Force and stiffness characteristics of superconducting bearing prototype
Autor: | O.A. Poluschenko, V. Matveev, N. Nizhelskiy |
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Rok vydání: | 2004 |
Předmět: |
Materials science
Stator Energy Engineering and Power Technology Magnetic bearing Stiffness Condensed Matter Physics Magnetic hysteresis Electronic Optical and Magnetic Materials law.invention Magnetic field Neodymium magnet Nuclear magnetic resonance law Magnet medicine Electrical and Electronic Engineering Composite material medicine.symptom Air gap (plumbing) |
Zdroj: | Physica C: Superconductivity. 416:17-24 |
ISSN: | 0921-4534 |
DOI: | 10.1016/j.physc.2004.09.001 |
Popis: | The radial–axial superconducting bearing prototype was designed, fabricated and tested. The YBaCuO high-temperature superconducting (HTS) monodomain disks ∅28 mm and thickness of h = 4; 6; 8; 10 mm, capable to trap magnetic field 1 T, were fabricated to be employed in bearing prototype. Force interaction of single field cooled HTS disks with NdFeB magnets depending on disk thickness under 1 mm magnet air gap was studied. It was found that the increase in disk thickness results in reducing radial stiffness and in growing axial one. The results obtained were used for optimization of HTS-PM arrangement, and for developing the bearing design. The designed bearing incorporates a rotor with 7 HTS disks of 4 mm thickness, total mass 90 g, and stator with two pairs of permanent annular magnets of NdFeB. It is established that the force–displacement dependencies of the bearing have three zones: non-hysteresis (elastic) zone with high stiffness up to 560 N/mm; zone of elastic interaction with stiffness 190 N/mm; hysteretic zone with stiffness 150 N/mm in which a rotor residual displacement being observed after unloading. The outer bearing diameter is 130 mm, thickness 30 mm, and mass 1.8 kg. The maximal radial load capacity of the bearing is 190 N at the rotor displacement of 1.3 mm, and the maximal axial load capacity is 85 N at the displacement of 1 mm. |
Databáze: | OpenAIRE |
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