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Title Development of Optimum Preparation Conditions of Fe-Deficient M-Type Ca Sr La System Hexagonal Ferrite Magnet
ID_Doc 25827
Authors Huang, CC; Lin, SH; Mo, CC; Hsiao, TH; Tai, YH; Hung, YH; Chiu, CH; Hsu, HH; Cheng, CH
Title Development of Optimum Preparation Conditions of Fe-Deficient M-Type Ca Sr La System Hexagonal Ferrite Magnet
Year 2021
Published Ieee Transactions On Magnetics, 57, 2
DOI 10.1109/TMAG.2020.3042095
Abstract In this work, an experiment was carried out to investigate the preparation condition of anisotropic Fe-deficient M-type Ca-Sr-La system ferrite with optimum magnetic and physical properties using the raw material Fe2O3 from steel industrial iron oxide waste. The compositions of the calcined ferrites were chosen according to the stoichiometry Ca1-x-yLaxSryFe10.9CozO19, where M-type single-phase calcined powder was synthesized with a composition of x = 0.45, y = 0.18, and z = 0. The effect of CaO, SiO2, and Co3O4 inter-additives on the Ca-Sr-La system ferrite was also discussed in order to obtain low-temperature sintered magnets. The magnetic properties of B-r = 4570 Gauss, H-b(c) = 4320 Oe,H- i(c)= 5260 Oe, and (B H)(max) = 5.16 MGOe were obtained for Ca-Sr-La system hard magnets with low cobalt content at 1.85 wt%. The magnetic properties of the prepared magnets really good compared to that of the traditional Sr-La-cobalt (Co) M-type ferrite, which has been the highest grade M-type hard ferrite. The remarkable steel industrial iron oxide waste Fe2O3 is recycled to produce high-end permanent magnets under an output power of <1 kW, which will eventually be used in high-efficiency motors.
Author Keywords By-product; circular economy; hard ferrite; iron oxide powder; magnet; motor
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Science Citation Index Expanded (SCI-EXPANDED)
EID WOS:000611096900161
WoS Category Engineering, Electrical & Electronic; Physics, Applied
Research Area Engineering; Physics
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