Search results for "Computer Science Application"

showing 10 items of 3998 documents

A field method for measuring the thermal infrared emissivity

1993

Abstract In this work, a field method for measuring thermal infrared emissivities is proposed which is based on the box method, initially developed by Buettner and Kern (1965) for laboratory measurements. A theoretical analysis was made of the measurement carried out using the box and a correcting factor to Buettner and Kern's technique has been determined. Buettner and Kern's method has been modified to use radiative temperatures measured with a radiothermometer instead of radiance measurements. The walls of the box used and the cold lid was made of polished aluminium and the hot lid was made of black-painted anodized aluminium and it was heated in the field by solar radiation. With this m…

Materials scienceField (physics)business.industrychemistry.chemical_elementRadiationTemperature measurementAtomic and Molecular Physics and OpticsComputer Science ApplicationsOpticschemistryAluminiumRadiative transferRadianceEmissivityBlack-body radiationComputers in Earth SciencesbusinessEngineering (miscellaneous)ISPRS Journal of Photogrammetry and Remote Sensing
researchProduct

Forming of aluminum foam sandwich panels: Numerical simulations and experimental tests

2006

Abstract The forming of the completed aluminium foam sandwich (AFS) panels would determine an improvement in the manufacturing of parts and panels. In this paper the authors have investigated the formability of AFS through experiments and numerical simulations. As far as the former are concerned, commercially prepared panels have been considered and bending and stamping processes have been taken into account. In addition, FEM analyses have been developed, utilizing a porous material model following the evolution of the material density throughout the forming processes.

Materials scienceFoams AFS FEMBending (metalworking)business.industryMetals and AlloysForming processesMetal foamStructural engineeringStampingIndustrial and Manufacturing EngineeringFinite element methodComputer Science ApplicationsAluminium foam sandwichModeling and SimulationCeramics and CompositesFormabilityComposite materialbusinessSettore ING-IND/16 - Tecnologie E Sistemi Di LavorazioneSandwich-structured compositeJournal of Materials Processing Technology
researchProduct

Application of infrared thermography as a complementary technique to conventional imaging techniques in paediatrics: case studies

2018

The use of infrared thermography has been shown to be useful in several areas. Its applicability in medicine is based on the fact that the skin emits spontaneously and continuously infrared radiati...

Materials scienceInfraredbusiness.industryBiomedical EngineeringComputational Mechanicsmacromolecular substances02 engineering and technology030218 nuclear medicine & medical imagingComputer Science Applications03 medical and health sciences0302 clinical medicineOpticsThermography0202 electrical engineering electronic engineering information engineering020201 artificial intelligence & image processingRadiology Nuclear Medicine and imagingbusinessComputer Methods in Biomechanics and Biomedical Engineering: Imaging & Visualization
researchProduct

Modelling intergranular and transgranular micro-cracking in polycrystalline materials

2018

Abstract In this work, a grain boundary formulation for intergranular and transgranular micro-cracking in three-dimensional polycrystalline aggregates is presented. The formulation is based on the displacement and stress boundary integral equations of solid mechanics and it has the advantage of expressing the polycrystalline problem in terms of grain boundary variables only. The individual grains within the polycrystalline morphology are modelled as generally anisotropic linear elastic domains with random spatial orientation. Transgranular micro-cracking is assumed to occur along specific cleavage planes, whose orientation in space within the grains depend upon the crystallographic lattice.…

Materials scienceIntergranular crackingComputational MechanicsPolycrystalline materialsGeneral Physics and Astronomy02 engineering and technologyMathematical SciencesTransgranular crackingEngineeringPolycrystalline material0203 mechanical engineeringMicro-mechanicsBoundary element methodComposite materialAnisotropyBoundary element methodMechanical EngineeringCohesive zone modellingApplied MathematicsLinear elasticityMetallurgyMicromechanicsMicro-mechanicIntergranular corrosion021001 nanoscience & nanotechnologyComputer Science Applications020303 mechanical engineering & transportsMechanics of MaterialsSolid mechanicsGrain boundaryCrystallite0210 nano-technology
researchProduct

Heat transfer in semi-transparent materials during laser interaction

2004

Abstract A model of energy exchange, based on the finite element method is specially developed to determine the thermal field for semi-transparent polymers irradiated by laser. Our model, which uses the finite element method, allows to define the laser and specific structure characteristics in terms of density of power, speed and shape of the spotlight, material coefficient absorption, etc. The model has been experimentally validated by measuring the thermal response induced by the laser source. The experimental part of the study has been performed using a semiconductor laser diode source and an infrared thermography camera.

Materials scienceLaser diodebusiness.industryMetals and AlloysLaserIndustrial and Manufacturing EngineeringFinite element methodComputer Science Applicationslaw.inventionSemiconductorOpticslawModeling and SimulationHeat transferThermographyThermalCeramics and CompositesbusinessAbsorption (electromagnetic radiation)Journal of Materials Processing Technology
researchProduct

Generation and characterization of T40/A5754 interfaces with lasers

2014

Laser-induced reactive wetting and brazing of T40 titanium with A5754 aluminum alloy with 1.5 mm thickness was carried out in lap-joint configuration, with or without the use of Al5Si filler wire. A 2.4 mm diameter laser spot was positioned on the aluminum side to provoke spreading and wetting of the lower titanium sheet, with relatively low scanning speeds (0.1 to 0.6 m/min). Process conditions did not play a very significant role on mechanical strengths, which were shown to reach 250-300 N/mm on a large range of laser power and scanning speeds. In all cases considered, the fracture during tensile testing occurred next to the TiAl3 interface, but in the aluminum fusion zone. In a second st…

Materials scienceMatériaux [Sciences de l'ingénieur][ SPI.MECA ] Engineering Sciences [physics]/Mechanics [physics.med-ph]Alloy[ SPI.MAT ] Engineering Sciences [physics]/Materialschemistry.chemical_elementLaserengineering.materialIndustrial and Manufacturing Engineeringlaw.invention[SPI.MAT]Engineering Sciences [physics]/MaterialsShock waveslawAluminiumBrazing[SPI.GPROC]Engineering Sciences [physics]/Chemical and Process EngineeringLaser power scalingDissimilar joiningComposite materialOptique / photonique [Sciences de l'ingénieur]Tensile testingTitaniumBond strengthMécanique [Sciences de l'ingénieur]Génie des procédés [Sciences de l'ingénieur]Metals and Alloys[ SPI.GPROC ] Engineering Sciences [physics]/Chemical and Process Engineering[SPI.MECA]Engineering Sciences [physics]/Mechanics [physics.med-ph]LaserComputer Science ApplicationschemistryModeling and SimulationaluminumCeramics and Compositesengineering[SPI.OPTI]Engineering Sciences [physics]/Optics / PhotonicWetting[ SPI.OPTI ] Engineering Sciences [physics]/Optics / PhotonicTitanium
researchProduct

A microstructural model for homogenisation and cracking of piezoelectric polycrystals

2019

Abstract An original three-dimensional generalised micro-electro-mechanical model for computational homogenisation and analysis of degradation and micro-cracking of piezoelectric polycrystalline materials is proposed in this study. The model is developed starting from a generalised electro-mechanical boundary integral representation of the micro-structural problem for the individual bulk grains and a generalised cohesive formulation is employed for studying intergranular micro-damage initiation and evolution into intergranular micro-cracks. To capture the electro-mechanical coupling at the evolving damaging intergranular interfaces, standard mechanical cohesive laws are enriched with suitab…

Materials scienceMechanical EngineeringNumerical analysisComputational MechanicsGeneral Physics and AstronomyBoundary (topology)010103 numerical & computational mathematicsMechanicsMicro-mechanicDegrees of freedom (mechanics)Intergranular corrosionPiezoelectric material01 natural sciencesComputer Science ApplicationsMicro-cracking010101 applied mathematicsPolycrystalline materialMechanics of MaterialsBoundary element methodGrain boundaryCrystalliteBoundary value problem0101 mathematicsComputational homogenisationReduction (mathematics)
researchProduct

Mode I failure modeling of friction stir welding joints

2008

This paper analyzes mechanical response by finite element method up to the decohesion failure in fracture mode I for joints of friction stir welding (FSW) of an aluminum alloy. It first describes experimental investigations on specimens with FSW embedded, subjected to uniform traction and local punch tests used to characterize local elastic and plastic material parameters. The heterogeneity of the mechanical properties induced by the FSW process is taken into account for the elastic-plastic finite element simulation. The growing damage and the opening failure of the welding zone are described by the adoption of a cohesive interface model with specific mechanical properties.

Materials scienceMechanical Engineeringmedicine.medical_treatmentMetallurgyAlloyMode (statistics)WeldingTraction (orthopedics)engineering.materialIndustrial and Manufacturing EngineeringFinite element methodComputer Science ApplicationsFinite element simulationlaw.inventionControl and Systems EngineeringlawFracture (geology)medicineengineeringFriction stir weldingComposite materialFSW Failure modellingSoftwareThe International Journal of Advanced Manufacturing Technology
researchProduct

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
researchProduct

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
researchProduct