Search results for "Shear rate"

showing 10 items of 64 documents

Morphology of PEO/PDMS blends during shear: Coexistence of two droplet/matrix structures and additive effects

2005

Abstract The morphologies of blends of polyethyleneoxide (PEO 37) and poly(dimethylsiloxane)s (PDSM), with viscosity ratios, λ , of approximately one (PDMS 230) or 2.8 (PDMS 314, being the component of higher viscosity) and interfacial tensions on the order of 10 mN/m, were investigated at 70 °C as a function of shear rate (up to 10 s −1 ) and of time. For the system PEO 37/PDMS 230 we have also studied the influence of the compatibilizer dimethyl–ethyleneoxide–copolymer (PDMS- co -PEO), which is only reasonably soluble in PEO. To investigate the morphologies we have used an optical shear cell in combination with a light microscope. The most important observation consists in the formation o…

Coalescence (physics)Materials sciencePolymers and PlasticsOrganic ChemistryConcentration effectlaw.inventionShear rateShear (geology)Optical microscopeChemical engineeringlawPolymer chemistryMaterials ChemistryCopolymerPolymer blendShear flowPolymer
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Structuring of polymer blends in simple shear flow

1990

A simplified model for the formation of steady state structure of discrete domains in polymer blends is established for simple shear flow. It is assumed that the domain size distribution, which results from an equilibrium between breakup processes and coalescence processes, may be divided in small and stable spherical domains and large and unstable ellipsoidal domains. Based on simplified rate balances and an expression for domain deformation rate the volume fraction of large domains and the large and small semiaxes of the ellipsoids are expressed as functions of volume fraction and shear rate/shear stress. The ability of the model to simulate actual behaviour is tested against quantitative…

Coalescence (physics)Materials sciencePolymers and PlasticsOrganic ChemistryMechanicsCondensed Matter PhysicsBreakupEllipsoidShear rateSimple shearVolume fractionMaterials ChemistryShear stressPolymer blendMakromolekulare Chemie. Macromolecular Symposia
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Magnetorheology: Fluids, Structures and Rheology

2002

Magnetorheological suspensions are complex fluids which show a transition from a liquid behavior to a solid one upon application of a magnetic field. This transition is due to the the attractive dipolar forces between the particles which have been magnetized by the applied field. The formation of a network of particles or aggregates throughout the suspension is the basic phenomena which is responsible for the strength of the solid phase. In this paper we shall give an overview on the fluids and their properties and we shall especially emphasize the interplay between magnetic forces which are responsible for the gelling of the suspension and on the other hand of hydrodynamic and thermal forc…

Condensed Matter::Soft Condensed MatterShear rateMaterials scienceClassical mechanicsRheologyPhase (matter)Magnetorheological fluidElectromagnetic suspensionMechanicsComplex fluidMagnetic fieldSuspension (chemistry)
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On the existence of weak solution to the coupled fluid-structure interaction problem for non-Newtonian shear-dependent fluid

2016

We study the existence of weak solution for unsteady fluid-structure interaction problem for shear-thickening flow. The time dependent domain has at one part a flexible elastic wall. The evolution of fluid domain is governed by the generalized string equation with action of the fluid forces. The power-law viscosity model is applied to describe shear-dependent non-Newtonian fluids.

Dilatant35D30General MathematicsConstant Viscosity Elastic (Boger) Fluidsfluid-structure interactionhemodynamics01 natural sciencesexistence of weak solutionPhysics::Fluid Dynamics76A0576D03Fluid–structure interactionshear-thinning fluids0101 mathematicsMathematicsWeak solution010102 general mathematicsMechanicsnon-Newtonian fluidsNon-Newtonian fluid010101 applied mathematicsShear rateCondensed Matter::Soft Condensed Matter74F10Shear (geology)Generalized Newtonian fluidshear-thickening fluids35Q30
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Simulations of non-spherical particles suspended in a shear flow

2000

The lattice-Boltzmann method was used to investigate the effects of the shape and concentration of the particles on the rheological properties of non-Brownian suspensions for non-zero Reynolds numbers. Several case studies were analyzed and the methods used were found to give accurate predictions for these systems. The viscosity of suspensions of both spherical and non-spherical particles was determined as functions of shear rate and concentration of particles. It was shown that, for high shear rates, shear thickening appears. This phenomenon is particularly pronounced for particles of irregular shape.

DilatantMaterials scienceLattice Boltzmann methodsGeneral Physics and AstronomyThermodynamicsReynolds numberMechanicsShear ratePhysics::Fluid DynamicsCondensed Matter::Soft Condensed Mattersymbols.namesakeShear (geology)RheologyHardware and ArchitecturesymbolsShear flowBrownian motion
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Numerical study of two-dimensional wet foam over a range of shear rates

2017

The shear rheology of two-dimensional foam is investigated over a range of shear rates with the numerical DySMaL model, which features dynamically deformable bubbles. It is found that at low shear rates, the rheological behavior of the system can be characterized by a yield stress power-law constitutive equation that is consistent with experimental findings and can be understood in terms of soft glassy rheology models. At low shear rates, the system rheology is also found to be subject to a scaling law involving the bubble size, the surface tension, and the viscosity of the carrier fluid. At high shear rates, the model produces a dynamic phase transition with a sudden change in the flow pat…

Fluid Flow and Transfer ProcessesMaterials scienceta114Computational Mechanicselastic deformation02 engineering and technology021001 nanoscience & nanotechnology01 natural sciencesShear rateSimple shearPhysics::Fluid DynamicsCondensed Matter::Soft Condensed MatterShear (geology)RheologyModeling and Simulationreologia0103 physical sciencesrheologyshear deformationComposite material010306 general physics0210 nano-technology
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Monoclinic model shear zones

1998

Abstract Although many ductile shear zones are supposed to have developed by approximately simple shear flow, some must have formed under different conditions. A few types of such ‘non-simple shear zones’ have been proposed in the literature such as transpression-, transtension- and stretching-shear zones. This paper presents a full three-dimensional kinematic model of shear zones with monoclinic flow geometry. Monoclinic shear zone types can be classified according to flow parameters, and according to the geometry and orientation of accumulating finite strain. Modelling of finite strain accumulation shows that a number of unusual and potentially problematic structural features may develop …

GeologyGeometryCondensed Matter::Soft Condensed MatterPhysics::Fluid DynamicsShear modulusSimple shearShear rateCondensed Matter::Materials ScienceShear (geology)Critical resolved shear stressShear stressGeotechnical engineeringAstrophysics::Earth and Planetary AstrophysicsShear velocityShear zoneGeologyJournal of Structural Geology
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Residual Stresses in Glasses

2013

The history dependence of the glasses formed from flow-melted steady states by a sudden cessation of the shear rate $\dot\gamma$ is studied in colloidal suspensions, by molecular dynamics simulations, and mode-coupling theory. In an ideal glass, stresses relax only partially, leaving behind a finite persistent residual stress. For intermediate times, relaxation curves scale as a function of $\dot\gamma t$, even though no flow is present. The macroscopic stress evolution is connected to a length scale of residual liquefaction displayed by microscopic mean-squared displacements. The theory describes this history dependence of glasses sharing the same thermodynamic state variables, but differi…

Length scaleThermodynamic stateFOS: Physical sciencesGeneral Physics and Astronomy02 engineering and technologyCondensed Matter - Soft Condensed Matterglasses01 natural sciencesMolecular dynamicsResidual stress0103 physical sciencesddc:530Ideal (ring theory)010306 general physicsPhysicsCondensed Matter - Materials ScienceCondensed matter physicsMaterials Science (cond-mat.mtrl-sci)021001 nanoscience & nanotechnologyShear rateCondensed Matter::Soft Condensed MatterFlow (mathematics)residual stressesSoft Condensed Matter (cond-mat.soft)Relaxation (physics)rheology0210 nano-technologyRheology Glasses Residual Stresses Mode Coupling Theory
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Erythrocyte deformability and hemorheological profile in multiple myeloma

2018

The hemorheological profile in multiple myeloma (MM) has been extensively studied. Our investigation regarded the behavior of whole-blood viscosity, plasma viscosity and erythrocyte deformability in MM. We enrolled 24 MM patients; 13 of them had been recently diagnosed and were at the initial stage of therapy, 6 were on consolidation/conservation therapy and 5 had achieved a complete remission. On fasting venous blood we evaluated whole-blood and plasma viscosity at high and low shear rates, haematocrit, the ratios between whole-blood viscosity (at high and low shear rate) and haematocrit×100, the ratio between plasma viscosity at low and high shear rate and the erythrocyte deformability ex…

MalePhysiology030204 cardiovascular system & hematology03 medical and health sciences0302 clinical medicineErythrocyte DeformabilityPhysiology (medical)medicineHumansErythrocyte deformabilityPlasma viscosityMultiple myelomaChemistryComplete remissionHematologyVenous bloodMiddle AgedBlood Viscositymedicine.diseaseMicrocirculatory flowShear rateRed blood cellmedicine.anatomical_structure030220 oncology & carcinogenesisplasma viscosityFemaleMultiple MyelomaRheologyCardiology and Cardiovascular MedicineBiomedical engineeringClinical Hemorheology and Microcirculation
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Hemorheological parameters in Monoclonal Gammopathy of Undetermined Significance (MGUS).

2018

There is scarcity of information about the hemorheological pattern in subjects with Monoclonal Gammopathy of Undetermined Significance (MGUS). This preliminary research is focused on the behaviour of whole-blood and plasma viscosity, haematocrit and erythrocyte deformability in the above clinical condition. We enrolled 21 MGUS subjects (10 women and 11 men; mean age 66.4 ± 11.6 years). In fasting venous blood we examined whole-blood and plasma viscosity at high and low shear rates, haematocrit, the ratios between whole-blood viscosity (at high and low shear rate) and haematocrit × 100, the ratio between plasma viscosity at low and high shear rate, and the erythrocyte deformability expressed…

Malemedicine.medical_specialtySettore MED/09 - Medicina InternaPhysiologyBlood viscosity030204 cardiovascular system & hematologyMonoclonal Gammopathy of Undetermined SignificanceSettore MED/15 - Malattie Del Sangue03 medical and health sciencesViscosity0302 clinical medicinehemic and lymphatic diseasesPhysiology (medical)Internal medicineErythrocyte DeformabilitymedicineErythrocyte deformabilityHumanscardiovascular diseasesPlasma viscosityParaproteinemia; blood viscosity; erythrocyte deformability; plasma viscosityAgedChemistryMean ageHematologyVenous bloodmedicine.diseaseBlood ViscosityShear rateParaproteinemiaEndocrinology030220 oncology & carcinogenesisplasma viscosityFemaleCardiology and Cardiovascular MedicineRheologyMonoclonal gammopathy of undetermined significanceClinical hemorheology and microcirculation
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