High Strain Rate and Plastic Deformation Response of OFHC Copper by Finite Element Method
Author:
Publisher
SAGE Publications
Subject
Mechanical Engineering
Reference22 articles.
1. A dislocation-based constitutive model for viscoplastic deformation of fcc metals at very high strain rates
2. A constitutive model for high strain rate deformation in FCC metals based on irreversible thermodynamics
3. Review of experimental techniques for high rate deformation and shock studies
4. Applications of the ion beam technique for investigations of hypervelocity impacts
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