Measurements at nanopolycrystal grain sizes of the Hall–Petch plastic flow stress dependence on the reciprocal square root of polycrystal grain diameter occasionally fall short of expectations. The present report reviews experimental and theoretical aspects of such behaviours for a number of metal systems. Comparison with the results on copper had led to prediction on a dislocation pile-up mechanics basis of an even stronger grain size dependence that is now shown to carry over to explanation of similar results reported recently for cold-drawn eutectoid steel wires. In the current review, emphasis is given on additional important results achieved on the production of nanoscale zinc and tungsten carbide materials by Professor Jay Narayan and colleagues at North Carolina State University.
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December 2014
Review Article|
December 01 2014
Hall–Petch k dependencies in nanopolycrystals
Ronald William Armstrong
Ronald William Armstrong
*
Professor Emeritus, Center for Energetic Concepts Development, Department of Mechanical Engineering, University of Maryland, College Park, MD, USA
*Corresponding author e-mail address: rona@umd.edu
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*Corresponding author e-mail address: rona@umd.edu
Publisher: Emerald Publishing
Received:
August 15 2014
Accepted:
September 05 2014
Online ISSN: 2046-0155
Print ISSN: 2046-0147
ICE Publishing: All rights reserved
2014
Emerging Materials Research (2014) 3 (6): 246–251.
Article history
Received:
August 15 2014
Accepted:
September 05 2014
Citation
Armstrong RW (2014), "Hall–Petch k dependencies in nanopolycrystals". Emerging Materials Research, Vol. 3 No. 6 pp. 246–251, doi: https://doi.org/10.1680/emr.14.00020
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