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Micromechanics of rubber-toughened polymers
Xiao Hong Chen
,
Yiu Wing Mai
Research output
:
Journal article publication
›
Journal article
›
Academic research
›
peer-review
56
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Citations (Scopus)
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Keyphrases
Micromechanics
100%
Rubber Particles
100%
Rubber-toughened Polymers
100%
Stress-strain Relationship
66%
Rubber
66%
Effective Stress
66%
Cavitation
66%
Mechanical Properties
33%
Three-dimensional (3D)
33%
Toughening Mechanism
33%
Axial Stress
33%
Large Deformation
33%
Full Interaction
33%
Plane Strain
33%
Micromechanical Modeling
33%
Yield Surface
33%
Morphological Properties
33%
Stress Triaxiality
33%
Local Stress Field
33%
Particle Volume Fraction
33%
Three-dimensional Modeling
33%
Shear Yielding
33%
Phase Morphology
33%
Strain Effective
33%
Two-dimensional Plane
33%
Interparticle Interactions
33%
Local Strain
33%
Local Stress Distribution
33%
Homogenization Method
33%
Strain Model
33%
Rubber Matrix
33%
Local Stress Concentration
33%
Axisymmetric Model
33%
Local Strain Field
33%
Triaxiality
33%
Elastic-plastic Finite Element Analysis
33%
Effective Yield Stress
33%
Transverse Constraint
33%
Effective Yield
33%
Engineering
Micromechanics
100%
Rubber Particle
100%
Stress-Strain Relations
66%
Local Stress
66%
Toughening
66%
Local Strain
66%
Effective Stress
66%
Two Dimensional
33%
Large Deformation
33%
Axisymmetric
33%
Tensiles
33%
Strain Field
33%
Particle Volume
33%
Rubber Matrix
33%
Micromechanical Model
33%
Stress Triaxiality
33%
Stress Concentration
33%
Yield Surface
33%
Local Stress Field
33%
Dimensional Modeling
33%
Plane Strain
33%
Finite Element Analysis
33%
Yield Point
33%
Material Science
Stress-Strain Relations
100%
Micromechanics
100%
Yield Stress
50%
Stress Concentration
50%
Volume Fraction
50%
Homogenization
50%
Large Deformation
50%
Yield Surface
50%
Finite Element Methods
50%