Violation of the incompressibility of liquid by simple shear flow
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Summary
It is shown that a liquid can become mechanically unstable above a critical shear rate that is given by the inverse of the derivative of viscosity with respect to pressure, and the model predicts that this shear-induced instability should occur at moderate shear rates that are experimentally accessible.
- Type
- article
- Published
- 2006-09-28
- Cited by
- 49
- References
- 32
- Access
- Open access
- OpenAlex
- https://openalex.org/W55039445
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:4380107
Keywords
Soft matter, Session (web analytics), Physics, Simple (philosophy), Flow (mathematics)
References
- Phase Transition Dynamics: Statics
- The Structure and Rheology of Complex Fluids
- Numerical experiments in homogeneous turbulence
- Cavitation and Bubble Dynamics: Nomenclature
- About this title
- Physical Fluid Dynamics
- A microscopic mechanism for steady state inhomogeneous flow in metallic glasses
- Coexistence curve, compressibility, and the equation of state of xenon near the critical point
- Supercooled dynamics of glass-forming liquids and polymers under hydrostatic pressure
- Large fluctuations in polymer solutions under shear.
- Phase transitions of fluids in shear flow
- Boundary slip in Newtonian liquids: a review of experimental studies
- Viscoelastic phase separation
- An Application of a Free Volume Model to Lubricant Rheology I—Dependence of Viscosity on Temperature and Pressure
- The High Shear Stress Rheology of Liquid Lubricants at Pressures of 2 to 200 MPa
- The High Pressure High Shear Stress Rheology of Liquid Lubricants
- Density expansion of the viscosity of carbon dioxide near the critical temperature
- Observations of Shear Localization in Liquid Lubricants Under Pressure
- Silicate melts: The “anomalous” pressure dependence of the viscosity
- Dynamical theory of concentration fluctuations in polymer solutions under shear.
Cited by
- Rhéologie des polymères fondus à hauts taux de cisaillement : application à la microinjection
- Granular Media: Between Fluid and Solid
- Singing Sand Dunes: The Spontaneous Acoustic Emission from Granular Shear Flow
- The elastic properties, elastic models and elastic perspectives of metallic glasses
- Formation of Network and Cellular Structures by Viscoelastic Phase Separation
- Viscoelastic phase separation in soft matter and foods.
- Inhomogeneous flow and fracture of glassy materials.
- Cavitation about a jet in crossflow
- Stability of the plane Couette flow of a disperse medium with a finite volume fraction of the particles
- The influence of inertia and elastic retraction on flow-induced crystallization of isotactic polypropylene
- Ultra small angle X-ray scattering studies on density heterogeneity of linear low density polyethylene
- Fracture phase separation.
- Tensile fracture of metallic glasses via shear band cavitation
- Effects of shear flow and transverse magnetic field on Richtmyer-Meshkov instability
- Orientation Kinetics of Screw-Axial Vibration on Glass Fiber Reinforced Polypropylene Composites
- Propagation d'ondes acoustiques guidées dans les milieux granulaires
- Shear flow driven instability in an incompressible dusty plasma with a density dependent viscosity
- The Critical Criterion on Runaway Shear Banding in Metallic Glasses
- Ubiquitous transient stagnant domain formation during thermal convection in a well-mixed two component fluid with large viscosity difference
- High‐Throughput Continuous Production of Shear‐Exfoliated 2D Layered Materials using Compressible Flows
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