Dislocation Mechanics of High-Rate Deformations

作者:Armstrong Ronald W; Li Qizhen
来源:Metallurgical and Materials Transactions A-Physical Metallurgy and Materials Science, 2015, 46A(10): 4438-4453.
DOI:10.1007/s11661-015-2779-6

摘要

Four topics associated with constitutive equation descriptions of rate-dependent metal plastic deformation behavior are reviewed in honor of previous research accomplished on the same issues by Professor Marc Meyers along with colleagues and students, as follow: (1) increasing strength levels attributed to thermally activated dislocation migration at higher loading rates; (2) inhomogeneous adiabatic shear banding; (3) controlling mechanisms of deformation in shock as compared with shock-less isentropic compression experiments and (4) Hall-Petch-based grain size-dependent strain rate sensitivities exhibited by nanopolycrystalline materials. Experimental results are reviewed on the topics for a wide range of metals.

  • 出版日期2015-10