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Original Articles

Energetics of nucleation of half dislocation loops at a surface crack

Pages 3177-3185 | Published online: 04 Aug 2009

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Read on this site (2)

C. Li & G. Xu. (2006) Critical conditions for dislocation nucleation at surface steps. Philosophical Magazine 86:20, pages 2957-2970.
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Articles from other publishers (8)

A. S. Argon. 2013. The Physics of Deformation and Fracture of Polymers. The Physics of Deformation and Fracture of Polymers 273 324 .
Z. Bartczak & A. Galeski. (2010) Plasticity of Semicrystalline Polymers. Macromolecular Symposia 294:1, pages 67-90.
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József Karger-Kocsis & Stoyko FakirovA. Galeski & G. Regnier. 2009. Nano- and Micromechanics of Polymer Blends and Composites. Nano- and Micromechanics of Polymer Blends and Composites 3 58 .
Chengzhi Li & Guanshui Xu. (2007) Geometrical effect on dislocation nucleation at crystal surface nanostructures. Engineering Analysis with Boundary Elements 31:5, pages 443-450.
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A.S. Argon, A. Galeski & T. Kazmierczak. (2005) Rate mechanisms of plasticity in semi-crystalline polyethylene. Polymer 46:25, pages 11798-11805.
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Chuanli Zhang & Guanshui Xu. (2005) Energetics of dislocation nucleation under a nanoindenter. Materials Science and Engineering: A 400-401, pages 471-475.
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Chengzhi Li & Guanshui Xu. (2011) Critical Conditions for Dislocation Nucleation from Surface Steps. MRS Proceedings 821.
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Guanshui Xu & Chuanli Zhang. (2003) Analysis of dislocation nucleation from a crystal surface based on the Peierls–Nabarro dislocation model. Journal of the Mechanics and Physics of Solids 51:8, pages 1371-1394.
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