journal article Mar 01, 1982

The influence of microstructure and strength on the fracture mode and toughness of 7XXX series aluminum alloys

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References
54
[1]
J. A. Nock and N. Y. Hunsicker:J. Metals, 1963, vol. 15, no. 3, p. 216.
[2]
D. S. Thompson and R. E. Zinkham:Eng. Fract. Mech., 1975, vol. 7, p. 389. 10.1016/0013-7944(75)90040-5
[3]
G. T. Hahn and A. R. Rosenfield:Metall. Trans. A, 1975, vol. 6A, p. 653. 10.1007/bf02672285
[4]
M. Graf and E. Hornbogen:Acta Met., 1977, vol. 25, p. 883. 10.1016/0001-6160(77)90174-2
[5]
A. H. Geisler:Phase Transformation in Solids, R. Smoluckowski, J. E. Mayer, and W. A. Weyl, eds., Wiley, New York, NY, 1951, p. 387.
[6]
J. L. Taylor:J. Inst. Met., 1963/64, vol. 92, p. 301.
[7]
N. Ryum:Acta Met., 1968, vol. 16, p. 327. 10.1016/0001-6160(68)90018-7
[8]
S. Kirman:Metall. Trans., 1971, vol. 2, p. 1761. 10.1007/bf02913403
[9]
P. N. T. Unwin and G. C. Smith:J. Inst. Met., 1969, vol. 97, p. 299.
[10]
R. H. Van Stone, R. H. Merchant, and J. R.Low, Jr.:ASTM STP 556, 1974, p. 93.
[11]
D. Broek:Eng. Fract. Mech., 1973, vol. 5, p. 55. 10.1016/0013-7944(73)90007-6
[12]
J. T. Staley: Alcoa Technical Center, Alcoa Center, PA, unpublished research, 1974.
[13]
B. J. Dunwoody, D. M. Moore, and A. T. Thomas:J. Inst. Met., 1973, vol. 101, p. 172.
[14]
J. M. Dowling and J. W. Martin:Proceedings of the Third International Conference on the Strength of Metals and Alloys, Institute of Metals and The Iron and Steel Institute, London, 1973, p. 170.
[15]
G. Lutjering and A. H. Gysier:Verformungsmechanismen und Struktur in der plastischen Zone vor Risspitzen, Seminarbericht 20 kV -Hochspannungselektronenmikroskopie, Munich, 1974, p. 9.
[16]
G. Lutjering: Ruhr-Universitat Bochum, Institut fur Werkstoffe, Bochum, Germany, unpublished research, 1976.
[17]
T. Mori and T. Mura:Mat. Sci. Eng., 1976, vol. 26, p. 89. 10.1016/0025-5416(76)90230-5
[18]
D. Broek:NLR TR 72 029-u, National Aerospace Labs, The Netherlands, 1972.
[19]
R. H. Van Stone and J. A. Psioda:Metall. Trans. A, 1975, vol. 6A, p. 668. 10.1007/bf02672286
[20]
J. S. Santer:Metall. Trans. A, 1978, vol. 9A, p. 769. 10.1007/bf02649786
[21]
T. M. F. Ronald and D. P. Voss: Metals and Ceramics Synthesis Branch, Wright Patterson Air Force Base, OH, unpublished research.
[22]
J. C. W. Van der Kastelle and D. Broek:Eng. Fract. Mech., 1911, vol. 9, p. 625. 10.1016/0013-7944(77)90075-3
[23]
G. M. Ludtka and D. E. Laughlin:Metall. Trans. A, 1981, vol. 12A, p. 2083. 10.1007/bf02644178
[24]
ASTM E8-69,Annual Book of ASTM Standards, 1969, vol. 31, p. 196.
[25]
N. A. Kahn and E. A. Imbenbo:The Welding Journal, 1958, vol. 27, p. 169-s.
[26]
J. G. Kaufman and J. F. Reedy: “Description and Procedure for Making Kahn-Type Tear Tests,” Alcoa Laboratories Report, no. 9-M-681, Alcoa Technical Center, Alcoa Center, PA, February 10, 1966.
[27]
J. G. Kaufman and M. Holt:Advances in Cryogenic Engineering, 1965, vol. 10, p. 216.
[28]
J. G. Kaufman and A. H. Knoll:Mat. Res. and Standards, 1964, vol. 4, p. 151.
[29]
J. G. Kaufman and E. W. Johnson:ASTM Proceedings, 1963, vol. 62, p. 778.
[30]
R. H. Heyer:ASTM STP 381, 1965, p. 113.
[31]
J. G. Kaufman and E. W. Johnson:Advances in Cryogenic Engineering, 1963, vol. 8, p. 678.
[32]
M. P. Hanson, G. W. Stickley, and H. T. Richards:ASTM STP 287, 1960, p. 3.
[33]
ASTM E561-76T,Annual Book of ASTM Standards, 1976, vol. 31, p. 539.
[34]
G. M. Ludtka: Ph.D. Thesis, Carnegie-Mellon University, Pittsburgh, PA, 1978.
[36]
J. A. Begley and J. D. Landes:ASTM STP 514, 1972, p. 1. 10.1520/stp38816s
[37]
K. G. Broberg:J. Mech. Phys. Solids, 1971, vol. 19, p. 407. 10.1016/0022-5096(71)90008-1
[38]
J. P. Hickerson, Jr.:Eng. Fract. Mech., 1977, vol. 9, p. 76. 10.1016/0013-7944(77)90053-4
[39]
W. R. Warke, N. A. Neilson, R. W. Hertzberg, M. S. Hunter, and M. Hill:ASTM STP 436, 1968, p. 212. 10.1520/stp32008s
[40]
R. H. Van Stone and T. B. Cox:ASTM STP 600, 1976, p. 5. 10.1520/stp29188s
[41]
R. J. Price and A. Kelly:Acta Met., 1964, vol. 12, p. 979. 10.1016/0001-6160(64)90070-7
[42]
G. I. Taylor:J. Inst. Met., 1938, vol. 62, p. 307.
[43]
A. Gysier, S. Lutjering, and V. Gerold:Acta Met., 1974, vol. 22, p. 901. 10.1016/0001-6160(74)90057-1
[44]
G. Gutjering and S. Weissman:Acta Met., 1970, vol. 18, p. 785. 10.1016/0001-6160(70)90043-x
[45]
J. D. Evensen, N. Ryum, and J. D. Embury:Mat. Sci. Eng., 1975, vol. 18, p. 221. 10.1016/0025-5416(75)90173-1
[46]
E. Hornbogen and K. H. zum Gahr:Metallography, 1975, vol. 8, p. 181. 10.1016/0026-0800(75)90038-5
[47]
J. Albrecht and G. Lutjering:Einfluss der Mikrostruktur auf die Ermudungsrissausbreitung in Aluminum-Legierungen, Forschungsbericht der Deutchen Luft-und Raumfahrt, DLR-EB77-07, Cologne, 1977.
[48]
T. H. Sanders, Jr., E. A. Ludwiczak, and R. R. Sawtell:Mat. Sci. Eng., 1980, vol. 43, p. 247. 10.1016/0025-5416(80)90110-x
[49]
K. Welpmann, G. Lutjering, and W. Bunk:Fracture 1977, 2, ICF4, Waterloo, Canada, June 19–24, 1977.
[50]
R. B. Nicholson: “Strong Microstructures from the Solid State,” inStrengthening Methods in Crystals, A. Kelly and R. B. Nicholson, eds., Halsted Press, New York, NY, 1971, p. 553.

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Published
Mar 01, 1982
Vol/Issue
13(3)
Pages
411-425
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Gerard M. Ludtka, David E. Laughlin (1982). The influence of microstructure and strength on the fracture mode and toughness of 7XXX series aluminum alloys. Metallurgical Transactions A, 13(3), 411-425. https://doi.org/10.1007/bf02643350
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