Bulk anisotropic composite magnets based on MnBi/Co(Fe) exhibiting the different morphology of the soft magnetic phase were prepared by powder metallurgy processing. First, single-phase MnBi bulk magnets were produced with a maximum energy product [(BH)(m)] of 6.3 MGOe at room temperature. The nanoscale soft phase with the different morphology was then added to form a composite magnet. It was observed that addition of magnetic soft-phase nanoflakes causes a dramatic coercivity reduction. However, the addition of soft magnetic phase nanowires enhanced the composite magnetization without sacrificing the coercivity. Nevertheless, a kink was still observed on the demagnetization curves and the coercivity decreased when the soft-phase content wa...
MnBi is an attractive rare-earth-free permanent magnetic material due to its low materials cost, hig...
Highly anisotropic MnBi powder with over 90 wt% low-temperature phase can be prepared using conventi...
MnBi magnets were prepared by melt-spinning, annealing, ball-milling, magnetic alignment, and subseq...
Bulk anisotropic composite magnets based on MnBi/Co(Fe) exhibiting the different morphology of the s...
In order to improve the magnetic properties of MnBi compound, anisotropic MnBi/Sm2Fe17Nx hybrid magn...
In order to improve the magnetic properties of MnBi compound, anisotropic MnBi/Sm2Fe17Nx hybrid magn...
The soft- and hard-magnetic mixtures have been extensively investigated for developing rare-earth fr...
Abstract MnBi alloys were prepared using arc melting with different atomic proportions between Mn an...
We report magnetic properties and microstructure of high energy-product MnBi bulk magnets fabricated...
MnBi with low temperature phase was fabricated by melt-spinning and subsequently annealing. The infl...
Magnetic hard nanocrystalline MnBi has been prepared by melt spinning and subsequent low temperature...
For developing rare-earth free permanent magnets, the soft- and hard-magnetic mixtures have been ext...
MnBi with low temperature phase was fabricated by melt-spinning and subsequently annealing. The infl...
and melt-spinning techniques. The melt-spun ribbons were annealed in vacuum furnace at 350 to obtain...
Highly anisotropic MnBi powder with over 90 wt% low-temperature phase can be prepared using conventi...
MnBi is an attractive rare-earth-free permanent magnetic material due to its low materials cost, hig...
Highly anisotropic MnBi powder with over 90 wt% low-temperature phase can be prepared using conventi...
MnBi magnets were prepared by melt-spinning, annealing, ball-milling, magnetic alignment, and subseq...
Bulk anisotropic composite magnets based on MnBi/Co(Fe) exhibiting the different morphology of the s...
In order to improve the magnetic properties of MnBi compound, anisotropic MnBi/Sm2Fe17Nx hybrid magn...
In order to improve the magnetic properties of MnBi compound, anisotropic MnBi/Sm2Fe17Nx hybrid magn...
The soft- and hard-magnetic mixtures have been extensively investigated for developing rare-earth fr...
Abstract MnBi alloys were prepared using arc melting with different atomic proportions between Mn an...
We report magnetic properties and microstructure of high energy-product MnBi bulk magnets fabricated...
MnBi with low temperature phase was fabricated by melt-spinning and subsequently annealing. The infl...
Magnetic hard nanocrystalline MnBi has been prepared by melt spinning and subsequent low temperature...
For developing rare-earth free permanent magnets, the soft- and hard-magnetic mixtures have been ext...
MnBi with low temperature phase was fabricated by melt-spinning and subsequently annealing. The infl...
and melt-spinning techniques. The melt-spun ribbons were annealed in vacuum furnace at 350 to obtain...
Highly anisotropic MnBi powder with over 90 wt% low-temperature phase can be prepared using conventi...
MnBi is an attractive rare-earth-free permanent magnetic material due to its low materials cost, hig...
Highly anisotropic MnBi powder with over 90 wt% low-temperature phase can be prepared using conventi...
MnBi magnets were prepared by melt-spinning, annealing, ball-milling, magnetic alignment, and subseq...