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On the bursting of linear polymer melts in inflation processes
Henrik Koblitz Rasmussen
, Anders Bach
Technical University of Denmark
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peer-review
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Dive into the research topics of 'On the bursting of linear polymer melts in inflation processes'. Together they form a unique fingerprint.
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Keyphrases
Inflation
100%
Polymer Melt
100%
Linear Polymers
100%
Inflation Process
100%
Numerical Simulation
28%
Flat Plate
28%
Strain Dependence
28%
Constitutive Model
14%
Linear Elasticity
14%
Numerical Calculation
14%
Oscillatory Shear
14%
Constitutive Equation
14%
Material Parameters
14%
Circular Cylinder
14%
Linear Viscoelastic Properties
14%
Memory Function
14%
Axis-symmetric
14%
Hydrodynamic Phenomena
14%
Plate Thickness
14%
Linear Low-density Polyethylene (LLDPE)
14%
Linear Viscoelasticity
14%
Early Burst
14%
High Inflation
14%
Deformation Rate
14%
Circular Cone
14%
Constant Velocity
14%
Molecular Stress Function
14%
Inflation Rate
14%
Liner
14%
Isothermal Condition
14%
Inner Radius
14%
Low Deformation
14%
Crossover Point
14%
Uniaxial
14%
Convective Constraint Release
14%
Nonlinear Strain
14%
Material Science
Polymer Melt
100%
Hydrodynamics
100%
Polymer
100%
Cylinder
100%
Functional Modeling
50%
Linear Viscoelasticity
50%
Elasticity
50%
Earth and Planetary Sciences
Inflation
100%
Flat Plate
22%
Hydrodynamics
22%
Numerical Simulation
22%
Circular Cylinder
11%
Constitutive Equation
11%
Viscoelasticity
11%
Inflating
11%
Circular Cone
11%
Stress Function
11%
Physics
Inflation
100%
Hydrodynamics
22%
Flat Plate
22%
Numerical Simulation
22%
Linear Viscoelasticity
11%
Inflating
11%
Constitutive Equation
11%