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Articles

The Effect of Boundary Precipitates on the High-Temperature Fatigue Strength of Austenitic Stainless Steels

Pages 47-50 | Published online: 18 Jul 2013

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M. W. Mahoney & N. E. Paton. (1974) The Effect of Carbide Precipitation on Fatigue Crack Propagation in Type 316 Stainless Steel. Nuclear Technology 23:1, pages 53-62.
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C. R. Brinkman, G. E. Korth & R. R. Hobbins. (1972) Estimates of Creep-Fatigue Interaction in Irradiated and Unirradiated Austenitic Stainless Steels. Nuclear Technology 16:1, pages 297-307.
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Articles from other publishers (14)

J. Charrier, R. Roux & C. Gasc. 1990. Surface Engineering. Surface Engineering 468 477 .
W. J. Plumbridge. 1987. High Temperature Fatigue. High Temperature Fatigue 177 228 .
N.Y. Tang, H.H.E. Leipholz & D.M.R. Taplin. 1984. Fracture 84. Fracture 84 127 142 .
Parviz Yavari & Terence G. Langdon. (1983) An experimental investigation of the orthogonal (diamond) grain configuration in high temperature fatigue. Journal of Materials Science 18:11, pages 3219-3229.
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Parviz Yavari & Terence G. Langdon. (1983) An examination of grain boundary migration during high temperature fatigue of aluminum—II. Measurements of migration. Acta Metallurgica 31:10, pages 1605-1610.
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T.G. Langdon, D. Simpson & R.C. Gifkins. (1983) Cyclic grain boundary migration during high temperature fatigue—II. Measurements of grain boundary sliding. Acta Metallurgica 31:6, pages 939-946.
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T.G. Langdon & R.C. Gifkins. (1983) Cyclic grain boundary migration during high temperature fatigue—I. Microstructural observations. Acta Metallurgica 31:6, pages 927-938.
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C. Hoffmann & A. J. McEvily. (1982) The effect of high temperature low cycle fatigue on the corrosion resistance of austenitic stainless steels. Metallurgical Transactions A 13:5, pages 923-927.
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V.K. Sikka, R.W. Swindeman & C.R. Brinkman. 1978. The Physical Metallurgy of Fracture. The Physical Metallurgy of Fracture 561 567 .
S. KocańdaS. Kocańda. 1978. Fatigue failure of metals. Fatigue failure of metals 147 198 .
Richard Stahlberg. (1978) Rißwachstumsverhalten der austenitischen Stähle X 6 CrNi 18 11 und X 6 CrNiMo 1713 unter den Beanspruchungsbedingungen in natriumgekühlten Brutreaktoren. Archiv für das Eisenhüttenwesen 49:1, pages 1-8.
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P. S. Maiya & S. Majumdar. (1977) Elevated-temperature low-cycle fatigue behavior of different heats of type 304 stainless steel. Metallurgical Transactions A 8:11, pages 1651-1660.
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R. H. Cook. 1975. A Status Review of Alloy 800. A Status Review of Alloy 800 150 169 .
L. A. James. (1974) Effect of thermal aging upon the fatigue-crack propagation of austenitic stainless steels. Metallurgical transactions 5:4, pages 831-838.
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