Keyphrases
Shear Thinning
100%
Steady State
100%
Shear Viscosity
100%
Entangled Polymer Melt
100%
Fast Flow
100%
Entangled Polymers
66%
Polymer Chain
33%
Elastic Modulus
33%
Scale Model
33%
Shear Rate
33%
Viscosity
33%
Structural Change
33%
Highly Oriented
33%
Degree of Polymerization
33%
Entanglement
33%
Single Polymer
33%
Entanglement Network
33%
Grand Challenges
33%
Shear Stress
33%
Viscoelasticity
33%
Weight Decrease
33%
Scaling Exponent
33%
Polymer Molecular Weight
33%
Weissenberg number
33%
Ultra-high
33%
Molecular Theory
33%
Steady Shear Viscosity
33%
Constant Stress
33%
Non-equilibrium Dynamics
33%
Theoretical Development
33%
Total Stress
33%
Stress Conditions
33%
Blob
33%
Polymer Science
33%
Experimental Development
33%
Chain Orientation
33%
Flow Regime
33%
Dynamic Scaling
33%
Change Impact
33%
Network Perspective
33%
Flow Instability
33%
Transient Network
33%
Capillary Rheometry
33%
Slip-link Model
33%
Physical Entanglement
33%
Engineering
Shear Thinning
100%
Shear Viscosity
100%
Transients
50%
Polymer Chain
50%
Fluid Viscosity
50%
Shear Rate
50%
Nonequilibrium
50%
Physical Picture
50%
Entanglement
50%
Degree of Polymerization
50%
Scaling Exponent
50%
Scale Dynamic
50%
Induced Deformation
50%
Constant Stress
50%
Stress Condition
50%
Polymer Molecular Weight
50%
Polymer Science
50%
Flow Regime
50%
Applied Shear Stress
50%
Flow Instability
50%
Physical Entanglement
50%
Modulus of Elasticity
50%
Viscoelasticity
50%
Shear Thinning/Thickening Behavior
50%
Material Science
Polymer Melt
100%
Elastic Moduli
50%
Polymerization
50%
Structural Polymer
50%
Viscoelasticity
50%
Chemical Engineering
Polymerization
100%
Flow Measurement
100%