General Papers
| Examples of Fatigue Crack Growth in real Structures | |
| H. A. Richard, M. Fulland, M. Sander, G. Kullmer |
| Fractal Modelling of Kinked Cracks and its Implications for their Fatigue Propagation in Concrete | |
| Andrea Carpinteri, Andrea Spagnoli, Sabrina Vantadori, Danilo Viappiani |
| Fretting damage influence of the fatigue crack initiation and growth in High-Cycle- and Very-High-Cycle-Fatigue areas of peened and unpeened Al-based alloys | |
| A. Shanyavskiy, M. Artamonov, M. Artamonov |
| Two Parameter Fracture Mechanics: Fatigue Crack Behavior under Mixed Mode Condition | |
| S. Seitl, Z. Knésl |
| Fatigue crack propagation in the frame of a hydraulic press | |
| M. Fulland, H.A. Richard, M. Sander, G. Kullmer |
| The Prediction of the Crack Propagation Direction According to the Criterion of Maximum Energy Dissipation | |
| O. Kolednik, J. Predan, N.K. Simha, F.D. Fischer |
| Fractal Variability and Heterogeneity of Fracture Surfaces inSteel | |
| B. Strnadel, I. Dlouhý |
| Harmfulness and crack path prediction of branched and radial cracks in disks of shrunk-on disk rotors | |
| C. Stoisser, I. Boutemy, F. Hasnaoui |
| Fatigue and Toughness Behaviour of Large Blooms for Plastic Molds and Relation with the Microstructure | |
| D. Firrao, P. Matteis, M.R. Pinasco, E. Stagno, R. Gerosa, B. Rivolta, G. Silva, A. Ghidini |
| Crack Paths from Weld Details in Three-dimensional Plate Structures | |
| Y. Sumi, T. Okawa |
| Crack monitoring around a hole under mixed mode (I+II) loading by image correlation | |
| P. López-Crespo, A. Shterenlikht, J. R. Yates, A. Patterson, P. J. Withers, R. Burguete |
| FATIGUE CRACK INITIATION AND PROPAGATION IN CHROMIUM PRE-ALLOYED PM STEELS | |
| R. Gerosa, B. Rivolta, A. Tavasci, G. Silva |
| 3D-Fractography in Bending-Torsion Fatigue | |
| Št?pán Major, Petr Ponížil, Karel Sláme?ka, Jaroslav Pokluda |
| Experimental investigations on crack initiation and threshold values | |
| M. Sander, J. Menke, H.A. Richard |
| Residual strength and crack path predictions by the cohesive model | |
| I. Scheider, W. Brocks |
| Influence of Microstructure on Crack Paths in a Ferritic- Martensitic Steel | |
| A. Brückner-Foit, Y. Motoyashiki, A. Sugeta |
| Crack Path and Fracture Toughness Predictions for Welded Aluminium Sheets | |
| D. Steglich, P. Nègre, W. Brocks |
| Account of Stress Corrosion Crack Morphology on the Mechanical Situation at the Crack Tip | |
| O.Z. Studen, O.T. Tsyrulnyk |
| Fatigue Crack Paths in Shafts Subjected to Bending and Torsion | |
| T. Lassen, A. Spagnoli |
| The Path of a Growing Crack – A Simulation of the Fracture Process | |
| C. Bjerkén, P. Ståhle |
| Fatigue Crack Path in 2xxx Aluminum Alloys at 223K | |
| C. GASQUERES, C. SARRAZIN-BAUDOUX, J. PETIT |
| Ductile-Brittle Fatigue and Fracture Behaviour of aluminium/PMMA Bimaterial 3PB Specimens | |
| G. Shatil, A. Saimoto |
| Fracture Mechanics Investigations of Structural Steels with the Yield Stresses between 265 and 1000 MPa | |
| J. Vojvodi?, B. Šuštarši? |
| Relationships among FSW Process Parameters, Defects, Crack Paths and Fatigue Strength in 5083-H321 Aluminium Alloy | |
| L. Lombard, D.G. Hattingh, A. Steuwer, M.N. James |