EP0909004A2

Rotor having permanent magnet and mechanism for cooling the same

Abstract

A rotor has a plurality of permanent magnets (2) embedded in storage pores (3), and is characterised in that each permanent magnet (2) is inserted in each storage pores (3) so as to form gaps at both ends of the storage pores (3) of the field core (1), thereby to form air paths for cooling air. A mechanism for cooling such a rotor having permanent magnets (2) is characterised by forming air paths for cooling air by providing gaps between each of the inner surfaces of the end plates (4) and the outer surface of the field core (1), and by forming air paths for cooling air by providing air paths in the axial direction in contact with each of the permanent magnets (2) on both ends of the permanent magnets (2), and locating an inlet (13) and an outlet (14) for the cooling air in each of said air paths in such a manner that the cooling air enters one end plate (4) and exits the other end plate (4) via each of said air paths.

EP0909004A2, drawing sheet 1
Sheet 1 of 17

Term

Term ended

Projected expiry passed 4 September 2018, 8.1 years ago.

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

8 claims: 3 independent, 5 dependent

  1. 1
    A rotor having permanent magnets formed by laminating a plurality of permanent magnets embedded in storage pores, characterized in that each permanent magnet is inserted in each of said storage pore so as to form gaps at the both ends of the storage pore of the field core, thereby to form air paths for cooling air.
  2. 5
    A mechanism for cooling a rotor having permanent magnets formed by laminating a plurality of field core sheets to form a field core, embedding a plurality of permanent magnets into the field core, and fixing the field core by means of a pair of end plates having a plurality of wings on the outer surface thereof so as to generate the flow of cooling air toward the armature winding, characterized by - forming air paths for cooling air by providing gaps between each of the inner surface of the end plate and the outer surface of the field core, and - also forming air paths for cooling air by placing air paths in the axis direction in contact with each of the permanent magnets on both ends of the permanent magnet, and placing an inlet and an outlet of the cooling air on each of said air paths in such a manner that the cooling air enters one end plate and exits the other end plate via each of said air paths.
  3. 8
    A mechanism for cooling a rotor having permanent magnets formed by laminating a plurality of field core sheets to form a field core, embedding a plurality of permanent magnets into the field core, and fixing the field core by means of a pair of end plates having a plurality of wings on the outer surface thereof so as to generate the flow of cooling air toward the armature winding, characterized by - providing baffles on the outer frame of the plurality of wings projected on the outer surface of the pair of end plates at an equivalent interval, in such a manner that the baffle on one end plate is provided in the direction of the rotation and the baffle on the other end plate is provided in the direction opposite to the rotation, - providing air paths in adjacent to the baffle on the axis side in such a manner that the positions of said air paths are accorded with the air paths residing on both ends of the pores into which the permanent magnet is embedded,    whereby the cooling air inflated from the air paths on the axis core side is passed through the air paths at both ends of the permanent magnet by means of the baffle of the edge extending to the direction of the rotation according to the rotation of the rotor and flows to the opposite ventilator to cool the field core and the permanent magnet.