Title of article :
Multiresolution continuum modeling of micro-void assisted dynamic adiabatic shear band propagation
Author/Authors :
McVeigh، نويسنده , , Cahal and Liu، نويسنده , , Wing Kam، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2010
Pages :
19
From page :
187
To page :
205
Abstract :
A thermal–mechanical multiresolution continuum theory is applied within a finite element framework to model the initiation and propagation of dynamic shear bands in a steel alloy. The shear instability and subsequent stress collapse, which are responsible for dynamic adiabatic shear band propagation, are captured by including the effects of shear driven microvoid damage in a single constitutive model. The shear band width during propagation is controlled via a combination of thermal conductance and an embedded evolving length scale parameter present in the multiresolution continuum formulation. In particular, as the material reaches a shear instability and begins to soften, the dominant length scale parameter (and hence shear band width) transitions from the alloy grain size to the spacing between micro-voids. Emphasis is placed on modeling stress collapse due to micro-void damage while simultaneously capturing the appropriate scale of inhomogeneous deformation. The goal is to assist in the microscale optimization of alloys which are susceptible to shear band failure.
Keywords :
Voids and inclusions , constitutive behaviour , Thermomechanical process , Finite elements , Dynamic fracture
Journal title :
Journal of the Mechanics and Physics of Solids
Serial Year :
2010
Journal title :
Journal of the Mechanics and Physics of Solids
Record number :
1427690
Link To Document :
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