0000000000947420

AUTHOR

Sabina Alessi

showing 85 related works from this author

Water diffusion and swelling stresses in ionizing radiation cured epoxy matrices

2017

Abstract In this work a DGEBF epoxy monomer was cured by electron beam radiation in the presence of an iodonium salt and the obtained system was hydrothermally aged as such and also after a thermal treatment, in order to obtain two systems having different uniformity in the cross-linking degree. On both systems, the transient stress field arising from swelling was measured and monitored by an optical Photoelastic technique and the results were commented with reference to a thermally cured epoxy system containing the same monomer and already discussed in a previous work. Beam samples with identical dimensions, obtained from the irradiated systems, have been aged at 80 °C in water, and charac…

Materials scienceDynamic mechanical thermal analysis Epoxy resins Hydrothermal aging Photoelastic Stress Analysis Radiation curing SwellingPolymers and Plastics02 engineering and technologyThermal treatment010402 general chemistry01 natural sciencesMaterials ChemistrymedicineIrradiationComposite materialCuring (chemistry)EpoxyDynamic mechanical analysis021001 nanoscience & nanotechnologyCondensed Matter Physics0104 chemical sciencesStress fieldMechanics of Materialsvisual_artvisual_art.visual_art_mediumGravimetric analysisSettore CHIM/07 - Fondamenti Chimici Delle TecnologieSwellingmedicine.symptom0210 nano-technology
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Photoelastic stress analysis assisted evaluation of fracture toughness in hydrothermally aged epoxies

2014

The present work has investigated the fracture toughness of a model DGEBA epoxy system subject to Hidro-Thermal aging. A Photoelastic Stress Analysis technique has been implemented, showing the evolution of stresses arising throughout the water uptake process due to the non-uniform swelling of the material. Gravimetric and Dynamic Mechanical Thermal Analyses have further complemented the characterization, showing the onset of plasticization effects with aging. The correlation of all previous characterizations has allowed to conclude that an increase of KIC fracture toughness is obtained at the fully saturated condition. In particular Photoelasticity has also revealed the onset of relevant s…

ToughnessMaterials scienceAbsorption of waterlcsh:Mechanical engineering and machinerylcsh:TA630-695Stress (mechanics)Thermosetting ResinSettore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineFracture toughnessFracture Toughnessmedicinelcsh:TJ1-1570Hydrothermal AgingComposite materialPhotoelasticityFracture Toughness; Hydrothermal Aging; Thermosetting Resin; Swelling Stresses; Photoelastic Stress Analysis.Mechanical EngineeringEpoxylcsh:Structural engineering (General)Fracture ToughneSwelling StresseSwelling StressesMechanics of Materialsvisual_artvisual_art.visual_art_mediumPhotoelastic Stress Analysis.Gravimetric analysisSettore CHIM/07 - Fondamenti Chimici Delle TecnologieSwellingmedicine.symptom
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Radiation curing of diacrylate glycerolate of bisphenol-A in the presence of an organically modified montmorillonite for the production of flame-resi…

2006

Polymerization of an acrylate derivative of bisphenol-A by ionizing radiation in the presence of an organically modified montmorillonite was carried out in order to produce a flame-retardant composite. The measurement of the thermal effect during irradiation indicates that radiation curing of pure resin and resin-clay mixtures occurred in both cases. Moreover, differential scanning calorimetry and dynamic mechanical thermal analysis showed that a curing completion can be obtained by thermal curing after irradiation with a significant increase of the glass transition temperature. The morphology was investigated by X-ray diffraction and transmission electron microscopy. These have indicated t…

Thermogravimetric analysisMaterials sciencePolymers and PlasticsGeneral Chemical EngineeringFlame retardance Organoclay Polymer composites Radiation Radical polymerizationOrganic Chemistryengineering.materialPolymer claychemistry.chemical_compoundDifferential scanning calorimetryMontmorillonitechemistryCone calorimeterengineeringComposite materialThermal analysisGlass transitionCuring (chemistry)Advances in Polymer Technology
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Devices for the capture of rare cells from biological samples for diagnostic purposes

2022

The chance of surviving to a disease often depends on early diagnosis and effective therapy. In the field of early prenatal diagnosis, micromanipulation is a reliable technique for manual selection and isolation of rare fetal cells in maternal biological fluids for molecular or cytogenetic analysis. This technique allows obtaining pure cell populations for analysis, but it is expensive and time consuming, as it requires qualified and experienced staff and specific equipment [1]. This research aims at making the prenatal diagnosis more economical and reproducible in the hospital environment, by creating a device that allows selecting rare cells from biological samples in a semi-automated way…

Cell capture prenatal diagnosis rare cells precision medicine medical devices
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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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Water diffusion and swelling stresses in highly crosslinked epoxy matrices

2016

Abstract The present work investigates the swelling induced stresses arising in two epoxy systems during water uptake. The analysed systems are two epoxy resin based on DGEBA monomer and DGEBF monomer respectively, both fully cured by DDS amine. The systems achieve different cross-link density degrees, and are characterised by high glass transition temperatures ranging between 200 and 230 °C. Both epoxies have been conditioned in deionized water baths at two different temperatures (50 °C and 80 °C). A desorption process at room temperature in a dry airborne environment was performed after saturation. Dynamic Mechanical Thermal Analysis, carried out at the various stages of hydrothermal cond…

Materials scienceEpoxy Resin; Hydrothermal Aging; Swelling; Dynamic Mechanical Thermal Analysis; Photoelastic Stress AnalysisPolymers and PlasticsDynamic Mechanical Thermal Analysi02 engineering and technology010402 general chemistry01 natural sciencesPhotoelastic Stress AnalysisStress (mechanics)DesorptionMaterials ChemistrymedicineHydrothermal AgingComposite materialThermal analysisSwellingEpoxy021001 nanoscience & nanotechnologyCondensed Matter Physics0104 chemical sciencesMechanics of MaterialsEpoxy Resinvisual_artvisual_art.visual_art_mediumSettore CHIM/07 - Fondamenti Chimici Delle TecnologieSwellingmedicine.symptomAbsorption (chemistry)0210 nano-technologyGlass transitionSaturation (chemistry)
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Absorption kinetics and swelling stresses in hydrothermally aged epoxies investigated by photoelastic image analysis

2015

Abstract The present work proposes an experimental optical methodology able to measure the transient swelling stresses induced by the water uptake ageing of polymers. In particular, the work describes the implementation of a Photoelastic technique to quantify internal stresses arising during the hydrothermal ageing of cast epoxy samples. The material investigated is a model DGEBA/DDS epoxy system. Curing and post-curing cycles have been optimised in order to obtain a fully cured, high T g , and completely stress free initial condition. Rectangular beam samples were then left in a hydrothermal bath at 90 °C, and regularly monitored by gravimetric and photoelastic analyses. The quantitative e…

Absorption of waterMaterials sciencePhotoelastic stress analysiPolymers and PlasticsThermosetting polymerSwelling stresseSettore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineDesorptionMaterials ChemistrymedicineComposite materialSettore ING-IND/15 - Disegno E Metodi Dell'Ingegneria IndustrialeCuring (chemistry)chemistry.chemical_classificationHydrothermal ageingPolymerEpoxyCondensed Matter PhysicschemistryMechanics of Materialsvisual_artThermosetting resinvisual_art.visual_art_mediumGravimetric analysisSettore CHIM/07 - Fondamenti Chimici Delle TecnologieSwellingmedicine.symptom
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Recombinant mussel protein Pvfp5β enhances cell adhesion of poly(vinyl alcohol)/k-carrageenan hydrogel scaffolds

2022

Polymeric hydrogels are increasingly being considered as a scaffold for tissue engineering because they show similarity to the extracellular matrix (ECM) of many tissues. To control various cellular processes, hydrogels are often functionalized or loaded with various bioactive molecules such as: specific ligands for adhesion receptors, growth factors, hormones, enzymes, and other natural or synthetic regulators of cellular behavior [1]. Cell adhesion is essential for cell communication and regulation of the cell cycle and is therefore of vital importance in tissue engineering. Biomimetic approaches have been investigated to facilitate cell-scaffold adhesion interactions. In particular, the …

Poly(vinyl alcohol)/k-carrageenan3D scaffoldSettore CHIM/07 - Fondamenti Chimici Delle TecnologieCell-ladenAdhesive proteinEGF-like motifPvfp5β
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Interlaminar fracture toughness behavior of electron-beam cured carbon-fiber reinforced epoxy-resin composites

2013

The work describes the preparation and physical-mechanical characterization of unidirectional CFRP panels manufactured by an electron beam curing technique. Delamination fracture toughness in Mode I and II is investigated in order to evaluate the influence of fiber–matrix adhesion strength, matrix toughness and matrix crosslinking density as determined by the radiation curing process. A matrix system comprising a DGEBA epoxy monomer and an initiator of cationic polymerization have been used, with one batch of resin mixed with a PES monomer in order to enhance matrix toughness. Curing was achieved with a pulsed 10 MeV Electron Beam accelerator. Thermally cured composite systems have also bee…

ToughnessMaterials sciencePolymers and PlasticsDelaminationComposite numberCationic polymerizationGeneral ChemistryEpoxyInterlaminar Fracture Toughness Electron-Beam Curing Carbon-Fiber Reinforced Plastic CompositesSettore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineFracture toughnessvisual_artMaterials ChemistryCeramics and Compositesvisual_art.visual_art_mediumSettore CHIM/07 - Fondamenti Chimici Delle TecnologieComposite materialThermal analysisCuring (chemistry)Polymer Composites
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RADIATION CROSSLINKED ADVANCED WOUND DRESSING CONTAINING EGG WHITE PROTEINS

During the past decades, the use of antibiotics has grown worldwide in different fields, from medicine to agriculture, leading to antibiotic resistance of microbes, which is the cause of thousands of deaths every year worldwide. [1, 2] Finding new antibiotics is becoming more and more difficult because their development is no longer convenient in term of the cost–benefit ratio for the pharmaceutical industry. The interest in egg white proteins, such as ovoalbumin, ovotransferrin and lysozyme, has risen especially because of their demonstrated antimicrobial activities. [3] These antimicrobial proteins can then be used to enrich wound dressing films that requires a high level of control of mi…

egg peptideWound dressinghydrogelegg protein
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Radiation curing of carbon fibre composites

2014

Epoxy/carbon fibre reinforced composites were produced by means of e-beam irradiation through a pulsed 10 MeV electron beam accelerator. The matrix consisted of a difunctional epoxy monomer (DGEBA) and an initiator of cationic polymerisation, while the reinforcement was a unidirectional high modulus carbon fibre fabric. Dynamic mechanical thermal analysis was carried out in order to determine the cross-linking degree. The analysis pointed out a nonuniformity in the cross-linking degree of the e-beam cured panels, with the formation of clusters at low Tg (glass transition temperature) and clusters at high Tg. An out-of-mould post irradiation thermal treatment on e-beam cured samples provides…

RadiationMaterials scienceModulusThermal treatmentEpoxyFracture toughnessvisual_artvisual_art.visual_art_mediumSettore CHIM/07 - Fondamenti Chimici Delle TecnologieComposite materialGlass transitionThermal analysisBeam (structure)Curing (chemistry)Carbon fibre reinforced epoxy resin Radiation curingDynamic mechanical thermal analysisDelamination fracture toughness
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Fracture Toughness of Hydrothermally Aged Epoxy Systems with Different Crosslink Density

2015

Abstract The present work investigates the fracture toughness behaviour of Single Edge Notched Bending (SENB) samples of epoxy systems subject to water uptake aging. Two epoxy systems with a significantly different Glass Transition Temperature, T g , are in particular considered: a typical commercial non-aeronautical grade resin matrix for composite applications, reaching a T g of 90 °C, and a DGEBA+DDS epoxy system achieving a T g of 230 °C.The materials have been conditioned by hydrothermal aging in a thermal bath at the temperature of 50 °C. TransmissionPhotoelastic Stress Analysisis carried outon SENB samples during water aging, monitoring the presence and evolution of swelling stresses…

Materials sciencePhotoelastic Stress AnalysiImage AnalysiComposite numberPhotoelastic Stress AnalysisStress (mechanics)Thermosetting ResinFracture toughnessEngineering (all)Fracture ToughnessHydrothermal AgingFracture Toughness; Hydrothermal Aging; Image Analysis; Photoelastic Stress Analysis; Swelling Stresses; Thermosetting Resin; Engineering (all)Composite materialEngineering(all)Image Analysis.General MedicineEpoxyDynamic mechanical analysisFracture ToughneSwelling StresseSwelling Stressesvisual_artvisual_art.visual_art_mediumFracture (geology)Gravimetric analysisGlass transition
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Accelerated ageing due to moisture absorption of thermally cured epoxy resin/polyethersulphone blends. Thermal, mechanical and morphological behaviour

2011

Abstract A model epoxy resin/anhydride system, modified with a polyethersulfone (PES) engineering thermoplastic toughening agent, has been studied under hydrothermal ageing in order to investigate the modification of the thermal, morphological and mechanical behaviour through dynamical mechanical thermal analysis, SEM microscopy and fracture toughness test respectively. Two different concentrations of the toughening agent were used in the blends and two ageing conditions have been considered, consisting of the immersion of the samples in distilled water at constant temperature of 70 °C for 1 week and for 1 month. Dynamical mechanical thermal analysis results on hydrothermally aged materials…

chemistry.chemical_classificationThermoplasticMaterials scienceAbsorption of waterPolymers and PlasticsEpoxyCondensed Matter PhysicsHydrothermal circulationFracture toughnesschemistryDistilled waterMechanics of MaterialsAgeingvisual_artMaterials Chemistryvisual_art.visual_art_mediumEpoxy resinsHydrothermal ageingPhase separationFracture toughnessComposite materialThermal analysisPolymer Degradation and Stability
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Mode I fracture toughness behavior of hydro-thermally aged carbon fibre reinforced DGEBA-HHPA-PES systems

2012

In this work the Mode I fracture toughness behavior of unidirectional CFRP laminates is investigated by means of Double Cantilever Beam (DCB) tests. The composite samples were manufactured by thermal curing after impregnation of a Carbon fabric with a DGEBA epoxy and anhydride HHPA curing agent. One resin batch was also mixed with a PES thermoplastic monomer to enhance the matrix toughness. Two lots of samples, toughened and un-toughened, were then left to soak in hot water to achieve various degrees of aging. The influence of matrix toughening and hydrothermal aging on the delamination behavior of the composite have then been assessed and correlated with characterization data from Dynamic …

chemistry.chemical_classificationToughnessMaterials scienceThermoplasticScanning electron microscopeComposite numberEpoxyDynamic mechanical analysisFracture toughnessSettore ING-IND/22 - Scienza E Tecnologia Dei Materialichemistryvisual_artCFRP Delamination Fracture Toughness Epoxy Resins Hydrothermal Agingvisual_art.visual_art_mediumComposite materialCuring (chemistry)
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Review of photoelastic image analysis applied to structural birefringent materials: glass and polymers

2015

Photoelasticity is particularly suitable for the analysis of the stress state in structural materials that are transparent and birefringent. Some techniques of digital photoelasticity (phase shifting and RGB) are applied to the analysis of stress field in two classes of structural materials. The first one consists of tempered glasses, such as those used in the automotive and architectural fields. The second one consists of thermoset polymers, typically used as matrices in fiber reinforced plastic structural composites. The birefringence of such resins is, in particular, exploited to investigate the development of swelling stresses and changes in fracture toughness as induced by water uptake…

digital photoelasticityPhotoelasticityBirefringenceMaterials scienceStructural materialGeneral Engineeringresidual streFibre-reinforced plasticAtomic and Molecular Physics and Opticsfracture toughnessStress fieldStress (mechanics)Settore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineFracture toughnesshydrothermal ageingResidual stressglaSettore CHIM/07 - Fondamenti Chimici Delle TecnologieComposite materialphotoelastic image analysiSettore ING-IND/15 - Disegno E Metodi Dell'Ingegneria Industrialethermoset polymer
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Hydrogel films engineered in a mesoscopically ordered structure and responsive to ethanol vapors

2014

Abstract Responsive hydrogels filling the interstitial spaces of photonic crystals can form mesoscopically structured materials, which exhibit reversible shifts in the Bragg diffracted light as a response of environmental changes. These materials can be used to generate chemical or biochemical sensors. The present work reports on the synthesis and characterization of ethanol responsive hydrogels that can be used in the design of novel breathalyzers. The dynamic mechanical behavior of the macroscopic hydrogels and their swelling features in the presence of different liquids or vapors have been investigated to orientate the choice of the best responsive material and curing process. The swelli…

Materials sciencePolymers and PlasticsGeneral Chemical EngineeringNanotechnologymacromolecular substancescomplex mixturesBiochemistryTransmission spectroscopychemistry.chemical_compoundMaterials ChemistrymedicineEnvironmental ChemistryPhotonic crystalSwellingPhotonic crystalEthanoltechnology industry and agriculturefood and beveragesGeneral ChemistryResponsive-hydrogelPolystyrene nanoparticlesCharacterization (materials science)Ethanol vapor sensingchemistrySelf-healing hydrogelsSettore CHIM/07 - Fondamenti Chimici Delle TecnologieSwellingmedicine.symptomReactive and Functional Polymers
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Recombinant mussel protein Pvfp5β enhances cell adhesion of poly(vinyl alcohol)/k-carrageenan hydrogel scaffolds

2022

Polymeric hydrogels are increasingly considered as scaffolds for tissue engineering due to their extraordinary resemblance with the extracellular matrix (ECM) of many tissues. As cell adhesion is a key factor in regulating important cell functions, hydrogel scaffolds are often functionalized or loaded with a variety of bioactive molecules that can promote adhesion. Interesting biomimetic approaches exploit the properties of mussel-inspired recombinant adhesive proteins. In this work, we prepared hydrogel scaffolds with a 50%w mixture of k-carrageenan (kC) and polyvinyl alcohol (PVA), by a two-step physical gelation process, and we coated them with Perna viridis foot protein-5 beta (Pvfp5 be…

Tissue EngineeringTissue Scaffolds3D scaffoldsHydrogelsGeneral MedicineFibroblastsCell-ladenCarrageenanBiochemistryRecombinant ProteinsMiceEGF-like motifsPoly(vinyl alcohol)/k-carrageenanStructural BiologyPolyvinyl AlcoholCell AdhesionAnimalsSettore CHIM/07 - Fondamenti Chimici Delle TecnologieMolecular BiologyAdhesive proteinPvfp5β
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Effects of Nylon 6,6 Nanofibrous Mats on Thermal Properties and Delamination Behavior of High Performance CFRP Laminates

2014

none 8 no Nylon 6,6 electrospun nanofibrous membranes interleaved in Carbon Fibre Reinforced Plastic (CFRP) laminates have been proposed as a means to provide a higher threshold value to delamination on structural sites where composites are more prone to develop such failure. A model, highly crosslinked thus inherently brittle, epoxy matrix was selected for its high Young’s modulus and glass transition temperature exceeding 250 °C. The influence of the Nylon 6,6 nanofibres on the curing behaviour of the matrix and on the thermal and dynamic mechanical properties of the cured resin was investigated. These properties were related to the features of the epoxy resin and of the resin impregnated…

Materials sciencePOLYMERIC NANOFIBERSPolymers and Plasticselectronspun nanofibrous matModuluschemistry.chemical_compoundSettore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineBrittlenessFracture toughnessPOLYMER–MATRIX COMPOSITES (PMCS)Materials ChemistryPOLYMERIC NANOFIBERS; DELAMINATION; THERMAL PROPERTIES; POLYMER–MATRIX COMPOSITES (PMCS)Composite materialCuring (chemistry)Carbon fiber reinforced polymerthermal propertiedelamination fracture toughnessDELAMINATIONGeneral ChemistryEpoxyComposite laminatesNylon 6chemistryvisual_artCeramics and Compositesvisual_art.visual_art_mediumTHERMAL PROPERTIESSettore CHIM/07 - Fondamenti Chimici Delle TecnologieCFRP laminate
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Electrospun rubber/thermoplastic hybrid nanofibers for localized toughening effects in epoxy resins

2020

Synthetic rubber/thermoplastic blends were electrospun from their solutions. The rubber was a solid acrylonitrile/butadiene/acrylic acid copolymer and the thermoplastic was polyacrylonitrile. The aims of this study were to identify suitable systems and processing conditions for obtaining rubber-based electrospun nanofibers, to investigate the ability of an epoxy resin system to impregnate and swell selected hybrid rubber/thermoplastic mats, and to assess the impact of the nanofibers on the resin morphology and curing behavior. In particular, electrospinning trials were carried out varying the composition of the feed solution and process parameters, such as the applied voltage, the flow rate…

chemistry.chemical_classificationMaterials scienceThermoplasticPolymers and Plasticsfracture toughneGeneral ChemistryEpoxyTougheningElectrospinningSurfaces Coatings and Filmsepoxy resinFracture toughnesschemistryNatural rubbervisual_artNanofiberMaterials Chemistryvisual_art.visual_art_mediumsynthetic rubbersSettore CHIM/07 - Fondamenti Chimici Delle TecnologieComposite materialnanofiberelectrospinning
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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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The influence of the processing temperature on gamma curing of epoxy resins for the production of advanced composites

2007

Abstract Gamma radiation curing of an epoxy monomer, in the presence of an iodonium salt, as initiator, is studied. Systems have been polymerized at the same irradiation dose and dose rate and at different processing temperatures. The experimental results show that all the irradiated materials exhibit a latent reactivity, undergoing toward an increase of crosslinking density if they are thermally cured after irradiation. The results indicate that the processing temperature affects both the crosslinking density after irradiation and the sensibility to the post-irradiation thermal treatment.

RadiationMaterials scienceProcessing temperaturetechnology industry and agricultureRadiation curingmacromolecular substancesEpoxyThermal treatmentchemistry.chemical_compoundMonomerchemistryPolymerizationChemical engineeringvisual_artAdvanced composite materialsPolymer chemistryvisual_art.visual_art_mediumEpoxy resinIrradiationDose rateCuring (chemistry)
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Influence of Polymer Electrospun Nanofibers on Thermal Properties of Epoxy Resins

2019

Electrospinning of polymers has gained surging interest in the last decades due to its wide range of applications in different fields, such as sensors, electronic devices, separation systems, biomedical materials. Still there are only few reports on the use of these nanofibers as reinforcement in polymer composites. In this paper, solution electrospinning was employed to produce nanofibrous mats impregnating two epoxy resins to form “monolayer“ systems, with the aim to study the influence of the nanofibers on both the curing behaviour and the morphology of the resin systems. Three polymers were chosen for producing electrospun mats, a polysulfone (PSF), a polyamide Nylon 6,6 (Ny66) and a po…

electrospun nanofiberlcsh:Computer engineering. Computer hardwareepoxy resinslcsh:TP155-156lcsh:TK7885-7895lcsh:Chemical engineeringChemical Engineering Transactions
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POLYMER ELECTROSPUN NANOFIBERS AS INTERLEAVES FOR ENANCHEMENT OF CFRP LAMINATES DELAMINATION RESISTANCE

2019

Electrospinning process is a technique to produce nanoscale fibers that has evinced more interest in recent years due to its versatility and potential for applications in several applications. The mall size and the concomitant ultra-high specific surface area of electrospun nanofibers make them suitable for several applications, such as tissue engineering, biosensors, filtration and advanced polymer composites (1). In particular for carbon fiber reinforced polymers (CFRPs) the huge specific surface area of electrospun nanofibers results in very large interfacial area between nanofibers and polymer matrix and therefore leads to substantial improvement of fiber-matrix interfacial interactions…

Elettrospinning epoxy resins carbon fiber compositesSettore CHIM/07 - Fondamenti Chimici Delle Tecnologie
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Hydrothermal ageing of radiation cured epoxy resin-polyether sulfone blends as matrices for structural composites

2010

Abstract The hydrothermal ageing of epoxy–thermoplastic blends, used as matrices for carbon fibre composites, cured by electron beam, has been studied. Two different thermoplastic percentages have been adopted. A suitable choice of both curing process and formulation parameters allows to carry out irradiation at mild temperature with several advantages, coming from a “non thermal” process, for both the final properties of the materials and the environment. Nevertheless the occurring of vitrification phenomena needs the use of a short thermal treatment after irradiation on the already solid materials, in order to complete the cure reactions. Radiation cured epoxy based matrices have been sub…

chemistry.chemical_classificationMaterials scienceThermoplasticPolymers and PlasticsPlasticizerEpoxyThermal treatmentCondensed Matter PhysicsRadiation curing structural composites hydrothermal ageing fracture thoughnessFracture toughnesschemistryMechanics of Materialsvisual_artMaterials Chemistryvisual_art.visual_art_mediumIrradiationComposite materialThermal analysisCuring (chemistry)Polymer Degradation and Stability
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κ-Carrageenan and PVA blends as bioinks to 3D print scaffolds for cartilage reconstruction.

2022

3D printing of polymeric scaffolds and autologous stem cells is a promising tool for damaged facial cartilage reconstruction surgeries. To this end, suitable bioinks are needed to generate scaffolds with the required morphological and functional features. We formulated hydrogel bioinks using k-Carrageen (kC) and poly(vinyl alcohol) (PVA) in three different weight ratios. The kC gives the systems the ability to undergo rapid sol-to-gel transitions upon cooling from 60 °C and above to body temperature, while the PVA is used as rheology modifier and porogen. The latter is crosslinked after molding or printing by freeze-thaw cycling for 1 day (FT1) or 5 days (FT5). To select the most suitable f…

CartilageTissue ScaffoldsTissue EngineeringStructural BiologyPrinting Three-DimensionalHydrogelsGeneral MedicineCarrageenanMolecular BiologyBiochemistryspheroids from human adipose stem cells 3D printing hydrogel bioinksInternational journal of biological macromolecules
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Carbon Fiber Composites Cured by γ-Radiation-Induced Polymerization of an Epoxy Resin Matrix

2008

The use of ionizing radiation in order to initiate polymerization of suitable monomers has found increased interest in the last two decades due to its several advantages. In this work, carbon fiber composites through gamma radiation polymerization of epoxy matrices have been produced for aerospace and advanced automotive applications. Composite samples were produced by irradiation at room temperature using different radiation doses and, as reference, thermal curing of the same epoxy resin formulations was also carried out. Furthermore, some irradiated samples were subjected to postirradiation thermal curing to complete the polymerization reactions. The properties of the cured materials were…

Materials scienceAbsorption of waterPolymers and PlasticsGeneral Chemical EngineeringOrganic ChemistryEpoxyThermal treatmentPolymerizationFlexural strengthvisual_artComposites Epoxy Mechanical properties Moisture absorption Radiation curing Thermal propertiesvisual_art.visual_art_mediumIrradiationComposite materialThermal analysisGlass transition
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Ionizing radiation induced curing of epoxy resin for advanced composites matrices

2005

Abstract The radiation curing of an epoxy monomer in the presence of an iodonium salt, as photo initiator, is studied. Systems with different concentrations of photo initiators have been polymerized via both gamma rays and e-beam, at various dose rates. The aim of this work is to investigate how the photo initiator concentration and the irradiation dose rate affect the temperature of the systems during curing and how the different thermal histories influence the dynamic mechanical thermal properties of the obtained materials.

Nuclear and High Energy PhysicsMaterials scienceRadiation curingGamma rayEpoxyIonizing radiationchemistry.chemical_compoundMonomerchemistryPolymerizationvisual_artPolymer chemistryAdvanced composite materialsvisual_art.visual_art_mediumEpoxy resinIrradiationComposite materialInstrumentationCuring (chemistry)CompositesNuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms
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Fracture toughness of synthesised high-performance epoxies subject to accelerated water aging

2018

Abstract The effects of water uptake on the fracture toughness of epoxy systems with high glass-transition temperatures (Tg above 170 °C) are investigated. Aging conditioning has been conducted in hot water, followed by a desorption conditioning in a room temperature dry-airborne. Water aging determines plasticisation effects and crosslink-density modifications, revealed by reductions of the Tg. It is less known how such modifications influence the material fracture toughness. In this study, Single Edge Notched Bending samples have been tested according to standards, to evaluate the KIC fracture toughness at different stages of water absorption-desorption. The characterisation has been supp…

Materials scienceAbsorption of waterFracture toughnePolymers and Plastics02 engineering and technology010402 general chemistry01 natural sciencesStress (mechanics)Crack closureFracture toughnessResidual stressmedicineEpoxy resinComposite materialSwellingOrganic ChemistryResidual stresseEpoxy021001 nanoscience & nanotechnologyWater aging0104 chemical sciencesPhotoelasticityvisual_artvisual_art.visual_art_mediumSwellingmedicine.symptom0210 nano-technologySaturation (chemistry)
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Study of the Curing Process of DGEBA Epoxy Resin Through Structural Investigation

2015

In this work, a multi-scale approach with different analytical methods is applied to study the curing process and the structural properties of a diglycidyl ether of bisphenol A (DGEBA) epoxy resin. This monomer, thermally cured using 4,4′-diaminodiphenilsulfone (DDS) as hardener, is analyzed after 10, 45, 90, and 120 min of reaction time at 180 °C to obtain information on samples with different cross-linking densities. Samples are also characterized after extraction in acetone in order to obtain structural information on the insoluble parts. For this purpose, differential scanning calorimetry (DSC), dynamic mechanical thermal analysis (DMTA), solid-state nuclear magnetic resonance (ss-NMR),…

Bisphenol AMaterials scienceDiglycidyl etherEpoxy resins solid-state nuclear magnetic resonance (ss-NMR) positron annihilation lifetime spectroscopy (PALS)Polymers and PlasticsOrganic ChemistryEpoxyDynamic mechanical analysisCondensed Matter Physicschemistry.chemical_compoundMonomerDifferential scanning calorimetrychemistrySolid-state nuclear magnetic resonancevisual_artPolymer chemistryMaterials Chemistryvisual_art.visual_art_mediumSettore CHIM/07 - Fondamenti Chimici Delle TecnologiePhysical and Theoretical ChemistryThermal analysis
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Effect of hydrothermal ageing on the thermal and delamination fracture behaviour of CFRP composites

2014

Abstract This work investigates the hydrothermal ageing behaviour of a carbon fibre reinforced laminate and its epoxy matrix in bulk conditions. A model DGEBA epoxy is employed, and water uptake and dynamic mechanical thermal (DMTA) analyses have been performed on both the composites and bulk resin. Fracture toughness of the bulk resin has been measured, evidencing a substantially unmodified critical stress intensity factor KIC, although the evidence of plasticisation effects given by DMTA. Interlaminar Mode I fracture toughness of the composite showed a variable trend towards slight decreases or slight increases, according to the prevailing toughening or embrittling mechanisms activated by…

Materials scienceMechanical EngineeringPolymer–matrix composites (PMCs) Fracture toughness Environmental degradation Thermal analysisComposite numberDelaminationEpoxyDynamic mechanical analysisIndustrial and Manufacturing EngineeringHydrothermal circulationSettore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineFracture toughnessMechanics of MaterialsAgeingvisual_artCeramics and Compositesvisual_art.visual_art_mediumFracture (geology)Settore CHIM/07 - Fondamenti Chimici Delle TecnologieComposite material
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Solid State NMR Spectroscopy Investigation of the Molecular Structure of Epoxy Based Materials Cured in Different Conditions

2012

In this work two epoxy resin model systems, whose monomers are typically used in structural composites, were thermally cured in different cure conditions in order to obtain different cross-linking densities. Their molecular structures were investigated through solid state NMR spectroscopy in order to correlate them to the cure process conditions used and the results were discussed in the light of the dynamical mechanical thermal analysis (DMTA) performed.

Materials scienceSolid-state nuclear magnetic resonanceNatural rubberepoxy resins solid state NMR dynamical mechanical thermal analysis.visual_artvisual_art.visual_art_mediumMoleculeEpoxyDynamic mechanical analysisComposite materialThermal analysisSpectroscopyCuring (chemistry)
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Influence of the e-beam irradiation and photo-oxidation aging on the structure and properties of LDPE-OMMT nanocomposite films

2012

Abstract In this paper two systems, polyethylene (LDPE) and polyethylene/commercial organo-modified montmorillonite (LDPE/OMMT) nanocomposite, were subjected to e-beam irradiation at different doses and both the molecular modifications and mechanical properties have been investigated through solubility, FT-IR, calorimetric and tensile tests. Moreover, in some of the irradiated systems photo-oxidation aging was performed and its effects were studied. The results show an enhancement with irradiation of the positive effect of the nano-filler loading, related to the increase of the mechanical properties, due to the increase of the nano-filler polymer interaction. Nevertheless calorimetric and F…

RadiationMaterials scienceNanocompositeLDPE-OMMT nanocomposite film e-beam irradiation Photo-oxidation ageing Mechanical properties Carbonyl index Molecular modificationPolyethylenechemistry.chemical_compoundLow-density polyethyleneSettore ING-IND/22 - Scienza E Tecnologia Dei MaterialiMontmorillonitechemistryPolymer chemistryUltimate tensile strengthSettore CHIM/07 - Fondamenti Chimici Delle TecnologieIrradiationComposite materialE beam irradiationSolubilityRadiation Physics and Chemistry
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Xyloglucan-based hydrogel films for wound dressing: Structure-property relationships

2017

Thin xyloglucan-based hydrogel films have been synthetized and characterized in the prospect of producing wound dressings. Polyvinyl alcohol (PVA) and glycerol (Gro) were added to have an optimal combination of softness, conformability and resilience. Physical hydrogels have been transformed into permanent covalent hydrogels by reaction with glutaraldehyde (GA). Network structure-process-property relationships are discussed on the account of the results of several complementary characterizations: FTIR, rheology, thermal analysis, morphological analysis, moisture retention and swelling measurements. Selected formulations were also subjected to preliminary in vitro cytotoxicity tests. The phy…

Materials Chemistry2506 Metals and AlloysGlycerolMaterials sciencePolymers and PlasticsCell Survival02 engineering and technologymacromolecular substances010402 general chemistry01 natural sciencesPolyvinyl alcoholchemistry.chemical_compoundStructure-Activity RelationshipRheologyStructure-properties relationshipsMaterials ChemistrymedicineHumansComposite materialFourier transform infrared spectroscopyXyloglucanGlucansStructure-property relationshipWound HealingPolymers and PlasticOrganic Chemistrytechnology industry and agricultureHydrogels021001 nanoscience & nanotechnology0104 chemical sciencesXyloglucanThermogravimetryHydrogelchemistryA549 CellsGlutaralPolyvinyl AlcoholWound dressingSelf-healing hydrogelsThermogravimetryXylansGlutaraldehydeSettore CHIM/07 - Fondamenti Chimici Delle TecnologieSwellingmedicine.symptom0210 nano-technologyRheologyBandages Hydrocolloid
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Structural investigation of e-beam cured epoxy resins through solid state NMR

2012

Abstract In this paper the network structure of e-beam cured DGEBF based epoxy resins is investigated. Two epoxy systems, having different reactivity and cured in different process conditions, were analyzed through solid state NMR spectroscopy. The analysis shows that the more reactive system has higher cross-linking density and higher uniformity of network distribution. Similar information were obtained, in a previous work, on the same systems through dynamic mechanical thermal analysis. It is worth noting that unlike DMTA tests, which interfere with the molecular structure of the analyzed material, due to the heating during the analysis itself, more reliable information, without any artef…

RadiationMaterials scienceEpoxy resin E-beam curing Network structure Dynamic-mechanical–thermal analysis Solid statenuclearmagneticresonanceEpoxyDynamic mechanical analysisSolid-state nuclear magnetic resonancevisual_artPolymer chemistryvisual_art.visual_art_mediumElectron beam processingMoleculeReactivity (chemistry)Composite materialThermal analysisSpectroscopyRadiation Physics and Chemistry
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Pulse radiolysis and theoretical investigation on the initial mechanism of the e-beam polymerization of epoxy resins. The results obtained on (phenox…

2007

Abstract The radical cation of (phenoxymethyl)oxirane ( PGE ⋅ + ) is generated by pulse radiolysis in dichloromethane solution and by direct action of radiation on the title compound. In the pure system its UV–vis spectrum is characterized by two bands at 340 and 430 nm, such that the electronic structure corresponds to a dipole bearing the positive charge on the phenoxy side. At the same time, the phenoxy-oxirane bridge is weakened. Then, the radical cation fragments into a phenoxonium ion and an oxyranylmethyl radical ( k PGE - fragm = 1.16 × 10 7 s - 1 ) . The latter immediately rearranges to an allyloxyl radical by ring opening. It is then conceived that the action of onium salts, as ra…

Onium saltsRadiationPulse radiolysisChemistryCationic polymerizationCationic polymerizationOniumEpoxy ring openingPhotochemistryIonchemistry.chemical_compoundRadical ionPolymerizationRadiolysisPolymer chemistryElectron beam curingCuring (chemistry)Pulse radiolysiDichloromethane
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Hydrothermal aging of carbon reinforced epoxy laminates with nanofibrous mats as toughening interlayers

2016

Electrospun mats have been applied as toughening interlayers in high performance carbon fiber epoxy composites. While the toughening mechanism exerted by the mat at the interface is the subject of several recent studies, no investigations are reported on the aging behaviour of laminates comprising these nanostructured elements. This work investigates the influence of the combined effect of water and temperature (90 °C) on laminates with Nylon 6,6 electrospun membranes placed either at the middle plane only or at each interlayer. The water-uptake behaviour is modelled by a two-stage diffusion model and compared with the behaviour of the neat resin and of the laminate without mats. Interestin…

Electrospun nanofiberMaterials sciencePolymers and PlasticsCarbon fibers02 engineering and technology010402 general chemistry01 natural sciencesHydrothermal circulationInterlaminar fracture toughneElectrospun nanofibersMaterials ChemistryMechanics of MaterialComposite materialMaterials Chemistry2506 Metals and AlloyPolymers and PlasticTwo-stage water uptake modelEpoxy021001 nanoscience & nanotechnologyCondensed Matter PhysicsTougheningCarbon reinforced epoxy composite0104 chemical sciencesHydrothermal agingMechanics of MaterialsThermo-mechanical propertievisual_artvisual_art.visual_art_mediumSettore CHIM/07 - Fondamenti Chimici Delle Tecnologie0210 nano-technologyPolymer Degradation and Stability
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Radiation curing of 1,2 epoxy – phenoxy propane in the presence of an iodonium salt

2004

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Properties of Epoxy-Pes systems as polymer matrices for carbon fiber composites produced by e-beam curing

2008

Radiation curing carbon fiber composites
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Epoxy based matrices for structural composites prepared by ionizing radiation. Morphological and thermal behaviour

2005

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Radiation curing of epoxy resins in the presence of engineering thermoplastic: a way to produce nanostructured matrices for aerospace composites

2005

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Design, synthesis and characterization of a theranostic nanoplatform for tumor site-specific delivery of doxorubicin

2022

Cancer therapy theranosic platform nano-gel drug deliverySettore CHIM/07 - Fondamenti Chimici Delle Tecnologie
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Effetto dell’invecchiamento idrotermico sulle proprietà termiche e meccaniche di resine epossidiche strutturali

2018

Le resine termoindurenti, utilizzate come matrici per materiali compositi rinforzati con fibre di carbonio, sono caratterizzate da un elevato grado di densità di reticolazione che conferisce loro una elevata fragilità e che allo stesso tempo le espone a significativi effetti di invecchiamento idrotermico durante il loro utilizzo [1]. In particolare si assiste alla diminuzione della temperatura di transizione vetrosa, per effetto di fenomeni di plasticizzazione e degradazione, e alla diminuzione di modulo elastico a flessione. Recentemente gli autori hanno proposto un metodo, Photoelastic Stress Analysis (PSA), molto efficace per monitorare le modifiche del materiale, in termini di swelling …

Resine epossidiche invecchiamento idrotermico DMTA fotoelasticità
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E-beam cross-linking of LDPE-OMMT nanocomposites and their photo-oxidation behaviour

2010

polymer nanocompositephoto-chemical ageingclay
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“Ionizing radiation induced polymerization of epoxy resin in order to produce carbon fibre composites”

2009

Radiation curing structural composites
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Idrothermal ageing of ionizing radiation cured epoxy matrices for carbon fibre composites

2008

Carbon fibre composites radiation curing hydrothermal ageing
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Radiation processing per la sintesi di nuovi materiali

2008

Radiation processing Materiali innovativi
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DELAMINAZIONE INTERLAMINARE DI COMPOSITI CFRP AL VARIARE DELLE CONDIZIONI DI CURA DELLA MATRICE

2012

In questo lavoro si è condotto uno studio sperimentale del comportamento a delaminazione interlaminare in Modo I di laminati compositi unidirezionali in fibra di carbonio e matrice epossidica (CFRP), al variare delle condizioni di cura della matrice. Tutti i sistemi analizzati hanno utilizzato lo stesso tessuto e lo stesso monomero epossidico DGEBA. Variando il processo di cura (cura termica o mediante radiazioni), gli agenti di cura (ammine o anidridi per i sistemi curati termicamente), e l’impiego di additivi tenacizzanti (es. il PES per i sistemi irradiati), è stato possibile controllare e modificare sia il grado di adesione fibra/matrice, che il grado di fragilità della matrice (monitor…

Settore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineMateriali Compositi (FRP) Tenacità alla Frattura Adesione Fibra-Matrice Double Cantilever Beam (DCB) Analisi Dinamico Meccanica (DMTA).Settore CHIM/07 - Fondamenti Chimici Delle TecnologieSettore ING-IND/15 - Disegno E Metodi Dell'Ingegneria Industriale
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Realizzazione di Giunti Strutturali Mediante Polimerizzazione di Sistemi Adesivi Indotta da Fasci di Elettroni

2007

Giunti strutturali Adesivi strutturali E-beam curing
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Toughened epoxy matrices produced by e-beam irradiation

2009

Composites Toughened epoxy matrices e-beam irradiation
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Processi di cura di resine epossidiche mediante radiazioni ionizzanti per la realizzazione si materiali compositi per il settore aerospaziale. Influe…

2006

resine epossidiche radiazioni ionizzanti materiali compositi
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Influence of Nylon 6,6 nanofiber mats on cure behavior and properties of CFR epoxy resin

2014

In this work Nylon 6,6 nanofibrous mats produced by electrospinning were used as interlayers in carbon fiber reinforced laminates. A high crossilinked epoxy resin was chosen as matrix. The effects of polymeric mats on cure behavior, thermal and delamination properties of the composite laminates were investigated.

Settore CHIM/07 - Fondamenti Chimici Delle TecnologieEpoxy resin Composite laminates Electrospinning
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Radiation engineered nanogels as platform for next-generation of medical diagnostics and therapeutics

2010

nanogels radiation synthesis diagnostics therapeutics
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The durability of carbon fiber/epoxy composites under hydrothermal ageing

2011

Studies on fibre reinforced composites are now receiving greater attention. Industrial applications have been successful in areas like aerospace, automobile, marine, construction and sporting goods. The first generation of epoxy resins for use in carbon fibre composites are able to achieve optimized high stiffness modules and high heat resistance by a high crosslink density, reached through thermal curing. However, these formulations can be very toxic and brittle with low crack resistance, which was a major disadvantage for structural applications. In the last years the use of ionizing radiation as alternative to thermal curing has been proposed as an environmentally friendly process. Furth…

Settore ICAR/11 - Produzione EdiliziaDurability carbon fiber composites hydrothermal ageing fracture toughness
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Rare cell capture platforms based on antibody-conjugated electrospun nanofiber mats for noninvasive prenatal diagnostics

2022

The chance of surviving to a disease often depends on early diagnosis and effective therapy. In the field of early prenatal diagnosis, micromanipulation is a reliable technique for manual selection and isolation of rare fetal cells in maternal biological fluids for molecular or cytogenetic analysis. This technique allows obtaining pure cell populations for analysis, but it is expensive and time consuming, as it requires qualified and experienced staff and specific equipment [1]. The aim of this study is to make the prenatal diagnosis more economical and reproducible in the hospital environment, by creating a device that allows selecting rare cells from biological samples in a semi-automated…

Cell capture prenatal diagnosis rare cells precision medicine medical devices
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The influence of the processing temperature on gamma curing of epoxy resins for advanced composites

2006

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Radiation curing of an epoxy resin based system under controlled temperature conditions

2005

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Study of the curing of a DGEBA based system through structural investigation

2011

thermal curing epoxy resins NMR spectroscopy DMTA analysisSettore CHIM/07 - Fondamenti Chimici Delle Tecnologie
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Radiation Curing of Thermosetting- Thermoplastic Blends as Matrices for Structural Carbon Fibre Composites

2011

fracture toughnethermal propertiesradiation processingepoxy resin
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Synthesis od epoxy/carbon fiber composites induced by e-beam. Study of the effect of hydrothermal ageing on thermal and mechanical properties

2010

e-beamcuring epoxy resin hydrothermal ageing
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Radiation sculpured nanogels as platform for novel therapeutic systems

2012

nanomedicine radiation chemistry nanogelsSettore CHIM/07 - Fondamenti Chimici Delle Tecnologie
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Multifunctional and Bio-hybrid Hydrogel As bioartificial Matrices and Drug Delivery Devices

2011

Settore CHIM/07 - Fondamenti Chimici Delle TecnologieBio-hybrid Hydrogel
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RADIATION CURING OF CARBON FIBRE COMPOSITES

2012

radiation curingSettore CHIM/07 - Fondamenti Chimici Delle Tecnologie
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Nano structured systems synthesised by ionizing radiation

2009

Ionizing radiation nanostructured systems epoxy resin curing nano-bio composites
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Properties-morpholohy-processing relationships in the e-beam curing of epoxy resin-thermoplastic blends for advanced composite matrices

2007

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Thermal and mechanical properties of polymer matrices for carbon fibre composites produced by radiation curing of Epoxy-Pes blends

2008

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Polymer matrices for composites obtained through radiation curing of epoxy resins

2004

Composites radiation curing
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Matrici polimeriche nanostrutturate per materiali compositi ottenute mediante radiazioni ionizzanti

2005

Radiazioni ionizzanti Matrici polimeriche nanostrutturate Materiali compositi
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Ionizing radiation induced curing of epoxy resin based systems for advanced composites matrices

2004

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Water diffusion and swelling stresses in ionizing radiation cured epoxies as matrices for carbon fiber composites

2017

Cross-linking polymerization initiated by high energy radiation is a very attractive technique for the production of high performance composite materials. This method in fact offers many advantages compared to conventional thermal curing processes, due to the possibility to operate at mild temperature and in short time, limiting both energy and time consuming [1-2]. High performance composite materials mainly consist of epoxy resins as matrix and carbon fibers as reinforce, due to their excellent properties in terms of thermal and mechanical resistance. An important requirement of such systems for structural applications is their ability to maintain the properties within a fixed range durin…

High performance composite materials electron beam curing hydrothermal ageing Photoelastic Stress Analysis
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Macromolecular design and preparation of nanogels as pharmaceutical carriers

2010

Nanogels pharmaceutical carriers
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TEMPERATURE-TRIGGERED MACROSCOPIC GELATION OF IRRADIATED XYLOGLUCANS FOR BIOMEDICAL APPLICATIONS

2014

Settore CHIM/07 - Fondamenti Chimici Delle TecnologieMACROSCOPIC GELATION BIOMEDICAL APPLICATIONS
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Structural adhesive joints for transport applications

2007

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Sintesi di materiali avanzati mediante radiazioni ionizzanti

2006

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Radiation engineering of functional biomaterials: from smart hydrogels to theragnostic nanodevices

2009

Radiation processing functional biomaterials smart hydrogels theragnostic nanodevices
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Toughened matrices for advanced carbon fibre composites obtained through e-beam curing of two different epoxy-thermoplastic blends

2007

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Ionizing radiation curing of epoxy based blends in order to produce high performance composites

2006

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Radiation-Engineering of All Plastic Nanocomposite Films

2015

In recent years, polymer nanocomposites have fascinated scientists, engineers and industrialists on the premise that the creation of new and more performing polymeric materials is possible by the combination of different building blocks with controlled dimensions at the nanoscale. Unfortunately, uniform dispersion of the hetero-phase domains within the plastic matrix or on its surface often fails due to the unfavorable thermodynamics, thus resulting in migration and irreversible aggregation phenomena. In-situ generation of a dispersed hetero-phase within the same polymer matrix or in its precursors increases the chances of achieving a better control of morphology by eliminating the often cr…

Radiationpolymer nanocompositepolysaccharide-based-film
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Epoxy resin based matrices for advanced composites cured by ionizing radiation. Study of the influence of process parameters on final properties

2006

Radiation curing Epoxy based composites
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Radiation processing: a versatile methodology to tune the structure of polymeric materials

2013

radiation processingSettore CHIM/07 - Fondamenti Chimici Delle Tecnologie
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Photonic crystal hydrogel films responsive to ethanol vapors

2013

Photonic crystalSettore CHIM/07 - Fondamenti Chimici Delle Tecnologie
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Pulse radiolysis and theoretical investigation on the initial mechanism of E-Beam polymerization of epoxy resins. The results obtained on (phenoxymet…

2006

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PROPERTIES OF IONIZING RADIATION CURED POLYMER MATRICES FOR CARBON FIBER COMPOSITES AFTER AGEING DUE TO MOISTURE ABSORPTION AND THERMAL TREATMENT

2008

Carbon fiber composites ionizing radiation hydrothermal ageing
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TENACITÀ ALLA FRATTURA INTERLAMINARE DI COMPOSITI CFRP SOTTOPOSTI A PROCESSI DI INVECCHIAMENTO IDROTERMICO

2011

In questo lavoro si è condotto uno studio degli effetti dell’invecchiamento idrotermico sulla tenacità alla frattura interlaminare in Modo I di laminati in composito CFRP con lay-up unidirezionale. I pannelli realizzati impiegano una resina epossidica DGEBA. Provini DCB sono stati ricavati in accordo con la norma ASTM D5528. Prove dinamico meccaniche DMTA sono state condotte per analizzare l’influenza dell’invecchiamento sulla temperatura di transizione vetrosa, e quindi sul grado di fragilità della matrice. Il lavoro descrive il set-up sperimentale per la determinazione delle Curve R, evidenziando l’influenza della morfologia del tessuto in carbonio. I valori di GIC di innesco e di propaga…

Carbon Fibre Reinforced Plastics (CFRP) Invecchiamento Idrotermico Tenacità alla Frattura Interlaminare Double Cantilever Beam (DCB).Settore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineSettore CHIM/07 - Fondamenti Chimici Delle Tecnologie
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Studies of network structure and dynamics of e-beam crosslinked PVPs: From macro to nano

2011

Much interest has been paid to develop a variety of radiation-crosslinked hydrated polymeric materials, which swell in water but do not dissolve, as biocompatible materials used for wound healing, drug delivery system, surface-coating material for medically used devices, etc. With the aim of establishing design rules to produce hydrogels of controlled size at the nanoscale and desired internal network structure using conventional electron accelerators and set-ups, here we attempt a description in terms of structural and dynamic properties of polymer networks generated through e-beam irradiation of aqueous solutions of the same model polymer, a commercial grade poly(N-vinyl-pyrrolidone), sub…

e-Beam irradiationPVP aqueous solutions Nanogels Dynamic mechanical spectroscopy NMR spin–lattice relaxation
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Epoxy resin-thermoplastic blends as polymer matrices for carbon fiber composites

2009

Radiation curing Structural composites
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