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  1. Cyclic deformation of polycrystalline Cu films.R. Schwaiger, G. Dehm & O. Kraft - 2003 - Philosophical Magazine 83 (6):693-710.
    Fatigue impairs the reliability of macroscopic metallic components utilized in a variety of technological applications. However, the fatigue behaviour of thin metal films and small-scale components used in microelectronics and mechanical microdevices has yet to be explored in detail. The fatigue behaviour in submicrometre thin films is likely to differ from that in bulk material, since the volume necessary for the formation of dislocation structures typical of cyclic deformation in bulk material is larger than that available in thin films. The (...)
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  • Equilibrium and passing properties of dislocation dipoles.P. Veyssière & Y. -L. Chiu - 2007 - Philosophical Magazine 87 (23):3351-3372.
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  • A discussion of the structure and behaviour of dipole walls in cyclic plasticity.L. M. Brown † - 2004 - Philosophical Magazine 84 (24):2501-2520.
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  • Annihilation of persistent slip bands and its effect on the fatigue life of copper single crystals.S. X. Li §, M. Y. Li, R. Zhu & Y. S. Chao - 2004 - Philosophical Magazine 84 (31):3323-3334.
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  • Cyclic deformation and fatigue damage behaviors of oriented Ag single crystal.P. Li, Z. F. Zhang, S. X. Li & Z. G. Wang - 2009 - Philosophical Magazine 89 (32):2903-2920.
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  • Quantitative assessment of fatigue damage accumulation in wavy slip metals from acoustic harmonic generation.J. H. Cantrell - 2006 - Philosophical Magazine 86 (11):1539-1554.
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  • Acoustic harmonic generation from fatigue-generated dislocation substructures in copper single crystals.T. M. Apple, J. H. Cantrell, C. M. Amaro, C. R. Mayer, W. T. Yost, S. R. Agnew & J. M. Howe - 2013 - Philosophical Magazine 93 (21):2802-2825.
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