Search results for "engineering.material"

showing 10 items of 2352 documents

Thermoelastic Stress Analysis of modified Transverse Cut Tensile composite specimens under pure Mode II fatigue delamination

2018

The present work investigates the behaviour of a Transvers Crack Tensile (TCT) specimen undergoing fatigue loading, by means of a Thermoelastic Stress Analysis (TSA) experimental setup. The TCT is a tensile composite specimen where a number of internal layers are cut through the beam width. The presence of such transverse notch favours the formation of interlaminar Mode II delaminations, starting from the notch tips and propagating between the cut and continuous plies. In this work, a modification is adopted to the classic TCT specimen, where insert films, mimicking artificial delaminations, are laid across the notch tips. This is done with the purpose to favour a pure Mode II and a symmetr…

Materials science/dk/atira/pure/subjectarea/asjc/2200/2205Composite number02 engineering and technologyEdge (geometry)Stress (mechanics)Settore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineThermoelastic damping0203 mechanical engineeringMaterials Science(all)Ultimate tensile strengthThermoelastic Stress AnalysisComposite materialFatigueEarth-Surface ProcessesDelamination Fracture ToughneMode IICivil and Structural EngineeringDelamination Fracture ToughnessMechanical EngineeringDelaminationFibre-reinforced plastic021001 nanoscience & nanotechnologyFibre Reinforced CompositeTransverse plane020303 mechanical engineering & transports/dk/atira/pure/subjectarea/asjc/2500Mechanics of MaterialsFibre Reinforced Composites/dk/atira/pure/subjectarea/asjc/2200/22100210 nano-technology/dk/atira/pure/subjectarea/asjc/2200/2211
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Time‐gated Raman and laser‐induced breakdown spectroscopy in mapping of eudialyte and catapleiite

2019

Abstract Raman analysis of rock samples containing rare earth elements (REEs) is challenging due to the strong fluorescence, which may mask the weaker Raman signal. In this research, time‐gated (TG) Raman has been applied to the construction of the mineral distribution map from REE‐bearing rock. With TG Raman, material is excited with a short subnanosecond laser pulse, and the Raman signal is collected within a picosecond‐scale time window prior to the formation of a strong fluorescent signal by means of single‐photon avalanche diode array. This allows signal readout with a significantly reduced fluorescence background. TG Raman maps are used to reveal the location of valuable minerals and …

Materials science010401 analytical chemistryAnalytical chemistryEudialyteMineral mappingtime‐gated Raman02 engineering and technologyengineering.material021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesrock analysissymbols.namesakelaser‐induced breakdown spectroscopy (LIBS)symbolsengineeringGeneral Materials ScienceLaser-induced breakdown spectroscopymineral mapping0210 nano-technologyRaman spectroscopySpectroscopyREE‐bearing mineralsJournal of Raman Spectroscopy
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Highly Modular Flow Cell for Electroorganic Synthesis

2017

A highly modular electrochemical flow cell and its application in electroorganic synthesis is reported. This innovative setup facilitates many aspects: an easy adjustment of electrode distance, quick exchange of electrode material, and the possibility to easily switch between a divided or undivided cell. However, the major benefit of the cell is the exact thermal positioning of the electrode material into a Teflon piece. Thereby, the application of expensive and nonmachinable electrode materials like boron-doped diamond or glassy carbon can easily be realized in flow cells. By this geometry, the maximum surface of such valuable electrode materials is exploited. The cell size can compete wit…

Materials science010405 organic chemistrybusiness.industryOrganic ChemistryFlow cellDiamondNanotechnologyModular designGlassy carbonengineering.material010402 general chemistryElectrochemistry01 natural sciences0104 chemical sciencesFlow (mathematics)ThermalElectrodeengineeringPhysical and Theoretical ChemistrybusinessOrganic Process Research & Development
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The behaviour of zirconium and hafnium during water-rock interaction

2018

Abstract Zr and Hf are two elements with same ionic charge and similar ionic size at a given coordination number. Despite the Zr/Hf ratio is quite constant in meteorites and lithospheric rocks, in natural waters can be either higher or lower compared to values of interacting minerals and rocks. Here, we reanalyze very recent published and present new data on continental and brine waters indicating that the Zr and Hf behavior is dependent on the properties of the authigenic phases formed during the water-rock interaction process. Our results show that water pH in the range between 1 and 9 and water ionic strength in the range between 0.001 and 4 mol kg−1 are responsible for the change of the…

Materials science010504 meteorology & atmospheric sciencesAnalytical chemistrychemistry.chemical_elementengineering.material010502 geochemistry & geophysics01 natural sciencesNatural waters and brinechemistry.chemical_compoundGeochemistry and PetrologyEnvironmental Chemistry0105 earth and related environmental sciencesZirconiumIonic radiusHfZrAuthigenic mineralAuthigenicWater-rock interactionPollutionIon speciationchemistryIonic strengthengineeringCarbonateHaliteClay minerals
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Quantification of pedogenic particles masked by geogenic magnetic fraction

2021

AbstractPedogenic magnetic fraction in soils is attributed to fine-grained particles, i.e. superparamagnetic grains. In the case of a strongly magnetic geogenic fraction, pedogenic magnetic contribution is hard to detect. To the best of our knowledge, detailed research into the masking of pedogenic superparamagnetic grains and quantification of this effect has not yet been carried out. The principal aim of our research is to quantify the influence of coarse-grained ferrimagnetic fraction on the detection of the superparamagnetic grains. In order to describe the masking phenomenon, volume and frequency-dependent magnetic susceptibility were determined on a set of laboratory prepared samples …

Materials science010504 meteorology & atmospheric sciencesEnvironmental magnetismScienceMineralogyMaghemiteengineering.material010502 geochemistry & geophysics01 natural sciencesArticlechemistry.chemical_compoundFerrimagnetism0105 earth and related environmental sciencesMagnetiteMultidisciplinaryQRGeomagnetismMagnetic susceptibilityGrain sizeGeophysicschemistryengineeringMedicineDiamagnetismSuperparamagnetismScientific Reports
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Aluminium distribution in an Earth's non–primitive lower mantle

2020

The aluminium incorporation mechanism of perovskite was explored by means of quantum mechanics in combination with equilibrium/off-equilibrium thermodynamics under the pressure-temperature conditions of the Earth's lower mantle (from 24 to 80 GPa). Earth's lower mantle was modelled as a geochemically non-primitive object because of an enrichment by 3 wt% of recycled crustal material (MORB component). The compositional modelling takes into account both chondrite and pyrolite reference models. The capacity of perovskite to host Al was modelled through an Al2O3 exchange process in an unconstrained Mg-perovskite + Mg-Al-perovskite + free-Al2O3(corundum) system. Aluminium is globally incorporate…

Materials science010504 meteorology & atmospheric sciencesSocio-culturaleThermodynamicschemistry.chemical_elementCorundumengineering.materialAluminium bearing perovskite010502 geochemistry & geophysicsMole fraction01 natural sciencesPE10_11Aluminium distribution Earth’s lower mantle; aluminium bearing perovskite; pyrolite chondrite reference model; MORB component; enriched lower mantle composition; open system.Aluminium distributionPressure rangeGeochemistry and PetrologyChondriteAluminiumAluminium bearing perovskite; Aluminium distribution; Chondrite reference model; Earth's lower mantle; Enriched lower mantle composition; MORB component; Open system; PyroliteEnriched lower mantle compositionEarth’s lower mantleChemical composition0105 earth and related environmental sciencesEarth's lower mantleDrop (liquid)PyroliteMORB componentchemistryChondrite reference modelOpen systemPyroliteengineering
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2019

Abstract The fatigue life of thermally sprayed Al2O3- and Cr2O3-based coatings has been studied under low-energy (0.7–5 mJ) impact conditions. A threshold impact energy and amount of repetitions the coatings can endure with said energy before catastrophic failure was obtained. The catastrophic failure was determined to occur when the fracture mode of the coating switched from brittle cone cracking to quasi-plastic radial cracking. The results are examined relative to the microstructural features along with other properties of the coatings - hardness and cavitation resistance. The experiment provided a new approach for a straightforward comparison of the micro-scale impact fatigue life of th…

Materials science02 engineering and technologySurfaces and InterfacesGeneral Chemistryengineering.material021001 nanoscience & nanotechnologyCondensed Matter PhysicsSurfaces Coatings and FilmsCracking020303 mechanical engineering & transportsBrittleness0203 mechanical engineeringCoatingCatastrophic failurevisual_artCavitationMaterials Chemistryvisual_art.visual_art_mediumFracture (geology)engineeringCeramicComposite material0210 nano-technologyThermal sprayingSurface and Coatings Technology
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Grafting Silicone at Room Temperature—a Transparent, Scratch-resistant Nonstick Molecular Coating

2020

Silicones are usually considered to be inert and, thus, not reactive with surfaces. Here we show that the most common silicone, methyl-terminated polydimethylsiloxane, spontaneously and stably bonds on glass-and any other material with silicon oxide surface chemistry-even at room temperature. As a result, a 2-5 nm thick and transparent coating, which shows extraordinary nonstick properties toward polar and nonpolar liquids, ice, and even super glue, is formed. Ten microliter drops of various liquids slide off a coated glass when the sample is inclined by less than 10°. Ice adhesion strength on a coated glass is only 2.7 ± 0.6 kPa, that is, more than 98% less than ice adhesion on an uncoated…

Materials science02 engineering and technologyengineering.material010402 general chemistry01 natural sciencesArticlechemistry.chemical_compoundSiliconeCoatingElectrochemistryGeneral Materials ScienceComposite materialSilicon oxideSpectroscopycomputer.programming_languageInertPolydimethylsiloxaneSurfaces and Interfaces021001 nanoscience & nanotechnologyCondensed Matter PhysicsGrafting0104 chemical scienceschemistryScratchengineeringSurface modification0210 nano-technologycomputerLangmuir
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Metallic interconnects for solid oxide fuel cell: Effect of water vapour on oxidation resistance of differently coated alloys

2009

International audience; The need of interconnect to separate fuel and oxidant gasses and connect individual cells into electrical series in a SOFC stack appears as one of the most important point in fuel cell technology. Due to their high electrical and thermal conductivities, thermal expansion compatibility with the other cell components and lowcost, ferritic stainless steels (FSS) are nowconsidered to be among the most promising candidate materials as interconnects in SOFC stacks. Despite the formation at 800 ◦C of a protective chromia Cr2O3 scale, it can transform in volatile chromium species, leading to the lost of its protectiveness and then the degradation of the fuel cell. A previous…

Materials science020209 energyEnergy Engineering and Power TechnologyMineralogy02 engineering and technologyChemical vapor deposition[CHIM.INOR]Chemical Sciences/Inorganic chemistryengineering.materialWater vapour7. Clean energyThermal expansionCorrosionCoating0202 electrical engineering electronic engineering information engineeringSOFCMetalorganic vapour phase epitaxyElectrical and Electronic EngineeringPhysical and Theoretical ChemistryRenewable Energy Sustainability and the Environment[ CHIM.INOR ] Chemical Sciences/Inorganic chemistry[CHIM.MATE]Chemical Sciences/Material chemistry021001 nanoscience & nanotechnologyChromiaAnodeChemical engineering[ CHIM.MATE ] Chemical Sciences/Material chemistryInterconnectMOCVDengineeringSolid oxide fuel cell0210 nano-technologyReactive elementJournal of Power Sources
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Influence of applied strain on the microstructural corrosion of AlMg2 as-cast aluminium alloy in sodium chloride solution

2012

International audience; The corrosion behavior of ISO AlMg2 (AA5052) was studied at the microscale using the Electrochemical Microcell Technique. The influence of plastic deformation on the corrosion resistance of this alloy was also examined. After polishing, pitting at small copper-enriched precipitates and structural etching were observed. After deformation, numerous slip bands were found in grains. After 5.5% plastic strain, the global electrochemical behavior of samples was significantly affected. Pitting potential was decreased in sites containing slip bands or in sites with large strain gradients (measured using microgauges deposited by lithography).

Materials science020209 energyGeneral Chemical EngineeringAlloyPolishing02 engineering and technologyPlasticityengineering.materialAL-CUCorrosionTHIN-FILMS0202 electrical engineering electronic engineering information engineeringAluminium alloyPitting corrosionPARTICLESGeneral Materials ScienceLASER-SCANNING MICROSCOPYLOCALIZED CORROSIONMetallurgyLüders bandtechnology industry and agriculture2024-T3General Chemistry021001 nanoscience & nanotechnologyELECTROCHEMICAL-BEHAVIORvisual_artPITTING CORROSIONvisual_art.visual_art_mediumengineeringINTERMETALLIC PHASESDeformation (engineering)0210 nano-technologyPIT INITIATION
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