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Understanding the strength of bioinspired soft composites
Viacheslav Slesarenko
, Konstantin Y. Volokh
, Jacob Aboudi
, Stephan Rudykh
Research output
:
Contribution to journal
›
Article
›
peer-review
41
Scopus citations
Overview
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Keyphrases
Bio-inspired
100%
Platelets
100%
Soft Composites
100%
Overall Strength
100%
Soft Matrix
100%
Composite Materials
50%
Material-based
50%
Special Design
50%
Protein Matrix
50%
Antler
50%
Continuum Mechanics
50%
Rubber
50%
Finite Strain
50%
Material Design
50%
Constitutive Model
50%
Energy Limiters
50%
Model Failure
50%
Micromechanical Analysis
50%
Hard Inclusion
50%
High Aspect Ratio
50%
Shear Mode
50%
Bio-based Composites
50%
High-fidelity Generalized Method of Cells
50%
Hard Protein
50%
Uniaxial Tension
50%
Mimicking Nature
50%
Vulcanized Rubber
50%
Excellent Mechanical Properties
50%
3D-printed Composites
50%
Silicate Platelets
50%
Material Science
Platelet
100%
Composite Material
66%
Biocomposites
66%
Mechanical Property
33%
Continuum Mechanics
33%
Finite Strain
33%
Materials Design
33%