Facile method of raising the LTP content in Mn-Bi alloys by using sequential separation techniques for Bi and Mn

Materials Today Communications - Tập 33 - Trang 104241 - 2022
Tiberiu Roman1,2, Iulian-Ioan Murgulescu1, Gabriel Ababei1, George Stoian1, Mihaela Lostun1, Marieta Porcescu1, Marian Grigoras1, Nicoleta Lupu1
1National Institute of Research and Development for Technical Physics, 47 Mangeron Boulevard, Iasi 700050, Romania
2Alexandru Ioan Cuza” University of Iasi, Integrated Center of Environmental Science Studies in the North Eastern Region – CERNESIM, 11 Carol I Boulevard, Iasi 700506, Romania

Tài liệu tham khảo

Massalski, 1986, Binary alloy phase diagrams, ASM Int., Volume 1, 1100 Miyazaki, 2017, Enhancement of the phase formation rate during in-field solid-phase reactive sintering of Mn-Bi, Mater. Trans., 58, 720, 10.2320/matertrans.MBW201609 Ngamsomrit, 2021, Preparation of low-temperature phase MnBi by sintering in vacuum, J. Phys. Conf. Ser., 1719, 10.1088/1742-6596/1719/1/012057 Sharma, 2018, Synthesis and magnetic properties of rare-earth free MnBi alloy: a high-energy hard magnetic material, AIP Conf. Proc., 1942 Jensen, 2019, Optimizing composition in MnBi permanent magnet alloys, Acta Mater., 181, 595, 10.1016/j.actamat.2019.10.003 Cui, 2018, Current progress and future challenges in rare-earth-free permanent magnets, Acta Mater., 158, 118, 10.1016/j.actamat.2018.07.049 Chen, 1974, Contribution to the equilibrium phase diagram of the Mn-Bi system near MnBi, J. Appl. Phys., 45, 2358, 10.1063/1.1663594 Andersen, 1967, The magnetic and crystallographic properties of MnBi studied by neutron diffraction, ACTA Chem. Scand., 21, 1543, 10.3891/acta.chem.scand.21-1543 Antonov, 2020, Low-temperature MnBi alloys: electronic and magnetic properties, constitution, morphology and fabrication (Review article), Low. Temp. Phys., 46, 3, 10.1063/10.0000360 Huang, 2019, Microstructure, improved magnetic properties, and recoil loops characteristics for MnBi alloys, J. Magn. Magn. Mater., 485, 157, 10.1016/j.jmmm.2019.04.081 Cui, 2014, Effect of composition and heat treatment on MnBi magnetic materials, Acta Mater., 79, 374, 10.1016/j.actamat.2014.07.034 Marker, 2018, BiMn: synthesis, separation by centrifugation, and characterization, J. Alloy. Compd., 741, 682, 10.1016/j.jallcom.2018.01.235 Wen, 2021, The introduction of super-gravity into optimization separation of bismuth and zinc from crude bismuth melt, Chem. Eng. Process. - Process. Intensif., 160, 10.1016/j.cep.2020.108266 Wyckoff, 1963, 85 Andersen, 1972, Neutron diffraction investigations on MnBi and MnBi0.9Sb0.1, ACTA Chem. Scand., 26, 175, 10.3891/acta.chem.scand.26-0175 Roman, 2021, Nanostructured quaternary Ni1−xCuxFe2−yCeyO4 complex system: cerium content and copper substitution dependence of cation distribution and magnetic-electric properties in spinel ferrites, Ceram. Int., 10.1016/j.ceramint.2021.03.136 Roman, 2019, Structural changes of cerium doped copper ferrites during sintering process and magneto-electrical properties assessment, Ceram. Int., 45, 10.1016/j.ceramint.2019.05.280 Gabay, 2019, Effect of Sb substitution on crystal structure, texture and hard magnetic properties of melt-spun MnBi alloys, J. Alloy. Compd., 792, 77, 10.1016/j.jallcom.2019.03.407 Nguyen Xuan, 2021, On the Balance between magnetization and coercivity of MnBi green powders and magnets prepared thereof, VNU J. Sci. Math. - Phys., 37, 21, 10.25073/2588-1124/vnumap.4462 Toby, 2006, R factors in rietveld analysis: how good is good enough?, Powder Diffr., 21, 67, 10.1154/1.2179804