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Squeezing flow of viscoplastic fluids subject to wall slip
Adeniyi Lawal
,
Dilhan M. Kalyon
Department of Chemical Engineering and Materials Science
Stevens Institute of Technology
Research output
:
Contribution to journal
›
Article
›
peer-review
63
Scopus citations
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Earth and Planetary Sciences
Wall
100%
Subject
100%
Coefficient
80%
Speed
40%
Solid
40%
Modeling
20%
Model
20%
Boundary
20%
Investigation
20%
Utilization
20%
Parameter
20%
Construction
20%
Deformation
20%
Accuracy
20%
Yield
20%
Compression
20%
Roughness
20%
Physics
Coefficients
100%
Behavior
50%
Shears
50%
Solid State
50%
Speed
50%
Boundaries
25%
Injection
25%
Model
25%
Utilization
25%
Independent Variables
25%
Viscosity
25%
Deformation
25%
Roughness
25%
Rheological Property
25%
Engineering
Fluid
100%
Surfaces
66%
Design
16%
Models
16%
Polymer
16%
Compression Molding
16%
Applications
16%
Viscosity
16%
Accuracy
16%
Yield Stress
16%
Injection Moulding
16%
Roughness
16%
Slip Velocity
16%
Wall Shear Stress
16%
Constant Speed
16%
Deformation Behavior
16%
Material Science
Fluid
100%
Solid
83%
Surface
66%
Material
16%
Compression Molding
16%
Viscosity
16%
Polymer Processing
16%
Yield Stress
16%
Velocity
16%
Injection Molding
16%