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| Autore: |
Campagnolo Alberto
|
| Titolo: |
Fracture and Fatigue Assessments of Structural Components
|
| Pubblicazione: | Basel, Switzerland, : MDPI - Multidisciplinary Digital Publishing Institute, 2020 |
| Descrizione fisica: | 1 online resource (186 p.) |
| Soggetto topico: | History of engineering and technology |
| Soggetto non controllato: | 3D reconstruction |
| ABAQUS subroutine | |
| affecting factors | |
| analytical model | |
| brittle | |
| broken coal seam | |
| cleat filler | |
| composite | |
| concrete beams | |
| control volume concept | |
| crack | |
| crack coalescence | |
| crack initiation | |
| crack propagation | |
| critical plane approach | |
| damage evolution | |
| damage index | |
| delamination | |
| dissipated energy | |
| double cantilever composite beam (DCB) | |
| fatigue | |
| fatigue crack | |
| fatigue damage evolution | |
| fatigue life | |
| fatigue life assessment | |
| fatigue life prediction | |
| FEM | |
| finite element method | |
| finite fracture mechanics | |
| fracture | |
| life assessment | |
| life prediction | |
| master-slave model | |
| MCT scanning | |
| metal | |
| microcracks | |
| monitoring of fatigue crack | |
| multiple fatigue crack | |
| multiscale | |
| nanodevice | |
| nanoscale | |
| notch | |
| nozzle guide vane | |
| ordinary state-based | |
| peridynamics | |
| rail corrugation | |
| running speed | |
| scroll compressor | |
| sensor network | |
| severely notched specimens | |
| silicon | |
| strain energy density | |
| structural health monitoring | |
| structure | |
| thermal barrier coat | |
| thermal evolution | |
| thermal fatigue | |
| thermo-graphic technique | |
| ultrasonic guided waves | |
| welded bogie frame | |
| welded joint | |
| wellbore stability | |
| wheel polygon | |
| Persona (resp. second.): | CampagnoloAlberto |
| Sommario/riassunto: | In dealing with fracture and fatigue assessments of structural components, different approaches have been proposed in the literature. They are usually divided into three subgroups according to stress-based, strain-based, and energy-based criteria. Typical applications include both linear elastic and elastoplastic materials and plain and notched or cracked components under both static and fatigue loadings. The aim of this Special Issue is to provide an update to the state-of-the-art on these approaches. The topics addressed in this Special Issue are applications from nano- to full-scale complex and real structures and recent advanced criteria for fracture and fatigue predictions under complex loading conditions, such as multiaxial constant and variable amplitude fatigue loadings. |
| Titolo autorizzato: | Fracture and Fatigue Assessments of Structural Components ![]() |
| Formato: | Materiale a stampa |
| Livello bibliografico | Monografia |
| Lingua di pubblicazione: | Inglese |
| Record Nr.: | 9910557301003321 |
| Lo trovi qui: | Univ. Federico II |
| Opac: | Controlla la disponibilità qui |