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Original Articles

The ageing of Al-Zn theoretical analysis of the resistivity data

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Pages 1231-1237 | Received 17 Sep 1976, Published online: 13 Sep 2006

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Read on this site (10)

G. Riontino & S. Abis. (1991) A scanning electrical resistivity (SER) study of phase transformations in an Al-Cu alloy. Philosophical Magazine B 64:4, pages 447-461.
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G. Vigier, J. Merlin & C. Mai. (1985) Effet de l'interférence interprécipité sur la résistivité électrique dans les alliages Al-Zn. Philosophical Magazine A 50:2, pages 179-188.
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A.J. Hillel. (1983) The electrical resistivity of GP zones Temperature dependence. Philosophical Magazine B 48:3, pages 237-243.
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G. Vigier & J. Merlin. (1983) Temperature dependence of electrical resistivity of Al–Zn alloys. Philosophical Magazine B 47:3, pages 299-306.
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ParP. Guyot & A. Bauer. (1982) Calcul de la résistivité et du pouvoir thermoélectrique des alliages en cours de démixtion. Philosophical Magazine B 46:4, pages 345-355.
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Kozo Osamura, Naotaka Otsuka & Yotaro Murakami. (1982) Resistivity maximum during Guinier-Preston zone formation in an Al-4 wt% Cu alloy. Philosophical Magazine B 45:6, pages 583-599.
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A.J. Hillel & P.L. Rossiter. (1981) Resistivity mechanisms during clustering in alloys. Philosophical Magazine B 44:3, pages 383-388.
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W. Wagner, R. Poerschke & H. Wollenberger. (1981) Dependence of electrical resistivity on the degree of short range order in a nickel–copper alloy. Philosophical Magazine B 43:2, pages 345-355.
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J.T. Edwards & A.J. Hillel. (1977) The electrical resistivity of G. P. zones. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 35:5, pages 1221-1229.
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Articles from other publishers (23)

Sang-Hwa Lee, Jae-Gil Jung, Sung-Il Baik, David N. Seidman, Min-Seok Kim, Young-Kook Lee & Kwangjun Euh. (2021) Precipitation strengthening in naturally aged Al–Zn–Mg–Cu alloy. Materials Science and Engineering: A 803, pages 140719.
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Abbas Bahrami & Maryam Yazdan Mehr. (2019) Modeling Electrical Resistivity of Naturally Aged Al–Mg–Si Alloys. Metals 9:3, pages 310.
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Kurt Binder & Peter Fratzl. 2006. Materials Science and Technology. Materials Science and Technology.
Kozo OSAMURA. (2007) . Journal of Japan Institute of Light Metals 57:10, pages 461-478.
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Teruto Kanadani, Keiyu Nakagawa, Norio Hosokawa, Akira Sakakibara, Koji Murakami & Makoto Hino. (2006) Effect of an Addition of Silver on the Age Hardening and the Formation of a Soft Surface Layer in an Al-12mass%Zn Alloy. Materials Science Forum 519-521, pages 1883-1888.
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F. Abd El-Salam, M.T. Mostafa, R.H. Nada & A.M. Abd El-Khalek. (2001) Aging Characteristics of Rapidly Solidified Al-20 wt% Zn Alloy. physica status solidi (a) 185:2, pages 331-340.
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Pierre Archambault & David Godard. (2000) High temperature precipitation kinetics and ttt curve of a 7xxx alloy by in-situ electrical resistivity measurements and differential calorimetry. Scripta Materialia 42:7, pages 675-680.
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P. Guyot & L. Cottignies. (1996) Precipitation kinetics, mechanical strength and electrical conductivity of AlZnMgCu alloys. Acta Materialia 44:10, pages 4161-4167.
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A. Brzezinski & U. H. Gläser. (2006) Description of the Electrical Resistivity in Aluminium Alloys with Spherical Precipitates. physica status solidi (b) 177:2, pages 439-447.
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W.-J. Kim & J.K. Park. (1993) On the kinetics of discontinuous precipitation in an Al-14.6 at.% Zn alloy. Acta Metallurgica et Materialia 41:2, pages 441-449.
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Ney José Luiggi & Oscar Febres. (1992) Resistivity anomaly during the process of separation of phases of a binary alloy. Physical Review B 46:4, pages 1992-2000.
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I Nakamichi. (1989) Enhancement of surface resistivity due to anisotropic Guinier-Preston zone scattering. Journal of Physics: Condensed Matter 1:45, pages 8887-8899.
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Nobuyuki Yoshida, Yoichi Tomii, Jun Takada, Shiomi Kikuchi & Masahiro Koiwa. (1988) Anomalous Resistivity Change of Ag–Al Alloys on Annealing in Oxygen. Transactions of the Japan Institute of Metals 29:8, pages 693-694.
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G.M. Raynaud & P. Guyot. (1988) Coherent precipitation effect on thermo-power of AlCu alloys. Acta Metallurgica 36:1, pages 143-147.
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U. H. Gläser & H. Löffler. (1984) Effective Medium Approach for the Residual Resistivity of Alloys Containing Guinier-Preston Zones. physica status solidi (b) 126:2, pages 741-751.
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J.M. Pelletier, G. Vigier, J. Merlin, P. Merle, F. Fouquet & R. Borrelly. (1984) Precipitation effects on thermopower in Al-Cu alloys. Acta Metallurgica 32:7, pages 1069-1078.
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G Vigier, J.M Pelletier & J Merlin. (1984) Departures from Matthiessen's rule during the formation of θ' phase in AlCu alloys. Scripta Metallurgica 18:4, pages 313-316.
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G Vigier, J M Pelletier & J Merlin. (1983) Temperature dependence of the electrical resistivity of alloys with Guinier-Preston zones. Journal of Physics F: Metal Physics 13:8, pages 1677-1687.
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J.M. Pelletier, G. Vigier & P. Guyot. (1981) Electrical resistivity and thermoelectric power during clustering in aluminium solid solutions. Acta Metallurgica 29:7, pages 1335-1342.
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N. Luiggi, J.P. Simon & P. Guyot. (1980) Residual resistivity during clustering in AlZn solid solutions. Acta Metallurgica 28:8, pages 1115-1122.
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J. Merlin & G. Vigier. (1980) Résistivité des solutions solides en cours de décomposition. Physica Status Solidi (a) 58:2, pages 571-584.
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C. Radomsky & H. Löffler. (1979) On the resistivity behaviour of spinodally decomposing AlZn alloys. Physica Status Solidi (a) 56:2, pages 711-715.
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C. Radomsky & H. Löffler. (1978) On the relation between X-ray small-angle scattering and electrical resistivity. Physica Status Solidi (a) 50:1, pages 123-130.
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