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Modeling the viscoelastoplastic behavior of amorphous glassy polymers
Aleksey D. Drozdov
Research output
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Contribution to journal
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Article
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peer-review
3
Scopus citations
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Dive into the research topics of 'Modeling the viscoelastoplastic behavior of amorphous glassy polymers'. Together they form a unique fingerprint.
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Keyphrases
Viscoplastic Material
100%
Viscoplastic Response
100%
Amorphous Glassy Polymers
100%
Numerical Simulation
50%
Constant Strain Rate
50%
Low Stress
50%
Kinetic Equation
50%
Microdomain
50%
Viscoelastic Behavior
50%
Constitutive Equation
50%
Viscoelastic Response
50%
Small Strain
50%
Poly(methyl methacrylate)
50%
Tensile Test
50%
Average Stress
50%
Comparison with Experimental Data
50%
Relaxation Test
50%
Microstrain
50%
Compressive Test
50%
Glassy Polymers
50%
Tensile Relaxation
50%
Macrostrain
50%
Viscoplastic Strain
50%
Threshold Strength
50%
Polyurethane Resin
50%
Material Science
Amorphous Material
100%
Glassy Polymer
100%
Mechanical Strength
66%
Strain Rate
33%
Viscoelastic Behavior
33%
Poly Methyl Methacrylate
33%
Polyurethane
33%