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by Ha, Y and Bobaru, F
INTERNATIONAL JOURNAL OF FRACTURE, ISSN 0376-9429, 03/2010, Volume 162, Issue 1-2, pp. 229 - 244
Journal Article
International Journal for Numerical Methods in Engineering, ISSN 0029-5981, 2008, Volume 76, Issue 9, pp. 1328 - 1352
Journal Article
Journal of the Mechanics and Physics of Solids, ISSN 0022-5096, 01/2018, Volume 110, pp. 80 - 99
Journal Article
International Journal for Numerical Methods in Engineering, ISSN 0029-5981, 10/2019, Volume 120, Issue 1, pp. 86 - 104
Journal Article
Journal of the Mechanics and Physics of Solids, ISSN 0022-5096, 12/2018, Volume 121, pp. 480 - 495
Journal Article
Engineering Fracture Mechanics, ISSN 0013-7944, 06/2019, Volume 215, pp. 65 - 82
Journal Article
Engineering Fracture Mechanics, ISSN 0013-7944, 2005, Volume 72, Issue 8, pp. 1268 - 1285
This paper provides a large number of experimental results from the fracture of round-notched samples of a material that remains essentially in the linear... 
PMMA | Cohesive crack | Fracture criterion | Notches | Softening function | MECHANICS | cohesive crack | GROWTH RESISTANCE | fracture criterion | softening function | notches | Polymethylmethacrylate
Journal Article
Computer Methods in Applied Mechanics and Engineering, ISSN 0045-7825, 2011, Volume 200, Issue 9, pp. 1220 - 1236
Journal Article
Engineering Fracture Mechanics, ISSN 0013-7944, 08/2018, Volume 199, pp. 235 - 256
Numerical modeling of cohesive crack growth in quasi-brittle materials is challenging, primarily due to the combination of (i) nonlinearity associated with the... 
High-order enrichment | Path-following methods | Cohesive cracks | Irwin's integral | Extended finite element method | MULTIPLE DELAMINATIONS | STRESS INTENSITY FACTORS | DAMAGE MODEL | CONTINUUM DAMAGE | EXTENDED LAYERWISE METHOD | ENERGY RELEASE RATES | MECHANICS | INITIAL CRACKS | DYNAMIC CRACK | FINITE-ELEMENT-METHOD | TIP ENRICHMENT FUNCTIONS
Journal Article
International Journal of Solids and Structures, ISSN 0020-7683, 2009, Volume 46, Issue 11, pp. 2453 - 2462
A damage-based cohesive model is developed for simulating crack growth due to fatigue loading. The cohesive model follows a linear damage-dependent... 
Life prediction | Overload | Crack retardation | Mean stress effect | Fatigue | Healing | Damage | Cohesive zone models | Load-ratio | Crack propagation | POLYMERS | MECHANICS | STEEL | Models | Fatigue testing machines | Analysis | Alloys | Materials
Journal Article
International Journal for Numerical Methods in Engineering, ISSN 0029-5981, 08/2003, Volume 57, Issue 15, pp. 2221 - 2240
An extended finite element method scheme for a static cohesive crack is developed with a new formulation for elements containing crack tips. This method can... 
Finite elements | Fracture | Cohesive crack | Crack growth | MATHEMATICS, INTERDISCIPLINARY APPLICATIONS | FINITE-ELEMENTS | ENGINEERING, MULTIDISCIPLINARY | crack growth | cohesive crack | GROWTH | PARTITION | finite elements | CONCRETE | fracture | Enrichment | Finite element method | Cohesion | Cracks | Crack tips | Numerical analysis | Mathematical analysis | Mathematical models
Journal Article
Engineering Fracture Mechanics, ISSN 0013-7944, 03/2018, Volume 190, pp. 319 - 330
Displacement discontinuity method (DDM) can conveniently solve fracture mechanics problems because the discontinuous displacement field across the fracture... 
Displacement discontinuity method | Cohesive crack propagation | Tensile strength criterion | Fracture toughness criterion | MECHANICS | DISCRETE | PLANE | IMPLEMENTATION | MODEL | BOUNDARY-ELEMENT METHOD | CONCRETE FRACTURE
Journal Article
International Journal of Fracture, ISSN 0376-9429, 10/2017, Volume 207, Issue 2, pp. 181 - 191
The competition between crack penetration and crack kinking is addressed for a mode I macroscopic crack in an orthotropic elastic solid. Cohesive zones of... 
Materials Science | Brittle fracture | Classical Mechanics | Civil Engineering | Orthotropy | Characterization and Evaluation of Materials | Automotive Engineering | Mechanical Engineering | Crack kinking | Cohesive zone | FRACTURE |