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Articles

The Low-Cycle Fatigue Behaviour of Copper at Elevated Temperatures

Pages 58-64 | Published online: 18 Jul 2013

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N. Y. Tang, D. M. R. Taplin & A. Plumtree. (1985) Schema for depicting cavity nucleation during hightemperature fatigue. Materials Science and Technology 1:2, pages 145-151.
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A. L. W. Collins, G. J. Cocks & D. M. R. Taplin. (1977) High-temperature fatigue cavitation in a copper alloy. Metal Science 11:3, pages 87-90.
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Articles from other publishers (25)

A. Vinogradov & S. Hashimoto. (1997) Effect of triple junction on fatigue crack growth in copper and copper-3at.% aluminium tricrystals. Scripta Materialia 36:4, pages 417-423.
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Afërdita Veveçka, Emanuela Cerri, Enrico Evangelista & Terence G. Langdon. (1997) Characteristics of grain boundary migration and sliding during fatigue of high purity lead. Materials Science and Engineering: A 222:1, pages 9-13.
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V. Raman & T.G. Langdon. (1989) An examination of cyclic grain boundary migration and cavitation in an Al-3% Mg solid solution alloy. Acta Metallurgica 37:2, pages 725-737.
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M. Seki, T. Horie, T. Tone, K. Nagata, K. Kitamura, Y. Shibutani, M. Shibui & T. Araki. (1988) Fatigue strength of tungsten-copper duplex structures for divertor plates. Journal of Nuclear Materials 155-157, pages 392-397.
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H. S. Betrabet & V. Raman. (1988) Microstructural observations in cyclically deformed Pb-Sn solid solution alloy. Metallurgical Transactions A 19:6, pages 1437-1443.
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Robert D. Blevins. (1988) Stress analysis of inertial heat dumps. Fusion Engineering and Design 6, pages 159-165.
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R. Raj & F.F. Lange. (1985) On the retention of equiaxed grain structure after superplastic and other forms of high temperature deformation. Acta Metallurgica 33:4, pages 699-703.
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K.C. Liu & C.M. LoringJr.Jr.. (1984) Low-cycle fatigue behavior of oxygen-free high-conductivity copper at 300°C in high vacuum. Journal of Nuclear Materials 122:1-3, pages 783-788.
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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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Parviz Yavari & Terence G. Langdon. (1983) An examination of grain boundary migration during high temperature fatigue of aluminum—I. Microstructural observations. Acta Metallurgica 31:10, pages 1595-1603.
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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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Vedantham Raman & Terence G. Langdon. (1983) Observations of cyclic grain boundary migration in aluminium after large numbers of fatigue cycles. Journal of Materials Science Letters 2:4, pages 180-182.
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L. F. Coffin. 1983. Fatigue. Fatigue 1 40 .
M. C. MURPHY. (2007) THE ENGINEERING FATIGUE PROPERTIES OF WROUGHT COPPER* † . Fatigue & Fracture of Engineering Materials & Structures 4:3, pages 199-234.
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A. M. Hammad, K. A. Padmanabhan & T. R. Anantharaman. (1980) On the possible mechanism(s) of fracture in commercial aluminium. Journal of Materials Science 15:8, pages 2136-2139.
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L.F. Coffin. 1978. Advances in Research on the Strength and Fracture of Materials. Advances in Research on the Strength and Fracture of Materials 263 292 .
Vakil Singh, P. Rama Rao, G. J. Cocks & D. M. R. Taplin. (1977) On the formation of the diamond grain configuration during high temperature creep and fatigue. Journal of Materials Science 12:2, pages 373-383.
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D. H. Sastry, Y. V. R. K. Prasad, K. I. Vasu & P. Rama Rao. (1973) On the orientation of grain boundaries in cadmium recrystallized during hot deformation. Journal of Materials Science 8:10, pages 1517-1519.
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Vakil Singh, P. Rama Rao & D. M. R. Taplin. (1973) On the role of grain-boundary migration during the creep of zinc. Journal of Materials Science 8:3, pages 373-381.
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H. J. Westwood & D. M. R. Taplin. (1972) The role of grain boundary migration during low-cycle fatigue of α-iron at 450° to 700°C. Metallurgical Transactions 3:7, pages 1959-1965.
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H.J. Westwood & D.M.R. Taplin. (1972) Intergranular fatigue cavitation of alpha-iron at elevated temperatures. Materials Science and Engineering 9, pages 118-120.
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