surface relief formation in amorphous chalcogenide (As 2 S 3 and As-S-Se) and Disperse Red 1 dye grafted polyurethane polymer films on the polarization state of holographic recording light beams was studied. It is shown that the direction of lateral mass transport on the film surface is determined by the direction of light electric vector and photoinduced anisotropy in the film. We propose a photoinduced dielectropfhoretic model to explain the photoinduced mass transport in amorphous films. Model is based on the photoinduced softening of the matrix, formation of defects with enhanced or decreased polarizability, and their drift under the electrical field gradi…

chemistry.chemical_classificationMaterials sciencebusiness.industryChalcogenideHolographic recordingPolymerOptical fieldSurface relief gratingsPhysics and Astronomy(all)Polarization (waves)Molecular physicsAmorphous solidchemistry.chemical_compoundCondensed Matter::Materials ScienceOpticschemistryAmorphous chalcogenide filmsAzo-dye polymersPolarizabilityCondensed Matter::SuperconductivityLight beambusinessAnisotropyPhysics Procedia
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Production of titanium ion beams in an ECR ion source

2002

Abstract Intensive highly charged Ti ion beams were successfully produced in the 14 GHz ECR ion source at the Accelerator Laboratory, University of Jyvaskyla (JYFL). The Ti beams were produced using the MIVOC technique, i.e. by allowing the vapor of an organic compound containing titanium to diffuse into the ion source at room temperature. After optimizing the source parameters the intensity of the 48 Ti 11+ ion beam reached a value of 45 μA.

chemistry.chemical_classificationNuclear and High Energy PhysicsMaterials scienceIon beamAnalytical chemistrychemistry.chemical_elementTitanium ionOrganic compoundIon sourceIonIon beam depositionchemistryPhysics::Plasma PhysicsPhysics::Accelerator PhysicsAtomic physicsInstrumentationTitaniumNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Surface plasmon near-field imaging of very thin microstructured polymer layers.

2004

We report on the near-field imaging of microstructured polymer layers deposited on an homogeneous metal thin film on which a surface plasmon mode is excited. The microstructures in the polymer layers are designed by electron beam lithography, and the near-field imaging is performed with a photon scanning tunneling microscope (PSTM). We show that, despite their very small height, the microstructures can be conveniently imaged with a PSTM thanks to the field enhancement at the surface of the metal thin film supporting the surface plasmon. The influence of the illumination conditions on the contrast of the PSTM images is discussed. In particular, we show that both the field enhancement and the…

chemistry.chemical_classificationPhotonMaterials sciencebusiness.industrySurface plasmonSurfaces and InterfacesPolymerCondensed Matter PhysicsMicrostructureSurface plasmon polaritonlaw.inventionOpticschemistrylawElectrochemistryGeneral Materials ScienceScanning tunneling microscopebusinessSpectroscopyElectron-beam lithographyLocalized surface plasmonLangmuir : the ACS journal of surfaces and colloids
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High-energy radiation processing, a smart approach to obtain PVP-graft-AA nanogels

2014

Abstract Poly(N-vinylpyrrolidone)-grafted-acrylic acid biocompatible nanogels (NGs) were prepared using an exiting industrial-type electron accelerator and setups, starting from semi-dilute aqueous solutions of a commercial PVP and the acrylic acid monomer. As a result, NGs with tunable size and structure can be obtained quantitatively. Sterility was also imparted at the integrated dose absorbed. The chemical structure of the NGs produced was confirmed through Fourier Transformer Infrared Spectroscopy (FT-IR). The molecular and physico-chemical properties of NGs, such as the hydrodynamic dimensions and surface charge densities, for various polymer and monomer concentrations in the irradiate…

chemistry.chemical_classificationPoly(N-vinylpyrrolidone) Acrylic acid grafting Nanogels E-beam irradiationRadiationMaterials scienceAqueous solutionAbsorption spectroscopyInfrared spectroscopyPolymerchemistry.chemical_compoundMonomerchemistryChemical engineeringPolymer chemistrySettore CHIM/07 - Fondamenti Chimici Delle TecnologieSurface chargeSpectroscopyPoly(N-vinylpyrrolidone); acrylic acid grafting; nanogels; e-beam irradiation.Acrylic acidRadiation Physics and Chemistry
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Studies of network organization and dynamics of e-beam crosslinked PVPs: From macro to nano

2012

Abstract In this work the influence of poly(N-vinyl pyrrolidone) (PVP) concentration in water on the organization and dynamics of the corresponding macro-/nanogel networks has been systematically investigated. Irradiation has been performed at the same irradiation dose (within the sterilization dose range) and dose rate. In the selected irradiation conditions, the transition between macroscopic gelation and micro-/nanogels formation is observed just below the critical overlap concentration (∼1 wt%), whereas the net prevalence of intra-molecular over inter-molecular crosslinking occurs at a lower polymer concentration (below 0.25 wt%). Dynamic–mechanical spectroscopy has been applied as a cl…

chemistry.chemical_classificationRadiationMaterials scienceAqueous solutionNMR spin–lattice relaxationSpin–lattice relaxationNanogelsPolymerDynamic mechanical analysise-Beam irradiation; PVP aqueous solutions; Nanogels; Dynamic mechanical spectroscopy; NMR spin–lattice relaxationDynamic mechanical spectroscopyNanogelPVP aqueous solutionsPolymerizationChemical engineeringchemistryNano-Polymer chemistrye-Beam irradiationElectron beam processingPVP aqueous solutionSettore CHIM/07 - Fondamenti Chimici Delle TecnologieNMR spin-lattice relaxationNanogelRadiation Physics and Chemistry
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E-beam curing of epoxy based blends in order to produce high performance composites

2007

In this work, blends of a difunctional epoxy monomer and a thermoplastic toughening agent are E-beam irradiated at two different dose rates and two different total absorbed doses. The influence of the processing conditions on the thermal properties and on the morphology of the obtained matrices has been investigated. In particular, it is shown how the increase of the dose rate causes an increase of the temperature during irradiation, thus inducing a simultaneous thermal and radiation curing. On the contrary, at low-dose rate the system mainly undergoes to radiation curing, thus making the cured material very sensible to a post-irradiation thermal treatment with a significant improvement of …

chemistry.chemical_classificationRadiationMaterials scienceThermoplasticEpoxyThermal treatmentchemistry.chemical_compoundEpoxy-thermoplastic blendsMonomerchemistryepoxy resinsvisual_artThermalE-beam irradiationElectron beam processingvisual_art.visual_art_mediumSettore CHIM/07 - Fondamenti Chimici Delle TecnologieIrradiationComposite materialCuring (chemistry)Composites
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Thermal properties of e-beam cured epoxy/thermoplastic matrices for advanced composite materials

2007

The aim of this work is to investigate the possibility to improve the thermal behaviour of epoxy based systems, cured by ionizing radiation, in order to produce matrices for advanced carbon fibres composites. Blends of two epoxy monomers, difunctional and trifunctional, have been polymerized by e-beam irradiation and the dynamic mechanical thermal properties have been investigated. The increase of the concentration of the trifunctional epoxy monomer in the blend causes a marked increase of the Tg, but strongly decreases the reactivity. Subsequently, blends of the same epoxy monomers with a high Tg thermoplastic toughening agent have been considered and their reactivity and the thermal prope…

chemistry.chemical_classificationThermoplasticMaterials sciencePolymers and PlasticsOrganic Chemistrythermal propertiesEpoxyCondensed Matter Physicscomposite materialelectron beam irradiationepoxy resinchemistry.chemical_compoundMonomerPolymerizationchemistryvisual_artAdvanced composite materialsMaterials Chemistryvisual_art.visual_art_mediumElectron beam processingReactivity (chemistry)Settore CHIM/07 - Fondamenti Chimici Delle TecnologieComposite materialGlass transition
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Characterization of ultra-high-molecular-weight polyethylene (UHMWPE) modified by ion implantation

2004

Abstract Surface modification of ultra high molecular weight polyethylene (UHMWPE) is induced by ion implantation of different ions at 300 keV energy. The aim of this work was the chemical, physical and mechanical characterization of the modified material in order to know deep inside about the effect of the ion beam upon the polymer. The irradiated surfaces are investigated by Raman spectroscopy, infrared absorption and micro-hardness analysis, scanning electron microscopy. Pin on disc measurements valuated the wear of the UHMWPE against a stainless steel probe; wear resistance increases of about 76% after the ion implantation. This result can be attributed to the ion bombardment inducing a…

chemistry.chemical_classificationUltra-high-molecular-weight polyethyleneMaterials sciencePolymers and PlasticsIon beamScanning electron microscopeUHMWPECharacterizationOrganic ChemistryMineralogyPolymerIonchemistry.chemical_compoundSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiIon implantationchemistryIon implantationIon implantation CharacterizationMaterials ChemistrySurface modificationIrradiationComposite materialPolymer
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Studies on electron-beam irradiation and plastic deformation of medical-grade ultra-high molecular weight polyethylene

2011

Abstract Separated and combined electron-beam irradiation and plastic deformation effects on the structures of ultra-high molecular weight polyethylene (UHMWPE) were studied. It was found that the concentration of carbonyl (ketones, esters and peresters), hydroxyl and vinyl groups increases with the growing dose of adsorbed electrons. It also tends to exhibit a slight increase in the melting point and crystallinity of the samples. A mechanical stress in the polymer was found to accelerate radiation-induced degradation. It was concluded that each of the factors studied (i.e. electron beam sterilization and plastic deformation) had a different impact on the polymer structure. The change in th…

chemistry.chemical_classificationUltra-high-molecular-weight polyethyleneRadiationMaterials scienceElectron-beam irradiationUHMWPEPolymerPolyethyleneDegradationCrystallinitychemistry.chemical_compoundchemistryOxidationMelting pointElectron beam processingDegradation (geology)IrradiationComposite materialPlastic deformationCrystallinityRadiation Physics and Chemistry
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Investigation on the indentation behavior of sandwich beams using crushable and hyperelastic foam cores

2010

In this work the indentation behaviour of sandwich beams is studied adopting the classical approach representing the core material as a Winkler-type foundation. It is shown how most of the proposed theories can be derived from a general fourth order linear differential equation expressing the equilibrium of the indented beam skin. Different assumptions on the supporting boundary constraints and materials constitutive behaviour, lead to simplifications of the general equation and to the prediction of different indentation features. An extension of the Segment-Wise approach recently proposed in the literature is in particular presented with potential to better simulate foam cores with markedl…

chemistry.chemical_classificationWork (thermodynamics)ThermoplasticMaterials sciencebusiness.industryPhysicsQC1-999Composite sandwiches Indentation Wimkler foundationMechanicsStructural engineeringCore (optical fiber)Settore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineFourth orderchemistryLinear differential equationIndentationHyperelastic materialbusinessBeam (structure)
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