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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
Main Authors: Davydov, D. I., Vinogradova, N. I., Kazantseva, N. V., Stepanova, N. N.
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Language:English
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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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ispartof Physics of metals and metallography, 2015-02, Vol.116 (2), p.200-208
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1555-6190
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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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