Title of article :
Asymptotic crack-tip fields for dynamic crack growth in compressive power-law hardening materials
Author/Authors :
Xian-Kui Zhu، نويسنده , , Keh-Chih Hwang، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Abstract :
The effect of material compressibility on the stress and strain fields for a mode-I crack propagating steadily in a powerlaw
hardening material is investigated under plane strain conditions. The plastic deformation of materials is characterized
by the J2 flow theory within the framework of isotropic hardening and infinitesimal displacement gradient. The asymptotic
solutions developed by the present authors [Zhu, X.K., Hwang K.C., 2002. Dynamic crack-tip field for tensile cracks propagating
in power-law hardening materials. International Journal of Fracture 115, 323–342] for incompressible hardening
materials are extended in this work to the compressible hardening materials. The results show that all stresses, strains, and
particle velocities in the asymptotic fields are fully continuous and bounded without elastic unloading near the dynamic
crack tip. The stress field contains two free parameters req0 and s330 that cannot be determined in the asymptotic analysis,
and can be determined from the full-field solutions. For the given values of req0 and s330, all field quantities around the
crack tip are determined through numerical integration, and then the effects of the hardening exponent n, the Poisson ratio
m, and the crack growth speedMon the asymptotic fields are studied. The approximate behaviors of the proposed solutions
are discussed in the limit of m! 0.5 or n!1.
Keywords :
Mode-I crack , Crack-tip field , dynamic crack growth , Power-law hardening material , asymptotic solution , Plane strain condition , Compressibility
Journal title :
International Journal of Solids and Structures
Journal title :
International Journal of Solids and Structures