Creep damage calculation along a semi-elliptical crack in a power plant component
Creep damage calculation along a semi-elliptical crack in a power plant component
Lo Conte, Antonietta; Bassi, Federico; Sant’Angelo, Giovanni Ignazio; Eliza Cristea, Mihaela
2018-01-01 00:00:00
A 3D finite element model, based on the combination of a creep model and a ductility exhaustion approach, is presented and validated on the basis of creep crack growth tests. The proposed model is used to characterize creep crack growth in a pressurized cylinder with an axial crack on the inside surface. A canoe shaped distribution of stress triaxiality, that directly affects the creep damage, is found and investigated. The damage evolution is observed at different crack tip locations, showing a dependence on the crack geometry and loading conditions.
http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.pngStrength, Fracture and ComplexityIOS Presshttp://www.deepdyve.com/lp/ios-press/creep-damage-calculation-along-a-semi-elliptical-crack-in-a-power-E01hbx40T7
Creep damage calculation along a semi-elliptical crack in a power plant component
A 3D finite element model, based on the combination of a creep model and a ductility exhaustion approach, is presented and validated on the basis of creep crack growth tests. The proposed model is used to characterize creep crack growth in a pressurized cylinder with an axial crack on the inside surface. A canoe shaped distribution of stress triaxiality, that directly affects the creep damage, is found and investigated. The damage evolution is observed at different crack tip locations, showing a dependence on the crack geometry and loading conditions.
Journal
Strength, Fracture and Complexity
– IOS Press
Published: Jan 1, 2018
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