Search results for "Internal pressure"

showing 10 items of 16 documents

Integration of gradient based and response surface methods to develop a cascade optimisation strategy for Y-shaped tube hydroforming process design

2010

International audience; In the last years a strong research effort was produced in order to develop and design new forming technologies able to overcome the typical drawbacks of traditional forming operations. Among such new technologies, hydroforming proved to be one of the most promising. The design of tube hydroforming operations is mainly aimed to prevent bursting or buckling occurrence and such issues can be pursued only if a proper control of both material feeding history and internal pressure path during the process is performed.In this paper, a proper optimisation strategy was developed on Y-shaped tube hydroforming process which is characterized by a quite complex process mechanics…

0209 industrial biotechnologyEngineeringMechanical engineeringProcess design02 engineering and technologyCascade optimisation[SPI.MAT]Engineering Sciences [physics]/Materials020901 industrial engineering & automation0203 mechanical engineeringTube (container)Steepest descent methodSettore ING-IND/16 - Tecnologie E Sistemi Di LavorazioneMoving least squaresHydroformingMoving least squarebusiness.industryTube hydroformingGeneral EngineeringProcess (computing)Internal pressureStructural engineering[SPI.MECA]Engineering Sciences [physics]/Mechanics [physics.med-ph]020303 mechanical engineering & transportsCascadeMethod of steepest descentMoving least squaresbusinessSoftwareResponse surface method
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A Mechano-Chemical Coupling for Hydrogen Diffusion in Metals Based on a Thermodynamic Approach

2014

Hydrogen diffusion in metals is still an ongoing topic of research due to its technical relevance (hydrogen embrittlement, hydrogen storage...). In the last decades, significant progress in understanding the time evolution of the hydrogen concentration in solids was completed. This paper presents a modeling of hydrogen diffusion with a general and thermodynamically based diffusion concept coupled with mechanical and chemical aspects. This model was previously used to simulate the oxidation of a metal [1][2]. This concept has been upgraded to offer a thoroughly macroscopic behavior law used to simulate hydrogen diffusion in metal parts under mechanical loadings. The thermodynamic approach of…

AusteniteRadiationMaterials scienceHydrogenTime evolutionchemistry.chemical_elementInternal pressureThermodynamicsCondensed Matter PhysicsMetalchemistryvisual_artForensic engineeringvisual_art.visual_art_mediumCoupling (piping)General Materials ScienceDiffusion (business)Hydrogen embrittlementDefect and Diffusion Forum
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Numerical Simulations of the Hydrodynamics of the Abdominal Aorta Aneurysm (AAA) Using a Smoothed Particle Hydrodynamics Code with Deformable Wall Pr…

2018

We present some preliminary results of the numerical simulations of the hydrodynamic characteristics of an abdominal aorta aneurysm (AAA) patient specific test case. Images of the AAA lumen have been acquired in 10 discrete time-steps through a stabilized cardiac cycle by electrocardiogram-gated computer tomography angiography, and are used to approximate the in vivo, time dependent kinematic fields of the (internal) arterial wall. The flow field is simulated by a Smoothed Particle SPH numerical model, where the kinematics of the boundary of the computational domain (the internal aortic vessel) is the one computed by the above procedure. The outputs of the SPH model, i.e., pressure and flow…

Energy Engineering and Power TechnologyKinematicsrupture riskIndustrial and Manufacturing EngineeringSmoothed-particle hydrodynamicsflow velocitystress tensorAneurysmArtificial Intelligencemedicine.arterymedicineinternal pressureInstrumentationPhysicsAortamedicine.diagnostic_testComputer simulationCardiac cycleRenewable Energy Sustainability and the EnvironmentComputer Science ApplicationMechanicsmedicine.diseaseComputer Networks and CommunicationAngiographycardiovascular systemAbdominal aortic aneurysmTomographySPH modelComputer Vision and Pattern RecognitionSettore ICAR/08 - Scienza Delle Costruzioni
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Numerical and experimental analysis of load capacity of pressure vessels for large deformations

1991

Abstract A method of theoretical and experimental investigations of large deformations and load capacity of pressure vessels has been proposed. Algorithms and programs for numerical analysis (with the finite element method) of spatial stress and strain state and load capacity have been worked out according to the Prandtl-Reuss theory of plastic flow. Loading in the vessel was realized in an incremental way. The loading process was continued up to the moment when the maximum loading was obtained (i.e. the moment when state of equilibrium of the vessel was not possible). It has been found that in thin-walled circular vessels with rigid bottoms, when a ratio of length to their diameter is less…

EngineeringEngineering drawingLoad capacitybusiness.industryMechanical EngineeringNumerical analysisStress–strain curveInternal pressureMechanicsPlasticityPressure vesselFinite element methodMechanics of MaterialsHardening (metallurgy)General Materials SciencebusinessInternational Journal of Pressure Vessels and Piping
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INTERNAL PRESSURE AND COUNTERPUNCH ACTION DESIGN IN Y-SHAPED TUBE HYDROFORMING PROCESSES: A MULTI OBJECTIVE OPTIMISATION APPROACH

2009

In sheet metal forming most of the problems are multi-objective problems, generally characterised by conflicting objectives. A classical approach to investigate such kind of problems is focused on a combination of multiple objectives into a unique objective function to be optimised. Actually, in metal forming processes optimisation two main phases have to be developed in order to reach an optimal solution: the former is the modelling phase (definition of the design variables and objective function) and the latter concerns the computational aspect (numerical simulations or experiment to be developed). In this paper, an integration between numerical simulations, response surface methodology a…

EngineeringHydroformingresponse surface method Pareto solutions multi-objective optimisationMetal formingbusiness.industryTube hydroformingMechanical EngineeringMechanical engineeringInternal pressureStructural engineeringComputer Science ApplicationsPareto optimalConflicting objectivesModeling and Simulationvisual_artvisual_art.visual_art_mediumGeneral Materials ScienceMinificationResponse surface methodologybusinessSheet metalSettore ING-IND/16 - Tecnologie E Sistemi Di LavorazioneCivil and Structural Engineering
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Experimental validation of optimisation strategies in hydroforming of T-shaped tubes

2008

For three dimensional tube hydroforming operations (i.e. T or Y shaped tubes) the calibration of both material feeding history and internal pressure path during the process is crucial and many approaches to such optimization were presented; the authors developed some procedures to optimize pressure paths and punch velocity histories with the application of an integrated method FEM - Gradient based optimization tools. In this paper, an experimental validation campaign of the utilized optimization strategies is presented with the aim to assess the effectiveness of the developed procedures. An optimization procedure (gradient based techniques) was applied on the process parameters leading to t…

Experimental validationEngineeringHydroformingTube hydroformingbusiness.industryProcess (computing)Internal pressureComputational intelligenceStructural engineeringFinite element methodSet (abstract data type)Path (graph theory)CalibrationGeneral Materials ScienceOptimisation algorithmbusinessInternational Journal of Material Forming
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Intersystem Crossing and Light-Induced Bistability in Iron(?) Spin-Crossover Compounds

1996

Abstract The dynamics of the high-spin→low-spin intersystem crossing process in iron(?) spin-crossover compounds are strongly influenced by cooperative effects of elastic origin which are due to the large difference in volume between high-spin and low-spin complexes. The deviation from first order kinetics is attributed to a build-up of an internal pressure as the relaxation proceeds, leading to a characteristic self-acceleration. The elastic interactions may lead to a light-induced bistability for systems which otherwise remain in the high-spin state down to cryogenic temperatures.

Intersystem crossingBistabilityChemical physicsChemistrySpin crossoverRelaxation (NMR)Light inducedInternal pressureCondensed Matter::Strongly Correlated ElectronsRate equationCondensed Matter PhysicsInternal conversion (chemistry)PhotochemistryMolecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals
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Ultrasound-assisted bleaching: Mathematical and 3D computational fluid dynamics simulation of ultrasound parameters on microbubble formation and cavi…

2019

Abstract The implementation of ultrasound-assisted bleaching (UAB) is gaining interest in commercial oil refining, as an alternative to the current bleaching procedure (BP), because this technique has several advantages compared to the conventional BP. The mathematical and 3D computational fluid dynamics (CFD) simulation of the influence of ultrasound power, frequency and temperature for predicting microbubble formation and heat transfer in the ultrasonic treatment of soybean oil was assessed in order to optimize the UAB process. The fluctuation frequency and wave speed showed opposite effects on system response to the imposed pressure pulse. As the bubble radius shrinks to zero (after bubb…

Materials scienceOscillationBubbleInternal pressureGeneral ChemistryRadiusMechanicsIndustrial and Manufacturing EngineeringPhysics::Fluid DynamicsCavitationHeat transferUltrasonic sensorCurrent (fluid)Food ScienceInnovative Food Science & Emerging Technologies
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Investigations on Load Capacity and stability of deformation of rubber cylindrical shells under internal pressure

1994

The paper presents a wide analysis of conditions under which a loss of deformation stability can be observed as well as local bulges form in axially-symmetric (rotational) shells of any length. Analytical relations of the theory of shells were used for the analysis. If the maximum pressure in the shell was exceeded, the deformation process was investigated too. In such a case, strains begin to develop more intensely in the central part of a long cylindrical shell and, owing to that, one or more superimposed bulges (blisters) form. Symmetry of the shell deformation in relation to the centre of its length can be disturbed. A set of algebraic equations was derived for determination of critical…

Materials sciencebusiness.industryMechanical EngineeringShell (structure)Internal pressureFunction (mathematics)Structural engineeringRadiusMechanicsDeformation (meteorology)Condensed Matter PhysicsSymmetry (physics)Algebraic equationNatural rubberMechanics of Materialsvisual_artvisual_art.visual_art_mediumGeneral Materials SciencebusinessMaterialwissenschaft und Werkstofftechnik
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Carbon nanotubes as high-pressure cylinders and nanoextruders.

2006

Closed-shell carbon nanostructures, such as carbon onions, have been shown to act as self-contracting high-pressure cells under electron irradiation. We report that controlled irradiation of multiwalled carbon nanotubes can cause large pressure buildup within the nanotube cores that can plastically deform, extrude, and break solid materials that are encapsulated inside the core. We further showed by atomistic simulations that the internal pressure inside nanotubes can reach values higher than 40 gigapascals. Nanotubes can thus be used as robust nanoscale jigs for extruding and deforming hard nanomaterials and for modifying their properties, as well as templates for the study of individual n…

NanotubeMultidisciplinaryMaterials sciencechemistry.chemical_elementInternal pressureMechanical properties of carbon nanotubesNanotechnology02 engineering and technologyCarbon nanotube010402 general chemistry021001 nanoscience & nanotechnology01 natural sciences0104 chemical sciencesNanomaterialslaw.inventionCarbon nanobudchemistrylawElectron beam processingComposite material0210 nano-technologyCarbonScience (New York, N.Y.)
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