Size effects in nanoindentation: an experimental and analytical study

Author:

Voyiadjis George Z.,Peters Rick

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Computational Mechanics

Reference18 articles.

1. Abu Al Rub R.K., Voyiadjis G.Z.: Analytical and experimental determination of the material intrinsic length scale of strain gradient plasticity theory from micro- and nano-indentation experiments. Int. J. Plast. 20(6), 1139–1182 (2004)

2. Voyiadjis, G.Z., Abu Al Rub, R.K.: Length scales in gradient plasticity. In: Ahzi, S., Cherkaoui, M., Khaleel, M.A., Zbib, H.M., Zikry, M.A., LaMatina, B. (eds.): Proceedings of the IUTAM Symposium on Multiscale Modeling and Characterization of Elastic-Inelastic Behavior of Engineering Materials, October 2002, pp. 167–174. Kluwer Academic Publishers, Morocco (2002)

3. Abu Al Rub R.K., Voyiadjis G.Z.: A physically based gradient plasticity theory. Int. J. Plast. 22(4), 654–684 (2006)

4. Almasri, A.H., Voyiadjis, G.Z.: Nanoindentation in FCC metals: experimental study. Acta Mechanica 18 (2009)

5. Lucas, B.N., Oliver, W.C. Phar, G.M., Loubet, J.-L.: Time-dependent deformation during indentation testing. Thin films: Stresses and mechanical properties VI. In: Proceedings of the Symposium, San Francisco, CA, USA, 8–12 Apr 1996, pp. 233–238 (1997)

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