Título
Transformation behavior and inverse caloric effects in magnetic shape memory Ni44-xCuxCo6Mn39Sn11 ribbons
11627/376311627/3763
Autor
Wójcik, Anna
Maziarz, Wojciech
Szczerba, Maciej
Sikora, Marcin
Zywczak, Antoni
Aguilar Ortiz, Christian Omar
Álvarez Alonso, Pablo
Villa, Elena
Flores Zúñiga, Horacio
Cesari, Eduard
Dutkiewicz, Jan
Chernenko, Volodymyr
Resumen
"An influence of the Cu doping on structural, magnetic and thermoelastic properties of the Heusler Ni44-xCuxCo6Mn39Sn11 (x = 1–4 at%) ribbons has been investigated. It is found that the addition of Cu stabilizes austenite phase. Martensite transformation (MT) temperatures generally decrease when Cu concentration increases, which is attributed to the atom size effect. The inverse magnetocaloric and elastocaloric effects in the vicinity of MT under moderate magnetic fields and stresses have been evaluated. Small Cu addition enhances both effects as compared to quaternary Ni–Co–Mn–Sn alloy. The magnetic entropy change under low magnetic field of 15 kOe increases from 2.9 J kg−1K−1 for Cu0 to 6.3 J kg−1K−1 for Cu2."
Fecha de publicación
2017-10Tipo de publicación
articleDOI
https://doi.org/10.1016/j.jallcom.2017.05.337Área de conocimiento
QUÍMICAEditor
ElsevierPalabras clave
Ni-Co-Mn-Sn Heusler alloysMelt-spun ribbons
Martensitic transformation
Magnetocaloric effect
Elastocaloric effect