MnBi is an attractive rare-earth-free permanent magnetic material due to its low materials cost, high magnetocrystalline anisotropy (1.6 × 106 J m−3), and good magnetization (81 emu g−1) at room temperature. Although the theoretical maximum energy product (BH)max of 20 MGOe is lower than that of NdFeB-based magnets, the low temperature phase (LTP) of MnBi has a positive temperature coefficient of coercivity, up to 200 °C, which makes it a potential candidate for high temperature applications such as permanent magnet motors. However, the oxygen sensitivity of the MnBi compound and the peritectic reaction between Mn and Bi make it difficult to synthesize into a material with high purity. This challenge is partly offset by adding excess Mn to ...
Ferromagnetic low-temperature phase (LTP) of manganese bismuth MnBi (at.%) alloy has been prepared b...
A MnBi alloy containing over 90 wt% low-temperature phase (LTP) has been obtained by high-temperatur...
High coercivity MnBi alloy is a promising candidate as earth abundant permanent magnet for energy-cr...
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...
Highly anisotropic MnBi powder with over 90 wt% low-temperature phase can be prepared using conventi...
Low-temperature phase (LTP) MnBi is considered as a promising rare-earth-free permanent magnetic mat...
MnBi with low temperature phase was fabricated by melt-spinning and subsequently annealing. The infl...
MnBi magnets were prepared by melt-spinning, annealing, ball-milling, magnetic alignment, and subseq...
MnBi with low temperature phase was fabricated by melt-spinning and subsequently annealing. The infl...
The rare-earth-free MnBi magnetic material is promising for high-temperature (150 200 oC) applicatio...
The low-temperature phase of the MnBi alloy has a coercivity μ 0H c of 2.0 T at 400 K and exhibits a...
In order to improve the magnetic properties of MnBi compound, anisotropic MnBi/Sm2Fe17Nx hybrid magn...
Abstract MnBi alloys were prepared using arc melting with different atomic proportions between Mn an...
In order to improve the magnetic properties of MnBi compound, anisotropic MnBi/Sm2Fe17Nx hybrid magn...
Ferromagnetic low-temperature phase (LTP) of manganese bismuth MnBi (at.%) alloy has been prepared b...
A MnBi alloy containing over 90 wt% low-temperature phase (LTP) has been obtained by high-temperatur...
High coercivity MnBi alloy is a promising candidate as earth abundant permanent magnet for energy-cr...
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...
Highly anisotropic MnBi powder with over 90 wt% low-temperature phase can be prepared using conventi...
Low-temperature phase (LTP) MnBi is considered as a promising rare-earth-free permanent magnetic mat...
MnBi with low temperature phase was fabricated by melt-spinning and subsequently annealing. The infl...
MnBi magnets were prepared by melt-spinning, annealing, ball-milling, magnetic alignment, and subseq...
MnBi with low temperature phase was fabricated by melt-spinning and subsequently annealing. The infl...
The rare-earth-free MnBi magnetic material is promising for high-temperature (150 200 oC) applicatio...
The low-temperature phase of the MnBi alloy has a coercivity μ 0H c of 2.0 T at 400 K and exhibits a...
In order to improve the magnetic properties of MnBi compound, anisotropic MnBi/Sm2Fe17Nx hybrid magn...
Abstract MnBi alloys were prepared using arc melting with different atomic proportions between Mn an...
In order to improve the magnetic properties of MnBi compound, anisotropic MnBi/Sm2Fe17Nx hybrid magn...
Ferromagnetic low-temperature phase (LTP) of manganese bismuth MnBi (at.%) alloy has been prepared b...
A MnBi alloy containing over 90 wt% low-temperature phase (LTP) has been obtained by high-temperatur...
High coercivity MnBi alloy is a promising candidate as earth abundant permanent magnet for energy-cr...