Search results for "SIMULATION"

showing 10 items of 5095 documents

Viscoelastic properties of the Achilles tendon in vivo

2013

It has been postulated that human tendons are viscoelastic and their mechanical properties time-dependent. Although Achilles tendon (AT) mechanics are widely reported, there is no consensus about AT viscoelastic properties such as loading rate dependency or hysteresis, in vivo. AT force-elongation characteristics were determined from 14 subjects in an ankle dynamometer at different loading rates using motion capture assisted ultrasonography. AT stiffness and elongation were determined between 10 – 80% of maximum voluntary contraction (MVC) force at fast and slow loading rates. As subjects were unable to consistently match the target unloading rate in the slow condition, AT hysteresis was on…

Materials scienceMedial gastrocnemiusViscoelasticityStiffnessIn vivojäykkyysmedicineSimulationUltrasonographyAchilles tendonMultidisciplinaryResearchHysteresisStiffnessultraäänimusculoskeletal systemhystereesiTendonjänneHysteresismedicine.anatomical_structureultraäänitutkimusElongationAnklemedicine.symptomLoading rate dependencyBiomedical engineeringSpringerPlus
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Comparative assessment of surface roughness produced by hard machining with mixed ceramic tools including 2D and 3D analysis

2005

Abstract This paper provides a new comprehensive analysis of part surface finish in continuous dry turning of a hardened construction steel when using mixed alumina cutting tools. Consequently, the surface profiles (2D arragement) and surface microstereometries (3D arragement) generated during different hard part turning operations on a 40H low chromium alloy steel (equivalent to AISI 5140 or DIN 41Cr4), heat treated to the hardness of about 60 HRC, were evaluated. As a result, this paper aggregates the multi-parameters characterization of the surface roughness with the machined surface structure obtained at the three selected feed rates and constant cutting speed of 100 m/min. Results show…

Materials scienceMetallurgyAlloy steelMetals and Alloyschemistry.chemical_elementSurface finishengineering.materialMicrostructureIndustrial and Manufacturing EngineeringComputer Science ApplicationsGrindingChromiumMachiningchemistryModeling and Simulationvisual_artCeramics and CompositesSurface roughnessengineeringvisual_art.visual_art_mediumCeramicJournal of Materials Processing Technology
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Computer simulation of metal flow in the hot upsetting of a high-strength aluminium alloy

1993

Abstract The effects of metal-working temperature on the hot axisymmetric upsetting of AA 7012 aluminium alloy were investigated in the temperature range of from 250 to 400°C, at a strain rate of 4 s −1 . The material behaviour was studied by means of simulative methods based on the analysis of torsion-test results which have shown that when the strain increases, the flow stress increases to a peak value and then decreases to a fracture value. Furthermore, the flow stress decreases with decreasing strain rate and with increasing temperature. Constitutive equations, describing accurately the hot deformation behaviour of the material, were defined and used subsequently in a numerical model th…

Materials scienceMetallurgyConstitutive equationMetals and AlloysAtmospheric temperature rangeStrain rateFlow stressIndustrial and Manufacturing EngineeringForgingComputer Science ApplicationsModeling and Simulationvisual_artCeramics and CompositesFracture (geology)Aluminium alloyvisual_art.visual_art_mediumDeformation (engineering)Composite materialJournal of Materials Processing Technology
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On the influence of tool path in friction stir spot welding of aluminum alloys

2008

Abstract Friction stir spot welding (FSSW) has been proposed as an effective technology to spot weld the so-called “difficult to be welded” metal alloys. In the paper, a variation of the FSSW process has been considered. A tool path is given after the sinking phase nearby the initial penetration site; in this way a larger welding spot is obtained and more material is involved in the bonding process. The process mechanics of such modified FSSW process is highlighted and the joint strength undergoing tensile tests is considered at the varying both of the assigned tool path and of a few process parameters. Macro- and micro-analyses are made in order to analyze the local material microstructure…

Materials scienceMetallurgyMetals and AlloysProcess (computing)Mechanical engineeringchemistry.chemical_elementWeldingMicrostructureIndustrial and Manufacturing EngineeringComputer Science Applicationslaw.inventionTool pathSpotchemistrylawAluminiumModeling and SimulationUltimate tensile strengthCeramics and CompositesWeldingMicrostructureSettore ING-IND/16 - Tecnologie E Sistemi Di LavorazioneJoint (geology)Spot weldingJournal of Materials Processing Technology
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On microstructural phenomena occurring in friction stir welding of aluminium alloys

2006

Abstract The results of experimental activity on friction stir welding (FSW) of aluminum alloys are reported. Butt joints of two different materials, namely AA2024-T4 and AA7075-T6, were investigated from a metallurgical point of view. Grain dimensions and insoluble particle densities were investigated both in the parent materials and in the joints. Furthermore, the effect of post-welding heat treatments on the joint strength was studied.

Materials scienceMetallurgyMetals and Alloyschemistry.chemical_elementWeldingMicrostructureIndustrial and Manufacturing EngineeringComputer Science Applicationslaw.inventionchemistrylawAluminiumModeling and SimulationCeramics and CompositesButt jointFriction stir weldingParticle6063 aluminium alloyComposite materialfriction stir weldingJoint (geology)Journal of Materials Processing Technology
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Improvement of flame spraying PEEK coating characteristics using lasers

2011

Flame spraying is frequently used for PEEK coatings elaboration on metallic surfaces. However, this process has a certain number of limitations particularly considering the quality of the coatings like high porosity or low interfacial adherence. For that reason a thermal post-processing is often necessary. From all of the processes which can be used (flame, oven, etc.), laser can be an interesting technology. Then, the aim of this study is to analyse the dependence of the morphological structure (compactness) and the adherence of the flame sprayed PEEK coatings to the stainless steel (304L) and aluminium alloy (AA2017) substrates on laser parameters. Moreover, the influence of the laser bea…

Materials scienceMetals and Alloysengineering.materialLaserIndustrial and Manufacturing EngineeringComputer Science Applicationslaw.inventionWavelengthCoatinglawModeling and Simulationvisual_artThermalCeramics and CompositesAluminium alloyvisual_art.visual_art_mediumPeekengineeringComposite materialPorosityDiodeJournal of Materials Processing Technology
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Colloidal plasmonic back reflectors for light trapping in solar cells.

2014

A novel type of plasmonic light trapping structure is presented in this paper, composed of metal nanoparticles synthesized in colloidal solution and self-assembled in uniform long-range arrays using a wet-coating method. The high monodispersion in size and spherical shape of the gold colloids used in this work allows a precise match between their measured optical properties and electromagnetic simulations performed with Mie theory, and enables the full exploitation of their collective resonant plasmonic behavior for light-scattering applications. The colloidal arrays are integrated in plasmonic back reflector (PBR) structures aimed for light trapping in thin film solar cells. The PBRs exhib…

Materials scienceMie scatteringPhysics::OpticsReflectionTrapping7. Clean energyThin film devices Colloidal arraySettore ING-INF/01 - ElettronicaColloidal solutionColloidOpticsElectromagnetic simulationThin film solar cells PlasmonsLow temperatureGeneral Materials SciencePlasmonic solar cellThin filmPlasmonPhotocurrentNear infrared spectrabusiness.industrySolar cellCondensed Matter::Soft Condensed MatterSynthesis (chemical)Light trapping structureOptoelectronicsDiffuse reflectanceDiffuse reflectionbusinessNanoscale
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Force probe simulations using an adaptive resolution scheme

2021

Molecular simulations of the forced unfolding and refolding of biomolecules or molecular complexes allow to gain important kinetic, structural and thermodynamic information about the folding process and the underlying energy landscape. In force probe molecular dynamics (FPMD) simulations, one pulls one end of the molecule with a constant velocity in order to induce the relevant conformational transitions. Since the extended configuration of the system has to fit into the simulation box together with the solvent such simulations are very time consuming. Here, we apply a hybrid scheme in which the solute is treated with atomistic resolution and the solvent molecules far away from the solute a…

Materials scienceMolecular ConformationFOS: Physical sciences02 engineering and technologyMolecular Dynamics SimulationCondensed Matter - Soft Condensed MatterKinetic energy01 natural sciencesMolecular dynamics0103 physical sciencesAtomMoleculeGeneral Materials Science010306 general physicsQuantitative Biology::BiomoleculesResolution (electron density)Energy landscape021001 nanoscience & nanotechnologyCondensed Matter PhysicsFolding (chemistry)Chemical physicsSolventsSoft Condensed Matter (cond-mat.soft)ThermodynamicsGranularity0210 nano-technology
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Crystallization in suspensions of hard spheres: a Monte Carlo and molecular dynamics simulation study

2011

The crystallization of a metastable melt is one of the most important non-equilibrium phenomena in condensed matter physics, and hard sphere colloidal model systems have been used for several decades to investigate this process by experimental observation and computer simulation. Nevertheless, there is still an unexplained discrepancy between the simulation data and experimental nucleation rate densities. In this paper we examine the nucleation process in hard spheres using molecular dynamics and Monte Carlo simulation. We show that the crystallization process is mediated by precursors of low orientational bond-order and that our simulation data fairly match the experimental data sets.

Materials scienceMonte Carlo method: Physics [G04] [Physical chemical mathematical & earth Sciences]NucleationFOS: Physical sciencesMolecular Dynamics SimulationCondensed Matter - Soft Condensed Matterlaw.inventionMolecular dynamicsSuspensionslawMetastabilityComputer SimulationGeneral Materials ScienceParticle SizeCrystallizationCondensed Matter - Statistical MechanicsStatistical Mechanics (cond-mat.stat-mech)Hard spheresCondensed Matter Physics: Physique [G04] [Physique chimie mathématiques & sciences de la terre]Chemical physicsScientific methodSoft Condensed Matter (cond-mat.soft)ThermodynamicsSPHERESCrystallizationMonte Carlo MethodJournal of Physics: Condensed Matter
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Multiphysical modeling of dissimilar welding via interlayer

2011

Abstract A multiphysical finite element modeling of dissimilar welding via interlayer material was proposed. A 2D model including heat transfer, fluid flow and level set problems allowed to simulate the morphology and the composition of melted zone in horizontal plane. The calculated thickness of melted interlayer was used as a main criterion for the choice of optimal welding conditions, when the chemical interaction between the joined materials must be avoided. A 1D diffusion model at the limit of melted zone allowed estimating the length and the composition of diffusion layer between one of the materials and the interlayer basing on previously calculated local temperature gradient. The si…

Materials scienceMultiphysicsMetallurgyMetals and AlloysWeldingIndustrial and Manufacturing EngineeringFinite element methodComputer Science Applicationslaw.inventionDiffusion layerTemperature gradientlawModeling and SimulationHeat transferCeramics and CompositesFluid dynamicsComposite materialBeam (structure)Journal of Materials Processing Technology
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