Search results for "Finite element"

showing 10 items of 892 documents

In Silico Evaluation of Treatment of Periprosthetic Fractures in Elderly Patients After Hip Arthroplasty

2021

The aim of this study was to investigate the soundness of in silico finite element model (FEM) in the assessment of strain in the femur and in the components fixing the periprosthetic fracture in elderly patients after hip arthroplasty. From a group of 55 patients, aged 27–95, treated due to fractures after hip replacement in 2012–2018, 18 patients were separated out, aged over 85, out of whom 7 had type C fractures, according to the Vancouver classification. These seven patients formed the study group. The fractures were stabilized with a locking compression plate system and wire loops or by replacement of the endoprosthesis stem. The FEM was performed by processing radiological images of …

Elderly patientsPeriprosthetic fractureEndoprosthesisIn silicoHip arthroplastyFinite element model
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Inverting Multiple Residual Stress Components from Multiple Cuts with the Contour Method

2007

An extension of the contour method is presented which allows the measurement of multiple stress components by making multiple cuts. In the contour method, a body is carefully cut in two using wire electric discharge machining (EDM). The contours, or shapes, of the cut surfaces are then measured and used to calculate the original residual stress normal to the cut plane using a simple finite element calculation. In the extension presented here, the two pieces from the original body can be cut again in a transverse direction, and the contours of the new cut surfaces are measured. The stresses calculated on the planes of these second cuts have been affected by the first cut. Then a simple inver…

Electric discharge machiningFinite element methodResidual stressesSteelThree dimensionalSettore ING-IND/14 - Progettazione Meccanica E Costruzione Di Macchine
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New approach to characterisation of electric alloys under rotating magnetic flux density

1996

The computation of electrical machines using the characterisation of electric alloys proposed by several authors gives performances not verified by experiments on actual machines. By means of finite-element-method software, the authors show that the electromagnetic context where electrical alloys are built into rotating electrical machines is completely different from the actual characterisation system. A new testing device is proposed to take into account the phenomena highlighted.

Electric machineEngineeringbusiness.product_categoryComputer simulationbusiness.industryComputationMechanical engineeringMagnetic fluxFinite element methodMagnetic fieldHardware_GENERALElectronic engineeringElectrical and Electronic EngineeringMagnetic alloybusinessAir gap (plumbing)IEE Proceedings - Science, Measurement and Technology
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Performance Comparison of Electrical Motors equipped with slightly Asymmetrical Windings

2019

This paper presents a comparison between the performances of electrical machines equipped with slightly asymmetrical windings. More in detail, by modifying the stator geometry of an Interior Permanent Magnet Synchronous Machine equipped with a symmetrical winding configuration, other two slightly asymmetrical winding topologies are obtained. The three models are, then, analyzed by means of a finite element method (FEM) and the related results are compared in terms of cogging torque, static characteristics and leakage factor. The obtained results demonstrate that the adoption of slightly asymmetrical windings could be an interesting alternative solution during the design stage of electrical …

Electric motorMaterials sciencebusiness.industry020209 energy020208 electrical & electronic engineeringWinding designCogging torque02 engineering and technologyStructural engineeringCogging torqueSettore ING-IND/32 - Convertitori Macchine E Azionamenti ElettriciFinite element methodHarmonic analysisElectromagnetic coilPerformance comparison0202 electrical engineering electronic engineering information engineeringStator geometryAsymmetrical windingbusinessFEM analysiHarmonic analysiLeakage (electronics)
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Analytical RF Pulse Heating Analysis for High Gradient Accelerating Structures

2021

The main aim of this work is to present a simple method, based on analytical expressions, for obtaining the temperature increase due to the Joule effect inside the metallic walls of an RF accelerating component. This technique relies on solving the 1-D heat-transfer equation for a thick wall, considering that the heat sources inside the wall are the ohmic losses produced by the RF electromagnetic fields penetrating the metal with finite electrical conductivity. Furthermore, it is discussed how the theoretical expressions of this method can be applied to obtain an approximation to the temperature increase in realistic 3-D RF accelerating structures, taking as an example the cavity of an RF e…

Electromagnetic fieldNuclear and High Energy PhysicsWork (thermodynamics)Materials scienceElectromagneticsanálisis térmico010308 nuclear & particles physicsJoule effectestructuras aceleradoras de RFMechanics01 natural sciencesFinite element methodPulse (physics)RF pulse heatingNuclear Energy and Engineering:FÍSICA::Nucleónica::Aceleradores de partículas [UNESCO]0103 physical sciencesHeat transferUNESCO::FÍSICA::Nucleónica::Aceleradores de partículasRadio frequencyElectrical and Electronic Engineering
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An augmented MFS approach for brain activity reconstruction

2017

Abstract Weak electrical currents in the brain flow as a consequence of acquisition, processing and transmission of information by neurons, giving rise to electric and magnetic fields, which can be modeled by the quasi-stationary approximation of Maxwell’s equations. Electroencephalography (EEG) and magnetoencephalography (MEG) techniques allow for reconstructing the cerebral electrical currents and thus investigating the neuronal activity in the human brain in a non-invasive way. This is a typical electromagnetic inverse problem which can be addressed in two stages. In the first one a physical and geometrical representation of the head is used to find the relation between a given source mo…

Electromagnetic fieldNumerical AnalysisGeneral Computer Sciencemedicine.diagnostic_testApplied MathematicsScalar (physics)010103 numerical & computational mathematicsMagnetoencephalographyInverse problem01 natural sciencesFinite element methodTheoretical Computer Science010101 applied mathematicsSettore MAT/08 - Analisi NumericaSettore ING-IND/31 - ElettrotecnicaMethod of Fundamental Solutions Boundary value problems M/EEG LOOCV algorithmModeling and SimulationmedicineMethod of fundamental solutionsBoundary value problem0101 mathematicsBoundary element methodAlgorithmMathematics
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Silencing and enhancement of second-harmonic generation in optical gap antennas

2012

International audience; Amplifying local electromagnetic fields by engineering optical interactions between individual constituents of an optical antenna is considered fundamental for efficient nonlinear wavelength conversion in nanometer-scale devices. In contrast to this general statement we show that high field enhancement does not necessarily lead to an optimized nonlinear activity. In particular, we demonstrate that second-harmonic responses generated at strongly interacting optical gap antennas can be significantly suppressed. Numerical simulations are confirming silencing of second-harmonic in these coupled systems despite the existence of local field amplification. We then propose a…

Electromagnetic fieldOptics and PhotonicsSurface PropertiesMetal NanoparticlesElectrons02 engineering and technology01 natural sciencesSignalOpticsElectromagnetic Fields0103 physical sciencesMaterials TestingNanotechnologyScattering RadiationComputer SimulationSurface plasmon resonance[SPI.NANO]Engineering Sciences [physics]/Micro and nanotechnologies/Microelectronics010306 general physicsLocal fieldPlasmonPhysics[PHYS.PHYS.PHYS-OPTICS]Physics [physics]/Physics [physics]/Optics [physics.optics][ PHYS.PHYS.PHYS-OPTICS ] Physics [physics]/Physics [physics]/Optics [physics.optics]business.industryElectromagnetic RadiationSecond-harmonic generationEquipment DesignModels Theoretical021001 nanoscience & nanotechnologyAtomic and Molecular Physics and OpticsFinite element methodNonlinear systemMicroscopy Electron ScanningOptoelectronics[ SPI.NANO ] Engineering Sciences [physics]/Micro and nanotechnologies/MicroelectronicsGold0210 nano-technologybusiness
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A field-network model of a linear oscillating motor and its dynamics characteristics

2005

We describe a method of modeling of the dynamics characteristics for linear oscillating motors. We used electromagnetic finite-element analysis in the network model, which contains the electric circuit and mechanical equations. We compared the integral parameters of the electromagnetic field with the measured ones. We also compared the calculated and measured waves of the stator current for two values of supply voltage. The comparison yields a good agreement.

Electromagnetic fieldPhysicsField (physics)StatorMechanicsLinear motorFinite element methodElectronic Optical and Magnetic MaterialsMagnetic fieldlaw.inventionNuclear magnetic resonancelawComputational electromagneticsElectrical and Electronic EngineeringVoltageIEEE Transactions on Magnetics
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Flux density at the airgap of small DC motors with different permanent-magnet poles

1993

Electromagnetic fieldPhysicslawMagnetBrushed DC electric motorMechanical engineeringCommutator (electric)DC motorFinite element methodShape controllaw.invention[1993] Digests of International Magnetics Conference
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Near-field properties of plasmonic nanostructures with high aspect ratio

2014

International audience; Using the Green's dyad technique based on cuboidal meshing, we compute the electromagnetic field scattered by metal nanorods with high aspect ratio. We investigate the effect of the meshing shape on the numerical simulations. We observe that discretizing the object with cells with aspect ratios similar to the object's aspect ratio improves the computations, without degrading the convergency. We also compare our numerical simulations to finite element method and discuss further possible improvements.

Electromagnetic field[PHYS]Physics [physics]RadiationMaterials science[ PHYS ] Physics [physics]DiscretizationCondensed Matter - Mesoscale and Nanoscale PhysicsComputationFOS: Physical sciencesNear and far fieldComputational Physics (physics.comp-ph)Condensed Matter PhysicsAspect ratio (image)Finite element methodComputational physicsMesoscale and Nanoscale Physics (cond-mat.mes-hall)NanorodElectrical and Electronic EngineeringPlasmonic nanostructuresPhysics - Computational Physics
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