Title of article :
A model for plasticity kinetics and its role in simulating the dynamic behavior of Fe at high strain rates
Author/Authors :
Jeffrey D. Colvin، نويسنده , , Roger W. Minich، نويسنده , , Daniel H. Kalantar، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2009
Pages :
9
From page :
603
To page :
611
Abstract :
The recent diagnostic capability of the Omega laser to study solid-solid phase transitions at pressures greater than 10 GPa and at strain rates exceeding 107 s−1 has also provided valuable information on the dynamic elastic-plastic behavior of materials. We have found, for example, that plasticity kinetics modifies the effective loading and thermodynamic paths of the material. In this paper we derive a kinetics equation for the time-dependent plastic response of the material to dynamic loading, and describe the model’s implementation in a radiation-hydrodynamics computer code. This model for plasticity kinetics incorporates the Gilman model for dislocation multiplication and saturation. We discuss the application of this model to the simulation of experimental velocity interferometry data for experiments on Omega in which Fe was shock compressed to pressures beyond the α-to-ε phase transition pressure. The kinetics model is shown to fit the data reasonably well in this high strain rate regime and further allows quantification of the relative contributions of dislocation multiplication and drag. The sensitivity of the observed signatures to the kinetics model parameters is presented.
Keywords :
A. Dynamics , A. Shock waves , B. Rate-dependent material , B. Crystal plasticity
Journal title :
International Journal of Plasticity
Serial Year :
2009
Journal title :
International Journal of Plasticity
Record number :
1254594
Link To Document :
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