Numéro |
J. Phys. IV France
Volume 110, September 2003
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Page(s) | 335 - 340 | |
DOI | https://doi.org/10.1051/jp4:20020716 |
J. Phys. IV France 110 (2003) 335
DOI: 10.1051/jp4:20020716
Experimental and numerical modeling of the heterogeneous materials fracture
V.V. Lepov1, E.A. Arkhangelskaya1, V.T. Alymov2 and V.P. Larionov11 IPTPN SB RAS, 1 UI. Oktyabrskaya, 677891 Yakutsk, Russia
2 IMASH RAS, 4 Maluy Kharitonievskii Per., 101990 Moscow, Russia
Abstract
The complex evolution and hierarchical approach to the modeling of the heterogeneous viscous-plastic damaging media fracture
process is considered. The developed for the stochastic crack growth in the defects array model allowed visualizing the process
of crack propagation on the base of microdefects nucleation mechanism, the small cracks growth and coalescence under the external
stress and hydrogen effect. Macroscopie model based on the deterministic approach and could simulate the damage accumulation
and fracture process of metal during the hydrogen induced delayed fracture. Experimentally by the optical, electronic probe
fractography and scanning tunneling "in situ" microscopy methods the statistical parameters and its evolution during the deformation
of the heterogeneous material bas obtained. The possibility of model use for the modeling of aluminum alloy hot tearing during
the solidification process bas shown. The evolution of the damage up to ultimate material state modeling in the scale of the
part has shown.
© EDP Sciences 2003