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Original Articles

High-resolution electron microscopy of twin interfaces in massively transformed γ-TiAl

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Pages 975-991 | Received 12 Mar 1996, Published online: 13 Sep 2006

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Guoming Zheng, Bin Tang, Wei Chen, Songkuan Zhao, Yizhen Xie, Xiaofei Chen, Jinshan Li & Lei Zhu. (2023) Long-period stacking ordering induced ductility of nanolamellar TiAl alloy at elevated temperature. Materials Research Letters 11:6, pages 414-421.
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W. Lefebvre, A. Loiseau, M. Thomas & A. Menand. (2002) Influence of oxygen on the α → γ massive transformation in a Ti-48 at.% Al alloy. Philosophical Magazine A 82:11, pages 2341-2355.
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Articles from other publishers (18)

Xuyang Wang, Jieren Yang, Rui Hu, Zitong Gao, Jinguang Li & Hengzhi Fu. (2020) Creep-Induced Phase Instability and Microstructure Evolution of a Nearly Lamellar Ti–45Al–8.5Nb–(W, B, Y) Alloy. Acta Metallurgica Sinica (English Letters) 33:12, pages 1591-1600.
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Zhiwu Shi, Hua Wei, Hongyu Zhang, Tao Jin, Xiaofeng Sun & Qi Zheng. (2016) Nanotwinned Ti(O,C) induced by oriented attachment in a hot-pressed Nb–Ti–Al alloy. Acta Materialia 105, pages 114-120.
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Hui Zhang, Yifa Qin, Tao Hu, Xiaohui Wang & Yanchun Zhou. (2015) On the Faceted and Inclined Twin Boundary of Titanium Carbide Derived from Nanolaminated Ti 3 AlC 2 . Journal of the American Ceramic Society 98:5, pages 1664-1667.
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Hosni Idrissi, Behnam Amin-Ahmadi, Binjie Wang & Dominique Schryvers. (2014) Review on TEM analysis of growth twins in nanocrystalline palladium thin films: Toward better understanding of twin-related mechanisms in high stacking fault energy metals. physica status solidi (b) 251:6, pages 1111-1124.
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Behnam Amin-Ahmadi, Hosni Idrissi, Renaud Delmelle, Thomas Pardoen, Joris Proost & Dominique Schryvers. (2013) High resolution transmission electron microscopy characterization of fcc → 9R transformation in nanocrystalline palladium films due to hydriding. Applied Physics Letters 102:7.
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Fritz Appel, Jonathan David Heaton Paul & Michael Oehring. 2011. Gamma Titanium Aluminide Alloys. Gamma Titanium Aluminide Alloys 313 356 .
C.L. Chen, W. Lu, Y.Y. Cui, L.L. He & H.Q. Ye. (2009) High-resolution image simulation of overlap structures in TiAl alloy. Journal of Alloys and Compounds 468:1-2, pages 179-186.
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Julius C. Schuster & Martin Palm. (2006) Reassessment of the binary Aluminum-Titanium phase diagram. Journal of Phase Equilibria and Diffusion 27:3, pages 255-277.
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Williams Lefebvre, Alain Menand & Annick Loiseau. (2003) Influence of oxygen on phase transformations in a Ti-48 At. pct Al alloy. Metallurgical and Materials Transactions A 34:10, pages 2067-2075.
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Roland Ducher, Bernard Viguier & Jacques Lacaze. (2002) Modification of the crystallographic structure of γ-TiAl alloyed with iron. Scripta Materialia 47:5, pages 307-313.
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G. K. Dey. 2002. Science and Technology of Interfaces. Science and Technology of Interfaces 33 44 .
F. Appel, M. Oehring & R. Wagner. (2000) Novel design concepts for gamma-base titanium aluminide alloys. Intermetallics 8:9-11, pages 1283-1312.
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E Abe, M Ohnuma & M Nakamura. (1999) The structure of a new ε-phase formed during the early stage of crystallization of Ti–48 at.% Al amorphous film. Acta Materialia 47:13, pages 3607-3616.
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F. Appel & R. Wagner. (1998) Microstructure and deformation of two-phase γ-titanium aluminides. Materials Science and Engineering: R: Reports 22:5, pages 187-268.
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T. Waitz & H. P. Karnthaler. (1998) Analysis of HRTEM Contrast of Overlapping Structures at Transformation Interfaces. physica status solidi (a) 166:1, pages 107-114.
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E. Abe, K. Niinobe, M. Nobuki, M. Nakamura & T. Tsujimoto. (2011) High-Temperature Phase Transformation in Cr Added TiAl Base Alloy. MRS Proceedings 552.
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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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Tatsuo Kumagai & Morihiko Nakamura. (1998) Microstructure evolution through the α→γ phase transformation in a Ti-48 At. pct Al alloy. Metallurgical and Materials Transactions A 29:1, pages 19-26.
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