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Original Articles

Elastic interaction energy between a prismatic dislocation loop and a spherical cavity

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Pages 923-937 | Received 14 Jan 1986, Accepted 02 Sep 1987, Published online: 20 Aug 2006

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Read on this site (2)

W.G. Wolfer. (1989) Dislocation loop punching in bubble arrays. Philosophical Magazine A 59:1, pages 87-103.
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W.G. Wolfer. (1988) The pressure for dislocation loop punching by a single bubble. Philosophical Magazine A 58:2, pages 285-297.
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Articles from other publishers (16)

M. Yu. Gutkin & E. A. Rzhavtsev. (2017) Dynamics of threading dislocations in porous heteroepitaxial GaN films. Physics of the Solid State 59:12, pages 2394-2400.
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A.L. Kolesnikova, M.Yu. Gutkin, A.V. Proskura, N.F. Morozov & A.E. Romanov. (2016) Elastic fields of straight wedge disclinations axially piercing bodies with spherical free surfaces. International Journal of Solids and Structures 99, pages 82-96.
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Peter A Schultz & Clark S Snow. (2016) Mechanical properties of metal dihydrides. Modelling and Simulation in Materials Science and Engineering 24:3, pages 035005.
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Jérôme Colin. (2016) Formation of a Prismatic Dislocation Loop in the Interface of a Circular Cylindrical Inclusion Embedded in a Thin Slab. Journal of Applied Mechanics 83:2.
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Yizhe Tang, Eduardo M. Bringa & Marc A. Meyers. (2012) Ductile tensile failure in metals through initiation and growth of nanosized voids. Acta Materialia 60:12, pages 4856-4865.
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N. Li, M. Nastasi & A. Misra. (2012) Defect structures and hardening mechanisms in high dose helium ion implanted Cu and Cu/Nb multilayer thin films. International Journal of Plasticity 32-33, pages 1-16.
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Vlado A. Lubarda. (2011) Image force on a straight dislocation emitted from a cylindrical void. International Journal of Solids and Structures 48:5, pages 648-660.
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Vlado A. Lubarda. (2011) Emission of dislocations from nanovoids under combined loading. International Journal of Plasticity 27:2, pages 181-200.
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Vasily V. Bulatov, Wilhelm G. Wolfer & Mukul Kumar. (2010) Shear impossibility: Comments on “Void growth by dislocation emission” and “Void growth in metals: Atomistic calculations”. Scripta Materialia 63:1, pages 144-147.
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D. C. Ahn, P. Sofronis, M. Kumar, J. Belak & R. Minich. (2007) Void growth by dislocation-loop emission. Journal of Applied Physics 101:6.
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W.G. Wolfer, B. Oudot & N. Baclet. (2006) Reversible expansion of gallium-stabilized δ-plutonium. Journal of Nuclear Materials 359:3, pages 185-191.
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D.C. Ahn, P. Sofronis & R. Minich. (2006) On the micromechanics of void growth by prismatic-dislocation loop emission. Journal of the Mechanics and Physics of Solids 54:4, pages 735-755.
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D. B. Reisman, W. G. Wolfer, A. Elsholz & M. D. Furnish. (2003) Isentropic compression of irradiated stainless steel on the Z accelerator. Journal of Applied Physics 93:11, pages 8952-8957.
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S. M. Myers & D. M. Follstaedt. (1999) Forces between cavities and dislocations and their influence on semiconductor microstructures. Journal of Applied Physics 86:6, pages 3048-3063.
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I. A. Polonsky, A. E. Romanov, V. G. Gryaznov & A. M. Kaprelov. (1991) Screw dislocation in spherical particle. Czechoslovak Journal of Physics 41:12, pages 1249-1255.
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J. B. Adams, W. G. Wolfer, S. M. Foiles, C. M. Rohlfing & C. D. Van Siclen. 1991. Fundamental Aspects of Inert Gases in Solids. Fundamental Aspects of Inert Gases in Solids 3 16 .

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