Nucleation of cracks near the free surface in deformed metallic nanomaterials with a bimodal structure
- Autores: Ovid’ko I.A.1,2,3, Sheinerman A.G.1,2,3
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Afiliações:
- Research Laboratory “Mechanics of New Nanomaterials,”
- Institute of Problems of Mechanical Engineering
- St. Petersburg State University
- Edição: Volume 58, Nº 6 (2016)
- Páginas: 1179-1183
- Seção: Mechanical Properties, Physics of Strength, and Plasticity
- URL: https://ogarev-online.ru/1063-7834/article/view/197797
- DOI: https://doi.org/10.1134/S1063783416060305
- ID: 197797
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Resumo
A theoretical model that effectively describes the nucleation of cracks in stress fields of dislocation pile-ups near the free surface in metallic nanomaterials with a bimodal structure has been developed. The dependences of the critical shear stress τc (for the formation of a crack with an equilibrium length of 10 nm on a dislocation pile-up near the surface) on the size d of a grain containing the dislocation pile-up have been calculated for copper with a bimodal structure. Theoretically, it has been found that the critical shear stress τc for the nucleation of a crack near the free surface in a nanomaterial with a bimodal structure is approximately 30% higher than that for the crack nucleation within the nanomaterial at a distance from the free surface.
Sobre autores
I. Ovid’ko
Research Laboratory “Mechanics of New Nanomaterials,”; Institute of Problems of Mechanical Engineering; St. Petersburg State University
Autor responsável pela correspondência
Email: ovidko@nano.ipme.ru
Rússia, Politekhnicheskaya ul. 29, St. Petersburg, 195251; Bolshoi pr. 61, St. Petersburg, 199178; Universitetskaya nab. 7–9, St. Petersburg, 199034
A. Sheinerman
Research Laboratory “Mechanics of New Nanomaterials,”; Institute of Problems of Mechanical Engineering; St. Petersburg State University
Email: ovidko@nano.ipme.ru
Rússia, Politekhnicheskaya ul. 29, St. Petersburg, 195251; Bolshoi pr. 61, St. Petersburg, 199178; Universitetskaya nab. 7–9, St. Petersburg, 199034
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