Search results for "finite element analysis."

showing 10 items of 96 documents

Inclusion of the periodontal ligament in studies on the biomechanical behavior of fiber post-retained restorations: An in vitro study and three-dimen…

2016

Endodontically treated teeth are known to have reduced structural strength. Periodontal ligament may influence fracture resistance. The purpose of this study was to assess the influence of including the periodontal ligament in biomechanical studies about endodontically treated and restored teeth. Forty human maxillary central incisors were treated endodontically and randomly divided into four groups: non-crowned (with and without an artificial ligament) and crowned (with and without an artificial ligament) with glass-ceramic crowns. All groups received prefabricated glass-fiber posts and a composite resin core. Specimens were tested, under a flexural–compressive load, until failure occurre…

Materials sciencePeriodontal Ligamentmedicine.medical_treatmentDental ResearchFinite Element AnalysisDentistryComposite ResinsCrown (dentistry)03 medical and health sciences0302 clinical medicinestomatognathic systemIncisormedicinePeriodontal fiberIn vitro studyHumansMaxillary central incisorRestorative dentistryOrthodonticsTooth Nonvitalbusiness.industryMechanical EngineeringBiomechanics030206 dentistryGeneral MedicineModels DentalBiomechanical PhenomenaIncisorstomatognathic diseasesmedicine.anatomical_structureLigamentbusiness030217 neurology & neurosurgeryProceedings of the Institution of Mechanical Engineers. Part H, Journal of engineering in medicine
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A simulation and experimental study of electrochemical pH control at gold interdigitated electrode arrays

2021

Abstract In electroanalysis, solution pH is a critical parameter that often needs to be tailored and controlled for the detection of particular analytes. This is most commonly performed by the addition of chemicals, such as strong acids or bases. Electrochemical in-situ pH control offers the possibility for the local adjustment of pH at the point of detection, without the need for additional reagents. Finite element analysis (FEA) simulations have been performed on interdigitated electrodes, to guide experimental design in relation to both electroanalysis and in-situ control of solution pH. No previous model exists that describes the generation of protons at an interdigitated electrode arra…

Materials scienceStripping (chemistry)Tailored in-situ pH controlElectroanalysisGeneral Chemical EngineeringAnalytical chemistrySolid state sensorsSquare waveElectrochemistrychemistry.chemical_compoundSettore ING-IND/23 - Chimica Fisica ApplicatachemistryFinite element analysis simulationpH indicatorMethyl redElectrodeElectrochemistryCyclic voltammetryVoltammetryMicroband interdigitated electrode array
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Rapid evaluation of notch stress intensity factors using the peak stress method: Comparison of commercial finite element codes for a range of mesh pa…

2018

The peak stress method (PSM) is an engineering, finite element (FE)-oriented method to rapidly estimate the notch stress intensity factors by using the singular linear elastic peak stresses calculated from coarse FE analyses. The average element size adopted to generate the mesh pattern can be chosen arbitrarily within a given range. Originally, the PSM has been calibrated under pure mode I and pure mode II loadings by means of Ansys FE software. In the present contribution, a round robin between 10 Italian universities has been carried out to calibrate the PSM with 7 different commercial FE codes. To this aim, several two-dimensional mode I and mode II problems have been analysed independe…

Materials sciencefinite element (FE) analysinotch stress intensity factor (NSIF)02 engineering and technologyStress (mechanics)Settore ING-IND/14 - Progettazione Meccanica E Costruzione Di Macchine0203 mechanical engineeringFinite Element Analysis (FEA)Range (statistics)Mechanics of MaterialGeneral Materials Sciencecoarse mesh finite element (FE) analysis notch stress intensity factor (NSIF) peak stress method (PSM)Stress intensity factorMechanical Engineeringpeak stress method (PSM)Coarse mesh Finite Element Analysis (FEA) Notch Stress Intensity Factor (NSIF) Peak Stress Method (PSM)Coarse meshMechanicsfinite element (FE) analysis021001 nanoscience & nanotechnologyFinite element methodcoarse mesh; finite element (FE) analysis; notch stress intensity factor (NSIF); peak stress method (PSM);020303 mechanical engineering & transportsMethod comparisonCorse mesh finite element analysis peak stress method notch stress intensity factors.Mechanics of Materialscoarse mesh; finite element (FE) analysis; notch stress intensity factor (NSIF); peak stress method (PSM)Materials Science (all)coarse mesh0210 nano-technology
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A study on stress distribution to cement layer and root dentin for post and cores made of CAD/CAM materials with different elasticity modulus in the …

2019

Background To evaluate the stress distribution in a maxillary central incisor with different post and cores made of six CAD/CAM materials with different elastic modulus in the absence of ferrule using the finite element analysis. Material and methods A three-dimensional endodontically treated maxillary central incisor restored with an all-ceramic crown was modelled in Rhinoceros (5.0 SR8, McNeel). The geometries were analyzed in ANSYS 17.2 (ANSYS Inc.) considering isotropic, homogeneous, linearly elastic materials with perfectly bonded contacts. The elastic moduli (E) of the post-and-cores defined the groups to be compared: nanoceramic resin (E=12.8GPa); composite resin (E=16GPa); hybrid ce…

Materials sciencemedicine.medical_treatment610 Medicine & healthCrown (dentistry)03 medical and health sciences10068 Clinic of Reconstructive Dentistry0302 clinical medicineBiomimeticsBiomaterials and Bioengineering in Dentistry0502 economics and businessmedicineDentinMaxillary central incisorCeramicComposite materialGeneral DentistryElastic modulusCementResearch05 social sciencesFinite element analysisFerrule030206 dentistryPost-and-core technique:CIENCIAS MÉDICAS [UNESCO]3500 General Dentistrymedicine.anatomical_structureCeramic crownvisual_artUNESCO::CIENCIAS MÉDICASvisual_art.visual_art_medium050211 marketingCortical boneEndodontically treated teeth
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Influence of different restorative materials on the stress distribution in dental implants

2018

Background To assist clinicians in deciding the most suitable restorative materials to be used in the crowns and abutment in implant rehabilitation. Material and methods For finite element analysis (FEA), a regular morse taper implant was created using a computer aided design software. The implant was inserted at the bone model with 3 mm of exposed threads. An anatomic prosthesis representing a first maxillary molar was modeled and cemented on the solid abutment. Considering the crown material (zirconia, chromium-cobalt, lithium disilicate and hybrid ceramic) and abutment (Titanium and zirconia), the geometries were multiplied, totaling eight groups. In order to perform the static analysis,…

Materials sciencemedicine.medical_treatmentceramic0206 medical engineeringAbutment02 engineering and technologyCrown (dentistry)Stress (mechanics)03 medical and health sciences0302 clinical medicinestomatognathic systemdental implantsBiomaterials and Bioengineering in DentistrymedicineCeramicComposite materialGeneral DentistryElastic modulusStrain gaugeStress concentrationResearchFinite element analysis030206 dentistry:CIENCIAS MÉDICAS [UNESCO]020601 biomedical engineeringvisual_artUNESCO::CIENCIAS MÉDICASvisual_art.visual_art_mediumImplantJournal of Clinical and Experimental Dentistry
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Evaluation of Subgrade Resilient Modulus Predictive Model for Use in Mechanistic-Empirical Pavement Design Guide

2006

The characterization of unbound materials in the mechanistic–empirical pavement design guide (MEPDG), also known as the 2002 design guide, is reviewed, and this characterization is applied to Minnesota subgrades. The main emphasis is on the collection of k1-, k2-, and k3-parameters for Minnesota fine-grained soils and the procedure for the interpretation of the resilient modulus test to provide an input to the multilayer elastic theory (MLET) analysis (Level 2 input). This is an important aspect of adaptation of the MEPDG, because the guide recommends measurement of resilient moduli from laboratory testing, but the procedure does not specify how to interpret the test data to obtain an input …

Mathematical modelComputer sciencebusiness.industryMechanical EngineeringResilient modulusStructural engineeringSubgradeNonlinear finite element analysisLaboratory testingDesign guidesoil subgrade resilient modulus pavement designForensic engineeringbusinessElastic modulusCivil and Structural EngineeringTest dataTransportation Research Record: Journal of the Transportation Research Board
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Heterogeneous structures studied by an interphase elasto-plastic damaging model

2013

Heterogeneous materials present a mechanical response strongly dependent on the static and kinematic phenomena occurring in the constituents and at their joints. At the mesoscopic level the interaction between the units is simulated by mean of apposite mechanical devices such as the zero thickness interface model where contact tractions and displacement discontinuities are the primary static and kinematic variables respectively. In heterogeneous materials the response also depends on joint internal stresses. The introduction of internal stresses brings to the interphase model or an enhancement of the classical zero-thickness interface. With the term 'interphase' we shall mean a layer separa…

Mechanical responseMaterials scienceHeterogeneous materialMultilayer structureElasto plasticDisplacement discontinuityInterphaseZero-thickness interfacesComposite materialKinematic variableSettore ICAR/08 - Scienza Delle CostruzioniHeterogeneous structureFinite element analysis program
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Effect of clenching on biomechanical response of human mandible and temporomandibular joint to traumatic force analyzed by finite element method

2013

Purpose: The purpose of the present study was to analyze the effect of clenching on the biomechanical response of human mandible and temporomandibular joint (TMJ) to traumatic force by the finite element (FE) method. Material and Methods: FE models of the mandible and the TMJ in resting and clenching positions were prepared. Distribution and magnitude of von Mises stress were analyzed by applying force as a point load in the symphyseal, canine, body and angle regions of the mandible. In addition, strain energy density (SED) at the articular disc and in posterior connective tissue of TMJ was analyzed. Results: In the resting position, von Mises stress was mainly concentrated at the condylar …

Models AnatomicMaterials scienceFinite Element AnalysisOdontologíaMandibleCondyleBite ForceStress (mechanics)stomatognathic systemmedicinePressurevon Mises yield criterionHumansGeneral DentistryTemporomandibular JointMandibleStrain energy density functionAnatomy:CIENCIAS MÉDICAS [UNESCO]Ciencias de la saludFinite element methodTemporomandibular jointBiomechanical PhenomenaBite force quotientmedicine.anatomical_structureOtorhinolaryngologyUNESCO::CIENCIAS MÉDICASSurgeryResearch-ArticleOral Surgery
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Computational analysis of lung deformation after murine pneumonectomy. [corrected].

2012

In many mammalian species, the removal of one lung (pneumonectomy) is associated with the compensatory growth of the remaining lung. To investigate the hypothesis that parenchymal deformation may trigger lung regeneration, we used microCT scanning to create 3-dimensional finite element geometric models of the murine lung pre- and post-pneumonectomy (24 hours). The structural correspondence between models was established using anatomic landmarks and an iterative computational algorithm. When compared with the pre-pneumonectomy lung, the post-pneumonectomy models demonstrated significant translation and rotation of the cardiac lobe into the post-pneumonectomy pleural space. 2-dimensional maps…

Models AnatomicPathologymedicine.medical_specialtyX-ray microtomographymedicine.medical_treatmentFinite Element AnalysisBiomedical EngineeringCompensatory growth (organ)BioengineeringBiologyDeformation (meteorology)ArticlePneumonectomyMiceParenchymamedicineAnimalsRegenerationComputational analysisPneumonectomyLungLungGeneral MedicineAnatomyX-Ray Microtomographyrespiratory systemLoberespiratory tract diseasesComputer Science ApplicationsHuman-Computer InteractionMice Inbred C57BLmedicine.anatomical_structureComputer methods in biomechanics and biomedical engineering
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Experimental Tests and FEM Model for SFRC Beams under Flexural and Shear Loads

2008

The complete load-vs-displacement curves obtained by four-point-bending tests on Steel Fiber Reinforced Concrete (SFRC) beams are predicted by using a nonlinear finite element code based on the Modified Compression Field Theory (MCFT) and the Disturbed Stress Field Model (DSFM) suitably adapted for SFRC elements. The effect of fibers on the shear-flexure response is taken into account, mainly incorporating tensile stress-strain analytical relationship for SFRC. The numerical results show the effectiveness of the model for prediction of the behavior of the tested specimens reinforced with light amount of stirrups or with fibers only. © 2008 American Institute of Physics.

Modified Compression Field TheoryMaterials scienceSFRC beamsbusiness.industryShearStructural engineeringFiber-reinforced concreteNonlinear finite element analysisFinite element methodlaw.inventionStress fieldfiber-reinforced concretePhysics and Astronomy (all)Settore ICAR/09 - Tecnica Delle Costruzionishear and flexureShear; SFRC beamsFlexural strengthShear (geology)lawExperimental testUltimate tensile strengthComposite materialbusinessFEM analysiAIP Conference Proceedings
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