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Original Articles

Transmission electron microscopy in-situ deformation study of {111} zigzag transgranular cracks in the L12 intermetallic compound Ni3Ge

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Pages 1117-1127 | Published online: 04 Mar 2011

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L. Liu, H.C. Wu, J. Wang, S.K. Gong & S.X. Mao. (2014) Twinning-dominated nucleation, propagation and deflection of crack in molybdenum characterized with in situ transmission electron microscopy. Philosophical Magazine Letters 94:4, pages 225-232.
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Z.W. Shan, X. Wu, L. Liu, J.H. Yang & Y.B. Xu. (2001) Insitu transmission electron microscopy investigation of crack propagation in single crystal Ni3Al. Materials Science and Technology 17:11, pages 1398-1402.
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ScottX. Mao & Xiang-Ping Li. (1999) Nucleation of nanocracks by a quasicleavage process in a dislocation-free zone. Philosophical Magazine A 79:8, pages 1817-1837.
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F. Appel, U. Christoph & R. Wagner. (1995) An electron microscope study of deformation and crack propagation in (α2 + γ) titanium aluminides. Philosophical Magazine A 72:2, pages 341-360.
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Articles from other publishers (6)

H.L Huang & N.J Ho. (2000) The microstructure of the fatigue crack tip in Fe–Al–Mn–0.4% C alloy near the stress intensity threshold. Materials Science and Engineering: A 293:1-2, pages 235-241.
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Scott X. Mao & L. Qiao. (1998) Transgranular cleavage fracture of Fe3Al intermetallics induced by moisture and aqueous environments. Materials Science and Engineering: A 258:1-2, pages 187-195.
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X. Mao & L. Qiao. (1996) Hydrogen-induced cleavage fracture of Fe3Al-based intermetallics. Metallurgical and Materials Transactions A 27:12, pages 3949-3956.
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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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E. M. Schulson. 1996. Physical Metallurgy and processing of Intermetallic Compounds. Physical Metallurgy and processing of Intermetallic Compounds 56 94 .
A.E. Romanov & E.C. Aifantis. (1994) Defect kinetics in crack instabilities. Scripta Metallurgica et Materialia 30:10, pages 1293-1298.
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