Search results for "Viscoelasticity"

showing 10 items of 224 documents

Simplified Procedure for Evaluating the Effects of Creep and Shrinkage on Prestressed Concrete Girder Bridges and the Application of European and Nor…

2013

The effects of time-dependent phenomena on concrete prestressed girder bridges are investigated. The study concerns the case of bridges built directly in their final configuration and that of bridges built by a sequence of stages in which geometry, restraints, and loads vary until the final configuration is achieved. An analytical approach based on the principles of aging linear viscoelasticity and the age-adjusted effective modulus method is followed. The paper has two aims: the first is to provide an efficient and simplified tool for the evaluation of the structural response in the early stages of design; the second is to compare the results of the analyses on actual cases of bridges when…

Engineeringbusiness.industryBuilding and ConstructionStructural engineeringCreepAging linear viscoelasticityViscoelasticitylaw.inventionSettore ICAR/09 - Tecnica Delle CostruzioniPrestressed concreteCreepStructural loadPrediction modelDeflection (engineering)lawSegmental bridgeGirderBending momentShrinkagebusinessConcreteCivil and Structural EngineeringShrinkageJournal of Bridge Engineering
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An extension of the fractional model for construction of asphalt binder master curve

2015

Knowledge and prediction of viscoelastic behaviour of asphalt binder is of great interest in order to design asphalt mixtures for civil construction of road and airports with good performances. The capability of a fractional model – requiring a very limited number of parameters – to describe and predict the linear viscoelastic behaviour of asphalt binder subjected to sinusoidal oscillations is investigated. Experimental data of complex modulus, |G*|, and phase angle, δ, are used to validate the proposed constitutive model. Based on the proposed extension of a fractional model, complex modulus isotherms for a range of frequencies can be created simply starting from isochronals at frequency v…

Engineeringcomplex moduluEnvironmental Engineeringmaster curveConstitutive equation0211 other engineering and technologiesModulusMechanical engineeringValue (computer science)020101 civil engineering02 engineering and technologyViscoelasticity0201 civil engineeringfractional model021105 building & constructionRange (statistics)Applied mathematicsSettore ICAR/04 - Strade Ferrovie Ed AeroportiCivil and Structural Engineeringbusiness.industryasphalt binderPhase angleExtension (predicate logic)Asphaltroad pavementbusinessSettore ICAR/08 - Scienza Delle Costruzioni
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Dynamic evaluation of aggregation and agglutination of red blood cells.

1984

Viscoelastic evaluation of aggregation and agglutination of red blood cells was attempted. A concentric double cylinder viscoelastometer was used for determining the dynamic rigidity modulus and loss modulus of blood sample. The dynamic rigidity modulus of horse blood were measured over a wide range of hematocrit. The relation between the viscoelastic behavior and the erythrocyte sedimentation was examined. The change in the amount of surface charge of enzyme treated red blood cells was qualitatively estimated from the measurements of dynamic viscoelasticity of red blood cells suspension with added poly-L-lysine. The dynamic rigidity modulus of red blood cells agglutinated by adding lectin …

Erythrocyte AggregationErythrocytesPhysiologyModulusNeuraminidaseRigidity (psychology)Blood SedimentationHematocritViscoelasticityPhysiology (medical)Dynamic modulusmedicineConcanavalin AAnimalsHumansPolylysineTrypsinSurface chargeHorsesmedicine.diagnostic_testbiologyChemistryBlood ViscosityElasticityAgglutination (biology)Concanavalin Abiology.proteinBiophysicsCattleRheologyBiorheology. Supplement : the official journal of the International Society of Biorheology
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The role of crystalline, mobile amorphous and rigid amorphous fractions in the performance of recycled poly (ethylene terephthalate) (PET)

2012

[EN] The action of thermo-mechanical degradation induced by mechanical recycling of poly(ethylene terephthalate) was simulated by successive injection moulding cycles. Degradation reactions provoked chain scissions and a reduction in molar mass mainly driven by the reduction of diethyleneglycol to ethylene glycol units in the flexible domain of the PET backbone, and the formation of -OH terminated species with shorter chain length. The consequent microstructural changes were quantified taking into account a three-fraction model involving crystalline, mobile amorphous (MAF) and rigid amorphous fractions (RAF). A remarkable increase of RAF, to a detriment of MAF was observed, while the percen…

EthyleneSolucions polimèriquesPolymers and PlasticsInjection mouldingDifferential scanning calorimetry (DSC)Crystalline fractionsMechanical propertiesThermo-mechanical degradationchemistry.chemical_compoundDegradationAmorphous materialsPolymer blendsMaterials ChemistryMechanical recyclingRecyclingComposite materialDiethyleneglycolPoly(ethylene terephthalate) (PET)Injection moldingMolar massMechanical featureRecycled poly(ethylene terephthalate)Microstructural changesCondensed Matter PhysicsChain scissionRigid-amorphous fractionMechanics of MaterialsMAQUINAS Y MOTORES TERMICOSPolymer blendMaterials scienceMechanical performanceViscoelasticityEthyleneDifferential scanning calorimetrySegmental dynamicsInfrared analysis (FT-IR)Degradation reactionDifferential scanning calorimetryInjection mouldingPolyethylene terephthalatesEthylene glycolTermoplàsticsCrystalline materialsShorter chainsAmorphous solidchemistryGlass-rubber relaxationProcessing cyclesEthylene glycol
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Contributions to the study of the Visco-elastoplastic behavior of a flax fiber – epoxy resin structural composite

2020

The study presented in the manuscript is positioned in a large context of development of new materials, with a reduced environmental impact. From the possibilities currently under scrutiny (especially in Europe), flax fiber reinforced composites are the most promising. Thanks to their low density and high mechanical properties, as well as their low energy costs, fuel the idea of their usage in structural composites, by replacing glass fibers. These biocomposites are already implemented in numerous applications. However, several scientifical and technical unknowns, especially their long-term behavior, are hindering their use in domains of high load conditions.The thesis proposes to study the…

Fibre de linFlax fiberViscoelasticity[PHYS.MECA]Physics [physics]/Mechanics [physics]Viscoélasticité[PHYS.MECA] Physics [physics]/Mechanics [physics]ViscoplasticityViscoplasticitéBiocomposite
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Dynamic Finite Element analysis of fractionally damped structural systems in the time domain

2015

Visco-elastic material models with fractional characteristics have been used for several decades. This paper provides a simple methodology for Finite-Element-based dynamic analysis of structural systems with viscosity characterized by fractional derivatives of the strains. In particular, a re-formulation of the well-known Newmark method taking into account fractional derivatives discretized via the Grunwald–Letnikov summation allows the analysis of structural systems using standard Finite Element technology.

Finite element methodDiscretizationMechanical EngineeringMathematical analysisStructural systemStructural analysiComputational MechanicsCalculationViscoelasticityFinite element methodViscoelasticityFractional calculusStrainSimple (abstract algebra)Newmark-beta methodTime domainMathematics
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Finite element method on fractional visco-elastic frames

2016

Viscoelastic behavior is defined by fractional operators.Quasi static FEM analysis of frames with fractional constitutive law is performed.FEM solution is decoupled into a set of fractional Kelvin Voigt elements.Proposed approach could be easily integrated in existing FEM codes. In this study the Finite Element Method (FEM) on viscoelastic frames is presented. It is assumed that the Creep function of the constituent material is of power law type, as a consequence the local constitutive law is ruled by fractional operators. The Euler Bernoulli beam and the FEM for the frames are introduced. It is shown that the whole system is ruled by a set of coupled fractional differential equations. In q…

Finite element methodMechanical EngineeringConstitutive equationMathematical analysis02 engineering and technologyFunction (mathematics)Type (model theory)021001 nanoscience & nanotechnologyFractional calculuPower lawViscoelasticityFinite element methodComputer Science ApplicationsFractional calculus020303 mechanical engineering & transports0203 mechanical engineeringModeling and SimulationFractional viscoelasticityGeneral Materials Science0210 nano-technologySettore ICAR/08 - Scienza Delle CostruzioniQuasistatic processCaputo's fractional derivativeCivil and Structural EngineeringMathematics
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Basic Modeling of the Visco Elastic Behavior of Flax Fiber Composites

2017

International audience; L’effet de massification automobile qui accompagne les besoins croissants de mobilité terrestre et l’offre de nouvelles infrastructures routières qui soutient de nouvelles demandes rendent les modèles de mobilité actuels de plus en plus difficilement acceptables. En effet, les personnes souffrent de l’inconfort des villes engorgées (nuisances), de l’insécurité lors de transports du fait de défaillances techniques ou humaines, de la très grande difficulté d’optimiser ses itinéraires en fonction des horaires ou circonstances exceptionnelles (accident par exemple). Par ailleurs, la mobilité se heurte toujours aux contraintes liées aux rigidités des infrastructures compo…

Flax fiber[SPI]Engineering Sciences [physics]Materials sciencePolymers and Plastics[SPI] Engineering Sciences [physics]Materials Science (miscellaneous)Composite materialGeneral Business Management and AccountingViscoelasticityGeneral Environmental Science
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Physics of agarose fluid gels: Rheological properties and microstructure

2021

Agarose, a strongly gelling polysaccharide, is a common ingredient used to optimize the viscoelastic properties of a multitude of food products. Through aggregation of double helices via hydrogen bonds while cooling under quiescent conditions it forms firm and brittle gels. However, this behavior can be altered by manipulating the processing conditions viz shear. For example, gelation under shear leads to microgel particles with large surface area, which in turn leads to completely different rheological properties and texture. Such fluid gels are shown to play an important role in texture modification of foods and beverages for dysphagia patients. In this study, different concentration of a…

Fluid/sheared gelsPhysical gelationNutrition. Foods and food supplyFriction coefficientTP368-456Applied Microbiology and BiotechnologyViscoelasticityFood processing and manufactureViscositychemistry.chemical_compoundRheologychemistryChemical engineeringDynamic modulusParticle-size distributionAgaroseParticleAgaroseMicrogel particlesTX341-641Particle sizeArticles from the special issue: Edible Soft Matter edited by Ashok R.PatelRheologyFood ScienceBiotechnologyCurrent Research in Food Science
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THE MECHANICAL MODEL OF FRACTIONAL VISCOELASTICITY

2010

Viscoelastic materials have been more and more used nowadays for their low-cost productions as well as for their dissipative capabilities that may be coupled with others, more performing materials, to form complex-type engineering elements. The main feature of viscoelastic behavior is the relaxation of the stress state and the creep of the strain field that may be experienced, respectively, in hard or soft test devices. Such phenomenological consideration has been extensively analyzed yet at the beginning of the twentieth century and simple rheological models representing linear, constitutive, stress-velocity relations of the studied material have been proposed. Moreover the rheological rel…

Fractional Calculus Power-Law Decay ViscoelasticitySettore ICAR/08 - Scienza Delle Costruzioni
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