In the present work, towards further development of NiMn-based Heusler-type elastocaloric alloys a series ofmelt-spun ribbons have been prepared from three multicomponent Ni-Mn-Sn-based metamagnetic shape memoryalloys (MetaMSMAs) and two multicomponent Ni-Mn-Ga-based ferromagnetic shape memory alloys (FSMAs).Their thermoelastic martensitic transformation (TMT), crystal structure and thermomechanical properties havebeen studied in detail. Whereas FSMAs ribbons showed a conventional stress-strain behavior at TMT and conventionalelastocaloric effect (eCE), MetaMSMAs ribbons, in turn, exhibited highly pronounced inverse stress-strain and inverse eCE characteristics at TMT. The abnormal thermomechanical behavior of the MetaMSMAribbons is produced by the presence of significant internal stresses due to appropriate amount of quenched-indefects resulting from the rapid solidification of melt-spun alloys. The results of the present study can serve asa guide for the design of new eCE-efficient materials in the form of ribbon.

Shape memory and elastocaloric properties of melt-spun NiMn-based Heusler alloys

E. Villa
Primo
Conceptualization
;
F. Villa
Membro del Collaboration Group
;
2023

Abstract

In the present work, towards further development of NiMn-based Heusler-type elastocaloric alloys a series ofmelt-spun ribbons have been prepared from three multicomponent Ni-Mn-Sn-based metamagnetic shape memoryalloys (MetaMSMAs) and two multicomponent Ni-Mn-Ga-based ferromagnetic shape memory alloys (FSMAs).Their thermoelastic martensitic transformation (TMT), crystal structure and thermomechanical properties havebeen studied in detail. Whereas FSMAs ribbons showed a conventional stress-strain behavior at TMT and conventionalelastocaloric effect (eCE), MetaMSMAs ribbons, in turn, exhibited highly pronounced inverse stress-strain and inverse eCE characteristics at TMT. The abnormal thermomechanical behavior of the MetaMSMAribbons is produced by the presence of significant internal stresses due to appropriate amount of quenched-indefects resulting from the rapid solidification of melt-spun alloys. The results of the present study can serve asa guide for the design of new eCE-efficient materials in the form of ribbon.
2023
Istituto di Chimica della Materia Condensata e di Tecnologie per l'Energia (ICMATE) - Sede Secondaria Lecco
Inglese
MetaMSMA
FeSMA
Elastocaloric effect
Melt spun ribbons
Microstructural anlalysis
Thermo-mechanical analysis
Internazionale
Elettronico
7
info:eu-repo/semantics/article
262
Villa, E.; Villa, F.; Rodriguez Crespo, B.; Lazpita, P.; Salazar, D.; Chernenko, V.; Hosoda, H.
01 Contributo su Rivista::01.01 Articolo in rivista
restricted
   Basque Government Department of Education
   project IT1479–22

   Japan Society for the Promotion of Science (JSPS)
   grant KAKENHI 20K20544
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/450163
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