2017
DOI: 10.1016/j.jmmm.2017.07.044
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Structure and performance of anisotropic nanocrystalline Nd-Fe-B magnets fabricated by high-velocity compaction followed by deformation

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Cited by 7 publications
(8 citation statements)
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“…For instance, high-velocity compaction (HVC) has been proposed as an alternative method to prepare the precursor of the hot-deformed (HD) magnet. [48,49] Unfortunately, the low density of the reported HVC magnets leads to an aggregation of the amorphous grain boundary phase (GB aggregation) with a composition of Nd 37 Fe 63 (at%) in the hot-deformed magnet. Low-meltingpoint Nd 70 Cu 30 powders were chosen to compensate for the disadvantages of low density.…”
Section: Amorphous Grain Boundary Phasementioning
confidence: 99%
“…For instance, high-velocity compaction (HVC) has been proposed as an alternative method to prepare the precursor of the hot-deformed (HD) magnet. [48,49] Unfortunately, the low density of the reported HVC magnets leads to an aggregation of the amorphous grain boundary phase (GB aggregation) with a composition of Nd 37 Fe 63 (at%) in the hot-deformed magnet. Low-meltingpoint Nd 70 Cu 30 powders were chosen to compensate for the disadvantages of low density.…”
Section: Amorphous Grain Boundary Phasementioning
confidence: 99%
“…Recently, a new compaction method, high-velocity compaction (HVC), was proposed as an alternative method to prepare the precursor for an HD magnet [19,20]. This procedure possesses the advantages of high efficiency, low cost and room-temperature manufacture, compared to the hot pressing and spark plasma sintering (SPS) methods [8].…”
Section: On the Magnetism Of Grain Boundary Phase And Its Contributio...mentioning
confidence: 99%
“…According to (1) [40], the maximum impact energy is 2323 J. Assuming that 80% of the energy stored in the spring can be converted into impact energy, the spring energy storage is at least 2903 J. Consequently, 3000 J of stored energy is chosen as the design parameter.…”
Section: Implementation Of High Impact Energymentioning
confidence: 99%
“…High-velocity compaction (HVC) is widely used in the powder metallurgy (PM) of titanium-, aluminum-, and ironbased alloys as well as magnets and other materials, for example [1][2][3][4]. Compared with conventional compaction (CC), HVC improves the green density of metal powders and enhances the uniformity of the density distribution [5].…”
Section: Introductionmentioning
confidence: 99%
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