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  1. An optical analysis of the dislocation structure in walls formed by fatigue.P. J. Woods - 1973 - Philosophical Magazine 28 (1):193-202.
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  • The effect of work-hardening on the low strain amplitude fatigue of copper crystals.A. T. Winter - 1975 - Philosophical Magazine 31 (2):411-417.
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  • A model for the fatigue of copper at low plastic strain amplitudes.A. T. Winter - 1974 - Philosophical Magazine 30 (4):719-738.
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  • Cyclic deformation response of planar-slip materials and a new criterion for the wavy-to-planar-slip transition.Zhirui Wang † - 2004 - Philosophical Magazine 84 (3-5):351-379.
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  • Shear localization in dynamic deformation of copper single crystals.S. X. Li, R. Q. Yang, J. W. Li & Z. F. Zhang - 2006 - Philosophical Magazine 86 (36):5769-5786.
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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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  • Strain localization in cyclic deformation of copper single crystals.J. M. Finney & C. Laird - 1975 - Philosophical Magazine 31 (2):339-366.
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  • Dependence of hardening and saturation stress in persistent slip bands on strain amplitude during cyclic fatigue loading.C. Erel, G. Po & N. Ghoniem - 2017 - Philosophical Magazine 97 (32):2947-2970.
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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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  • Weak-beam study of dislocation structures in fatigued copper.J. G. Antonopoulos & A. T. Winter - 1976 - Philosophical Magazine 33 (1):87-95.
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