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Original Articles

The brittle—ductile behaviour of materials: Modelling the effect of interatomic force laws

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Pages 749-769 | Received 29 Jun 1996, Accepted 16 Jul 1996, Published online: 20 Aug 2006

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A. Ramasubramaniam, W.A. Curtin & D. Farkas. (2002) Fracture in nanolamellar materials: Continuum and atomistic models with application to titanium aluminides. Philosophical Magazine A 82:12, pages 2397-2417.
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Articles from other publishers (8)

Sunao Sadamatsu, Masaki Tanaka, Kenji Higashida, Kenji Kaneko, Masatoshi Mitsuhara, S. Hata & M. Honda. (2010) Crack Tip Dislocations Observed by Combining Scanning Transmission Electron Microscopy and Computed Tomography. Advanced Materials Research 89-91, pages 473-478.
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Masaki Tanaka, Kenji Higashida, Kenji Kaneko, Satoshi Hata & Masatoshi Mitsuhara. (2008) Crack tip dislocations revealed by electron tomography in silicon single crystal. Scripta Materialia 59:8, pages 901-904.
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Steven C. Seel, Jeffrey J. Hoyt, Edmund B. Webb & Jonathan A. Zimmerman. (2006) Modeling metallic island coalescence stress via adhesive contact between surfaces. Physical Review B 73:24.
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Emily A. A. Jarvis & Emily A. Carter. (2006) A Nanoscale Mechanism of Fatigue in Ionic Solids. Nano Letters 6:3, pages 505-509.
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Jia-Xiang Shang & Chong-Yu Wang. (2002) First-principles investigation of brittle cleavage fracture of Fe grain boundaries. Physical Review B 66:18.
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Gérard Michot & M. A. Loyola de Oliveira. (2001) Plastic Relaxation at Crack Tip: from Brittle to Ductile Behaviour. MATERIALS TRANSACTIONS 42:1, pages 14-19.
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Yan-Quan Fen & Chong-Yu Wang. (2001) Electronic effects of nitrogen and phosphorus on iron grain boundary cohesion. Computational Materials Science 20:1, pages 48-56.
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A.E. CARLSSON & R. THOMSON. 1998. Solid State Physics - Advances in Research and Applications. Solid State Physics - Advances in Research and Applications 233 280 .

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