Search results for "Finite element"

showing 10 items of 892 documents

Comparative analysis of numerical and experimental data of orthodontic mini-implants

2011

The purpose of this study was to compare numerical simulation data derived from finite element analysis (FEA) to experimental data on mini-implant loading. Nine finite element (FE) models of mini-implants and surrounding bone were derived from corresponding experimental specimens. The animal bone in the experiment consisted of bovine rib. The experimental groups were based on implant type, length, diameter, and angle of insertion. One experimental specimen was randomly selected from each group and was digitized in a microCT scanner. The FE models consisted of bone pieces containing Aarhus mini-implants with dimensions 1.5 × 7 mm and 1.5 × 9 mm or LOMAS mini-implants (dimensions 1.5 × 7 mm, …

Dental Stress AnalysisMaterials science9 mm caliberFinite Element AnalysisOrthodontics610 Medicine & health10067 Clinic for Orthodontics and Pediatric DentistryDisplacement (vector)Stress (mechanics)Imaging Three-DimensionalOrthodontic Anchorage ProceduresPerpendicularAnimalsOrthodontic Appliance DesignDental ImplantsModels Statisticalbusiness.industry3505 OrthodonticsBiomechanicsExperimental dataX-Ray MicrotomographyStructural engineeringFinite element methodBiomechanical PhenomenaCattleStress MechanicalbusinessRotation (mathematics)
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Biomechanical behavior of cavity configuration on micropush-out test: A finite-element-study

2009

Objective: The objective of this study was to simulate the micropush-out bond strength test from a biomechanical point of view. For this purpose, stress analysis using finite element (FE) method was performed. Study design: Three different occlusal cavity shapes were simulated in disc specimens (model A: 1.5 mm cervical, 2 mm occlusal diameter; model B: 1.5 mm cervical, 1.75 mm occlusal diameter; model C: 1.5 mm cervical, 1.5 mm occlusal diameter). Quarter sizes of 3D FE specimen models of 4.0×4.0×1.25 mm3 were constructed. In order to avoid quantitative differences in the stress value in the models, models were derived from a single mapping mesh pattern that generated 47.182 elements and 6…

Dental Stress AnalysisMaterials scienceBond strengthComposite numberIsotropyFinite Element AnalysisDental Bonding:CIENCIAS MÉDICAS [UNESCO]Finite element methodBiomechanical PhenomenaStress (mechanics)medicine.anatomical_structureCompressive strengthOtorhinolaryngologyUNESCO::CIENCIAS MÉDICASUltimate tensile strengthDentinmedicineSurgeryComposite materialGeneral Dentistry
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Influence of prefabricated post material on restored teeth: fracture strength and stress distribution.

2006

This work studied how prefabricated intraradicular post material affects the mechanical performance of restored teeth. The effect of using two different materials (glass fiber and stainless steel) with significantly different elastic moduli was studied.A combined theoretical and experimental method was used: first, an experimental fracture strength test was performed on 60 extracted human maxillary central incisors. The teeth were decoronated, treated endodontically and restored, 30 with glass fiber posts and 30 with stainless steel posts. The data were recorded and the results compared using an ANOVA test. Then, the finite element technique was used to develop a model of the restored tooth…

Dental Stress AnalysisMaterials scienceFinite Element AnalysisDentistryMaterials testingModels BiologicalStress (mechanics)Dental MaterialsTooth Fracturesstomatognathic systemFlexural strengthMaterials TestingDentinmedicineHumansComputer SimulationGeneral DentistryElastic modulusTooth Nonvitalbusiness.industryStress distributionElasticity (physics)Stainless SteelElasticityRoot Canal Therapymedicine.anatomical_structureDental Prosthesis DesignGlassStress MechanicalbusinessToothDental AlloysPost and Core TechniqueOperative dentistry
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Influence of prefabricated post dimensions on restored maxillary central incisors

2007

summary  The aim of this study was to test the following hypothesis: biomechanical performance (fracture strength and stress distribution) of restored teeth is less sensitive to post diameter and post length when using glass fibre posts than when using stainless steel posts. First, an experimental fracture strength test was performed on 80 extracted human maxillary central incisors. Teeth were decoronated, treated endodontically and restored (40 with glass fibre posts and 40 with stainless steel posts), and the length and diameter of the posts varied uniformly. Failure loads were recorded and results were compared using an ancova analysis. Secondly, the finite element technique was used to …

Dental Stress AnalysisMaterials sciencebusiness.industryFinite Element AnalysisGlass fiberDentistryModels TheoreticalStress distributionStainless SteelModels DentalIncisorDental MaterialsDental Prosthesis DesignFlexural strengthMaterials TestingHumansComputer SimulationMaxillary central incisorDental Restoration FailureGlassFinite element techniquebusinessGeneral DentistryPost and Core TechniqueJournal of Oral Rehabilitation
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Premolars restored with posts of different materials: fatigue analysis

2011

Previous works studied the effect of the material and the dimensions of the post on the biomechanical performance (fracture strength and stress distribution) of restored teeth, under static loads. The aim of this work was to study the effect of the post material (glass fibre and stainless steel) on restored teeth, which have the final crown, under dynamic conditions. The use of a biomechanical model, including a fatigue analysis from FEA, is presented as a powerful method to study the effect of the material of the intraradicular post. The inclusion of the fatigue analysis allows for a more realistic study that takes into account the dynamic nature of masticatory forces. At the same time, th…

Dental Stress AnalysisMaterials sciencemedicine.medical_treatmentGlass fiberInfluence of post materialMaterials testingCrown (dentistry)Bite ForceDental MaterialsTooth FracturesFlexural strengthMaterials TestingmedicineHumansImplant denturesBicuspidComposite materialGeneral DentistryFEAFatigueTooth NonvitalCrownsImplants dentalsRestored teethStress distributionStainless SteelFinite element methodDental Prosthesis DesignDental Stress AnalysisCeramics and CompositesBiomechanical modelGlassDental materials--FatiguePrefabricated intraradicular postsMaterials dentals--FatigaDental AlloysPost and Core Technique
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The influence of platform switching on the biomechanical aspects of the implant-abutment system. A three dimensional finite element study

2011

Objective: To evaluate the biomechanical scenario of platform switching geometric implant-abutment configuration relative to standard configurations by means of finite element analysis.Study Design: A 3D Finite Element Analysis (FEA) was performed on 3 different implant-abutment configurations: a 3.8 mm implant with a matching diameter abutment (Standard Control Design, SCD), a 5.5 mm implant with matching diameter abutment (Wider Control Design, WCD), and a 5.5mm implant with a 3.8 mm abutment (Experimental Design, ED). All the different experimental groups were discretized to over 60000 elements and 100000 nodes, and 130N vertical (axial) and 90N horizontal loads were applied on the coron…

Dental Stress Analysisbone mechanical responseMaterials scienceimplant-abutment stresFinite Element AnalysisPlatform switchingDental Abutmentsimplant-abutment stressFinite element studyImaging Three-Dimensionalvon Mises yield criterionGeneral Dentistryplatform switchingDental Implant-Abutment Designfinite element analysis; implant-abutment stress; bone mechanical response; platform switching; implant-abutment stres:CIENCIAS MÉDICAS [UNESCO]Finite element methodBiomechanical PhenomenaStress fieldPlatform switching bone mechanical response finite element analysis implant-abutment stress.Dental Implant-Abutment DesignOtorhinolaryngologyUNESCO::CIENCIAS MÉDICASSurgeryImplantAbutment (dentistry)Biomedical engineering
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Influence of material and diameter of pre-fabricated posts on maxillary central incisors restored with crown.

2009

Summary  Numerous research works have studied the effect of post-design parameters on the mechanical behaviour of restored teeth without reaching any clear conclusions. Previous works by the authors ascertained the effect of material and post-dimensions for non-crowned restored teeth. The aim of this work was to study the effect of post-material and diameter for crowned teeth. First, an experimental fracture strength test was performed on eighteen extracted human maxillary central incisors. Teeth were decoronated, treated endodontically and restored (nine with glass fibre posts and nine with stainless steel posts). Several post-diameters were used. The final crown restoration was carried ou…

Dental Stress Analysisinfluence of post-materialMaterials sciencemedicine.medical_treatmentGlass fiberFinite Element AnalysisDentistryCrown (dentistry)Dental Materialsstomatognathic systemFlexural strengthstress distributionMaterials TestingmedicineMaxillaHumansMaxillary central incisorDental Restoration PermanentGeneral Dentistryinfluence of post-diameterbusiness.industrybiomechanical performanceStress distributionIncisorstomatognathic diseasesDental Prosthesis DesignFracture (geology)pre-fabricated intra-radicular postsinfluence of crownFinite element techniqueGlassbusinessPost and Core TechniqueJournal of oral rehabilitation
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Shear capacity in concrete beams reinforced by stirrups with two different inclinations

2014

Abstract A model for the estimation of shear capacity in Reinforced Concrete (RC) beams with web reinforcement is provided by introducing a generalization of classical plastic Nielsen’s model, which is based on the variable-inclination stress-field approach. The proposed model is able to predict the shear capacity in RC beams reinforced by means of stirrups having two different inclinations and longitudinal web bars. A numerical comparison with the results of experimental tests and those provided by a Finite Element Model (FEM) based on the well known theory of Modified Compression Field Theory (MCFT) is carried out for validating the robustness of the proposed model. Finally, a set of para…

Different inclined stirrupsModified Compression Field TheoryEngineeringShear strength; Different inclined stirrups; Analytical model; Plastic model; Stress fieldGeneralizationbusiness.industryStructural engineeringStress fieldAnalytical modelFinite element methodStress fieldDifferent inclined stirrupSettore ICAR/09 - Tecnica Delle CostruzioniShear strengthRobustness (computer science)Shear strengthAnalytical model; Different inclined stirrups; Plastic model; Shear strength; Stress fieldGeotechnical engineeringReinforcementbusinessPlastic modelCivil and Structural EngineeringShear capacity
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Subwavelength Bessel beams in wire media

2013

Recent progress is emerging on nondiffracting subwavelength fields propagating in complex plasmonic nanostructures. In this paper, we present a thorough discussion on diffraction-free localized solutions of Maxwell’s equations in a periodic structure composed of nanowires. This self-focusing mechanism differs from others previously reported, which lie on regimes with ultraflat spatial dispersion. By means of the Maxwell–Garnett model, we provide a general analytical expression of the electromagnetic fields that can propagate along the direction of the cylinder’s axis, keeping its transverse waveform unaltered. Numerical simulations based on the finite element method support our analytical a…

DiffractionElectromagnetic fieldPhysicsTotal internal reflectionbusiness.industryWave propagationEffective medium theoryPhysics::OpticsStatistical and Nonlinear PhysicsAtomic and Molecular Physics and OpticsFinite element methodsymbols.namesakeArtificially engineered materialsOpticsDiffraction theoryDispersion (optics)symbolsCylinderbusinessBessel functionÓpticaJournal of the Optical Society of America B
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Finite element analysis of laser shock peening of 2050-T8 aluminum alloy

2015

Laser shock processing is a recently developed surface treatment designed to improve the mechanical properties and fatigue performance of materials, by inducing a deep compressive residual stress field. The purpose of this work is to investigate the residual stress distribution induced by laser shock processing in a 2050-T8 aeronautical aluminium alloy with both X-ray diffraction measurements and 3D finite element simulation. The method of X-ray diffraction is extensively used to characterize the crystallographic texture and the residual stress crystalline materials at different scales (macroscopic, mesoscopic and microscopic).Shock loading and materials’ dynamic response are experimentally…

DiffractionMatériaux [Sciences de l'ingénieur]Materials scienceResidual stressIndustrial and Manufacturing Engineering[SPI.MAT]Engineering Sciences [physics]/MaterialsMaterials Science(all)Residual stressModelling and SimulationHomogeneity (physics)Aluminium alloyGeneral Materials ScienceLaser shock peeningComposite materialAnisotropyMécanique [Sciences de l'ingénieur]business.industryMechanical EngineeringSurface stressFinite element analysisPeeningStructural engineering[SPI.MECA]Engineering Sciences [physics]/Mechanics [physics.med-ph]Finite element methodMechanics of MaterialsModeling and Simulationvisual_artvisual_art.visual_art_mediumbusiness
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