2020
DOI: 10.1016/j.jallcom.2020.153726
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Microstructure, phase evolution and magnetocaloric properties of LaFe11.6Si1.4/La70Co30 composite

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Cited by 9 publications
(5 citation statements)
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“…This makes melt spinning an alternate and efficient route for manufacturing the phase of La(Fe,Si) 13 . 93 In comparison to those found in ordinary bulk alloys, the Curie transition temperature of the melt-spun-type La(Fe,Si) 13 ribbons is higher, and the magnetic and thermal hystereses are reduced. 12 The process of melt spinning produces a refined microstructure, increased solute solubility, decreased macro and micro segregation, and the generation of metastable phases which is represented in Figure 12.…”
Section: Melt Spinningmentioning
confidence: 89%
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“…This makes melt spinning an alternate and efficient route for manufacturing the phase of La(Fe,Si) 13 . 93 In comparison to those found in ordinary bulk alloys, the Curie transition temperature of the melt-spun-type La(Fe,Si) 13 ribbons is higher, and the magnetic and thermal hystereses are reduced. 12 The process of melt spinning produces a refined microstructure, increased solute solubility, decreased macro and micro segregation, and the generation of metastable phases which is represented in Figure 12.…”
Section: Melt Spinningmentioning
confidence: 89%
“…This makes melt spinning an alternate and efficient route for manufacturing the phase of La(Fe,Si) 13 . 93 In comparison to those found in ordinary bulk alloys, the Curie transition temperature of the melt-spun-type La(Fe,Si) 13 ribbons is higher, and the magnetic and thermal hystereses are reduced. 12 …”
Section: Melt Spinningmentioning
confidence: 89%
See 3 more Smart Citations