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      Effect of Structural Heterogeneity of 17Mn1Si Steel on the Temperature Dependence of Impact Deformation and Fracture

      , , , , , , ,
      Metals
      MDPI AG

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          Temperature and strain-rate dependence of surface dislocation nucleation.

          Dislocation nucleation is essential to the plastic deformation of small-volume crystalline solids. The free surface may act as an effective source of dislocations to initiate and sustain plastic flow, in conjunction with bulk sources. Here, we develop an atomistic modeling framework to address the probabilistic nature of surface dislocation nucleation. We show the activation volume associated with surface dislocation nucleation is characteristically in the range of 1-10b3, where b is the Burgers vector. Such small activation volume leads to sensitive temperature and strain-rate dependence of the nucleation stress, providing an upper bound to the size-strength relation in nanopillar compression experiments.
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            An approach to micro-macro modeling of heterogeneous materials

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              Multi-scale constitutive modelling of heterogeneous materials with a gradient-enhanced computational homogenization scheme

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                Author and article information

                Journal
                MBSEC7
                Metals
                Metals
                MDPI AG
                2075-4701
                July 2017
                July 22 2017
                : 7
                : 7
                : 280
                Article
                10.3390/met7070280
                32083a6f-4d53-4780-91df-b8611bb3c01f
                © 2017

                https://creativecommons.org/licenses/by/4.0/

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