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Original Articles

The orientation and temperature dependence of the work-hardening rate of single crystal Ni3(Al3, Ti)

Pages 939-949 | Received 19 Aug 1982, Accepted 29 Dec 1982, Published online: 27 Sep 2006

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Read on this site (10)

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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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.L. Cheng, E. Carreño-Morelli, N. Baluc, J. Bonneville & R. Schaller. (1999) Strain-amplitude-dependent mechanical loss at intermediate temperatures in a Ni3(Al, Ta) single crystal. Philosophical Magazine A 79:9, pages 2227-2242.
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A. Sato. (1999) Dislocation structures and dislocation sources in deformed metals. Radiation Effects and Defects in Solids 148:1-4, pages 345-360.
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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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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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Mitsuhiko Yoshida & Takayuki Takasugi. (1992) Dislocation structures in ni3(si, ti) single crystals deformed on {001} slip. Philosophical Magazine A 66:1, pages 89-102.
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Y.Q. Sun. (1992) Diffraction contrast from the displacement field of antiphase-domain-boundary tubes. Philosophical Magazine A 65:2, pages 287-309.
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Y.Q. Sun, P.M. Hazzledine, M.A. Crimp & A. Couret. (1991) The locking of 〈110〉 edge dislocations on {001} in L12 ordered compounds: High-resolution electron-microscopy observations. Philosophical Magazine A 64:2, pages 311-331.
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Articles from other publishers (35)

Rachel Osmundsen & Ian Baker. (2022) The annihilation of antiphase boundary tubes and their effect on strengthening in Ni3Al. Acta Materialia 237, pages 118185.
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O. Sahin, A. Calik, A.E. Ekinci & N. Ucar. (2007) Work hardening in Fe–Mn binary alloys. Materials Characterization 58:6, pages 571-574.
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B. Viguier. (2003) Dislocation densities and strain hardening rate in some intermetallic compounds. Materials Science and Engineering: A 349:1-2, pages 132-135.
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A.E. Ekinci, N. U�ar, G. �ankaya & B. D�zg�n. (2002) The Temperature Dependence of Work-Hardening Rate in Invar Fe-Ni Alloys. physica status solidi (a) 191:2, pages 387-390.
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B. Viguier, I.L. Martin & J. Bonneville. 2002. 459 545 .
C Rentenberger & H.P Karnthaler. (2001) On the origin of work softening of Ni3Al deformed along [001] above the peak temperature. Materials Science and Engineering: A 319-321, pages 347-351.
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Y. Yamabe-Mitarai, Y. Ro & S. Nakazawa. (2001) Temperature dependence of the flow stress of Ir-based L12 intermetallics. Intermetallics 9:5, pages 423-429.
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Seiji Miura, Keiichi Honma, Yoshihiro Terada, J.M. Sanchez & Tetsuo Mohri. (2000) Mechanical properties of Rh-based L12 intermetallic compounds Rh3Ti, Rh3Nb and Rh3Ta. Intermetallics 8:7, pages 785-791.
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D Golberg, M Demura & T Hirano. (1998) Effect of Al-rich off-stoichiometry on the yield stress of binary Ni3Al single crystals. Acta Materialia 46:8, pages 2695-2703.
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N. Uçar. (1997) Orientation and Temperature Dependence of Work-Hardening Rate in Cd Single Crystals. physica status solidi (a) 160:1, pages 29-33.
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J. Bonneville, J.-L. Martin, P. Spätig, B. Viguier & B. Matterstock. (2011) Mechanical Properties of Binary Ni3Al Single Crystals. MRS Proceedings 460.
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Patrick Veyssière & Georges Saada. 1996. L12 Ordered Alloys. L12 Ordered Alloys 253 441 .
D.C. Chrzan & M.J. Mills. 1996. L12 Ordered Alloys. L12 Ordered Alloys 187 252 .
V. Vitek, D.P. Pope & J.L. Bassani. 1996. L12 Ordered Alloys. L12 Ordered Alloys 135 185 .
Y.Q. Sun & P.M. Hazzledine. 1996. L12 Ordered Alloys. L12 Ordered Alloys 27 68 .
S.S. Ezz, Y.Q. Sun & P.B. Hirsch. (1995) Strain rate dependence of the flow stress and work hardening of γ′. Materials Science and Engineering: A 192-193, pages 45-52.
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P. Spätig, J. Bonneville & J.-L. Martin. (2011) Activation Volumes in the Yield Strength Anomaly Domain of Ni 3 (Al,Ta). . MRS Proceedings 364.
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S. S. Ezz, Y. Q. Sun & P. B. Hirsch. (2011) Strain Rate Dependence of the Flow Stress and Work-Hardening of Single Crystals of NI 3 (Al,Hf)B . MRS Proceedings 364.
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N. Baluc, J. Bonneville, K.J. Hemker, J.L. Martin, R. Schäublin & P. Spätig. (1993) On the relationship between unusual mechanical properties and deformation substructures in ordered Ni3Al. Materials Science and Engineering: A 164:1-2, pages 379-383.
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D.C. Chrzan & M.J. Mills. (1993) Collective behavior and superdislocation motion in L12 alloys. Materials Science and Engineering: A 164:1-2, pages 82-92.
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Daniel Caillard, Alain Couret & Guy Molenat. (1993) Mechanisms of yield stress anomalies in beryllium and Ni3Al. Materials Science and Engineering: A 164:1-2, pages 69-81.
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N Baluc, J Bonneville & J L Martin. (1993) Mechanical properties of L1 2 intermetallic compounds . Physica Scripta T49B, pages 393-398.
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N. Baluc, J. Bonneville, K.J. Hemker, J.L. Martin, R. Schäublin & P. Spätig. 1993. Fundamental Aspects of Dislocation Interactions. Fundamental Aspects of Dislocation Interactions 379 383 .
D.C. Chrzan & M.J. Mills. 1993. Fundamental Aspects of Dislocation Interactions. Fundamental Aspects of Dislocation Interactions 82 92 .
Daniel Caillard, Alain Couret & Guy Molenat. 1993. Fundamental Aspects of Dislocation Interactions. Fundamental Aspects of Dislocation Interactions 69 81 .
M.J. Mills & D.C. Chrzan. (1992) Dynamical simulation of dislocation motion in Ll2 alloys. Acta Metallurgica et Materialia 40:11, pages 3051-3064.
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P.M Hazzledine & Y.Q Sun. (1992) The strain field and work-hardening from antiphase boundary tubes in ordered alloys. Materials Science and Engineering: A 152:1-2, pages 189-194.
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Takeshi Kawabata, Daisuke Shindo & Kenji Hiraga. (1992) High-Resolution TEM Observations of Superdislocations in Ni<SUB>3</SUB>(Al, Ti). Materials Transactions, JIM 33:6, pages 565-570.
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P.M. Hazzledine & Y.Q. Sun. 1992. High Temperature Aluminides and Intermetallics. High Temperature Aluminides and Intermetallics 189 194 .
Y. Q. Sun & P. M. Hazzledine. 1992. Ordered Intermetallics — Physical Metallurgy and Mechanical Behaviour. Ordered Intermetallics — Physical Metallurgy and Mechanical Behaviour 177 196 .
Tomoo Suzuki, Yoshinao Mishima & Seiji Miura. (1991) Evaluation of the data for the plastic behaviour of Ni3(Al,X) single crystals. Materials Science and Engineering: A 146:1-2, pages 245-260.
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R. Chieragatti & L. Remy. (1991) Influence of orientation on the low cycle fatigue of MAR-M 200 single crystals at 650 °C II: Cyclic stress-strain behaviour. Materials Science and Engineering: A 141:1, pages 11-22.
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M.S. Kim, S. Hanada, S. Watanabe & O. Izumi. (1988) Orientation dependence of deformation and fracture behavior in Ni3(Al, Ti) single crystals at 973 K. Acta Metallurgica 36:11, pages 2967-2978.
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M.S. Kim, S. Hanada, S. Watanabe & O. Izumi. (1988) Strength and fracture of single-crystalline Ni3(Al,Ti) and Ni3(Al,Ta) intermetallic compounds at 290 K. Acta Metallurgica 36:9, pages 2615-2626.
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P.M. Hazzledine & Peter Hirsch. (2011) Antiphase Domain Boundary Tubes in Ordered Alloys. MRS Proceedings 81.
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