Atomic force microscopy of the nanostructure of metals and alloys subjected to mechanical and thermal stresses
Low-carbon structural steels are an extremely important material used widely in all industries, e.g., in the manufacture of industrial pipelines and equipment operating at elevated temperatures and pressures, in contact with chemically aggressive environments. In this work, we study nanoscale change...
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Veröffentlicht in: | Bulletin of the Russian Academy of Sciences. Physics 2012-02, Vol.76 (2), p.149-152 |
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container_title | Bulletin of the Russian Academy of Sciences. Physics |
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creator | Ul’yanov, P. G. Dobrotvorskii, A. M. Usachev, D. Yu Borygina, K. I. Adamchuk, V. K. |
description | Low-carbon structural steels are an extremely important material used widely in all industries, e.g., in the manufacture of industrial pipelines and equipment operating at elevated temperatures and pressures, in contact with chemically aggressive environments. In this work, we study nanoscale changes in the substructure of structural steels that result from operational wearing out. |
doi_str_mv | 10.3103/S1062873812020268 |
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subjects | Alloy steels Alloys Atomic force microscopy Contact pressure Hadrons Heavy Ions Nuclear Physics Physics Physics and Astronomy Pipelines Proceedings of the International Symposium “Nanophysics and Nanoelectronics-2011” Structural steels Thermal stress |
title | Atomic force microscopy of the nanostructure of metals and alloys subjected to mechanical and thermal stresses |
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