tc2

7th Meeting of the TC2 on Micromechanisms

of the European Structural Integrity Society

tc2
Thursday, November 24
9:00-9:30   Opening
(B. Fedelich, J. Pokluda)
 
9:30-11:00 Section 1 Nano/micromechanisms of Fracture
Chair: J. Pokluda
  1 S. Melin Lund University
Division of Mechanics
Sweden
Mechanical properties at the nano scale
2 J. Marrow University of Oxford
Department of Materials
Parks Road
Oxford OX1 3PH, Great Britain
Direct Observation of Crack Nuclei Development in a Quasi-Brittle Material
3 L. Zübell, G. Hütter, U. Mühlich, M. Kuna TU Bergakademie Freiberg
Institute of Mechanics and Fluid Dynamics
Lampadiusstr. 4
D-09596 Freiberg, Germany
Micromechanical modelling of ductile fracture by plastic collapse of voids
11:00-11:30   Coffee break  
11:30-13:00   Chair: J. Marrow
  4 E. Charkaluk, R. Seghir, L. Bodelot, J.F. Witz, P. Dufrenoy Laboratoire de Mécanique de Lille
Univ. Lille Nord de France
Boulevard Paul Langevin
59655 Villeneuve d’asq, France
Thermomechanical analysis of the microplastic activity in a metallic polycrystal
5 A. Shanyavskiy State Center for Civil Aviation Flights Safety
Airport Sheremetievo-1
141426 Moscow, Russia
Mechanisms of metals subsurface fatigue cracking
6 R. Falkenberg GKSS
Helmholtz-Zentrum Geesthacht Zentrum für Material- und Küstenforschung
Geesthacht, Germany
Hydrogen Assisted Cracking: Mechanisms and coupling phenomena
13:00 – 14:00   Lunch  
14:00-16:00 Section 2 High-cycle Fatigue
Chair: B. Fedelich
  7 L. Kunz, P. Lukáš Institute of Physics of Materials
Czech Academy of Sciences
Žižkova 22
616 62 Brno, Czech Republic
High-cycle fatigue behaviour of IN 713LC superalloy
8 M.C. Marinelli, R. Strubbia, S. Hereñú, U. Krupp, I. Alvarez Laborbereich Materialdesign und Werkstoffzuverlässigkeit
Fakultät Ingenieurwissenschaften und Informatik Hochschule Osnabrück
University of Applied Sciences
Artilleriestr. 46
49076 Osnabrück, Germany
Damage evolution and crack nucleation during high-cycle fatigue in duplex stainless steels
9 T. Vojtek, J. Horníková, P. Šandera, J. Pokluda Brno University of Technology
Faculty of Mech. Engng.,
Institute of Physical Engineering
Technická 2
616 69  Brno, Czech Republic
Near-threshold fatigue crack propagation under modes II and III in ARMCO iron
10 K. Slámečka, J. Pokluda Brno University of Technology
Faculty of Mech. Engng.
Institute of Physical Engineering
Technická 2
616 69  Brno, Czech Republic
Fractographically-aided analyses of fish-eye crack growth in nitrided steel
16:00-16:30   Coffee break  
16:30-18:00 Section 3 Low-cycle Fatigue and Creep
Chair: L. Kunz
  11 A. Epishin, T. Link, H. Klingelhöffer, I.L. Svetlov Technical University of Berlin
Berlin, Germany
Effect of rafting and porosity on LCF and creep of single-crystal nickel-base superalloys
12 K. Obrtlík, J. Man, M. Petrenec, J. Polák Institute of Physics of Materials
Czech Academy of Sciences
Žižkova 22
616 62 Brno, Czech Republic
Effect of tensile dwell on fatigue damage of cast Inconel 713LC at 700°C
13 M. Vöse, B. Fedelich BAM, Bundesanstalt für Materialforschung und –prüfung
FG 5.2, Unter den Eichen 87
12205 Berlin, Germany
Development of a cohesive model for grain boundary damage under creep
 
Friday, November 25
9:00-10:30 Section 4 Fracture of Layered Systems
Chair: S. Melin
  14 M. Kotoul Brno University of Technology
Faculty of Mech. Engng.
Institute of Solid Mechanics
Technická 2
616 69 Brno, Czech Republic
Computational study of crack growth in multilayered ceramic/ceramic materials with strong interfaces
15 J. Zechner Materials Center Leoben Forschung GmbH (MCL)
A-8700 Leoben, Austria
Fracture resistance of aluminium multilayer composites
16 S. Roth TU Bergakademie Freiberg
Institut für Mechanik und Fluiddynamik
Lampadiusstr. 4
09596 Freiberg, Germany
Modelling of Fatigue Crack Growth in Thermally Sprayed Protective Coatings Using a Cohesive Zone Model
10:30-11:00   Coffee break  
11:00-12:30 Section 5 Fracture of  Miscellaneous Materials
Chair: M. Kotoul
  17 T. Horst Technische Universität Dresden
Institut für Werkstoffwissenschaft
01062 Dresden, Germany
Statistical analysis of the fracture surface topography of filled elastomers
18 J. Wippler, T. Böhlke Institut für Technische Mechanik
Fakultät für Maschinenbau
Postfach 6980
D-76128 Karlsruhe, Germany
Mechanism-based Micromechanical Finite Element Simulation of Fracture in Silicon Nitride
19 D. Zaytsev School of Physics
Ural State University
Ekaterinburg, Russia
On the crack grow mechanism of human dentin and enamel
12:30   Closing
(B. Fedelich, J. Pokluda)
 


BAM 10/11/11 ESIS 1455× FME