Title of article :
Dislocation motion in tungsten: Atomistic input to discrete dislocation simulations
Author/Authors :
K. Srivastava، نويسنده , , H. R. Groger، نويسنده , , D. Weygand، نويسنده , , P. Gumbsch، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Pages :
17
From page :
126
To page :
142
Abstract :
A computational framework for the discrete dislocation dynamics simulation of body-centered cubic (bcc) metals which incorporates atomistic simulation results is developed here on the example of tungsten. Mobility rules for the a/2image screw dislocations are based on the kink-pair mechanism. The fundamental physical quantity controlling the kink-pair nucleation, the stress-dependent activation enthalpy, is obtained by fitting the line-tension model to atomistic data extending the approach by . In agreement with atomistic simulation, kink-pair nucleation is assumed to occur only on image planes. It is demonstrated that slip of the crystal along high-index planes like image which is often observed in experiments is obtained by the glide of the dislocation on two or more image planes. It is shown that such an atomistic based description of the dislocation mobility provides a physical basis to naturally explain many experimentally observed phenomena in bcc metals like the tension–compression asymmetry, the orientation dependence of loading, temperature dependence of yield stress and the crystallography of slip.
Keywords :
Non-Schmid effects , Body-centered cubic , Anomalous slip , Discrete dislocation dynamics
Journal title :
International Journal of Plasticity
Serial Year :
2013
Journal title :
International Journal of Plasticity
Record number :
1255438
Link To Document :
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