Title of article :
A NUMERICAL SCHEME FOR MODE III DYNAMIC FRACTURE PROBLEMS
Author/Authors :
J. W. MORRISSEY، نويسنده , , P. H. Geubelle ، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1997
Abstract :
This paper summarizes the formulation and numerical implementation of a spectral scheme specially
designed for dynamic anti-plane shear (mode III) fracture problems. The scheme allows for a wide variety of
simulations ranging from the dynamic loading of stationary cracks to the spontaneous propagation of faults.
The method is based on a spectral form of the elastodynamic relation between the shearing tractions acting
on the fracture surface and the resulting slip velocity response for a planar two-dimensional crack in an
inÞnite linearly elastic medium. The formulation is expressed in the Fourier domain and involves a convolution
over the past slip or slip rate history. Conversion between spectral and real domains is performed
through the fast Fourier transform algorithm. The time-integration scheme is explicit and a variety of
constitutive laws can be used to express the strength of the material on the fault plane. The stability and
accuracy of the numerical scheme are discussed through comparison with existing analytical solutions
involving non-propagating and propagating cracks. The extraction of the dynamic stress intensity factor
from the computed slip history is described
Keywords :
Spectral Method , Anti-plane shear , Dynamic fracture mechanics , Stress intensity factor , elastodynamics
Journal title :
International Journal for Numerical Methods in Engineering
Journal title :
International Journal for Numerical Methods in Engineering