Conventional and inverse elastocaloric effect in Ni-Fe-Ga and Ni-Mn-Sn ribbons

"Magnetic shape memory Ni55Fe16Ga29 and Ni50Mn40Sn10 melt spun ribbons have been characterized by thermomechanical and mechanical analysis. Martensitic transformation temperatures show an abnormal tendency to decline under low stress followed by a conventional increase above a threshold stress,...

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Detalles Bibliográficos
Autores: Pablo Álvarez-Alonso, CHRISTIAN OMAR AGUILAR ORTIZ, HORACIO FLORES ZUÑIGA, Volodymyr Chernenko
Tipo de recurso: artículo
Estado:Versión enviada para evaluación y publicación
Fecha de publicación:2017
País:México
Institución:Instituto Potosino de Investigación Científica y Tecnológica
Repositorio:Repositorio Institucional del IPICYT
OAI Identifier:oai:ipicyt.repositorioinstitucional.mx:1010/1390
Acceso en línea:http://ipicyt.repositorioinstitucional.mx/jspui/handle/1010/1390
Access Level:acceso embargado
Palabra clave:info:eu-repo/classification/Autor/Shape memory alloys
info:eu-repo/classification/Autor/Martensitic transformation
info:eu-repo/classification/Autor/Elastocaloric effect
info:eu-repo/classification/cti/7
info:eu-repo/classification/cti/33
Descripción
Sumario:"Magnetic shape memory Ni55Fe16Ga29 and Ni50Mn40Sn10 melt spun ribbons have been characterized by thermomechanical and mechanical analysis. Martensitic transformation temperatures show an abnormal tendency to decline under low stress followed by a conventional increase above a threshold stress, related to the internal compressive stress generated in the fabrication process. The shrinkage of the samples during the forward martensitic transformation gives rise to an inverse elastocaloric effect. A conventional contribution in the total elastocaloric response is observed when applied stress overcomes the internal one. The conventional and inverse elastocaloric effects are attributed to the stress-induced forward and reverse martensitic transformation, respectively."