Improvement in the design calculations of multi-ring permanent magnet thrust bearing

dc.contributor.authorBekinal, S.I.
dc.contributor.authorDoddamani, M.
dc.date.accessioned2026-02-05T09:29:08Z
dc.date.issued2020
dc.description.abstractThis article presents the design and optimization of multi-ring permanent magnet thrust bearing (PMTB) with an axial air gap between successive axial stacks. Larger air gap due to the inclusion of conductive materials needs to be critically analysed in permanent magnet bearings with eddy current damper. High conductivity materials can be filled in an axial air gap instead of a radial air gap to increase the required amount of damping. Three-dimensional (3D) mathematical model for load-carrying capacity for the said configuration is presented using the Coulombain model. The significance of an axial air gap between successive ring pairs in the configuration concerning maximization in the bearing characteristics is presented. Variables such as the number of axial stacks, an axial air gap between the successive rings, an inside radius of rotor ring magnets, and an inside radius of stator ring magnets are optimized at different air gap values for maximizing the load-carrying capacity and stiffness. A significant increase in the values of bearing characteristics is observed in the optimized configuration as compared to bearing with a single permanent magnet ring pair. Optimized PMTB with comparable load carrying capacity and stiffness values can be used to replace conventional bearings used in high-speed applications to improve system efficiency. © 2020, Electromagnetics Academy. All rights reserved.
dc.identifier.citationProgress in Electromagnetics Research M, 2020, 94, , pp. 83-93
dc.identifier.issn19378726
dc.identifier.urihttps://doi.org/10.2528/pierm20052403
dc.identifier.urihttps://idr.nitk.ac.in/handle/123456789/24154
dc.publisherElectromagnetics Academy
dc.subjectConductive materials
dc.subjectLoad limits
dc.subjectLoads (forces)
dc.subjectStiffness
dc.subjectThrust bearings
dc.subjectAir-gaps
dc.subjectBearing characteristic
dc.subjectDesign and optimization
dc.subjectDesign calculations
dc.subjectEddy current damper
dc.subjectLarge air gaps
dc.subjectMultiRing
dc.subjectPermanent magnet bearing
dc.subjectRing magnet
dc.subjectSuccessive rings
dc.subjectPermanent magnets
dc.titleImprovement in the design calculations of multi-ring permanent magnet thrust bearing

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