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  1. The formation of sub-grain structure by alternating plastic strain.J. Holden - 1961 - Philosophical Magazine 6 (64):547-558.
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  • Comparison of fatigue properties of single crystals and polycrystals.Pentti O. Kettunen - 1967 - Philosophical Magazine 16 (140):253-259.
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  • A mechanism for the production of intrusions and extrusions during fatigue.D. F. Watt - 1966 - Philosophical Magazine 14 (127):87-92.
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  • Zbigniew Stanislaw Basinski's fundamental contributions to the understanding of metal fatigue.Haël Mughrabi † - 2004 - Philosophical Magazine 84 (3-5):259-268.
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  • Assessment of surface relief and short cracks under cyclic creep in a type 316LN austenitic stainless steel.Aritra Sarkar, A. Nagesha, P. Parameswaran, R. Sandhya & K. Laha - 2015 - Philosophical Magazine 95 (35):3950-3984.
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  • (1 other version)The Dislocation Distribution in Face-centred Cubic Metals after Fatigue.R. L. Segall, P. G. Partridge & P. B. Hirsch - 1961 - Philosophical Magazine 6 (72):1493-1513.
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  • Extrusions and intrusions in fatigued metals. Part 1. State of the art and history†.J. Man, K. Obrtlík & J. Polák - 2009 - Philosophical Magazine 89 (16):1295-1336.
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  • Cyclic deformation and fatigue cracking behaviors of Cu–28wt%Ag binary alloy.Y. Z. Tian, Z. F. Zhang & Z. G. Wang - 2009 - Philosophical Magazine 89 (21):1715-1730.
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  • An electron microscope study of dislocation arrangements in fatigued Al + 1% Mg crystals.J. T. McGrath & G. J. W. Waldron - 1964 - Philosophical Magazine 9 (98):249-259.
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  • The effect of atmospheric corrosion on metal fatigue.N. J. Wadsworth & J. Hutchings - 1958 - Philosophical Magazine 3 (34):1154-1166.
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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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  • (1 other version)The dislocation distribution in face-centred cubic metals after fatigue.R. L. Segall, P. G. Partridge & P. B. Hirsch - 1961 - Philosophical Magazine 6 (72):1493-1513.
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  • The distribution of deformation in lead fatiguedin vacuo.K. U. Snowden - 1961 - Philosophical Magazine 6 (63):321-327.
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  • Role of persistent slip bands in fatigue.P. Lukáš & L. Kunz ‡ - 2004 - Philosophical Magazine 84 (3-5):317-330.
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  • The mechanism of fatigue softening.R. K. Ham & T. Broom - 1962 - Philosophical Magazine 7 (73):95-103.
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  • Low-cycle fatigue-cracking mechanisms in fcc crystalline materials.P. Zhang, S. Qu, Q. Q. Duan, S. D. Wu, S. X. Li, Z. G. Wang & Z. F. Zhang - 2011 - Philosophical Magazine 91 (2):229-249.
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  • Crack initiation in polycrystalline aluminium fatigued at low strain.A. E. King & D. G. Teer - 1967 - Philosophical Magazine 15 (134):425-428.
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  • The nature of persistent slip bands in fatigued copper.D. S. Kemsley - 1957 - Philosophical Magazine 2 (13):131-132.
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  • Evidence of sub-surface cross-slip in fatigued copper.A. H. Meleka, W. Barr & A. A. Baker - 1961 - Philosophical Magazine 6 (62):315-316.
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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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  • Analytical expressions of incompatibility stresses at Σ3⟨111⟩ twin boundaries and consequences on single-slip promotion parallel to twin plane. [REVIEW]T. Richeton, I. Tiba, S. Berbenni & O. Bouaziz - 2015 - Philosophical Magazine 95 (1):12-31.
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  • Case studies on the application of high-resolution electron channelling contrast imaging – investigation of defects and defect arrangements in metallic materials.Anja Weidner & Horst Biermann - 2015 - Philosophical Magazine 95 (7):759-793.
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  • On the formation of fatigue cracks at twin boundaries.R. C. Boettner, A. J. McEvily & Y. C. Liu - 1964 - Philosophical Magazine 10 (103):95-106.
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