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Creep of Heusler-Type Alloy Fe-25Al-25Co
oleh: Ferdinand Dobeš, Petr Dymáček, Martin Friák
Format: | Article |
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Diterbitkan: | MDPI AG 2020-01-01 |
Deskripsi
Creep of an alloy based on the intermetallic compound Fe<sub>2</sub>AlCo was studied by compressive creep tests in the temperature range from 873 to 1073 K. The stress exponent <i>n</i> and the activation energy of creep <i>Q</i> were determined using the multivariable regression of the creep-rate data and their description by means of sinh equation (Garofalo equation). The evaluated stress exponents indicate that the dislocation climb controls creep deformation. The estimated apparent activation energies for creep are higher than the activation enthalpy for the diffusion of Fe in Fe<sub>3</sub>Al. This can be ascribed to the changes in crystal lattice and changing microstructure of the alloy.