Inverse Hall–Petch effect in quasi- and nanocrystalline materials

Author:

Padmanabhan K.A.,Sripathi Sriharsha,Hahn H.,Gleiter H.

Publisher

Elsevier BV

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference32 articles.

1. Superplastic flow: common basis for a ubiquitous phenomenon;Padmanabhan,2001

2. On the validity of the Hall–Petch relationship in nanocrystalline materials;Chokshi;Scr Metall,1989

3. Koch C.C., Narayan J. The inverse Hall–Petch effect—fact or artifact? In: Mukhopadhyay NK, Ali F, Scudino S, Khoshkhoo MS, Stoica M, Srivastava VC, et al. editors. Farkas D, Kung H, Mayo M, Van Swygenhoven H, Weertman J. Symposium proceedings: structure and mechanical properties of nanophase materials – theory and computer simulation vs. experiment, Boston, Massachusetts, USA, 28–30 November 2000: Preface. Mater Res Soc Symp—Proc 2001; 634, p B5.1.1–B5.1.11.

4. Grain size softening effect in Al62.5Cu25Fe12.5 nanoquasicrystals;Mukhopadhyay;Appl Phys Lett,2013

5. Padmanabhan KA, Nitsche R., Hahn H. On the deformation of nanocrystalline metals and ceramics. In: Fourth European conference on advanced materials, processes., Milano: Associazone Italiana Di Metallurgia; 1995, p. 289–298.

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