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Original Articles

The pressure for dislocation loop punching by a single bubble

Pages 285-297 | Received 15 Apr 1987, Accepted 18 Aug 1987, Published online: 20 Aug 2006

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (10)

Nan Li, Michael Demkowicz, Nathan Mara, Yongqiang Wang & Amit Misra. (2016) Hardening due to Interfacial He Bubbles in Nanolayered Composites. Materials Research Letters 4:2, pages 75-82.
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Robert E. Rudd. (2009) Void growth in bcc metals simulated with molecular dynamics using the Finnis–Sinclair potential. Philosophical Magazine 89:34-36, pages 3133-3161.
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K. Morishita. (2007) Nucleation path of helium bubbles in metals during irradiation. Philosophical Magazine 87:7, pages 1139-1158.
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Donald F. Cowgill. (2005) Helium Nano-Bubble Evolution in Aging Metal Tritides. Fusion Science and Technology 48:1, pages 539-544.
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Mai. Ghaly, Kai. Nordlund & R.S. Averback. (1999) Molecular dynamics investigations of surface damage produced by kiloelectronvolt self-bombardment of solids. Philosophical Magazine A 79:4, pages 795-820.
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G. T. McConville, D. A. Menke, D. West & C. M. Woods. (1995) The Effect of Helium Growth and Carbon Impurities on the Properties of Aged Metal Tritides. Fusion Technology 28:3P2, pages 1227-1232.
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T. Diaz De La Rubia & M.W. Guinan. (1994) MD studies of high energy cascades in Cu. Radiation Effects and Defects in Solids 129:1-2, pages 31-39.
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T. Schober & H. Trinkaus. (1992) 3He bubble formation in titanium tritides at elevated temperatures A TEM study. Philosophical Magazine A 65:5, pages 1235-1247.
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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 & W.J. Drugan. (1988) Elastic interaction energy between a prismatic dislocation loop and a spherical cavity. Philosophical Magazine A 57:6, pages 923-937.
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