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Original Articles

TEM in situ straining experiments in Fe at low temperature

Pages 517-526 | Received 05 Feb 2009, Accepted 13 Jun 2009, Published online: 29 Jul 2009

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Beñat Gurrutxaga–Lerma, Jonas Verschueren, Adrian P. Sutton & Daniele Dini. (2021) The mechanics and physics of high-speed dislocations: a critical review. International Materials Reviews 66:4, pages 215-255.
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C R Weinberger, B L Boyce & C C Battaile. (2013) Slip planes in bcc transition metals. International Materials Reviews 58:5, pages 296-314.
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P.A. Gordon, T. Neeraj & M.I. Mendelev. (2011) Screw dislocation mobility in BCC Metals: a refined potential description for α-Fe. Philosophical Magazine 91:30, pages 3931-3945.
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Articles from other publishers (16)

M. Roldán, F.J. Sánchez & R. Vila. (2022) On the strain effect in dislocation loops produced by self-ion irradiation to emulate in-service reactor condition. Nuclear Instruments and Methods in Physics Research Section B: Beam Interactions with Materials and Atoms 516, pages 23-30.
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Marta Pozuelo, Katherine Jiang & Jaime Marian. (2021) Separation of Time Scales of Plastic Instabilities During Microscale Deformation of bcc Fe. Metallurgical and Materials Transactions A 52:9, pages 4275-4289.
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N. Amadou, T. De Resseguier, A. Dragon & E. Brambrink. (2020) Effects of orientation, lattice defects and temperature on plasticity and phase transition in ramp-compressed single crystal iron. Computational Materials Science 172, pages 109318.
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Z.Y. Xia, Z.J. Zhang, J.B. Yang & Z.F. Zhang. (2018) Quantitative analysis of the yield behavior of a 〈1 1 1〉/2 screw dislocation in α-iron. Computational Materials Science 148, pages 207-215.
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A.B. Hagen & C. Thaulow. (2016) Low temperature in-situ micro-compression testing of iron pillars. Materials Science and Engineering: A 678, pages 355-364.
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Michael D. Grapes, Yong Zhang, Melissa K. Santala, Thomas Voisin, Geoffrey H. Campbell & Timothy P. Weihs. 2016. MEMS and Nanotechnology, Volume 5. MEMS and Nanotechnology, Volume 5 25 30 .
Nathalie Tarrat, Magali Benoit, Daniel Caillard, Lisa Ventelon, Nicolas Combe & Joseph Morillo. (2014) Screw dislocation in hcp Ti : DFT dislocation excess energies and metastable core structures. Modelling and Simulation in Materials Science and Engineering 22:5, pages 055016.
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Jochen Lohmiller, Ralph Spolenak & Patric A. Gruber. (2014) Alloy-dependent deformation behavior of highly ductile nanocrystalline AuCu thin films. Materials Science and Engineering: A 595, pages 235-240.
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J. Lohmiller, R. Baumbusch, M.B. Kerber, A. Castrup, H. Hahn, E. Schafler, M. Zehetbauer, O. Kraft & P.A. Gruber. (2013) Following the deformation behavior of nanocrystalline Pd films on polyimide substrates using in situ synchrotron XRD. Mechanics of Materials 67, pages 65-73.
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J. Veselý, J. Bonneville, C. Coupeau, Y. Nahas, J. Kopeček & M. Cieslar. (2013) Bow–tie slip traces in Fe80Al20 single crystals deformed at room temperature. Materials Science and Engineering: A 565, pages 258-261.
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Jean-Louis Boutard, Sergei Dudarev & Michael Rieth. (2011) Modelling structural and plasma facing materials for fusion power plants: Recent advances and outstanding issues in the EURATOM fusion materials programme. Journal of Nuclear Materials 417:1-3, pages 1042-1049.
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S Aubry, S P Fitzgerald, S L Dudarev & W Cai. (2011) Equilibrium shape of dislocation shear loops in anisotropic α-Fe. Modelling and Simulation in Materials Science and Engineering 19:6, pages 065006.
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M. Legros, D.S. Gianola & C. Motz. (2011) Quantitative In Situ Mechanical Testing in Electron Microscopes . MRS Bulletin 35:5, pages 354-360.
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D. Caillard. (2010) Kinetics of dislocations in pure Fe. Part II. In situ straining experiments at low temperature. Acta Materialia 58:9, pages 3504-3515.
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D. Caillard. (2010) Kinetics of dislocations in pure Fe. Part I. In situ straining experiments at room temperature. Acta Materialia 58:9, pages 3493-3503.
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J. Markmann, D. Bachurin, L. Shao, P. Gumbsch & J. Weissmüller. (2010) Microstrain in nanocrystalline solids under load by virtual diffraction. EPL (Europhysics Letters) 89:6, pages 66002.
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