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Numerical evaluation of elastodynamic energy fracture parameters in 2-D heterogeneous media
J. H. Chang
, S. Y. Chung
Department of Civil Engineering
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Dive into the research topics of 'Numerical evaluation of elastodynamic energy fracture parameters in 2-D heterogeneous media'. Together they form a unique fingerprint.
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Keyphrases
Numerical Evaluation
100%
Heterogeneous Media
100%
Elastodynamics
100%
Fracture Parameters
100%
Crack Tip
66%
Material Interfaces
66%
Energy Release Rate
66%
Domain Integral Method
66%
Numerical Results
33%
Dynamic Response
33%
Finite Element Model
33%
Energy Parameters
33%
Near-tip
33%
Finite Element Solution
33%
Singular Finite Element
33%
Stress Singularity
33%
Fracture Criterion
33%
Stationary Crack
33%
Large Elastic Deformation
33%
Exponential Order
33%
Engineering
Energy Engineering
100%
Numerical Evaluation
100%
Fracture Parameter
100%
Material Interface
66%
Crack Tip
66%
Domain Integral Method
66%
Energy Release Rate
66%
Dynamic Response
33%
Finite Element Modeling
33%
Finite Element Solution
33%
Singularities
33%
Fracture Criterion
33%
Elastic Deformation
33%
Stationary Crack
33%
Finite Element Analysis
33%