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Original Articles

Etch pit studies of dislocation arrangements resulting from the deformation of single crystals of copper 7.5 at.% aluminium alloys

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Pages 409-423 | Received 01 Oct 1971, Published online: 02 Sep 2006

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D. Kuhlmann-Wilsdorf. (1999) The theory of dislocation-based crystal plasticity. Philosophical Magazine A 79:4, pages 955-1008.
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D. Kuhlmann-Wilsdorf. (1998) Questions you always wanted (or should have wanted) to ask about workhardening. Materials Research Innovations 1:4, pages 265-297.
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Articles from other publishers (27)

Aakash Kumar & D. Y. Li. (2021) Clarification of the Puzzled Effects of Cold Work on Wear of Metals from the Viewpoint of Wearing Energy Consumption. Tribology Letters 70:1.
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Aakash Kumar & D.Y. Li. (2022) Can the H/E ratio be generalized as an index for the wear resistance of materials?. Materials Chemistry and Physics 275, pages 125245.
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F. Pettinari-Sturmel, C. Coupeau, N. Clément & A. Coujou. (2004) Activation of dislocation sources in γ-phases of nickel-base superalloys studied by use of atomic-force microscopy and transmission electron microscopy. Materials Science and Engineering: A 387-389, pages 103-108.
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Doris Kuhlmann-Wilsdorf. (2004) Advancing towards constitutive equations for the metal industry via the LEDS theory. Metallurgical and Materials Transactions A 35:2, pages 369-418.
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D. Kuhlmann-Wilsdorf. (2002) Why do dislocations assemble into interfaces in epitaxy as well as in crystal plasticity? To minimize free energy. Metallurgical and Materials Transactions A 33:8, pages 2519-2539.
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Doris Kuhlmann-Wilsdorf. 2002. 211 342 .
M. Kügler, A. Hampelr & H. Neuhäuser. (1999) Slip Line Kinetics during Deformation of Cu–Al Single and Polycrystals. physica status solidi (a) 175:2, pages 513-526.
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P. HAASEN†. 1996. Physical Metallurgy. Physical Metallurgy 2009 2073 .
J. W. Mitchell. (1993) Elementary Processes in the Formation of Slip Bands in Single Crystals of α-Phase CuAl Alloys. Physica Status Solidi (a) 135:2, pages 455-466.
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H.-H. Potthoff. (1983) Velocities of Dislocation Groups in Very Thin Neutron-Irradiated Copper Single Crystals Measured by Slip Line Cinematography. Physica Status Solidi (a) 77:1, pages 215-224.
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F. Prinz, H.P. Karnthaler & H.O.K. Kirchner. (1981) A study of the anisotropy of the friction stress in Cu-Al alloys. Acta Metallurgica 29:6, pages 1029-1036.
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M. Kleintges. (1980) Multiplication of Dislocations in copper 0.6 at % aluminium single crystals. Scripta Metallurgica 14:9, pages 993-997.
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P.D.K. Nathanson, P.J. Jackson & D.R. Spalding. (1980) Secondary slip in neutron irradiated crystals. Acta Metallurgica 28:7, pages 823-832.
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W.E. Nixon, M.H. Massey & J.W. Mitchell. (1979) Dislocation generation and displacement in single crystals of a Cu-10.5 at.% Al alloy deformed in bending. Acta Metallurgica 27:6, pages 943-950.
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N.R. Comins & J.T. Fourie. 1979. Strength of Metals and Alloys. Strength of Metals and Alloys 1389 1394 .
N. Clement, D. Caillard & J.L. Martin. (2020) In situ study of collective dislocation movements in a Ni-Cr alloy. Proceedings, annual meeting, Electron Microscopy Society of America 36:1, pages 568-569.
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P.J. Jackson, W.E. Nixon & J.W. Mitchell. (1977) Latent hardening and dislocation density in α-phase Cu-Al alloy crystals. Acta Metallurgica 25:12, pages 1539-1542.
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P.J. Jackson, W.E. Nixon & J.W. Mitchell. (1977) Slip bands in single crystals of a copper-aluminium alloy etched under load. Scripta Metallurgica 11:8, pages 665-667.
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P. J. Jackson & P. D. K. Nathanson. (1977) Dislocation distribution introduced into soft copper crystals by ultrasonic irradiation. Journal of Applied Physics 48:1, pages 422-423.
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J. L. Vorhaus & A. C. Anderson. (1976) Lattice thermal conductivity of copper alloys below 2 K. Physical Review B 14:8, pages 3256-3264.
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D Preininger. (1976) Relaxed dislocation pile-up configuration: A possible method to differentiate between internal and friction stresses. Materials Science and Engineering 24:1, pages 65-73.
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Tomoyuki Takeuchi. (1976) Work Hardening of Cu-10 at%Al Alloy Single Crystals with Multiple Glide Orientations. Transactions of the Japan Institute of Metals 17:5, pages 313-321.
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A. H. AgajanianA. H. Agajanian. 1976. Semiconducting Devices. Semiconducting Devices 492 546 .
Hirotaro Mori & Hiroshi Fujita. (1975) Behavior of Dislocations in Copper under Reverse Stress. Journal of the Physical Society of Japan 38:5, pages 1349-1356.
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H. Neuhauser, J. Koropp & R. Heege. (1975) Electron microscopic studies in the yield region of 70/30-α-brass single crystals—I. The mode of slip. Acta Metallurgica 23:4, pages 441-453.
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R. B. Schwarz & J. W. Mitchell. (1974) Dynamic dislocation phenomena in single crystals of Cu-10.5-at.%-Al alloys at 4.2 °K. Physical Review B 9:8, pages 3292-3299.
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H Siethoff. (1973) Lüders bands in heavily doped silicon single crystals. Acta Metallurgica 21:11, pages 1523-1531.
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