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Original Articles

APB dragging in Ni3Al deformed at intermediate temperature

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Pages 17-23 | Received 02 Sep 1987, Accepted 29 Sep 1987, Published online: 20 Aug 2006

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Read on this site (13)

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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A. Korner. (1992) Octahedral cross-slip in Ni3(Al, Ti) deformed at −196°C. Philosophical Magazine Letters 65:4, pages 195-201.
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M. Yoshida & T. Takasugi. (1992) The effect of temperature on dislocation structures in l12-type ni3(si, ti) single crystals. Philosophical Magazine A 65:1, pages 41-52.
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A. Korner. (1991) Exhaustion of a[101](111) slip to explain the strength anomaly in Ni3(Al, Ti). Philosophical Magazine A 63:3, pages 407-421.
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J.A. Horto, I. Baker & M.H. Yoo. (1991) Slip-plane disordering in stoichiometric Ni3Al. Philosophical Magazine A 63:2, pages 319-335.
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A. Korner. (1989) The dislocation structure in Ni3, (Al, Ti) above the temperature of the maximum in flow stress. Philosophical Magazine Letters 60:3, pages 103-110.
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MartinA. Crimp. (1989) HREM examination of [101] screw dislocations in Ni3Al. Philosophical Magazine Letters 60:2, pages 45-50.
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P. Caron, T. Khan & P. Veyssière. (1989) {110} slip in Ni3Al crept at 760°C along [001]. Philosophical Magazine A 60:2, pages 267-281.
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P. Veyssière, M.H. Yoo, J.A. Horton & C.T. Liu. (1989) Temperature effect on superdislocation dissociation on a cube plane in Ni3Al. Philosophical Magazine Letters 59:2, pages 61-68.
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J. Douin, P. Beauchamp & P. Veyssière. (1988) Climb dissociation on {310} planes in nearly-stoichiometric Ni3Al. Philosophical Magazine A 58:6, pages 923-935.
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P. Veyssié & C.B. Carter. (1988) Dissociation of dislocations in MgAl2O4 spinel deformed at low temperatures. Philosophical Magazine Letters 57:4, pages 211-220.
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Articles from other publishers (23)

Yongkun Mu, Lunhua He, Sihao Deng, Yuefei Jia, Yandong Jia, Gang Wang, Qijie Zhai, Peter K. Liaw & Chain-Tsuan Liu. (2022) A high-entropy alloy with dislocation-precipitate skeleton for ultrastrength and ductility. Acta Materialia 232, pages 117975.
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Yulia Solov’eva, Vladimir Starenchenko, Svetlana Starenchenko & Artem Solov’ev. Deformation microstructure and positive temperature dependence of flow stress in Ni3Ge. Deformation microstructure and positive temperature dependence of flow stress in Ni3Ge.
Chang-Sup Oh & Chang-Suk Han. (2013) RETRACTED ARTICLE: Microstructure and strengthening mechanism of Ni3Al intermetallic compound. Metals and Materials International 19:5, pages 941-948.
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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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Patrick Veyssière & Georges Saada. 1996. L12 Ordered Alloys. L12 Ordered Alloys 253 441 .
Patrick Veyssiére & J. A. Horton. (2011) Some Unusual Properties of the Fine Structure of Dislocations in Ni 3 Al Deformed at High Temperature . MRS Proceedings 364.
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M. Benyoucef, N. Clément & A. Coujou. (1993) Transmission electron microscope in situ deformation of MC2 superalloy at room temperature. Materials Science and Engineering: A 164:1-2, pages 401-406.
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Dongliang Lin & Mao Wen. (1993) A weak beam study of the dislocation structure in directionally solidified Ni3Al during deformation. Materials Science and Engineering: A 164:1-2, pages 384-390.
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M. Benyoucef, N. Clément & A. Coujou. 1993. Fundamental Aspects of Dislocation Interactions. Fundamental Aspects of Dislocation Interactions 401 406 .
Dongliang Lin & Mao Wen. 1993. Fundamental Aspects of Dislocation Interactions. Fundamental Aspects of Dislocation Interactions 384 390 .
P. Veyssière. 1992. Ordered Intermetallics — Physical Metallurgy and Mechanical Behaviour. Ordered Intermetallics — Physical Metallurgy and Mechanical Behaviour 165 175 .
R Bonnet, M Loubradou, C Derder & A Catana. (1991) The core structure of a frank dislocation in Ni3(Al,Nb). Scripta Metallurgica et Materialia 25:1, pages 95-98.
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L.Z. Zhuang, I. Majewska-Glabus, R. Vetter & J. Duszczyk. (1990) Transmission electron microscopy study of the Osprey processed Cr-containing Ni3AlX intermetallic. Scripta Metallurgica et Materialia 24:11, pages 2083-2088.
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P.M. Hazzledine, M.H. Yoo & Y.Q. Sun. (1989) The geometry of glide in Ni3Al at temperatures above the flow stress peak. Acta Metallurgica 37:12, pages 3235-3244.
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Walter W. Milligan & Stephen D. Antolovich. (1989) On the mechanism of cross slip in Ni3AI. Metallurgical Transactions A 20:12, pages 2811-2818.
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P.M. Hazzledine & J.H. Schneibel. (1989) Inverse creep in Ni3Al. Scripta Metallurgica 23:11, pages 1887-1891.
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R Bonnet & A Ati. (1989) Observation par met d'interactions de dislocations aux interfaces γ/γ′ d'un superalliage biphase. Acta Metallurgica 37:8, pages 2153-2169.
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M.H. Yoo, J.A. Horton & C.T. Liu. (1988) Micromechanisms of yield and flow in ordered intermetallic alloys. Acta Metallurgica 36:11, pages 2935-2946.
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M. H. Yoo & C. T. Liu. (2011) Effect of prestress on tensile yield strength of a Ni 3 Al alloy . Journal of Materials Research 3:5, pages 845-847.
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Dennis M. Dimiduk, J. C. Williams & A. W. Thompson. (2011) On APB Dragging and APB Energy Anisotropy in Binary Ni 3 Al . MRS Proceedings 133.
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W. E. DowlingJr.Jr. & R. Gibala. (2011) The Effect of Prestrain on Deformation of Ni 3 Al Single Crystals . MRS Proceedings 133.
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Y. Q. Sun & P. M. Hazzledine. (2011) Slip Systems in Ni 3 (Al, Ti) At Temperatures Above the Peak in Flow Stress . MRS Proceedings 133.
Crossref
Patrick Veyssière. (2011) Transmission Electron Microscope Observation of Dislocations in Ordered Intermetallic Alloys and the Flow Stress Anomaly. MRS Proceedings 133.
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