Skip to main navigation
Skip to search
Skip to main content
Illinois Experts Home
LOGIN & Help
Home
Profiles
Research units
Research & Scholarship
Datasets
Honors
Press/Media
Activities
Search by expertise, name or affiliation
Crack Path Selection in Microstructurally Tailored Inhomogeneous Polymers
J. Gonzalez,
J. Lambros
Aerospace Engineering
Mechanical Science and Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
Overview
Fingerprint
Fingerprint
Dive into the research topics of 'Crack Path Selection in Microstructurally Tailored Inhomogeneous Polymers'. Together they form a unique fingerprint.
Sort by
Weight
Alphabetically
Keyphrases
Digital Image Correlation
100%
Crack Path Selection
100%
Microstructure
50%
Grain Boundary
50%
Finite Element Model
50%
Granular Media
50%
Uniaxial Tension
50%
Strain Field
50%
Grain Structure
50%
Load-displacement
50%
Applied Load
50%
Crack Growth
50%
Crack Initiation
50%
Displacement Measurement
50%
ABAQUS
50%
Selection Problem
50%
Experimental Configuration
50%
Grain Interior
50%
Photodegradation
50%
Failure Initiation
50%
Tresca Yield Criterion
50%
Initiation Site
50%
Secondary Crack
50%
Main Crack
50%
Local Microstructure
50%
Transgranular
50%
Grain Boundary Response
50%
Grain Boundary Strength
50%
Initial Crack
50%
Global Loads
50%
Polyethylene Copolymer
50%
Von Mises Criterion
50%
Engineering
Digital Image Correlation
100%
Crack Path
100%
Illustrates
50%
Finite Element Modeling
50%
Strain Field
50%
Applied Load
50%
Crack Growth
50%
Crack Initiation
50%
Displacement Measurement
50%
Ultraviolet Light
50%
Grain Interior
50%
Photodegradation
50%
Critical Location
50%
Failure Initiation
50%
Main Crack
50%
Global Load
50%
Initial Crack
50%
Material Science
Grain Boundary
100%
Polyethylene
33%
Copolymer
33%
Finite Element Modeling
33%
Crystal Microstructure
33%
Crack Initiation
33%
Crack Growth
33%
Granular Material
33%
Chemical Engineering
Copolymer
100%
Photodegradation
100%
Displacement Measurement
100%