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Original Articles

Dislocation configurations around a nanoindentation in the surface of a fcc metal

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Pages 485-502 | Published online: 14 Nov 2010

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E. Carrasco, O. Rodríguez De La Fuente & J. M. Rojo. (2008) Dislocation emission at the onset of plasticity during nanoindentation in gold. Philosophical Magazine 88:3, pages 281-296.
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Articles from other publishers (8)

O Rodríguez de la Fuente, M A González-Barrio, V Navarro, B M Pabón, I Palacio & A Mascaraque. (2013) Surface defects and their influence on surface properties. Journal of Physics: Condensed Matter 25:48, pages 484008.
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William Paul, David Oliver, Yoichi Miyahara & Peter Grütter. (2013) Transient adhesion and conductance phenomena in initial nanoscale mechanical contacts between dissimilar metals. Nanotechnology 24:47, pages 475704.
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V Navarro, O Rodríguez de la Fuente, A Mascaraque & J M Rojo. (2009) Plastic properties of gold surfaces nanopatterned by ion beam sputtering. Journal of Physics: Condensed Matter 21:22, pages 224023.
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YONG X. GAN & XI CHEN. (2012) MACRO- AND MICROSCOPIC APPROACHES TO PLANE STRAIN DEFORMATION STATES OF FACE-CENTERED CUBIC METALS UNDER WEDGE INDENTATION. International Journal of Applied Mechanics 01:01, pages 41-60.
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Jakob Engbæk, Jakob Schiøtz, Bjarke Dahl-Madsen & Sebastian Horch. (2006) Atomic structure of screw dislocations intersecting the surface: A combined scanning tunneling microscopy and molecular dynamics study . Physical Review B 74:19.
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Christopher A. Schuh. (2006) Nanoindentation studies of materials. Materials Today 9:5, pages 32-40.
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E. Carrasco, M.A. González, O. Rodríguez de la Fuente & J.M. Rojo. (2004) Analysis at atomic level of dislocation emission and motion around nanoindentations in gold. Surface Science 572:2-3, pages 467-475.
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F. El Gabaly, R. Miranda & J. de la Figuera. (2004) Properties of dislocation half loops in : Structure, formation energy, and diffusion barrier . Physical Review B 70:1.
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