Modeling size effects on fracture toughness by dislocation dynamics
โ Scribed by X.H. Zeng; A. Hartmaier
- Publisher
- Elsevier Science
- Year
- 2010
- Tongue
- English
- Weight
- 846 KB
- Volume
- 58
- Category
- Article
- ISSN
- 1359-6454
No coin nor oath required. For personal study only.
โฆ Synopsis
The effects of grain size and of crack-tip blunting radius on the fracture toughness of tungsten polycrystals are studied by using a combined dislocation dynamics/cohesive zone model (CZM). Two-dimensional dislocation dynamics are employed to analyze cracktip plasticity and crack propagation is characterized by a CZM. The geometry of the crack and the corresponding boundary conditions are described by means of a boundary element method with dislocation dipoles as fundamental solution. Grain boundaries are introduced as obstacles for dislocation motion. Numerical experiments reveal that the fracture toughness decreases with grain size, because grain boundaries confine the plastic zone. This effect is particularly pronounced at small loading rates, where the unconfined plastic zone is large. Our results also show that fracture toughness scales with the tip radius as the stress concentration at the crack tip is reduced and the plastic zone is enlarged.
๐ SIMILAR VOLUMES
Abatraet-A model is presented which describes the relationship of plane strain fracture toughness (K,,) and yield strength of particle-reinforced metal matrix composites. Tensile tests and fracture toughness tests were conducted on five aluminum 2014-T6 metal matrix composites reinforced with 10 and
The present work is amid to investigate the effect of notch root radius and specimen size (thickness B and ligament b) on the apparent fracture toughness K I,app . Series of fracture tests on non standard compact tension CT specimen of AISI 4340 low alloy steel with different values of notch root ra
The effects of rubber content and temperature on dynamic fracture toughness of ABS materials have been investigated based on the J-integral and crack opening displacement (COD, โฆ) concepts by an instrumented Charpy impact test. A multiple specimens R-curve method and stop block technique are used. I