Hybrid (hydrodynamic + permanent magnetic) journal bearings

Author:

Hirani H1,Samanta P1

Affiliation:

1. Department of Mechanical Engineering, Indian Institute of Technology Bombay, Powai, Mumbai, India

Abstract

Survey of patents on bearings indicates the maturity of hydrodynamic and rapid development of magnetic bearings. Active magnetic bearings are costlier compared with permanent magnetic bearings. To understand the performance characteristics of permanent magnetic bearings, an experimental setup has been developed. Experimental studies on radial permanent magnetic bearings demonstrated the drawbacks, such as high axial thrust and low load capacity. This has led the authors to hybridize the permanent magnet with hydrodynamic technology and to explore the possibility of achieving the low starting torque of a permanent magnetic bearing and the medium to high load carrying capacity of a hydrodynamic bearing in a single bearing arrangement. Simulation is carried out in order to reduce axial force-effect and enhance the radial force supported by the permanent magnetic bearing. Results of simulation on permanent magnetic bearing have been compared with that of published research papers. Finally an algorithm has been developed to investigate the coupling of forces generated by permanent magnets and hydrodynamic actions. Results of load sharing have been reported. The experimentally measured displacements of the shaft running at 500, 2000, and 3000 r/min have been plotted. The effect of hydrodynamics on shaft orbit has been illustrated.

Publisher

SAGE Publications

Subject

Surfaces, Coatings and Films,Surfaces and Interfaces,Mechanical Engineering

Reference12 articles.

1. Improvement of rotor performance under rubbing conditions through active auxiliary bearings

2. Linear and non-linear control techniques applied to actively lubricated journal bearings

3. Chen H. M., Walter T. J. A foil magnetic thrust bearing using LCR circuit. In Proceedings of the 10th International Symposium on Magnetic Bearings, ‘New fields in magnetic bearings and industrial applications’, pp. 6–10 (ISMB10).

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