Search results for "Elastic"

showing 10 items of 2162 documents

Absorption kinetics and swelling stresses in hydrothermally aged epoxies investigated by photoelastic image analysis

2015

Abstract The present work proposes an experimental optical methodology able to measure the transient swelling stresses induced by the water uptake ageing of polymers. In particular, the work describes the implementation of a Photoelastic technique to quantify internal stresses arising during the hydrothermal ageing of cast epoxy samples. The material investigated is a model DGEBA/DDS epoxy system. Curing and post-curing cycles have been optimised in order to obtain a fully cured, high T g , and completely stress free initial condition. Rectangular beam samples were then left in a hydrothermal bath at 90 °C, and regularly monitored by gravimetric and photoelastic analyses. The quantitative e…

Absorption of waterMaterials sciencePhotoelastic stress analysiPolymers and PlasticsThermosetting polymerSwelling stresseSettore ING-IND/14 - Progettazione Meccanica E Costruzione Di MacchineDesorptionMaterials ChemistrymedicineComposite materialSettore ING-IND/15 - Disegno E Metodi Dell'Ingegneria IndustrialeCuring (chemistry)chemistry.chemical_classificationHydrothermal ageingPolymerEpoxyCondensed Matter PhysicschemistryMechanics of Materialsvisual_artThermosetting resinvisual_art.visual_art_mediumGravimetric analysisSettore CHIM/07 - Fondamenti Chimici Delle TecnologieSwellingmedicine.symptom
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Modeling of the Achilles Subtendons and Their Interactions in a Framework of the Absolute Nodal Coordinate Formulation

2022

Experimental results have revealed the sophisticated Achilles tendon (AT) structure, including its material properties and complex geometry. The latter incorporates a twisted design and composite construction consisting of three subtendons. Each of them has a nonstandard cross-section. All these factors make the AT deformation analysis computationally demanding. Generally, 3D finite solid elements are used to develop models for AT because they can discretize almost any shape, providing reliable results. However, they also require dense discretization in all three dimensions, leading to a high computational cost. One way to reduce degrees of freedom is the utilization of finite beam elements…

Achilles tendonbeam-to-beam contactarbitrary cross-sectionANCFelasticitykantajännebiomekaniikkamatemaattiset mallitbiomechanicskimmoisuus
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Technical Note: Prediction Models of Airborne Sound Insulation of Multilayer Materials with Viscoelastic Thin Sheets

2008

The growing introduction of new insulation materials in building acoustics has caused an increase of the importance of the prediction tools. Appropriate simulations allow strictly necessary laboratory measurements to be identified. In this way, costs are reduced. The demands of new legislation has resulted in the appearance of various software designed to facilitate prediction. The prediction models are based on different hypotheses: adaptation of impedances, spatial behaviour of spectral components, statistical energy distribution, the Finite Element Method (FEM), etc. Each of these models and methods offer advantages and contain limitations. In this paper, different models for prediction…

Acoustics and UltrasonicsComputer sciencebusiness.industryMechanical EngineeringAcousticsMechanical engineeringTechnical noteBuilding and ConstructionViscoelasticityFinite element methodSoundproofingSoftwarebusinessAdaptation (computer science)Electrical impedancePredictive modellingBuilding Acoustics
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Global-Local model for guided wave scattering problems with application to defect characterization in built-up composite structures

2020

Abstract Predicting scattering of elastic guided waves in multi-layered solid plates with geometrical and/or material discontinuities is of great interest to many fields, including ultrasonic-based Non-Destructive Testing (NDT) and health monitoring of critical structural components (SHM). The problem is complicated by the multimode and dispersive behaviour of the guided waves. This paper describes a unified Global-Local (GL) approach that is computationally efficient in cases that can be very complex in terms of geometry and/or material properties. One example of this is a composite built-up structure. The proposed GL procedure discretizes the “local” region with the scattering discontinui…

AcousticsNon-destructive testingClassification of discontinuitiesScatteringNondestructive testingGlobal-Local methodGeneral Materials ScienceGuided elastic wavePhysicsStructural health monitoringGuided wave testingScatteringbusiness.industryApplied MathematicsMechanical EngineeringCondensed Matter PhysicsFinite element methodDiscontinuity (linguistics)Mechanics of MaterialsComposite structureModeling and SimulationReflection (physics)Ultrasonic sensorSettore ICAR/08 - Scienza Delle CostruzionibusinessSemi-analytical finite element methodInternational Journal of Solids and Structures
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Acute effects of cold pack on mechanical properties of the quadriceps muscle in healthy subjects.

2012

Purpose: To examine the effects of local cooling on mechanical properties of the quadriceps muscle in healthy subjects. Subjects: Thirty-nine healthy subjects (27 women, 12 men, mean age 39, range 20e62) volunteered. Methods: A cold gel pack was applied to the quadriceps muscle for 20 min. Properties were quantified by analyzing the frequency (tension), decrement (elasticity) and stiffness of damped oscillations and the compliance of the muscle before, immediately after and after 15-min after cooling. Results: The largest responses immediately after cooling were seen in the oscillation decrement parameter, 7.9 (3.7e12.1) %, and in the compliance parameter, � 7.5 (� 9.8 to � 5.3) %. Response…

Acute effectsAdultMalemedicine.medical_specialtyTime FactorsMovementPhysical Therapy Sports Therapy and RehabilitationQuadriceps MuscleYoung AdultSkeletal pathologyInternal medicineConfidence IntervalsMedicineHumansOrthopedics and Sports MedicineMuscle SkeletalDamped oscillationsbusiness.industryQuadriceps muscleHealthy subjectsMean ageta3141General MedicineMiddle AgedConfidence intervalElasticitySurgeryBiomechanical PhenomenaMuscle RigidityCold TemperatureCryotherapyAcute DiseaseCardiologyFemalebusinessRecovery phasePhysical therapy in sport : official journal of the Association of Chartered Physiotherapists in Sports Medicine
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Optimization design process of a morphing winglet

2018

Aeronautic and aerospace engineering is recently moving in the direction of developing morphing wing devices, with the aim of making adaptable the aerodynamic shapes to different operational conditions. Those devices may be classified according to two different conceptual architectures: kinematic or compliant systems. Both of them embed within their body all the active components (actuators and sensors), necessary to their operations. In the first case, the geometry variation is achieved through an augmented classical mechanism, while in the second case the form modification is due to a special arrangement of the inner structure creating a distributed elastic hinges arrangement. Whatever is…

Adaptive winglet topology optimization morphing devices load alleviation and controlWingProcess (engineering)Computer scienceTopology optimizationControl engineering02 engineering and technologyAerodynamicsKinematics021001 nanoscience & nanotechnologyAeroelasticity01 natural sciences010309 opticsMorphingRobustness (computer science)Adaptive system0103 physical sciencesSystems architectureDesign processWingtip deviceSettore ING-IND/04 - Costruzioni E Strutture Aerospaziali0210 nano-technologyEngineering design processActuatorBioinspiration, Biomimetics, and Bioreplication VIII
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Optimising management of patients with hepatitis C virus in the age of direct-acting antivirals: results of a Delphi consensus.

2018

OBJECTIVE: To optimize the management of patients with chronic hepatitis C virus (HCV). MATERIALS AND METHODS: We developed two questionnaires to determine Italian healthcare professionals’ opinions on the overall management of HCV chronic liver disease and the use of direct-acting antivirals (DAAs) in the treatment of HCV. A Delphi consensus method using the RAND/UCLA appropriateness method was used to determine opinions of an expert panel (EP) of specialists. RESULTS: Overall 443 physicians from 167 Italian centres completed the two questionnaires. The EP confirmed the importance of collaboration with general practitioners (GPs) and HCV testing in high-risk groups, but did not agree on tr…

AdultAged 80 and overLiver CirrhosisMaleConsensusGenotypedelphi methodhepatitis c virus; direct-acting antivirals; delphi method; consensus; adult; aged 80 and over; antiviral agents; consensus; elasticity imaging techniques; female; genotype; hepacivirus; hepatitis c chronic; humans; liver cirrhosis; male; middle aged; surveys and questionnairesHepacivirushepatitis c virusHepatitis C ChronicMiddle AgedAntiviral AgentschronicagedSurveys and QuestionnairesHCV80 and overElasticity Imaging TechniquesHumansFemalehepatitis cdirect-acting antiviralsEuropean review for medical and pharmacological sciences
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Diagnostic performance of 2D-shear wave elastography in the diagnosis of breast cancer: a clinical appraisal of cutoff values

2022

Purpose To assess the role of 2D-shear wave elastography (2D-SWE) in differentiating benign from malignant focal breast lesions (FBLs), providing new vendor-specific cutoff values. Methods 158 FBLs (size: 3.5-50 mm) detected in 151 women (age: 21-87 years) were prospectively evaluated by means 2D-SWE. For each lesion, an expert radiologist assessed US BI-RADS category and calculated the following four 2D-SWE parameters: (1) elasticity maximum (E-max); (2) mean elasticity (E-mean); (3) minimum elasticity (E-min); (4) elasticity ratio (E-ratio). US-guided core-biopsy was considered as standard of reference for all the FBLs classified as BI-RADS 4 or 5. For each 2D-SWE parameter, the optimal c…

AdultAged 80 and overReproducibility of ResultsBreast NeoplasmsGeneral MedicineMiddle AgedSensitivity and SpecificityDiagnosis DifferentialYoung AdultElasticity imaging techniquesShear wave imagingHumansFemaleRadiology Nuclear Medicine and imagingUltrasonography MammaryBreastSettore MED/36 - Diagnostica Per Immagini E RadioterapiaAgedUltrasonography
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Is local stiffness, as measured by radio frequency, more sensitive than intima-media thickness?

2013

Aim: The aim of our study was to explore the changes in common carotid arterial intima-media thickness (CCA IMT) and local arterial stiffness to evaluate, non-invasively, early vascular disease in patients with cardiovascular (CV) risk factors and "normal" carotid IMT (6.05 m/s better identified, among patients with IMT <0.9mm, those with cardiovascular risk factors (sensitivity 82.0 % specificity 62.0 %; AUC 0.73). Conclusion. Increased stiffness is a result of change both in quantity and quality of the arterial wall. Arterial functional changes and distention alterations may herald the onset of vascular disease before manifestation of symptoms or detection of preclinical atherosclerotic l…

AdultCarotid Artery DiseasesMaleCarotid Artery CommonMiddle AgedPulse Wave AnalysisCardiovascular diseaseSettore MED/11 - Malattie Dell'Apparato CardiovascolareCarotid Intima-Media ThicknessElasticityCarotid intima-media thickneYoung AdultVascular StiffnessROC CurvePredictive Value of TestsRisk FactorsArea Under CurveCase-Control StudiesVascular stiffneElasticity Imaging TechniquesHumansFemaleCardiology and Cardiovascular MedicineVascular stiffnessCarotid intima-media ticknesscardiovascular diseasesInternational angiology : a journal of the International Union of Angiology
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EMG-Assisted Muscle Force Driven Finite Element Model of the Knee Joint with Fibril-Reinforced Poroelastic Cartilages and Menisci.

2019

Abnormal mechanical loading is essential in the onset and progression of knee osteoarthritis. Combined musculoskeletal (MS) and finite element (FE) modeling is a typical method to estimate load distribution and tissue responses in the knee joint. However, earlier combined models mostly utilize static-optimization based MS models and muscle force driven FE models typically use elastic materials for soft tissues or analyze specific time points of gait. Therefore, here we develop an electromyography-assisted muscle force driven FE model with fibril-reinforced poro(visco)elastic cartilages and menisci to analyze knee joint loading during the stance phase of gait. Moreover, since ligament pre-st…

AdultCartilage ArticularMaleKnee JointTibiaElectromyographyFinite Element Analysismusculoskeletal systemModels BiologicalElasticityArticleMechanical engineeringBiomechanical PhenomenaHumansComputer SimulationMeniscusFemurStress MechanicalMuscle Skeletalhuman activitiesPorosityBiomedical engineeringScientific reports
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