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Original Articles

The strain rate sensitivity of the flow stress and the mechanism of deformation of single crystals of Ni3(Al Hf)B

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Pages 105-127 | Received 15 Jun 1993, Accepted 29 Jul 1993, Published online: 27 Sep 2006

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Read on this site (15)

Tomas Kruml & Jean-Luc Martin. (2013) Dislocation densities and internal stress in Ni3Al. Philosophical Magazine 93:1-3, pages 50-59.
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Y. S. Choi, D. M. Dimiduk, M. D. Uchic & T. A. Parthasarathy. (2007) Modelling plasticity of Ni3Al-based L12 intermetallic single crystals. II. Two-step ( 1 and 2) deformation behaviour. Philosophical Magazine 87:30, pages 4759-4775.
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Y. S. Choi, D. M. Dimiduk, M. D. Uchic & T. A. Parthasarathy. (2007) Modelling plasticity of Ni3Al-based L12 intermetallic single crystals. I. Anomalous temperature dependence of the flow behaviour§ . Philosophical Magazine 87:12, pages 1939-1965.
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Sandip Ghosh Chowdhury & R. K. Ray. (2005) Violation of Schmid's law and tension–compression asymmetry in L12 alloys: role of ordered structure. Materials Science and Technology 21:2, pages 211-217.
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S.-T. Chiou & W.-S. Lee. (2003) Plastic deformation and fracture response of 304 stainless steel subjected to dynamic shear loading. Materials Science and Technology 19:9, pages 1266-1272.
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T. Murakumo, S. Ueta, A. Miyahara, T. Hannuki & A. Sato. (2000) Irradiation induced defects in deformed Ni3Ge and Ni3Al single crystals. Philosophical Magazine A 80:4, pages 893-918.
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B. Devincre, P. Veyssière & G. Saada. (1999) Simulation of the plastic flow in Ni3Al: Work hardening and strain-rate sensitivity. Philosophical Magazine A 79:7, pages 1609-1627.
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Benoit Devincre, Patrick Veyssière, LadislasP. Kubin & Georges Saada. (1997) A simulation of dislocation dynamics and of the flow stress anomaly in L12 alloys. Philosophical Magazine A 75:5, pages 1263-1286.
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P.B. Hirsch. (1996) Kear-Wilsdorf locks, jogs and the formation of antiphase-boundary tubes in Ni3Al. Philosophical Magazine A 74:4, pages 1019-1040.
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Xiaoli Shi, Georges Saada & Patrick Veyssiére. (1996) The effect of prestraining temperature on the mechanical behaviour of Ni3(Al, Hf) single crystals. Philosophical Magazine A 73:5, pages 1419-1438.
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S.S. Ezz & P.B. Hirsch. (1996) The effect of room temperature deformation on the yield stress anomaly in Ni3(AlHf) B. Philosophical Magazine A 73:4, pages 1069-1082.
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K. Jumonji, S. Ueta, A. Miyahara, M. Kato & A. Sato. (1996) Rapid work hardening caused by cube cross slip in Ni3Al single crystals. Philosophical Magazine A 73:2, pages 345-364.
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D.M. Dimiduk & T.A. Parthasarathy. (1995) Implications from pre-straining experiments on emerging kink-based models for anomalous flow in L12 alloys. Philosophical Magazine Letters 71:1, pages 21-31.
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H.F. Yu, I.P. Jones & R.E. Smallman. (1994) The effects of temperature, composition and strain rate on the deformation microstructure of Ni3Al. Philosophical Magazine A 70:6, pages 951-967.
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Enze Chen, Artur Tamm, Tao Wang, Mario E. Epler, Mark Asta & Timofey Frolov. (2022) Modeling antiphase boundary energies of Ni3Al-based alloys using automated density functional theory and machine learning. npj Computational Materials 8:1.
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Kwai S. Chan. (2020) Mechanistic Modeling of Strain Hardening in Ni-Based Superalloys. Metallurgical and Materials Transactions A 51:11, pages 5653-5666.
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C. Coupeau, J. Michel, J. Bonneville & M. Drouet. (2020) An atomic-scale insight into Ni3Al slip traces. Materialia 9, pages 100563.
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K. S. Chan. (2018) MicroROM: A Physics-Based Constitutive Model for Ni-Based Superalloys. Metallurgical and Materials Transactions A 49:11, pages 5353-5367.
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Yu. V. Solov’eva, V. A. Starenchenko, O. D. Pantyukhova, S. V. Starenchenko, A. N. Solov’ev & M. V. Gettinger. (2017) Anomalous Strain Rate Sensitivity of Flow Stress in Ni3Ge Single Crystals. The role of Point Defects. Russian Physics Journal 60:3, pages 494-501.
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