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Original Articles

Description of low-temperature interstitial hardening of the b.c.c. lattice from in situ experiments

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Pages 205-221 | Received 16 Mar 1978, Accepted 02 Jun 1978, Published online: 27 Sep 2006

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A. Couret. (1999) An in-situ study of ordinary dislocation glide in γ-TiAl alloys. Philosophical Magazine A 79:8, pages 1977-1994.
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K. Masuda & A. Sato. (1981) Electronic theory for screw dislocation motion in dilute b.c.c. transition metal alloys. Philosophical Magazine A 44:4, pages 799-814.
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Lauren T W Fey, Abigail Hunter & Irene J Beyerlein. (2024) Role of diffusing interstitials on dislocation glide in refractory body centered cubic metals. Modelling and Simulation in Materials Science and Engineering 32:4, pages 045001.
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S. Haouala, R. Alizadeh, T.R. Bieler, J. Segurado & J. LLorca. (2020) Effect of slip transmission at grain boundaries in Al bicrystals. International Journal of Plasticity 126, pages 102600.
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Sarra Haouala, Javier Segurado & Javier LLorca. (2018) An analysis of the influence of grain size on the strength of FCC polycrystals by means of computational homogenization. Acta Materialia 148, pages 72-85.
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D. Cédat, O. Fandeur, C. Rey & D. Raabe. (2012) Polycrystal model of the mechanical behavior of a Mo–TiC30 vol.% metal–ceramic composite using a three-dimensional microstructure map obtained by dual beam focused ion beam scanning electron microscopy. Acta Materialia 60:4, pages 1623-1632.
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. 2011. Grain Boundaries and Crystalline Plasticity. Grain Boundaries and Crystalline Plasticity 109 163 .
Maximilien Libert, Colette Rey, Ludovic Vincent & Bernard Marini. (2011) Temperature dependant polycrystal model application to bainitic steel behavior under tri-axial loading in the ductile–brittle transition. International Journal of Solids and Structures 48:14-15, pages 2196-2208.
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D. Caillard. (2011) An in situ study of hardening and softening of iron by carbon interstitials. Acta Materialia 59:12, pages 4974-4989.
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Denis Cedat, Maximilien Libert, Marion Le flem, Olivier Fandeur, Colette Rey, Michel Clavel & Jean-Hubert Schmitt. (2009) Experimental characterization and mechanical behaviour modelling of molybdenum–titanium carbide composite for high temperature applications. International Journal of Refractory Metals and Hard Materials 27:2, pages 267-273.
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Francois Louchet & Hiroyasu Saka. (2003) Comments on the paper: observation of dislocation dynamics in the electron microscope, by B.W. Lagow et al.. Materials Science and Engineering: A 352:1-2, pages 71-75.
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H. W. Wang, D. Z. Yang, W. D. Shi & S. Patu. (2004) Low-cycle fatigue of polycrystalline α-iron modified by mutually immiscible silver-ion implantation. Journal of Materials Science 30:20, pages 5073-5077.
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S. Farenc, D. Caillard & A. Couret. (1993) An in situ study of prismatic glide in α titanium at low temperatures. Acta Metallurgica et Materialia 41:9, pages 2701-2709.
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I. M. Wolff & A. Ball. (1992) Substitutional alloying and deformation modes in high chromium ferritic alloys. Metallurgical Transactions A 23:2, pages 627-638.
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T. Mifune, A. Urakami, A. Sato & M. Meshii. (1989) Electron irradiation hardening of magnesium and zinc single crystals at 4.2 K. Journal of Nuclear Materials 169, pages 64-72.
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Makio IINO. (1988) Hydrogen-Defect Interactions and Hydrogen-Induced Embrittlement in Iron and Steel (1). Tetsu-to-Hagane 74:4, pages 601-608.
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H. Matsui & O. Yoshinari. (1986) Radiation hardening of zone-refined iron by 14 MeV neutrons. Journal of Nuclear Materials 141-143, pages 851-854.
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P. Ferguson. (1985) Mechanical properties of nitrogen-ferrite. Metallurgical Transactions A 16:1, pages 45-50.
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K. Oguri, S. Takaki & H. Kimura. (1982) Hydrogen-induced softening and hardening in high purity FeC alloys. Materials Science and Engineering 53:2, pages 223-232.
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H. Gleiter. 1982. Strength of Metals and Alloys (ICSMA 6). Strength of Metals and Alloys (ICSMA 6) 1009 1024 .
M.I. Ripley & J.W. Christian. 1982. Strength of Metals and Alloys (ICSMA 6). Strength of Metals and Alloys (ICSMA 6) 319 325 .
R. J. Arsenault & T. W. Cadman. (1980) The effect of impurity interstitials on the lattice resistance to dislocation motion. Metallurgical Transactions A 11:1, pages 127-134.
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Y. Aono, K. Kitajima & E. Kuramoto. (1980) Plastic deformation of FeN single crystals in the temperature range between 4.2 and 300 K. Scripta Metallurgica 14:3, pages 321-324.
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F. Louchet & L. P. Kubin. (1979) Dislocation processes in B.C.C. metals. Physica Status Solidi (a) 56:1, pages 169-176.
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L.P. Kubin, F. Louchet, J.P. Peyrade, P. Groh & J.P. Cottu. (1979) Analysis of softening in the FeC system from in situ and conventional tensile experiments—II. Conventional experiments. Acta Metallurgica 27:3, pages 343-350.
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L.P. Kubin & F. Louchet. (1979) Analysis of softening in the FeC system from in situ and conventional experiments-I. In situ experiments. Acta Metallurgica 27:3, pages 337-342.
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L.P. Kubin & J.L. Martin. 1979. Strength of Metals and Alloys. Strength of Metals and Alloys 1639 1660 .
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B. Šesták. (2006) Plastic Deformation of BCC Metals — Open Problems. Kristall und Technik 14:11, pages 1298-1302.
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