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Original Articles

Analysis of in situ shearing mechanisms of γ′ precipitates in a nickel-based superalloy at 1120 K

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Pages 73-78 | Received 10 Oct 1990, Accepted 20 Nov 1990, Published online: 20 Aug 2006

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F. Sun, S. Zhang, S. Tian, J. Zhang & H. Harada. (2015) Deformation twinning induced by micropores in TMS-75 superalloy. Materials Science and Technology 31:2, pages 237-242.
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M. Benyoucef, N. Clement & A. Coujou. (1995) TEM in situ straining of the MC2 superalloy at room temperature. Philosophical Magazine A 72:4, pages 1043-1056.
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Articles from other publishers (16)

P. ZHANG, Y. YUAN, Z. GAO, B. LI, G. YANG & X. SONG. (2017) Plastic deformation mechanisms in a new Ni-base single crystal superalloy at room temperature. Journal of Microscopy 268:2, pages 186-192.
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Fei Sun, Shu Zhang, Sugui Tian, Jianxin Zhang & Hiroshi Harada. (2014) Large stress concentrations around micropore near a crack-tip induced deformation twinning in Ni-based single crystal superalloy. Journal of Alloys and Compounds 586, pages 479-484.
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Shaohua Zhang, Dong Wang, Jian Zhang & Langhong Lou. (2012) Orientation Dependence of Stress Rupture Properties of a Ni-based Single Crystal Superalloy at 760 °C. Journal of Materials Science & Technology 28:3, pages 229-233.
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Koki Asari & Koji Kakehi. (2010) Creep of Nickel-Based Single Crystal Superalloy under the Constant Resolved Shearing Stress for {111}<112> Slip System. Journal of the Japan Institute of Metals 74:12, pages 820-825.
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Daniel Caillard & Alain Couret. (2009) The Hall-Petch law investigated by means of in situ straining experiments in lamellar TiAl and deformed Al. Microscopy Research and Technique 72:3, pages 261-269.
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J.X. Yang, Q. Zheng, X.F. Sun, H.R. Guan & Z.Q. Hu. (2007) Morphological evolution of γ′ phase in K465 superalloy during prolonged aging. Materials Science and Engineering: A 457:1-2, pages 148-155.
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Koji KAKEHI & Satoru TAKAHASHI. (2005) Influence of Aging Heat Treatment on Creep Strength of CMSX4. Journal of the Society of Materials Science, Japan 54:2, pages 136-142.
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M Legros, N Clément, P Caron & A Coujou. (2002) In-situ observation of deformation micromechanisms in a rafted γ/γ′ superalloy at 850°C. Materials Science and Engineering: A 337:1-2, pages 160-169.
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T.M. Pollock & R.D. Field. 2002. 547 618 .
Koji Kakehi. (2000) Effect of primary and secondary precipitates on creep strength of Ni-base superalloy single crystals. Materials Science and Engineering: A 278:1-2, pages 135-141.
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K. Kakehi. (1999) Influence of secondary precipitates and crystallographic orientation on the strength of single crystals of a Ni-based superalloy. Metallurgical and Materials Transactions A 30:5, pages 1249-1259.
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Abdelaziz Ati, Sabine Lay & Roland Bonnet. (1997) Mise en évidence de macles de déformation dans un superalliage monogranulaire γ/γ′ à base de nickel. Comptes Rendus de l'Académie des Sciences - Series IIB - Mechanics-Physics-Chemistry-Astronomy 325:9, pages 531-536.
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M. Feller-Kniepmeier & T. Kuttner. (1994) [011] Creep in a single crystal nickel base superalloy at 1033K. Acta Metallurgica et Materialia 42:9, pages 3167-3174.
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H. Rouault-Rogez, M. Dupeux & M. Ignat. (1994) High temperature tensile creep of CMSX-2 Nickel base superalloy single crystals. Acta Metallurgica et Materialia 42:9, pages 3137-3148.
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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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M. Benyoucef, N. Clément & A. Coujou. 1993. Fundamental Aspects of Dislocation Interactions. Fundamental Aspects of Dislocation Interactions 401 406 .

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