EP1526286A2

Magnetically levitated pump utilizing magnetic bearings

Abstract

In a magnetically levitated pump (1), an impeller-side ferromagnetic body (51) (second ferromagnetic body) provided on a circumferential surface of an impeller (23) facing a casing unit (50) on the side of a position sensor and a casing-side ferromagnetic body (52) (third ferromagnetic body) opposite to the impeller-side ferromagnetic body (51) (second ferromagnetic body) to attract the impeller (23) toward the casing unit (50) on the side of the position sensor are adapted to have opposite portions of mutually different shapes, so that the maximum required attractive force (f2) of an electro-magnet (31) for magnetic bearing is suppressed and length (L5) of the electro-magnet for magnetic bearing is made shorter.

EP1526286A2, drawing sheet 1
Sheet 1 of 10

Term

Term ended

Projected expiry passed 21 October 2024, 1.9 years ago.

  1. Priority
  2. Filed
  3. Published
  4. Projected expiry
  5. Today

11 claims: 1 independent, 10 dependent

  1. 1
    A magnetically levitated pump, comprising:a pump unit (20) including a disk-shaped impeller (23) for feeding liquid;a magnetic bearing unit (40) provided opposite to one of end faces along an axial direction of said impeller (23);and a casing unit (50) provided opposite to the other of said end faces;wherein said magnetic bearing unit (40) includes rotary driving means (12-14, 24) for transmitting a rotational driving force to said impeller (23), and an electro-magnet (31) for magnetic bearing;said pump unit (20) includes a soft magnetic member (26) opposite to electro-magnet provided on said one of said end faces of said impeller (23) and provided opposite to said electro-magnet (31) for magnetic bearing, and an impeller-side ferromagnetic body (51) provided on said other of said end faces of said impeller (23);said casing unit (50) includes a casing-side ferromagnetic body (52) provided opposite to said impeller-side ferromagnetic body (51) and attracting said impeller (23) toward said casing unit (50);said electro-magnet (31) for magnetic bearing has a magnetizing current flowing therethrough controlled to balance an attractive force between said electro-magnet (31) for magnetic bearing and said soft magnetic member (26) opposite to electro-magnet, an attractive force between said impeller-side ferromagnetic body (51) and said casing-side ferromagnetic body (52), a force acting on said impeller (23) generated by said rotary driving means (12-14, 24), and other disturbance influencing said impeller (23);and opposite surfaces of said impeller-side ferromagnetic body (51) and said casing-side ferromagnetic body (52) are adapted to have mutually different shapes each other, so that maximum required attractive force (f2) between said electro-magnet (31) for magnetic bearing and said soft magnetic member (26) opposite to electro-magnet becomes smaller than a prescribed force (f1).