Search results for "Elastic"

showing 10 items of 2162 documents

A second strain gradient elasticity theory with second velocity gradient inertia – Part II: Dynamic behavior

2013

Abstract This paper is the sequel of a companion Part I paper devoted to the constitutive equations and to the quasi-static behavior of a second strain gradient material model with second velocity gradient inertia. In the present Part II paper, a multi-cell homogenization procedure (developed in the Part I paper) is applied to a nonhomogeneous body modelled as a simple material cell system, in conjunction with the principle of virtual work (PVW) for inertial actions (i.e. momenta and inertia forces), which at the macro-scale level takes on the typical format as for a second velocity gradient inertia material model. The latter (macro-scale) PVW is used to determine the equilibrium equations …

Angular momentummedia_common.quotation_subjectRotary inertiaPolhodeContinuum thermodynamicsInertiaMoment of inertia factorsymbols.namesakeMaterials Science(all)Modelling and SimulationGeneral Materials ScienceEuler's equationsmedia_commonMathematicsWave propagationApplied MathematicsMechanical EngineeringMathematical analysisMoment of inertiaCondensed Matter PhysicsRigid body dynamicsDynamicsGradient elasticityClassical mechanicsHigher order inertiaMechanics of MaterialsModeling and SimulationsymbolsInternational Journal of Solids and Structures
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A gradient elasticity theory for second-grade materials and higher order inertia

2012

Abstract Second-grade elastic materials featured by a free energy depending on the strain and the strain gradient, and a kinetic energy depending on the velocity and the velocity gradient, are addressed. An inertial energy balance principle and a virtual work principle for inertial actions are envisioned to enrich the set of traditional theoretical tools of thermodynamics and continuum mechanics. The state variables include the body momentum and the surface momentum, related to the velocity in a nonstandard way, as well as the concomitant mass-accelerations and inertial forces, which do intervene into the motion equations and into the force boundary conditions. The boundary traction is the …

Angular momentummedia_common.quotation_subjectTraction (engineering)Continuum thermodynamicsInertiaMaterials Science(all)Modelling and SimulationWave dispersionGeneral Materials ScienceVirtual workBoundary value problemmedia_commonMathematicsContinuum mechanicsForce densityMechanical EngineeringApplied MathematicsMathematical analysisEquations of motionCondensed Matter PhysicsDynamicsGradient elasticityClassical mechanicsHigher order inertiaMechanics of MaterialsModeling and SimulationInternational Journal of Solids and Structures
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Thermo-responsive hydrogels from cellulose-based polyelectrolytes and catanionic vesicles for biomedical application.

2016

In this study, negatively charged catanionic vesicles/hydrophobically modified hydroxyethylcellulose polymers thermo-responsive hydrogels have been fabricated. Vesicular aggregates were found to act as multifunctional junctions for networking of modified-cellulose water solutions. The contributions of the electrostatic and hydrophobic interactions were evaluated by changing either vesicles composition or the polymer hydrophobic substitution. Thermal-induced size and lamellarity of hydrogel-enclosed vesicles were detected, with further polygonal shape changes induced by cellulose-based polymer addition. The thermal transition was also found to tune hydrogel mechanical behaviour. The network …

AnionsProton Magnetic Resonance SpectroscopyBiomedical EngineeringBiomedical TechnologyCeramics and CompositeBiomaterialsDiffusioncatanionic vesicleTheophyllineCationsCellulosecatanionic vesicles; cellulose; diffusion; hydrogel; NMR; rheology; Ceramics and Composites; Biomaterials; Biomedical Engineering; 2506ViscositydiffusionTemperatureHydrogelsBiomaterialPolyelectrolytescelluloseNMRElasticityDrug LiberationSettore CHIM/09 - Farmaceutico Tecnologico Applicativocatanionic vesiclesCeramics and Compositesrheologyhydrogel2506RheologyJournal of biomedical materials research. Part A
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Fractional order hereditariness of knee human ligament and tendon

2017

Anterior Cruciate Ligament (ACL) is one of the four major ligaments in the knee, playing a critical role in stabilizing the joint. ACL is highly susceptible to injury, overall during sport activities, often precipitating catastrophic long-term joint outcomes. The ideal replacement graft for a torn ACL would restore native anatomy and function to the knee. Most commonly used autograft and allograft, including patellar tendon (P) and hamstring tendon (H) graft, or bioengineered synthetic grafts, may substantially alter the biomechanics of the knee, permitting a return to only moderate physical activities [1]. Main issues are the sub-optimal graft properties [2] and a still incomplete biomecha…

Anterior Cruciate Ligaments Viscoelastic Materials Grafts Mittag-Leffler
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RESIST-HCV Criteria to Monitor Progression of Low-Risk Esophageal Varices in Patients With Compensated Cirrhosis After HCV Eradication: The SIMPLE St…

2022

Noninvasive criteria to predict the progression of low-risk esophageal varices (EV) in patients with compensated hepatitis C virus (HCV) cirrhosis after sustained virological response (SVR) by direct-acting antivirals (DAAs) are lacking. Our aim was to assess the diagnostic performance of Rete Sicilia Selezione Terapia-HCV (RESIST-HCV) criteria for EV progression compared with elastography-based criteria (Baveno VI, Expanded Baveno VI, and Baveno VII-HCV criteria).All consecutive patients observed at 3 referral centers with compensated HCV cirrhosis with or without F1 EV who achieved sustained virological response by DAAs were classified at last esophagogastroduodenoscopy (EGDS) as RESIST-H…

Antiviral AgentMaleLiver CirrhosisHepatologyPlatelet CountLiver CirrhosiGastroenterologyHepacivirusHepatitis C ChronicEsophageal and Gastric VaricesAntiviral AgentsElasticity Imaging Techniques.Esophageal and Gastric VariceHumansElasticity Imaging TechniquesFemaleSerum AlbuminHumanAgedThe American journal of gastroenterology
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Pathogénie de l’artérite à cellules géantes

2012

Giant-cell arteritis (GCA) involves larges arteries, especially aorta and extra-cranial branches of external carotid. Histo-pathological lesions affect all the layers of the artery leading to a segmental and focal panarteritis with a polymorphic cell infiltrate including T cells, macrophages and multinucleated giant cells, a fragmented internal elastic lamina and an intimal hyperplasia. The pathophysiology of GCA is not fully understood. After dendritic cell activation in the adventitia, CD4T cells are recruited in the arterial wall and polarized into Th1 and Th17 cells that produce IFN-γ and IL-17. These cytokines activate macrophages, giant cells and smooth muscle cells inducing vascular …

AortaPathologymedicine.medical_specialtyIntimal hyperplasiaGeneral MedicineDendritic cellBiologyInternal elastic laminamedicine.diseasemedicine.anatomical_structureGiant cellmedicine.arteryAdventitiacardiovascular systemmedicinecardiovascular diseasesArteritisArteryLa Presse Médicale
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Comparison of hemodynamic and structural indices of ascending thoracic aortic aneurysm as predicted by 2-way FSI, CFD rigid wall simulation and patie…

2018

Patient-specific computational modeling is increasingly being used to predict structural and hemodynamic parameters, especially when current clinical tools are not accessible. Indeed, pathophysiology of ascending thoracic aortic aneurysm (ATAA) has been simulated to quantify the risk of complications by novel prognostic parameters and thus to improve the clinical decision-making process related to the intervention of ATAAs. In this study, the relevance of aneurysmal wall elasticity in determining parameters of clinical importance, such as the wall shear stress (WSS), is discussed together with the significance of applying realistic boundary conditions to consider the aortic stretch and twis…

Aortic valveAdultMalePatient-Specific Modelingmedicine.medical_specialtyComputer science0206 medical engineeringFinite Element Analysisaorti failureHeart Valve DiseasesHemodynamicsFluid-solid interaction (FSI)Health Informatics02 engineering and technology030204 cardiovascular system & hematologyComputational fluid dynamicsThoracic aortic aneurysm03 medical and health sciences0302 clinical medicineBicuspid aortic valveBicuspid Aortic Valve DiseaseInternal medicinemedicineShear stressHumansComputer SimulationAgedAortic Aneurysm ThoracicStructural mechanicsbusiness.industryFinite element analysis (FEA)Models CardiovascularMiddle Agedmedicine.diseaseAscending thoracic aortic aneurysm020601 biomedical engineeringFinite element methodElasticityComputer Science Applicationsmedicine.anatomical_structureComputational fluid-dynamic (CFD)Aortic Valvecardiovascular systemCardiologyFemaleStress Mechanicalbusiness
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Difference in hemodynamic and wall stress of ascending thoracic aortic aneurysms with bicuspid and tricuspid aortic valve.

2012

The aortic dissection (AoD) of an ascending thoracic aortic aneurysm (ATAA) initiates when the hemodynamic loads exerted on the aneurysmal wall overcome the adhesive forces holding the elastic layers together. Parallel coupled, two-way fluid–structure interaction (FSI) analyses were performed on patient-specific ATAAs obtained from patients with either bicuspid aortic valve (BAV) or tricuspid aortic valve (TAV) to evaluate hemodynamic predictors and wall stresses imparting aneurysm enlargement and AoD. Results showed a left-handed circumferential flow with slower-moving helical pattern in the aneurysm's center for BAV ATAAs whereas a slight deviation of the blood flow toward the anterolater…

Aortic valveMalemedicine.medical_specialtyFluid–structure interaction Aortic dissection Ascending thoracic aortic aneurysm Bicuspid aortic valveBiomedical EngineeringBiophysicsHeart Valve DiseasesAorta ThoracicThoracic aortic aneurysmArticleAortic aneurysmBicuspid aortic valveBicuspid Aortic Valve DiseaseInternal medicinemedicine.arteryCoronary CirculationAscending aortamedicineThoracic aortaHumansOrthopedics and Sports Medicinecardiovascular diseasesAgedAortic dissectionAortabusiness.industryRehabilitationHemodynamicsModels CardiovascularMiddle Agedmedicine.diseaseElasticityAortic Aneurysmmedicine.anatomical_structureAortic ValveCardiologycardiovascular systemFemaleTricuspid ValvebusinessJournal of biomechanics
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Fixed point theorems on ordered metric spaces and applications to nonlinear elastic beam equations

2012

In this paper, we establish certain fixed point theorems in metric spaces with a partial ordering. Presented theorems extend and generalize several existing results in the literature. As application, we use the fixed point theorems obtained in this paper to study existence and uniqueness of solutions for fourth-order two-point boundary value problems for elastic beam equations.

Applied MathematicsMathematical analysisFixed-point theoremFixed-point propertyNonlinear systemMetric spaceSettore MAT/05 - Analisi MatematicaModeling and SimulationGeometry and TopologyBoundary value problemUniquenessOrdered metric space fixed point coupled fixed point boundary value problem elastic beam equation.Partially ordered setCoincidence pointMathematics
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A strain-difference-based nonlocal elasticity model

2004

Abstract A two-component local/nonlocal constitutive model for (macroscopically) inhomogeneous linear elastic materials (but constant internal length) is proposed, in which the stress is the sum of the local stress and a nonlocal-type stress expressed in terms of the strain difference field, hence identically vanishing in the case of uniform strain. Attention is focused upon the particular case of piecewise homogeneous material. The proposed model is thermodynamically consistent with a suitable free energy potential. It constitutes an improved form of the Vermeer and Brinkgreve [A new effective nonlocal strain measure for softening plasticity. In: Chambon, R., Desrues, J., Vardulakis, I. (E…

Applied MathematicsMechanical EngineeringAttenuationMathematical analysisConstitutive equationLinear elasticityGeometryPlasticityCondensed Matter PhysicsBifurcation theoryMechanics of MaterialsModeling and SimulationPiecewiseGeneral Materials ScienceSofteningMathematicsNumerical stabilityInternational Journal of Solids and Structures
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