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- W2016077797 abstract "The phase evolution, microstructure, and magnetic properties of PrxFe80−xTi2Co10B4C4 (x=9,10.5) melt-spun ribbons were studied. All these ribbons consist mainly of three phases, namely, 2:14:1, α-(Fe,Co), and 2:17 phases. The Hci significantly increases and Br slightly decreases with increasing Pr content. It was found that increasing Pr content from 9to10.5at.% leads to marked grain refinement in the ribbons. Increasing Pr content also helps suppress the formation of metastable 2:17 phase and the grain growth of the α-(Fe,Co) phase during the annealing treatment, thus avoiding the formation of extensive soft magnetic regions. The refined and uniform structure tends to enhance the exchange-coupling interaction between magnetic grains, which results in a significant improvement of the demagnetization-curve shape and magnetic properties accordingly. High coercivity Hci of 10.2kOe, remanence Br of 9.6kG, and maximum energy product (BH)max of 17.4MGOe have been achieved in Pr10.5Fe69.5Ti2Co10B4C4 ribbons after optimal annealing." @default.
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- W2016077797 date "2008-01-18" @default.
- W2016077797 modified "2023-10-18" @default.
- W2016077797 title "The structures and magnetic properties of Ti-substituted Pr2(Fe,Co)14(C,B)-type nanocomposites" @default.
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- W2016077797 doi "https://doi.org/10.1063/1.2828508" @default.
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