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Original Articles

Grain boundary sliding as a deformation mechanism during creep

Pages 689-700 | Received 16 Feb 1970, Published online: 20 Aug 2006

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (31)

Jacques Lamon. (2020) Review: creep of fibre-reinforced ceramic matrix composites. International Materials Reviews 65:1, pages 28-62.
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Sagi Sheinkman & Dan Mordehai. (2016) Climb via vacancy diffusion of edge dislocations in 2D dislocation microstructures. Philosophical Magazine 96:26, pages 2779-2799.
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B. Kombaiah & K. Linga Murty. (2015) High temperature creep and deformation microstructures in recrystallized Zircaloy-4. Philosophical Magazine 95:15, pages 1656-1679.
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H. Li, C.J. Boehlert, T.R. Bieler & M.A. Crimp. (2015) Examination of the distribution of the tensile deformation systems in tension and tension-creep of Ti-6Al-4V (wt.%) at 296 K and 728 K. Philosophical Magazine 95:7, pages 691-729.
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H. Li, D.E. Mason, Y. Yang, T.R. Bieler, M.A. Crimp & C.J. Boehlert. (2013) Comparison of the deformation behaviour of commercially pure titanium and Ti–5Al–2.5Sn(wt.%) at 296 and 728 K. Philosophical Magazine 93:21, pages 2875-2895.
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Shinya Azuma, Naoya Shibata, Teruyasu Mizoguchi, Scott D. Findlay, Kaoru Nakamura & Yuichi Ikuhara. (2013) Atomic structure, energetics, and chemical bonding of Y doped Σ13 grain boundaries in α-Al2O3 . Philosophical Magazine 93:10-12, pages 1158-1171.
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S. Azuma, N. Shibata, S.D. Findlay, T. Mizoguchi, T. Yamamoto & Y. Ikuhara. (2010) HAADF-STEM observations of a Σ13 grain boundary in α-Al2O3 from two orthogonal directions. Philosophical Magazine Letters 90:8, pages 539-546.
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C.J. Boehlert, S.C. Longanbach & T.R. Bieler. (2008) Effect of thermomechanical processing on the creep behaviour of Udimet alloy 188. Philosophical Magazine 88:5, pages 641-664.
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H. Yoshida, T. Yamamoto, Y. Ikuhara & T. Sakuma. (2002) A change in the chemical bonding strength and high-temperature creep resistance in Al2O3 with lanthanoid oxide doping. Philosophical Magazine A 82:3, pages 511-525.
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V. Venkatesh & H.J. Rack. (1999) Influence of microstructural instabilities on elevated temperature creep deformation of Inconel* 690. Materials Science and Technology 15:4, pages 408-412.
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J. Wadsworth. (1999) Fine structure superplastic intermetallics. International Materials Reviews 44:2, pages 59-75.
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Tai‐Gang Nieh & Jeffrey Wadsworth. (1998) Fine‐structure superplasticity in materials. Journal of the Chinese Institute of Engineers 21:6, pages 659-689.
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Bing-Qiang Han. (1998) Theory of high-strain-rate superplastic flow in particulate-reinforced aluminium composites. Philosophical Magazine A 77:5, pages 1127-1145.
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A. Baldan. (1997) Thin section size and grain size dependent Monkman–Grant ductility of a nicltel base superalloy. Materials Science and Technology 13:12, pages 1033-1038.
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F. Li. (1997) Microstructural evolution and mechanismsof superplasticity in an Al-4-5%Mg alloy. Materials Science and Technology 13:1, pages 17-23.
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Anne Hynes & Robert Doremus. (1996) Theories of Creep in Ceramics. Critical Reviews in Solid State and Materials Sciences 21:2, pages 129-187.
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A. H. Chokshi & T. G. Langdon. (1991) Characteristics of creep deformation in ceramics. Materials Science and Technology 7:7, pages 577-584.
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S. J. Bane, J. Bradfield & M. R. Edwards. (1986) Tensile behaviour of mechanically alloyed precipitation hardened aluminium alloy IN 9021. Materials Science and Technology 2:10, pages 1025-1030.
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Keith Reading & DavidA. Smith. (1985) A dynamic lattice dislocation grain boundary sliding mechanism. Philosophical Magazine A 51:1, pages 71-78.
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Tadao Watanabe, Shin-Ichiro Kimura & Seiichi Karashima. (1984) The effect of a grain boundary structural transformation on sliding in <1010>-tilt zinc bicrystals. Philosophical Magazine A 49:6, pages 845-864.
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V. Guttmann & R. Bürgel. (1983) Creep–structural relationship in steel alloy 800 H at 900–1000°C. Metal Science 17:11, pages 549-555.
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C.M. F. Rae & D.A. Smith. (1980) On the mechanisms of grain boundary migration. Philosophical Magazine A 41:4, pages 477-492.
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K. Matsuki, K. Minami, M. Tokizawa & Y. Murakami. (1979) Superplastic behaviour in nominally single-phase and two-phase AI-Cu alloys. Metal Science 13:11, pages 619-626.
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Tadao Watanabe, Masayuki Yamada, Seiichi Karashima & Seishi Shima. (1979) Misorientation dependence of grain boundary sliding in 〈1010〉 tilt zinc bicrystals. Philosophical Magazine A 40:5, pages 667-683.
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R.C. Pond, D.A. Smith & P.W. J. Southerden. (1978) On the role of grain boundary dislocations in high temperature creep. Philosophical Magazine A 37:1, pages 27-40.
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WilliamE. Snowden & JosephA. Pask. (1974) High-temperature deformation of polycrystalline magnesium oxide. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 29:3, pages 441-455.
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Terence G. Langdon. (1974) The significance of grain boundaries in high-temperature creep. Canadian Metallurgical Quarterly 13:1, pages 223-228.
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D.M. Moon & R. Stickler. (1971) Creep of fine wires of powder metallurgical tungsten. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 24:191, pages 1087-1094.
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G. Buzzichelli & A. Mascanzoni. (1971) On the generation and motion of grain boundary dislocations in steel. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 24:189, pages 497-508.
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TerenceG. Langdon. (1970) An estimate of the time to fracture due to triple point cracking. The Philosophical Magazine: A Journal of Theoretical Experimental and Applied Physics 22:179, pages 0945-0948.
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