Search results for "Finite element method"

showing 10 items of 746 documents

A simple inverse procedure to determine heat flux on the tool in orthogonal cutting

2006

The applications of numerical simulation to machining processes have been more and more increasing in the last decade: today, a quite effective predictive capability has been reached, at least as far as global cutting variables (for instance cutting forces) are concerned. On the other hand, the capability to predict local cutting variables (i.e. stresses acting on the tool, temperature distribution, residual stresses in the machined surface) has to be furtherly improved, as well as effective experimental procedures to validate numerical results have to be developed. The aim of this paper is the proposition of an innovative approach, based on an simple inverse procedure, in order to identify…

FEMEngineeringinverse approachComputer simulationCutting toolbusiness.industryMechanical Engineeringheat fluxMechanical engineeringHeat transfer coefficientInverse problemsplit-toolIndustrial and Manufacturing EngineeringFinite element methodNumerical integrationMachiningHeat fluxbusinessSettore ING-IND/16 - Tecnologie E Sistemi Di LavorazioneInternational Journal of Machine Tools and Manufacture
researchProduct

Wear modelling in mild steel orthogonal cutting when using uncoated carbide tools

2007

Abstract Wear prediction in machining has been recently studied by FEM although the use of numerical methods for such applications is still a very challenging research issue. In fact, wear phenomenon involves many aspects related to process mechanics which require a very accurate modelling. In other words, only a very punctual code set-up can help the researchers in order to obtain consistent results in FE analysis. The high relative velocity between chip and tool requires effective material models as well as friction modelling at the interface. Moreover the prediction of temperature distribution is another critical task; in the paper some different procedures are discussed. Subsequently a …

FEMMaterials scienceCutting toolChip formationReference data (financial markets)Mechanical engineeringSurfaces and Interfacestool wear prediction carbide tools temperature in cutting FEMCondensed Matter PhysicsChipFinite element methodSurfaces Coatings and FilmsTool wear prediction; Carbide tools; Temperature in cutting; FEMCarbide toolsMachiningMechanics of MaterialsTemperature in cuttingMaterials ChemistryTool wear predictionTool wearReference modelWear
researchProduct

Parametric study of the influence of double-walled tubes layout on the DEMO WCLL breeding blanket thermal performances

2020

Abstract Within the framework of the EUROfusion activities regarding the EU-DEMO Breeding Blanket (BB) concept, the University of Palermo is long-time involved, in close cooperation with ENEA, in the design of the Water Cooled Lithium Lead (WCLL) BB, that is one of the two concepts under consideration for the DEMO reactor. It is mainly characterized by a liquid lithium-lead eutectic alloy acting as breeder and neutron multiplier, as well as by subcooled pressurized water flowing as coolant under PWR-like conditions (pressure of 15.5 MPa and inlet/outlet temperatures of 295 °C/328 °C). A research campaign has been recently carried out to study the potential influence of the Breeding Zone coo…

FEMMaterials scienceMechanical EngineeringNuclear engineeringDEMO; DWT; FEM; WCLL breeding blanketBlanket01 natural sciencesFinite element method010305 fluids & plasmasCoolantSubcoolingNuclear Energy and Engineering0103 physical sciencesThermalGeneral Materials ScienceNeutronDWT010306 general physicsDEMOWCLL breeding blanketSettore ING-IND/19 - Impianti NucleariCivil and Structural EngineeringParametric statisticsEutectic systemFusion Engineering and Design
researchProduct

CDRX modelling in friction stir welding of AA7075-T6 aluminum alloy: analytical approaches

2007

Abstract Friction stir welding (FSW) is an energy efficient and environmentally “friendly” (no fumes, noise, or sparks) welding process, during which the workpiece are welded together in a solid-state joining process at a temperature below the melting point of the workpiece material under a combination of extruding and forging. Significant microstructural evolution takes place during FSW: in particular continuous dynamic recrystallization (CDRX) phenomena result in a highly refined grain structure in the weld nugget and strongly affect the final joint resistance. In the paper two different analytical models aimed to the determination of the average grain size due to continuous dynamic recry…

FEMMaterials scienceMetallurgyAlloyMetals and AlloysRecrystallization (metallurgy)continuous dynamic recrystallizationWeldingengineering.materialIndustrial and Manufacturing EngineeringGrain sizeFinite element methodForgingaluminum alloy friction stir weldingComputer Science Applicationslaw.inventionlawModeling and SimulationCeramics and CompositesengineeringFriction stir weldingFriction weldingSettore ING-IND/16 - Tecnologie E Sistemi Di Lavorazione
researchProduct

Material Flow in FSW of T-joints: Experimental and Numerical Analysis

2008

In the paper the authors present the results of both an experimental and a numerical campaign focused on the analysis of the occurring material flow in the FSW of T joints of aluminum alloys. In particular to investigate the metal flow experimental tests and observations has been developed utilizing a thin foil of copper as marker placed between the skin and the stringer. In this way, the actual metal flow occurring during the FSW of T-joints has been highlighted together with the real bonding surface. The acquired information is definitively useful in order to choose effective set of process parameters, improving the process mechanics and avoiding the insurgence of defects.

FEMMaterials scienceNumerical analysisFSWMetallurgyT-JointProcess (computing)Mechanical engineeringFinite element methodMaterial flowMetal flowStringerGeneral Materials Sciencematerial flowSettore ING-IND/16 - Tecnologie E Sistemi Di LavorazioneFOIL method
researchProduct

Methods for Determining the Thermal Transfer in Phase-Changing Materials (PCMs).

2020

A very important issue that needs to be solved as simply and correctly as possible is how to establish the thermal performance of phase-changing materials (PCM). The undertaken researches have analyzed the values of the thermal performances of the PCM taking into account the method of finite elements and the experimental research, respectively, based on a modern measurement system that was designed and implemented. Butyl stearate which has been encapsulated through complex coacervation in polymethyl methacrylate has been used as a PCM. Samples were made containing 10%, 20%, 30% and 40% PCM, respectively, within their structure. The research has established that at both the hot plate and the…

FEMMaterials sciencePolymers and Plastics020209 energyInterface (computing)System of measurementFlow (psychology)thermal transfer measurementMechanical engineeringbutyl stearate02 engineering and technologyGeneral ChemistryThermal transfer021001 nanoscience & nanotechnologyTemperature measurementFinite element methodArticlepolymethyl methacrilatlcsh:QD241-441lcsh:Organic chemistryPhase (matter)PCMThermal0202 electrical engineering electronic engineering information engineering0210 nano-technologyPolymers
researchProduct

Inspection of additive-manufactured layered components

2015

Laser powder deposition (LPD) is a rapid additive manufacturing process to produce, layer upon layer, 3D geometries or to repair high-value components. Currently there is no nondestructive technique that can guarantee absence of flaws in LPD products during manufacturing. In this paper a laser ultrasonic technique for in-line inspection of LPD components is proposed. Reference samples were manufactured from Inconel and machined flaws were created to establish the sensitivity of the technique. Numerical models of laser-generated ultrasonic waves have been created to gain a deeper understanding of physics, to optimize the set-up and to verify the experimental measurements. Results obtained on…

FEMNDT inspectionAcoustics and UltrasonicsAdditive manufacturingMechanical engineeringNumerical modelsLaserFinite element methodlaw.inventionSettore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchinelawLaser ultrasoundDeposition (phase transition)Ultrasonic sensorSensitivity (control systems)InconelLayer (electronics)Laser powder depositionUltrasonics
researchProduct

Position based constraint enforcement in game physics

2016

La simulación de sistemas mecánicos para videojuegos y otras aplicaciones interactivas impone restricciones importantes en cuanto a estabilidad, flexibilidad en las escenas y complejidad computacional. En los últimos años han aparecido varias estrategias para la resolución de sistemas mecánicos con restricciones. Algunas de las más populares en el desarrollo de videojuegos usan solamente la posición de las partículas y un algoritmo de proyección sobre la variedad definida por las restricciones, evitando la manipulación de la primera derivada del sistema (las velocidades). De esta forma se consigue una gran estabilidad numérica. El principal defecto de estos métodos es su dependencia en pará…

FEMUNESCO::MATEMÁTICAS::Ciencia de los ordenadores::Simulacióndeformablefittingfinite element methodsimulaciónelementos finitosajustesimulationPBDelastic materialsposition based dynamics
researchProduct

Numerical modelling of the linear friction welding process

2010

Linear friction welding (LFW) is a solid-state joining process applied to non-axisymmetric components. LFW involves joining of materials through the relative reciprocating motion of two components under an axial force. In such process the heat source is given by the frictional forces work decaying into heat determining a local softening of the material and proper bonding conditions due to both the temperature increase and the local pressure of the two edges to be welded. In the present work the authors present a numerical model of the linear friction welding process of AISI 1045 parts. The numerical model allowed to highlight the process mechanics and the physical conditions which must be r…

FEMWork (thermodynamics)Materials scienceAISI 1045Field (physics)Mechanical engineeringLFW FEMWeldingStrain rateFEM; AISI 1045; LFWFinite element methodlaw.inventionLFWReciprocating motionlawGeneral Materials ScienceFriction weldingSettore ING-IND/16 - Tecnologie E Sistemi Di LavorazioneSofteningInternational Journal of Material Forming
researchProduct

Fast MATLAB assembly of FEM matrices in 2D and 3D: Edge elements

2014

We propose an effective and flexible way to assemble finite element stiffness and mass matrices in MATLAB. We apply this for problems discretized by edge finite elements. Typical edge finite elements are Raviart-Thomas elements used in discretizations of H(div) spaces and Nedelec elements in discretizations of H(curl) spaces. We explain vectorization ideas and comment on a freely available MATLAB code which is fast and scalable with respect to time.

FOS: Computer and information sciencesDiscretizationfinite element method97N80 65M60Matlab codeComputational scienceMathematics::Numerical AnalysisMATLAB code vectorizationmedicineFOS: MathematicsMathematics - Numerical AnalysisMATLABMathematicscomputer.programming_languageCurl (mathematics)ta113Nédélec elementApplied Mathematicsta111StiffnessRaviart–Thomas elementMixed finite element methodNumerical Analysis (math.NA)Finite element methodComputational Mathematicsedge elementScalabilityComputer Science - Mathematical Softwaremedicine.symptomcomputerMathematical Software (cs.MS)
researchProduct