Search results for "Relative"

showing 10 items of 1094 documents

Design approach for high efficiency NFC systems with magnetic shielding materials

2020

The performance of a Near Field Communication (NFC) antenna may be diminished when it is placed close to any conductive surface such as a metallic case or a battery. This degradation is caused due to the stray magnetic field created by the eddy currents induced on the surface, which is opposite to the intended field generated by the NFC antenna. One of the first solutions that come to mind to designers when facing this problem is the use of high permeability magnetic shielding based on sintered ferrite sheets. This is a good approach but something that is not generally taken into account is that these materials introduce an additional inductance to the NFC antenna. If the permeability of th…

Materials scienceLoop antennaAcousticsSmith chart020206 networking & telecommunications02 engineering and technology021001 nanoscience & nanotechnologyMagnetic fieldlaw.inventionInductancelawElectromagnetic shielding0202 electrical engineering electronic engineering information engineeringEddy currentEquivalent circuit0210 nano-technologyRelative permeability2020 International Symposium on Electromagnetic Compatibility - EMC EUROPE
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Application of Positron Annihilation Spectroscopy to Studies of Subsurface Zones Induced by Wear in Magnesium and Its Alloy AZ31

2011

Interaction of sliding bodies is an important aspect of numerous applications and subject of many studies (Solecki, 1989). Generally, when two surfaces are loaded together the true contact area is much smaller than the apparent one. The true contact is only at high points or asperities of the surfaces where the interactions in the atomic scale take place. Relative movement between the surfaces leads to friction and wear processes. The rate of wear is controlled by the load, the relative velocity and the behaviour of the material near asperities. The region of asperities can be plastically deformed and the stress is transported to the deeper laying region that becomes elastically deformed (F…

Materials scienceMagnesiumAlloyMetallurgyRelative velocitychemistry.chemical_elementengineering.materialAtomic unitsPositron annihilation spectroscopyStress (mechanics)chemistryengineeringComposite materialContact area
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Synthesis of nanocrystalline NbAl3 by mechanical and field activation

2001

Abstract The mechanically-activated, field-activated, and pressure-assisted synthesis (MAFAPAS) process, which combines the simultaneous synthesis and densification of nanophase materials, was utilized to produce nanocrystalline NbAl3 material from Nb+3Al mechanically activated powders. Nb+3Al elemental powders were co-milled for a short time in a specially designed planetary ball mill to obtain nanoscale distributed reactants but to avoid the formation of any product phases. These were then subjected to high AC currents (1500–1650 A) and uniaxial pressures (56–84 MPa). Under these conditions, a reaction is initiated by field activation and completed within a short period of time (3–6 min).…

Materials scienceMechanical EngineeringMetallurgyMetals and AlloysNiobiumchemistry.chemical_elementGeneral ChemistryElectronNanocrystalline materialMatrix (chemical analysis)chemistryChemical engineeringMechanics of MaterialsMaterials ChemistryRelative densityCrystalliteNanoscopic scaleBall millIntermetallics
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One-Step Synthesis and Consolidation of Nanophase Iron Aluminide

2001

The simultaneous synthesis and densification of nanophase iron aluminide is investigated. Elemental nanophase reactants produced by mechanical activation were reacted by field activation with the simultaneous application of uniaxial pressure. The process was demonstrated in this work by the synthesis of dense nanometric FeAl. Iron and aluminum powders were co-milled in a specially designed planetary mill to obtain nanometric reactants and to avoid formation of any product phases. These powders were then subjected to high AC currents (1250–1500 A) and pressures in the range of 70–106 MPa. Under these conditions, a reaction was initiated and completed within a short period of time (2.5–3.5 mi…

Materials scienceMetallurgyIntermetallicchemistry.chemical_elementOne-StepFEALChemical engineeringchemistryAluminiumMaterials ChemistryCeramics and CompositesRelative densityParticle sizeCrystalliteAluminideJournal of the American Ceramic Society
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Electrical and optical low frequency noises in multimodal vertical cavity surface emitting lasers

2006

Experimental investigations of the low frequency noise of multimode 780 nm vertical cavity surface emitting lasers are reported. Electrical noise, optical noise and their correlation have been measured in the frequency range 1 Hz–95 kHz. The results show that the main contribution to the electrical noise is located in the distributed Bragg reflector layers of the laser. The optical power and pump current noise sources are strongly correlated below and around the threshold, while are weakly correlated above threshold. It is argued that the noise in the optical power is due to both free injection carrier noise and optical gain fluctuations.

Materials scienceMulti-mode optical fiberPhysics and Astronomy (miscellaneous)business.industryRelative intensity noiseShot noisePhysics::OpticsOptical powerlow frequency noiseDistributed Bragg reflectorNoise (electronics)VCSELOpticsNoise generatorOptoelectronicsFlicker noisebusinessInstrumentationcoherence function
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Effect of Moisture Content on the Processing and Mechanical Properties of a Biodegradable Polyester

2021

This work is focused on the influence of moisture content on the processing and mechanical properties of a biodegradable polyester used for applications in injection molding. The pellets of the biodegradable polyester were exposed under different relative humidity conditions at a constant temperature before being compression molded. The compression-molded specimens were again placed under the above conditions before the mechanical testing. With all these samples, it is possible to determine the effect of moisture content on the processing and mechanical properties separately, as well as the combined effect of moisture content on the mechanical properties. The results obtained showed that th…

Materials sciencePolymers and PlasticsPelletsOrganic chemistryCompression molding02 engineering and technologyMolding (process)010501 environmental sciencesmechanical properties01 natural sciencesArticleQD241-441Ultimate tensile strengthRelative humidityComposite materialElastic modulusWater content0105 earth and related environmental sciencesmoisture contentMoistureGeneral Chemistry021001 nanoscience & nanotechnologybiodegradable polymersrheologyprocessing0210 nano-technologyPolymers
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Sintering of Fe2NiO4 with an internal binder: a way to obtain a very dense material

2003

Abstract The coupled synthesis and sintering of Fe2NiO4 can be carried out from the calcination under air at high temperatures (>1200 °C) of precompacted (under 12 MPa) pellets of different mixtures: NiO/α-Fe2O3; NiO/α-Fe2O3/Fe; NiO/α-Fe2O3/Ni. The densest material is obtained at 1200 °C only from the following mixture: NiO (40 mol%), α-Fe2O3 (50 mol%) and Ni (10 mol%). Because the metallic nickel is very ductile, it is used as an internal binder in order to enhance the precompacting of the samples. Moreover, the role of nickel is to enhance the sintering reaction. This route leads to a final material of relative density close to 98±2%.

Materials sciencePolymers and PlasticsScanning electron microscopeMetallurgyNon-blocking I/OMetals and AlloysCompactionPelletschemistry.chemical_elementSinteringElectronic Optical and Magnetic Materialslaw.inventionNickelchemistryChemical engineeringlawCeramics and CompositesRelative densityCalcinationActa Materialia
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Cyclic moisture sorption and its effects on the thermomechanical properties of epoxy and epoxy/MWCNT nanocomposite

2019

The aim of this work was to reveal the moisture absorption&ndash

Materials sciencePolymers and Plasticsmultiwall carbon nanotubesCarbon nanotubeArticleepoxylaw.inventionlcsh:QD241-441lcsh:Organic chemistrylawmedicineRelative humidityglass transition temperatureComposite materialdynamic mechanical analysisNanocompositeMoisturecyclic moisture sorption:TECHNOLOGY::Materials science [Research Subject Categories]SorptionGeneral ChemistryEpoxyDynamic mechanical analysisvisual_artvisual_art.visual_art_mediumSwellingmedicine.symptom
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Photoelectrochemical and XPS characterisation of oxide layers on 316L stainless steel grown in high-temperature water

2015

Passive films on AISI 316L stainless steel were grown by exposure in high temperature (300 °C and 150 bar) water. X-ray photoelectron spectroscopy was employed to study their composition as a function of immersion time. A photoelectrochemical investigation, supported by electrochemical and impedance measurements, allowed to get information on the solid-state properties of the investigated layers. The experimental results suggest the formation of a stratified layer with an outer iron-rich layer and an inner Cr-rich oxide layer, whose relative thickness and composition are dependent on the immersion time.

Materials sciencePressurised water reactorMetallurgyOxidePressurised water reactorCondensed Matter PhysicCondensed Matter PhysicsElectrochemistryStainless steelchemistry.chemical_compoundSettore ING-IND/23 - Chimica Fisica ApplicatachemistryChemical engineeringRelative thicknessX-ray photoelectron spectroscopyImmersion (virtual reality)Photocurrent spectroscopyXPSElectrochemistryGeneral Materials ScienceMaterials Science (all)Electrical and Electronic Engineering
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Direct determination by portable ED-XRF of mineral profile in cocoa powder samples

2019

Abstract The present study has exploited the rapidity of the analysis and the multi-elemental capability of the energy dispersive X- ray fluorescence (ED-XRF) technique for the mineral profile determination in cocoa powder. A fast, cheap and environmental sustainable method without reagent consumption or toxic waste generation has been proposed. The samples can be prepared in the form of pellets of 13 mm in diameter and 2–3 mm thickness. The different internal calibrations used by ED-XRF equipment did not provide accurate results when comparing the mineral profile with the concentration obtained by Inductively Couple Plasma Optical Emission Spectroscopy (ICP-OES) after microwave assisted di…

Materials scienceRelative standard deviationPellets01 natural sciencesAnalytical Chemistry0404 agricultural biotechnologyMicrowave assisted digestionLimit of DetectionCalibrationChocolateMicrowavesDetection limitCacaoMineralsMineralChromatography010401 analytical chemistrySpectrometry X-Ray Emission04 agricultural and veterinary sciencesGeneral Medicine040401 food science0104 chemical sciencesSpectrophotometryReagentInductively coupled plasma atomic emission spectroscopyFood ScienceFood Chemistry
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