Search results for "Finite Element Analysis"

showing 10 items of 98 documents

Design of a Close Power Loop Test Bench for Contra-Rotating Propellers

2020

The aim of the research is to develop an azimuthing contra-rotating propeller for commercial applications with a power of 2000 kW. The thruster system is designed especially to be installed on high speed crafts (HSCs) for passenger transport with a cruising speed of about 35–40 knots. The topic is very useful because the azimuth thruster solutions currently do not find commercial applications in naval units for passenger transport. The latter are heavy, not very efficient from a hydrodynamic point of view and suitable for maximum cruising speed of about 18–20 knots. The study is interesting because among the advantages that these solutions provide are the possibility of transmitting very hi…

PhysicsLoop (topology)experimental testCAD modelingTest benchControl theoryazimuthing contra-rotating propellerThrusterSettore ING-IND/17 - Impianti Industriali Meccanicifinite element analysis.PODSettore ING-IND/15 - Disegno E Metodi Dell'Ingegneria IndustrialePower (physics)
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Platform switching on wide-diameter external hex implants: a finite element analysis.

2012

Objectives: The objective of this work was to use finite element analysis to compare the effect of forces coming to bear on abutments 4.1 or 5.0 mm in diameter connected to a 5.0 mm implant (i.e. with or without platform swit - ching). Study design: A 3D CAD model of a 5 x 11.5 mm external hex implant was developed, complete with a connection screw and either of two abutments, one 4.1 and the other 5 mm in diameter, to assess the influence of two loading conditions, i.e. 200 N loaded either axially or off center on the top of the abutment. Results and conclusions: In the symmetrically loaded models, greater stresses were transmitted to the bone in the area below the neck of the implant in t…

Platform switching; finite element analysis; implant.Materials scienceimplantbusiness.industryResearchPlatform switchingAbutmentOdontologíafinite element analysisStructural engineering:CIENCIAS MÉDICAS [UNESCO]Ciencias de la saludFinite element methodStress (mechanics)Wide diameterUNESCO::CIENCIAS MÉDICASBiomaterials and Bioengineering in DentistryPlatform switchingCoupling (piping)ImplantbusinessAxial symmetryGeneral DentistryJournal of clinical and experimental dentistry
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3D Data Acquisition and Numerical Analysis of a Footwear in Walking

2004

The aim of the paper is to set a procedure to study the load history of a footwear during a step with non-linear FE analysis. The geometric model tested was reconstructed from a real shoe by means of Reverse Engineering process, starting from dense point clouds acquired by non-contact scanning system. For each phase of the walk, the pressure values are obtained by a pressure distribution platform when tester is walking along the platform. The Finite Element model is easily generated by Hypermesh software using the CAD model. Ansys software is used to perform non-linear analyses. The procedure can be employed for improving the product performance in terms of durability, flexibility and comfo…

Reverse Engineering Contact pressure acquisition Finite Element Analysis Transient Non-linear Analysis CAD
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A macro-modelling approach for the analysis of infilled frame structures considering the effects of openings and vertical loads

2015

During the last decades, several macro-models have been proposed for the modelling of the infill panels' contribution to the lateral strength of frames. Despite all this effort, a robust model, which takes into account the influence of the vertical load, is not yet available. Furthermore, the influence of the very common case of infill walls with openings, such as windows and doors, has been neglected in all the code provisions that have been published so far. In this paper, an updated macro-model, based on the equivalent pin-jointed diagonal compressive strut, is presented. The proposed macro-model is able to represent the stiffening effect of the infill panel with openings by taking into …

RiskEngineeringequivalent strut; finite element analysis; infilled frames; masonry; opening effect; vertical load effect; Civil and Structural Engineering; Geotechnical Engineering and Engineering Geology; Safety Risk Reliability and Quality; Building and Construction; Mechanical Engineering; Ocean EngineeringDiagonal0211 other engineering and technologies020101 civil engineeringOcean Engineering02 engineering and technologyfinite element analysis0201 civil engineering021105 building & constructionInfillGeotechnical engineeringopening effectMacroSafety Risk Reliability and Qualityvertical load effectCivil and Structural EngineeringMathematical modelbusiness.industryinfilled frameMechanical EngineeringFrame (networking)Structural engineeringBuilding and ConstructionMasonryGeotechnical Engineering and Engineering GeologyFinite element methodfinite element analysiStiffeningequivalent strutmasonryinfilled framesReliability and QualitySafetybusiness
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From single fiber to macro-level mechanics: A structural finite-element model for elastomeric fibrous biomaterials

2014

In the present work, we demonstrate that the mesoscopic in-plane mechanical behavior of membrane elastomeric scaffolds can be simulated by replication of actual quantified fibrous geometries. Elastomeric electrospun polyurethane (ES-PEUU) scaffolds, with and without particulate inclusions, were utilized. Simulations were developed from experimentally-derived fiber network geometries, based on a range of scaffold isotropic and anisotropic behaviors. These were chosen to evaluate the effects on macro-mechanics based on measurable geometric parameters such as fiber intersections, connectivity, orientation, and diameter. Simulations were conducted with only the fiber material model parameters a…

ScaffoldFabricationMaterials scienceFinite elements methodPolymersPolyestersmicrostructureFinite Element AnalysisPolyurethanesBiomedical EngineeringBiocompatible MaterialsMicroscopy Atomic ForceElastomercaffoldArticleBiomaterialsMaterials TestingElasticity (economics)Composite materialAnisotropyMesoscopic physicsTissue EngineeringTissue Scaffoldstissue engineering.Polyethylene TerephthalatesIsotropyMechanicsElasticityFinite element methodMechanics of MaterialselectrospunAnisotropyStress MechanicalJournal of the Mechanical Behavior of Biomedical Materials
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STUDIO DI UNA FRIZIONE MAGNETOREOLOGICA PER AUTOVEICOLI

2013

Dopo un’accurata ricerca bibliografica sui fluidi magnetoreologici, il loro comportamento ed impiego, si è passati alla progettazione di una frizione magnetoreologica per autoveicoli. Considerando le caratteristiche di coppia trasmessa e potenza, il dispositivo è stato dimensionato tenendo presente i vincoli di ingombro del veicolo preso in esame. Sottoponendo il dispositivo ad analisi magnetostatica agli elementi finiti, si è determinato l’andamento delle linee di flusso del campo magnetico nel meato di fluido e nelle zone di maggior interesse, calcolando la coppia teoricamente trasmessa dall’innesto.È stato anche eseguito il confronto delle prestazionifra una frizione MR ed una frizione t…

Settore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineAfter a thorough literature search on magnetorheological fluids their behavior and use it has gone to the design of a magnetorheological clutch for motor vehicles. Considering the characteristics of transmitted torque and power the device is dimensioned taking into account the constraints of space of the examined vehicle. Subjecting the device to magnetostatic finite element analysis it was determined the trend of the flow lines of the magnetic field in the gap of fluid and in areas of greater interest calculating the torque transmitted theoretically by the clutch. The performance comparison between a traditional clutch and a MR clutch was also performed pointing out that the MR clutch presents shorter response times with high energy savings. The study carried out shows that the device is well suited to a vehicle with automatic or robotic or otherwise with very short response times but requires a control system for the starting the vehicle.
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Analysys and optimization of an end double-lap bonded joint for GFRP composite sandwich panels

2022

Although the best configuration of the joints used to connect a common GFRP sandwich panel with the main structures is the adhesively bonded one, that permit high static and fatigue performances as well as to avoid stress concentrations, mechanical or hybrid joints are still widely used in the industrial field. After a preliminary theoretical design, the optimal configuration of an end adhesively bonded double-lap joint constituted by a simple insert as internal adherent and the same face sheets as external adherent, has been researched. In detail, several experimental tests and successive numerical simulations under tensile and bending loading, performed by varying the main influence para…

Settore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineComposite sandwich panels double-lap joint experimental tests finite element analysis strength criteriaMechanics of MaterialsMechanical EngineeringCeramics and CompositesSettore ING-IND/15 - Disegno E Metodi Dell'Ingegneria Industriale
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Optimal design of new steel connections

2019

The Limited Resistance Rigid Perfectly Plastic Hinge (LRPH) are special steel connections mainly usable to join beam elements of plane or spa-tial steel frames. The fundamental characteristics of these devices are the mutu-al independence of their own resistance and stiffness features as well as the re-spect of assigned constraints related to the elastic and limit behaviour of the joined elements. Within the frame structural scheme, the device plays the role of a rigid perfectly plastic hinge, constituted by a suitably sized sandwich sec-tion. The efficient use of the LRPH in the relevant frame depends on the appro-priate design of the device geometry. In the present paper, a new approach d…

Steel device LRPH Optimal design Behavioural features Finite element analysisSettore ICAR/08 - Scienza Delle Costruzioni
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Patient-Specific Analysis of Ascending Thoracic Aortic Aneurysm with the Living Heart Human Model

2021

In ascending thoracic aortic aneurysms (ATAAs), aneurysm kinematics are driven by ventricular traction occurring every heartbeat, increasing the stress level of dilated aortic wall. Aortic elongation due to heart motion and aortic length are emerging as potential indicators of adverse events in ATAAs

Technologymedicine.medical_specialtyAscending aortic aneurysm Cardiac mechanics Finite element analysis Living heart human modelliving heart human modelHeartbeatQH301-705.5Bioengineeringfinite element analysisThoracic aortic aneurysmArticlecardiac mechanicsAneurysmascending aortic aneurysmInternal medicinemedicinecardiovascular diseasesBiology (General)Computed tomography angiographymedicine.diagnostic_testbusiness.industryTBiomechanicsSettore ING-IND/34 - Bioingegneria IndustrialePatient specificmedicine.diseaseAortic wallcardiovascular systemCardiologybusinessCardiac mechanicsBioengineering
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Nonlinear finite element analysis of no-tension masonry structures

1995

A numerical approach for structural analysis of masonry walls in plane stress conditions is presented. The assumption of a perfectly no-tension material (NTM) constitutive model, whose relevant equations are in the form of classical rate-independent associated flow laws of elastoplastic material, allows one to adopt numerical procedures commonly used in computational plasticity. An accuracy analysis on the integration algorithm employed in the solution of constitutive relations has been carried out. The results obtained for some relevant case-studies and their comparison with data, available in the literature show the effectiveness of the proposed method.

Tension (physics)business.industryComputer scienceMechanical EngineeringConstitutive equationStructural engineeringPlasticityMasonryCondensed Matter PhysicsNonlinear finite element analysisCauchy elastic materialFlow (mathematics)Mechanics of MaterialsStress conditionsbusinessMeccanica
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