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Original Articles

Structure and deformation behaviour of Ti-Al alloys containing nearly 60at.% Al

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Pages 527-550 | Received 06 Sep 1993, Accepted 14 Sep 1993, Published online: 27 Sep 2006

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Read on this site (7)

Fabienne Grégori & Patrick Veyssière. (2000) Properties of <011]{111} slip in Al-rich γ-TiAl I. Dissociation, locking and decomposition of <011] dislocations at room temperature. Philosophical Magazine A 80:12, pages 2913-2932.
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Zhe Jin, GeorgeT. Gray$suffix/text()$suffix/text() & Masaharu Yamaguchi. (2000) Deformation of a 45° 〈321〉 oriented polysynthetically twinned TiAl crystal at high strain rate and high temperature. Philosophical Magazine A 80:1, pages 49-68.
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S. Jiao, N. Bird, P.B. Hirsch & G. Taylor. (1998) Yield stress anomalies in single crystals of Ti-54.5 at.% Al: I. Overview and (011) superdislocation slip. Philosophical Magazine A 78:3, pages 777-802.
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H. Inui, M. Matsumuro, D.-H. Wu & M. Yamaguchi. (1997) Temperature dependence of yield stress, deformation mode and deformation structure in single crystals of TiAl (Ti−56 at.% Al). Philosophical Magazine A 75:2, pages 395-423.
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T. Nakano, K. Matsumoto, T. Seno, K. Oma & Y. Umakoshi. (1996) Effect of chemical ordering on the deformation mode of Al-rich Ti-Al single crystals. Philosophical Magazine A 74:1, pages 251-268.
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H. Inui, K. Kishida, M. Misaki, M. Kobayashi, Y. Shirai & M. Yamaguchi. (1995) Temperature dependence of yield stress, tensile elongation and deformation structures in polysynthetically twinned crystals of Ti-Al. Philosophical Magazine A 72:6, pages 1609-1631.
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Articles from other publishers (25)

Yingmei Tan, Ruirun Chen, Hongze Fang, Yangli Liu, Hongzhi Cui, Yanqing Su, Jingjie Guo & Hengzhi Fu. (2022) Enhanced strength and ductility in Ti46Al4Nb1Mo alloys via boron addition. Journal of Materials Science & Technology 102, pages 16-23.
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Li Wang, Xiaopeng Liang, Fuqing Jiang, Sihui Ouyang, Bin Liu & Yong Liu. (2022) Phase transformation and deformation behavior of a TiAl–Nb composite under quasi-static and dynamic loadings. Materials Science and Engineering: A 829, pages 142155.
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H.Z. Niu, R.L. Tong, X.J. Chen, T.B. Zhang & D.L. Zhang. (2021) Rapid decomposition of lamellar microstructure and enhanced hot workability of an as-cast triphase Ti–45Al–6Nb–1Mo alloy via one-step alpha-extrusion & annealing. Materials Science and Engineering: A 801, pages 140438.
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S Q Liu & J Shen. (2018) Microstructure evolution and grain refinement during hot deformation of Ti-44Al-4Nb-1.5Cr-0.1Mo-0.1B alloy. Materials Research Express 5:9, pages 096516.
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Fritz Appel, Jonathan David Heaton Paul & Michael Oehring. 2011. Gamma Titanium Aluminide Alloys. Gamma Titanium Aluminide Alloys 125 248 .
Fritz Appel, Jonathan David Heaton Paul & Michael Oehring. 2011. Gamma Titanium Aluminide Alloys. Gamma Titanium Aluminide Alloys 71 124 .
B. Liu, Y. Liu, Y.P. Li, W. Zhang & A. Chiba. (2011) Thermomechanical characterization of β-stabilized Ti–45Al–7Nb–0.4W–0.15B alloy. Intermetallics 19:8, pages 1184-1190.
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Jeoung Han Kim, Young Won Chang, Chong Soo Lee & Tae Kwon Ha. (2003) High-temperature deformation behavior of a gamma TiAl alloy—Microstructural evolution and mechanisms. Metallurgical and Materials Transactions A 34:10, pages 2165-2176.
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W.J. Zhang & F. Appel. (2002) Weak-beam TEM study on planar fault energies of Al-lean TiAl-base alloys. Materials Science and Engineering: A 334:1-2, pages 59-64.
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S.H Whang, Q Feng & Z.-M Wang. (2000) Deformation characteristics and dislocation structures in single phase gamma titanium aluminides. Intermetallics 8:5-6, pages 531-537.
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Z. Jin, C. Cady, G. T. Gray & Y. -W. Kim. (2000) Mechanical behavior of a fine-grained duplex γ-TiAl alloy. Metallurgical and Materials Transactions A 31:13, pages 1007-1016.
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Z. Jin, C. Cady, G. T. GrayIIIIII & Y. -W. Kim. (2000) Mechanical behavior of a fine-grained duplex γ-TiAl alloy. Metallurgical and Materials Transactions A 31:3, pages 1007-1016.
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W.J. Zhang, Z.C. Liu, G.L. Chen & Y.-W. Kim. (1999) Deformation mechanisms in a high-Nb containing γ–TiAl alloy at 900°C. Materials Science and Engineering: A 271:1-2, pages 416-423.
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M.H. Yoo. (1998) Twinning and mechanical behavior of titanium aluminides and other intermetallics. Intermetallics 6:7-8, pages 597-602.
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M. H. Yoo & C. L. Fu. (1998) Physical constants, deformation twinning, and microcracking of titanium aluminides. Metallurgical and Materials Transactions A 29:1, pages 49-63.
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Bing Li & Enrique J. Lavernia. (1997) Spray forming and co-injection of particulate reinforced TiAl/TiB2 composites. Acta Materialia 45:12, pages 5015-5030.
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V. Paidar, H. Inui, K. Kishida & M. Yamaguchi. (1997) Dislocation dissociation in TiAl alloys. Materials Science and Engineering: A 233:1-2, pages 111-115.
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M.A. Morris. (1997) Deformation mechanisms in fine-grained Ti-Al alloys. Materials Science and Engineering: A 224:1-2, pages 12-20.
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Haruyuki Inui & Masaharu Yamaguchi. 1997. Properties of Complex Inorganic Solids. Properties of Complex Inorganic Solids 309 320 .
M. Yamaguchi, H. Inui, S. Yokoshima, K. Kishida & D.R. Johnson. (1996) Recent progress in our understanding of deformation and fracture of two-phase and single-phase TiAl alloys. Materials Science and Engineering: A 213:1-2, pages 25-31.
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Kyosuke Kishida, Shigenobu Yokoshima, David R. Johnson, Haruyuki Inui & Masaharu Yamaguchi. 1996. Stability of Materials. Stability of Materials 547 579 .
D.G. Morris, R. Lerf & M. Leboeuf. (1995) The influence of alloying modifications on mechanical properties, phase stability, and fault energies in cubic titanium trialuminide-based alloys. Acta Metallurgica et Materialia 43:7, pages 2825-2836.
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M.H. Yoo, J. Zou & C.L. Fu. (1995) Mechanistic modeling of deformation and fracture behavior in TiAl and Ti3Al. Materials Science and Engineering: A 192-193, pages 14-23.
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M. Yamaguchi, H. Inui, K. Kishida, M. Matsumoro & Y. Shirai. (2011) Gamma Titanium Aluminide Alloys. MRS Proceedings 364.
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David G. Morris, Reto Lerf & Mireille Leboeuf. (2011) Alloying of Cubic Alloys Based on Al 3 Ti: Phase Instabilities and the Control of Fault Energies . MRS Proceedings 364.
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