Your browser doesn't support javascript.
loading
Optimized Route for the Fabrication of MnAlC Permanent Magnets by Arc Melting.
Martínez-Sánchez, Hugo; Gámez, Juan David; Valenzuela, José Luis; Colorado, Hernan Dario; Marín, Lorena; Rodríguez, Luis Alfredo; Snoeck, Etienne; Gatel, Christophe; Zamora, Ligia Edith; Pérez Alcázar, Germán Antonio; Tabares, Jesús Anselmo.
  • Martínez-Sánchez H; Grupo de Metalurgia Física y Teoría de Transiciones de Fase, Departamento de Física, Universidad del Valle, A.A, Cali 25360, Colombia.
  • Gámez JD; Centro de Excelencia en Nuevos Materiales (CENM), Universidad del Valle, A.A, Cali 25360, Colombia.
  • Valenzuela JL; Grupo de Metalurgia Física y Teoría de Transiciones de Fase, Departamento de Física, Universidad del Valle, A.A, Cali 25360, Colombia.
  • Colorado HD; Grupo de Metalurgia Física y Teoría de Transiciones de Fase, Departamento de Física, Universidad del Valle, A.A, Cali 25360, Colombia.
  • Marín L; Departamento de Ciencias Básicas, Institución Universitaria António José Camacho, Avenida 6N No 28N-102 A.A, Cali 25663, Colombia.
  • Rodríguez LA; Grupo de Metalurgia Física y Teoría de Transiciones de Fase, Departamento de Física, Universidad del Valle, A.A, Cali 25360, Colombia.
  • Snoeck E; Centro de Excelencia en Nuevos Materiales (CENM), Universidad del Valle, A.A, Cali 25360, Colombia.
  • Gatel C; Centro de Excelencia en Nuevos Materiales (CENM), Universidad del Valle, A.A, Cali 25360, Colombia.
  • Zamora LE; Grupo de Películas Delgadas, Departamento de Física, Universidad del Valle, A.A, Cali 25360, Colombia.
  • Pérez Alcázar GA; Centro de Excelencia en Nuevos Materiales (CENM), Universidad del Valle, A.A, Cali 25360, Colombia.
  • Tabares JA; Grupo de Transiciones de Fase y Materiales Funcionales, Departamento de Física, Universidad del Valle, A.A, Cali 25360, Colombia.
Molecules ; 27(23)2022 Nov 30.
Article en En | MEDLINE | ID: mdl-36500440
ABSTRACT
The rare-earth-free MnAlC alloy is currently considered a very promising candidate for permanent magnet applications due to its high anisotropy field and relatively high saturation magnetization and Curie temperature, besides being a low-cost material. In this work, we presented a simple fabrication route that allows for obtaining a magnetically enhanced bulk τ-MnAlC magnet. In the fabrication process, an electric arc-melting method was carried out to melt ingots of MnAlC alloys. A two-step solution treatment at 1200 °C and 1100 °C allowed us to synthesize a pure room-temperature ε-MnAlC ingot that completely transformed into τ-MnAlC alloy, free of secondary phases, after an annealing treatment at 550 °C for 30 min. The Rietveld refinements and magnetization measurements demonstrated that the quenched process produces a phase-segregated ε-MnAlC alloy that is formed by two types of ε-phases due to local fluctuation of the Mn. Room-temperature hysteresis loops showed that our improved τ-MnAlC alloy exhibited a remanent magnetization of 42 Am2/kg, a coercive field of 0.2 T and a maximum energy product, (BH)max, of 6.07 kJ/m3, which is higher than those reported in previous works using a similar preparation route. Experimental evidence demonstrated that the synthesis of a pure room-temperature ε-MnAlC played an important role in the suppression of undesirable phases that deteriorate the permanent magnet properties of the τ-MnAlC. Finally, magnetic images recorded by Lorentz microscopy allowed us to observe the microstructure and magnetic domain walls of the optimized τ-MnAlC. The presence of magnetic contrasts in all the observed grains allowed us to confirm the high-quality ferromagnetic behavior of the system.
Asunto(s)
Palabras clave

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Imanes / Metales de Tierras Raras Idioma: En Año: 2022 Tipo del documento: Article

Texto completo: 1 Banco de datos: MEDLINE Asunto principal: Imanes / Metales de Tierras Raras Idioma: En Año: 2022 Tipo del documento: Article