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Original Articles

The dislocation structure in L12 ordered alloy Ni3Ge

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Pages 1013-1025 | Received 24 Aug 1993, Accepted 15 May 1994, Published online: 27 Sep 2006

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Read on this site (4)

Y. M. Wang-Koh. (2017) Understanding the yield behaviour of L12-ordered alloys. Materials Science and Technology 33:8, pages 934-943.
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Yifeng Liao & Ian Baker. (2011) In situ TEM observations of dislocation/anti-phase boundary interactions. Philosophical Magazine 91:24, pages 3242-3252.
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S. Ueta, K. Jumonji, K. Kanazawa, M. Kato & A. Sato. (1997) Cube slips and anomalous strengthening in Ni3Ge single crystals. Philosophical Magazine A 75:2, pages 563-585.
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Articles from other publishers (14)

Bo Xiao, Jun Zhang, Shaofei Liu, Yinghao Zhou, Jiang Ju, Ji-Jung Kai, Yilu Zhao, Xiawei Yang, Lianyong Xu, Shijun Zhao & Tao Yang. (2024) Ultrahigh intermediate-temperature strength and good tensile plasticity in chemically complex intermetallic alloys via lamellar architectures. Acta Materialia 262, pages 119459.
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Tian Ning, Tian Sugui, Yan Huajin, Shu Delong, Zhang Shunke & Zhao Guoqi. (2019) Deformation mechanisms and analysis of a single crystal nickel-based superalloy during tensile at room temperature. Materials Science and Engineering: A 744, pages 154-162.
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R. E. Voskoboinikov. (2013) Effective γ-surfaces in {111} plane in FCC Ni and L12 Ni3Al intermetallic compound. The Physics of Metals and Metallography 114:7, pages 545-552.
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E. V. Kozlov, Yu. A. Abzaev, Yu. V. Solov’eva, V. A. Starenchenko & N. A. Koneva. (2009) Ni3Al and Ni3Ge. Energy of plane surface defects and abnormal temperature dependence of flow stress. Bulletin of the Russian Academy of Sciences: Physics 73:8, pages 1022-1026.
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R E Voskoboinikov & C M F Rae. (2009) A new γ-surface in {111} plane in L1 2 Ni 3 Al . IOP Conference Series: Materials Science and Engineering 3, pages 012009.
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Yu‐Chuan Wu, Sea‐Fue Wang & Hong‐Yang Lu. (2006) Migration of Half Partial Dislocations in the Planar Fault Plane of Hexagonal Barium Titanate. Journal of the American Ceramic Society 90:1, pages 230-237.
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N. A. Koneva, Yu.V. Solov'eva, V. A. Starenchenko & E. V. Kozlov. (2011) Parameters of Dislocation Structure and Work Hardening of Ni 3 Ge . MRS Proceedings 842.
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A. Sato & M. Nagao. 2004. Encyclopedia of Materials: Science and Technology. Encyclopedia of Materials: Science and Technology 1 14 .
G.F. Dirras, J. Douin & A.P. Garnier. (2001) Relating the mechanical properties of a pseudo-binary a L12 alloy to the deformation induced microstructure. Materials Science and Engineering: A 319-321, pages 372-374.
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T.J Balk, Mukul Kumar & K.J Hemker. (2001) Influence of Fe substitutions on the deformation behavior and fault energies of Ni3Ge–Fe3Ge L12 intermetallic alloys. Acta Materialia 49:10, pages 1725-1736.
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T.J. Balk, Mukul Kumar & K.J. Hemker. (1998) Relating alloy chemistry, dislocation structure and flow strength in the (NixFe1−x)3Ge system. Scripta Materialia 39:4-5, pages 577-582.
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Jian-Sheng Wang. (1998) Dislocation nucleation and the intrinsic fracture behavior of L12 intermetallic alloys. Acta Materialia 46:8, pages 2663-2674.
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J. Fang & E.M. Schulson. (1996) Microstructures of rapidly solidified powder and extruded rod of Ni3Ge. Materials Characterization 37:1, pages 23-30.
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T. John Balk, Mukul Kumar & Kevin J. Hemker. (2011) Relating Mechanical Properties with Dislocation Cores in Ni 3 Ge-Fe 3 Ge Intermetallic Alloys . MRS Proceedings 460.
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