Material choices for permanent magnets are analyzed in terms of energy product, anisotropy and hardness parameter. Energy product is the main consideration for permanent magnets …
Z Shao, S Ren - Nanoscale Advances, 2020 - pubs.rsc.org
Permanent magnets, especially rare-earth based magnets, are widely used in energy-critical technologies in many modern applications, involving energy conversion and information …
LH Lewis, A Mubarok, E Poirier… - Journal of Physics …, 2014 - iopscience.iop.org
Chemically ordered L1 0-type FeNi, also known as tetrataenite, is under investigation as a rare-earth-free advanced permanent magnet. Correlations between crystal structure …
A Monte Carlo simulation has been used to explore the magnetic properties of L1 0 ordered FeNi and FePt binary alloys. Our Hamiltonians include Heisenberg interaction or Ising …
Structural, electronic, magnetic, and thermomagnetic properties of CoPt and NiPt alloys are investigated using first-principles calculations with the aid of density functional theory (DFT) …
Effects derived from the simultaneous application of passive, uniform saturating magnetic field and tensile stress during long-time annealing utilizing a unique and simple processing …
R Skomski - Novel Functional Magnetic Materials: Fundamentals …, 2016 - Springer
Recent developments in permanent magnetism are summarized, considering both intrinsic and extrinsic properties. After a general introduction to permanent magnetism, several …
Permanent, or hard, magnets deliver high magnetic flux combined with high stability against demagnetization. These properties render them essential in modern life: they are key …
Electronic and magnetic properties of L1 0-ordered Fe x Mn 1− x Al alloys (x= 0, 0.0625, 0.125, 0.1875, 0.5) are investigated by first-principle supercell calculations. Pristine MnAl …