Search results for "Turing"

showing 10 items of 2644 documents

On the material flow in fsw of T-joints: influence of geometrical and tecnological parameters

2008

Friction stir welding (FSW) now definitively reached a large interest in the scientific community and what is more in the industrial environment, due to the advantages of such solid state welding process with respect to the classic ones. The latter aspects are relevant also with reference to joints characterized by a complex geometry. What is more, advanced FEM tools permit to develop effective engineering of the processes; quantitative results can be acquired from numerical simulations once basic information, as the process mechanics and the material flow, are certain. Material flow plays a fundamental role in FSW since it determines the effectiveness of the joints or, in turn, the insurge…

Engineeringbusiness.industryMechanical EngineeringProcess (computing)Mechanical engineeringWeldingIndustrial and Manufacturing EngineeringFinite element methodComputer Science ApplicationsMaterial flowlaw.inventionBrassMetal flowComplex geometryControl and Systems Engineeringlawvisual_artvisual_art.visual_art_mediumFriction stir weldingFSW T-joints FEM material flow tool geometrybusinessSettore ING-IND/16 - Tecnologie E Sistemi Di LavorazioneSoftware
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Energy models for fatigue life estimation under uniaxial random loading. Part II: Verification of the model

2001

Abstract The paper concerns verification of the energy model for the fatigue life determination under the uniaxial random and variable-amplitude stress state. Application of the energy parameter for the fatigue life calculation using the algorithmic method under the random and variable-amplitude uniaxial tension–compression proves that most results of the fatigue life calculation are included in the scatter band with the coefficient determined during the uniaxial cyclic tests. The strain energy density parameter seems to be efficient for the fatigue life determination in the ranges of high and low numbers of cycles. The analysis was based on the author's tests and the data from literature. …

Engineeringbusiness.industryMechanical EngineeringStrain energy density functionFracture mechanicsStructural engineeringIndustrial and Manufacturing EngineeringStrain energyStress (mechanics)Energy parameterMechanics of MaterialsModeling and SimulationEnergy densityGeneral Materials SciencebusinessEnergy (signal processing)Vibration fatigueInternational Journal of Fatigue
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Reconstruction and simulation of the vehicle to road safety barrier oblique collision based on the Levenberg–Marquardt algorithm

2012

Vehicle crash modeling and reconstruction is an important field for research since the safety statistics from many countries show that the fatality rate of passenger vehicle occupants involved in road accidents is high. In particular, side impact are considered to be a serious problem. For this reason, in this paper, there is presented a methodology to reconstruct a given vehicle to road safety barrier oblique collision. An easy to analyze, viscoelastic model is established to represent a vehicle crash event. The reasonable modeling simplifications are assumed (namely: the vehicle is rigid and deformation of the safety barrier is negligible) which let the computational efficiency of the pro…

Engineeringbusiness.industryMechanical Engineeringmedia_common.quotation_subjectFidelityPoison controlTransportationSafety barrierKinematicsIndustrial and Manufacturing EngineeringField (computer science)Levenberg–Marquardt algorithmOblique collisionbusinessSimulationmedia_commonEvent (probability theory)International Journal of Crashworthiness
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Shape and dimensional accuracy in Single Point Incremental Forming: State of the art and future trends

2007

Abstract The paper is aimed to discuss some relevant issues concerning an innovative sheet metal forming technology, namely Single Point Incremental Forming. The advantages of this technology are addressed, including its capability to provide effective answers to some impellent industrial requirements: process flexibility, strong customer orientation, production of highly differentiated goods at low industrial costs. As well some relevant drawbacks are highlighted, mainly as concerns the level of accuracy permitted by the process. A wide recognition of the research efforts in this field is presented, taking into account some general considerations on the difference sources of shape and dime…

Engineeringbusiness.industryMetals and AlloysIndustrial and Manufacturing EngineeringManufacturing engineeringComputer Science ApplicationsIncremental sheet formingCustomer orientationModeling and Simulationvisual_artCeramics and Compositesvisual_art.visual_art_mediumSingle pointSheet metalbusinessNet-shape formingSettore ING-IND/16 - Tecnologie E Sistemi Di LavorazioneIncremental sheet formingAccuracy
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Optimization of the contact surface shape of a shrinkage fit

1998

Amongst many processes existing today for the assembly of two cylindrical parts, the shrinkage fit is commonly used. However, in the calculation methods, the contact surfaces are assumed to be perfect. Therefore, in order to apply these, the standards necessitate very small geometrical tolerances. The objective of the present paper is to show that it is possible to take into account form defects by closely conformed contact modelling and to have a good representation of reality: form defects always exist to an increasing extent and are inherent in all kinds of manufacturing processes. Finally, it is shown that the presence of defects can be beneficial, allowing optimization from both a mech…

Engineeringbusiness.industryMetals and AlloysMechanical engineeringGeometrySurface shapeIndustrial and Manufacturing EngineeringCalculation methodsComputer Science ApplicationsContact surfacesModeling and SimulationCeramics and CompositesPoint (geometry)Representation (mathematics)businessThree dimensional modelShrinkageJournal of Materials Processing Technology
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Numerical and experimental verification of new method for connecting pipe to flange by cold forming

2015

Abstract In this paper a new method of connecting pipe to flange without welding is presented. This method is a cold forming process that is based on plastic expansion/deformation of the pipe into a modified standard flange by use of a cold forming tool. The method is patented by Quickflange Technology AS and represents a highly feasible alternative to welding. The successful use of the method requires the ability to predict dimensional and stress/strain characteristics of the pipe and flange after the connection process in order to evaluate the connectivity to the adjacent flange as well as the leak tightness. In addition the ability to predict the process force during the connection proce…

Engineeringbusiness.industryMetals and AlloysProcess (computing)WeldingStructural engineeringDeformation (meteorology)FlangeIndustrial and Manufacturing EngineeringFinite element methodComputer Science Applicationslaw.inventionStress (mechanics)lawModeling and SimulationUltimate tensile strengthCeramics and CompositesCalibrationbusinessJournal of Materials Processing Technology
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The evaluation of springback in 3D stamping and coining processes

1998

Abstract An effective predictive technique of the elastic springback in a fully 3D 90° V-punch V-die bending process is presented. This is based on a combined approach in which an explicit finite element code was used to simulate the loading phase of the process whilst an implicit procedure was used to analyse the springback phase. Two different punches with a nose radius of 4 and 8 mm were used. An increase in the springback ratio with the coining load was observed with the lower nose radius. Conversely, an increase in the springback ratio with the coining load up to a peak value (>1), corresponding to a force of about 20 kN, followed by a decrease in the springback ratio with increasing t…

Engineeringbusiness.industryMetals and AlloysStructural engineeringStampingBlankIndustrial and Manufacturing EngineeringFinite element methodCombined approachComputer Science ApplicationsModeling and SimulationCeramics and CompositesCoining (metalworking)Peak valueFinite element codebusiness
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Case study: Employing Agile Tools in Teaching Product Development to Mechatronics Students

2021

Agile tools such as Git are widely used in the industry for source control, collaboration and documentation. Such tools have been implemented in a mechatronic product development course to allow for easier collaboration between students. The course content is mainly provided using a GitLab Pages webpage which hosts software documentation and scripts. This course was first changed in 2019 to include the development of an autonomous strawberry picker. However, the use of standard learning management system and lecture slides provided a cumbersome experience for the students. Therefore, these agile tools were presented in 2020 version to improve the course. In this paper, the course content is…

Engineeringbusiness.industryNew product developmentComputingMilieux_COMPUTERSANDEDUCATIONMechatronicsbusinessManufacturing engineeringAgile software developmentNordic Journal of STEM Education
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Simulation model of a molten carbonate fuel cellemicroturbine hybrid system

2011

A Hybrid System based on High Temperature Fuel Cells coupled to a Microturbine allows a high efficiency, low environmental pollution and it may be exploited as a CHP System producing heat and electricity both Grid Connected and Stand Alone; the overall electrical efficiency could reach a very high value (up to 60%) and total efficiency could be over 70% including the contribution due to heat recovery. In the context of wide research activities of ENEA on High Temperature Fuel Cells and Hybrid Systems e that involve materials, system BoP and fuels e a very great effort has been devoted to design and build, in the ENEA Research Centre of “Casaccia”, an experimental Test-Rig based on a Molten …

Engineeringbusiness.industryNuclear engineeringEnergy Engineering and Power TechnologyEnvironmental pollutionContext (language use)MCFCMicroturbineIndustrial and Manufacturing EngineeringEmulatorlaw.inventionHybrid systemlawHybrid systemElectrical networkHeat recovery ventilationMolten carbonate fuel cellSettore ING-IND/10 - Fisica Tecnica IndustrialeElectric powerbusinessElectrical efficiencySimulationSimulation
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Identification and Experimental Validation of an Induction Motor Thermal Model for Improved Drivetrain Design

2017

The ability of an electric powertrain to perform according to mechanical specifications is equally important as assessing its thermal protection limits, which are affected by its electrical and thermal properties. Although rated parameters (such as power, torque, etc.) are easily accessible in catalogs of equipment producers, more specific properties like mass/length of copper winding, heat dissipation factor, etc., are not available to customers. Therefore, an effective selection of drivetrain components is limited due to the lack of sufficient data and the need to consult critical design decisions with suppliers. To overcome this limitation, we propose a method to estimate the temperature…

Engineeringbusiness.industryPowertrain020209 energy020208 electrical & electronic engineeringDrivetrain02 engineering and technologyIndustrial and Manufacturing EngineeringMotor driveDirect torque controlControl and Systems EngineeringDuty cycleControl theory0202 electrical engineering electronic engineering information engineeringTorqueElectrical and Electronic EngineeringbusinessEngineering design processInduction motorIEEE Transactions on Industry Applications
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