ICF13A

13th International Conference on Fracture June 16–21, 2013, Beijing, China -9- in press. [13]H. Tu, S. Schmauder, U. Weber. Numerical study of electron beam welded butt joints with the GTN model. Comput Mech 50 (2012), pp. 245-255. [14]D. S. Dugdale, Yielding of steel sheets containing slits. J Mech Phys Solids 8 (1960), pp. 100-104. [15]G. I. Barenblatt. The mathematical theory of equilibrium cracks in brittle fracture. Adv Appl Mechanics 7 (1962), pp. 55-129. [16]A. Hillerborg et al.. Analysis of crack formation and crack growth in concrete by means of fracture mechanics and finite elements. Cem Conc Research 6 (1976), pp. 773–782. [17]A. Needleman. A continuum model for void nucleation by inclusion debonding. J Appl Mech ASME 54 (1987), pp. 525–531. [18]A. Needleman. An analysis of decohesion along an imperfect interface. I J Frac 42 (1990), pp. 21-40. [19]V. Tvergaard, J. W. Hutchinson. The relation between crack growth resistance and fracture process parameters in elastic-plastic solids. J Mech Phys Solids 40 (1992), pp. 1377–1397. [20]I. Scheider. Bruchmechanische Bewertung von Laserschweissverbindungen durch numerische Rissfortschrittsimulation mit dem Kohäsivzonenmodell. PhD thesis, TU Hamburg-Harburg, Geesthacht, 2001. [21]ASTM E 1820-96. Standard test method for measurement of fracture toughness. In: Annual Book of ASTM Standards, Vol. 03.01. American Society for Testing and Materials, Philadelphia, PA, USA. [22]A. Cornec et al.. On the practical application of the cohesive model. Engng Fract Mech 70 (2003), pp. 1963-1987.

RkJQdWJsaXNoZXIy MjM0NDE=