Title of article :
A dislocation-based constitutive law for pure Zr including temperature effects
Author/Authors :
I.J. Beyerlein، نويسنده , , C.N. Tomé، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2008
Abstract :
In this work, a single crystal constitutive law for multiple slip and twinning modes in single phase hcp materials is developed. For each slip mode, a dislocation population is evolved explicitly as a function of temperature and strain rate through thermally-activated recovery and debris formation and the associated hardening includes stage IV. A stress-based hardening law for twin activation accounts for temperature effects through its interaction with slip dislocations. For model validation against macroscopic measurement, this single crystal law is implemented into a visco-plastic-self-consistent (VPSC) polycrystal model which accounts for texture evolution and contains a subgrain micromechanical model for twin reorientation and morphology. Slip and twinning dislocations interact with the twin boundaries through a directional Hall–Petch mechanism. The model is adjusted to predict the plastic anisotropy of clock-rolled pure Zr for three different deformation paths and at four temperatures ranging from 76 K to 450 K (at a quasi-static rate of 10−3 1/s). The model captures the transition from slip-dominated to twinning-dominated deformation as temperature decreases, and identifies microstructural mechanisms, such as twin nucleation and twin–slip interactions, where future characterization is needed.
Keywords :
B. Constitutive behavior , Hcp zirconium , B. Crystal plasticity , A. Twinning , A. Dislocations
Journal title :
International Journal of Plasticity
Journal title :
International Journal of Plasticity