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Investigation of the structure of two heat-temperature nickel-based alloys after high-temperature deformation
The structural tests of turbine blades made from two commercial high-temperature nickel-based alloys were carried out after their test operation at elevated temperature and stresses. Both alloys contain 40% of a hardening intermetallic phase and the upper operating temperature of both alloys is limi...
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Published in: | Physics of metals and metallography 2015-02, Vol.116 (2), p.200-208 |
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container_title | Physics of metals and metallography |
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creator | Davydov, D. I. Vinogradova, N. I. Kazantseva, N. V. Stepanova, N. N. |
description | The structural tests of turbine blades made from two commercial high-temperature nickel-based alloys were carried out after their test operation at elevated temperature and stresses. Both alloys contain 40% of a hardening intermetallic phase and the upper operating temperature of both alloys is limited to 900°C, but they have a different resistance to high-temperature deformation. |
doi_str_mv | 10.1134/S0031918X15020052 |
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subjects | Alloys Chemistry and Materials Science Deformation Gas-turbines Hardening High temperature Intermetallic compounds Intermetallic phases Investigations Materials Science Metallic Materials Metallography Nickel Nickel base alloys Operating temperature Specialty metals industry Strength and Plasticity Turbine blades |
title | Investigation of the structure of two heat-temperature nickel-based alloys after high-temperature deformation |
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