Influence of defects on the irreversible phase transition in the Fe-Pd doped with Co and Mn

ABSTRACT The appearance of BCT martensite in Fe-Pd-based ferromagnetic shape memory alloys, which develops at lower temperatures than the thermoelastic martensitic transition, deteriorates the shape memory properties. In a previous work performed in Fe70Pd30, it was shown that a reduction in defects...

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Veröffentlicht in:Matéria 2018-01, Vol.23 (2)
Hauptverfasser: Bonifacich, Federico Guillermo, Lambri, Osvaldo Agustín, Gargicevich, Damián, Zelada, Griselda Irene, Pérez-Landazábal, José Ignacio, Recarte, Vicente, Sánchez-Alarcos, Vicente
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Sprache:eng
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Zusammenfassung:ABSTRACT The appearance of BCT martensite in Fe-Pd-based ferromagnetic shape memory alloys, which develops at lower temperatures than the thermoelastic martensitic transition, deteriorates the shape memory properties. In a previous work performed in Fe70Pd30, it was shown that a reduction in defects density reduces the non thermoelastic FCT-BCT transformation temperature. In the present work, the influence of quenched-in-defects upon the intensity and temperature of the thermoelastic martensitic (FCC-FCT) and the non thermoelastic (FCT-BCT) transitions in Fe-Pd doped with Co and Mn is studied. Differential scanning calorimetric and mechanical spectroscopy studies demonstrate that a reduction in the dislocation density the stability range of the FCC-FCT reversible transformation in Fe67Pd30Co3 and Fe66.8Pd30.7Mn2.5 ferromagnetic shape memory alloys.
ISSN:1517-7076
1517-7076
DOI:10.1590/s1517-707620180002.0368