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  1. Dislocation structure of an austenitic stainless steel in different stages of fatigue.O. Vingsbo, G. Lagerberg, B. Hansson & Y. Bergström - 1968 - Philosophical Magazine 17 (147):441-451.
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  • The analysis of dislocation structures in fatigued aluminium single crystals exhibiting striations.A. B. Mitchell & D. G. Teer - 1970 - Philosophical Magazine 22 (176):399-417.
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  • Dislocation sources in quenched aluminium-based alloys.K. H. Westmacott, D. Hull & R. S. Barnes - 1959 - Philosophical Magazine 4 (45):1089-1092.
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  • The effects of surface condition on the mechanical properties of lithium fluoride crystals.A. R. C. Westwood - 1960 - Philosophical Magazine 5 (58):981-990.
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  • Rearrangements of dislocations in stainless steel during electropolishing.U. Valdrè & P. B. Hirsch - 1963 - Philosophical Magazine 8 (86):237-246.
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  • 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 direct correlation of dislocation structures and surface deformation markings in fatigued aluminium.A. B. Mitchell & D. G. Teer - 1969 - Philosophical Magazine 19 (159):609-612.
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  • Stress-induced knitting of dislocation networks with four-fold nodes in an aluminium-magnesium alloy.V. K. Lindroos & H. M. Miekk-oja - 1969 - Philosophical Magazine 20 (164):329-340.
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  • Interfacial dislocation networks around γ′ precipitates in nickel-base alloys.A. Lasalmonie & J. L. Strudel - 1975 - Philosophical Magazine 32 (5):937-949.
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  • Dislocation debris in aluminium fatigued at 78°K.C. E. Feltner - 1963 - Philosophical Magazine 8 (96):2121-2124.
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