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Original Articles

Dislocation densities in slowly cooled aluminium single crystals

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Pages 855-865 | Received 20 Sep 1965, Published online: 20 Aug 2006

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Read on this site (3)

A. S. T. Badrick & K. E. Puttick. (1971) Lang topography of dislocations in cadmium. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 23:183, pages 585-610.
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Otto Lohne & Bjarne N⊘st. (1967) On the formation of vacancy clusters in aluminium. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 16:140, pages 341-346.
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Bjarne N⊘st & Gunnar S⊘rensen. (1966) Direct X-ray observation of dislocations during annealing in aluminium single crystals. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 13:125, pages 1075-1077.
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Articles from other publishers (22)

Shobhit Pratap Singh, Praveen Kumar & Michael E. Kassner. (2021) Frustration of the dislocation density in NaCl and its implication on “Harper-Dorn” creep. Materials Science and Engineering: A 799, pages 140360.
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Michael E. Kassner. (2020) New Developments in Understanding Harper–Dorn, Five-Power Law Creep and Power-Law Breakdown. Metals 10:10, pages 1284.
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Shobhit Pratap Singh, Praveen Kumar & Michael E. Kassner. (2020) The low-stress and high-temperature creep in LiF single crystals: An explanation for the So-called Harper-Dorn creep. Materialia 13, pages 100864.
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S.P. Singh, X-R. Huang, P. Kumar & M.E. Kassner. (2019) Short communication: Assessment of the dislocation density using X-ray topography in Al single crystals annealed for long times near the melting temperature. Materials Today Communications 21, pages 100613.
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K.K. Smith, M.E. Kassner & P. Kumar. (2017) Long-term annealing of high purity aluminum single crystals: New insights into Harper-Dorn creep. Materials Science and Engineering: A 705, pages 1-5.
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Yasuhiro Miura. (2011) . Journal of Japan Institute of Light Metals 61:10, pages 544-552.
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V T Petrashov. (1984) An experimental study of helicon resonance in metals. Reports on Progress in Physics 47:1, pages 47-110.
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G. Champier. 1980. Characterization of Crystal Growth Defects by X-Ray Methods. Characterization of Crystal Growth Defects by X-Ray Methods 97 132 .
B.K. Tanner. (1977) Crystal assessment by x-ray topography using synchrotron radiation. Progress in Crystal Growth and Characterization 1:1, pages 23-56.
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V.A. Gasparov & M.H. Harutunian. (1976) To the question on electron-electron scattering in metals. Solid State Communications 19:3, pages 189-192.
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B.K. TANNER. 1976. X-ray Diffraction Topography. X-ray Diffraction Topography 155 169 .
K Sangwal & A R Patel. (1974) Change in dislocation distribution and hardness of galena on air-annealing. Journal of Physics D: Applied Physics 7:15, pages 2031-2035.
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T. Amundsen & P. Jerstad. (1974) Linear magnetoresistance of aluminum. Journal of Low Temperature Physics 15:5-6, pages 459-471.
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R. W. Armstrong & C. Cm. Wu. 1973. Microstructural Analysis. Microstructural Analysis 169 219 .
B. Nøst, B. C. Larson & F. W. Young. (1972) Anomalous x-ray transmission study of low-dislocation-density aluminum crystals. Physica Status Solidi (a) 11:1, pages 263-274.
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L.H. Jenkins & M.F. Chung. (1971) Auger and other characteristic energies in secondary electron spectra from Al surfaces. Surface Science 28:2, pages 409-422.
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J. C. Pieri, J. Bagnol, E. Berger & R. Jouty. (1971) Use of Berg-Barrett method in electromigration studies in 99.995% aluminium. Journal of Materials Science 6:9, pages 1192-1196.
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Ryuichiro Oshima & F. Eiichi Fujita. (1969) Direct Observation of Sub-boundaries in Aluminium Single Crystals Grown from the Melt. Transactions of the Japan Institute of Metals 10:1, pages 57-63.
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B. Baudelet & G. Champier. (1969) Configurations de dislocations dans un cristal d'aluminium en fonction de la température. Journal de Physique 30:11-12, pages 999-1003.
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M. Frémiot, B. Baudelet & G. Champier. (1968) Comparison of dislocation configurations produced by annealing in air, with those produced by annealing in vacuum, of aluminium crystals. Journal of Crystal Growth 3-4, pages 711-715.
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B. Ya. Pines & A. F. Syrenko. (1968) Change of dislocation density in aluminium and lithium fluoride after annealing near the melting point under hydrostatic pressure. Journal of Materials Science 3:1, pages 80-88.
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B. N∅st, G. S∅rensen & E. Nes. (1967) On the formation of dislocations in aluminium during slow heating and cooling. Journal of Crystal Growth 1:3, pages 149-159.
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