Rotor cooling in rotary electric machines
First Claim
Patent Images
1. In a rotary electric machine the combination of:
- a stator having a rotor receiving opening;
a rotor journalled within said opening, said rotor includinga body of magnetizable material having at least two opposed axially extending slotsan end turn support on each end of said body, each having a radially extending axially opening slot aligned with the slots on said body to define a continuous passage for the receipt of windingsat least one winding in said passage and composed of a plurality of turns of an electrical conductor having a generally circular cross section, said turns being precision wound in a plurality of layers such that each successive turn in a given layer is parallel to and in substantial abutment with the preceding turn and such that the turns in each successive layer are parallel to and in abutment with at least one turn in the preceding layer within said body slots,the interstices between said turns defining axially extending coolant passages,spacers in each of said slots in said end turn supports spacing the turns of adjacent layers a sufficient distance to allow a coolant to enter into or exit from said coolant passages, anda pair of coolant galleries, one for each end turn support and in fluid communication with the associated slot in the corresponding end turn support; and
means interconnecting each of said galleries for circulating a liquid coolant between the same via said coolant passages and said slots in said end turn supports.
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Accused Products
Abstract
A rotary electric machine including a stator in which a rotor is journalled. Coolant passages for a rotor winding are defined by the interstices between precision wound turns and winding layers to assure uniform distribution of coolant during operation to avoid mechanical balance problems and uniform cooling of components to assure long life.
36 Citations
3 Claims
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1. In a rotary electric machine the combination of:
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a stator having a rotor receiving opening; a rotor journalled within said opening, said rotor including a body of magnetizable material having at least two opposed axially extending slots an end turn support on each end of said body, each having a radially extending axially opening slot aligned with the slots on said body to define a continuous passage for the receipt of windings at least one winding in said passage and composed of a plurality of turns of an electrical conductor having a generally circular cross section, said turns being precision wound in a plurality of layers such that each successive turn in a given layer is parallel to and in substantial abutment with the preceding turn and such that the turns in each successive layer are parallel to and in abutment with at least one turn in the preceding layer within said body slots, the interstices between said turns defining axially extending coolant passages, spacers in each of said slots in said end turn supports spacing the turns of adjacent layers a sufficient distance to allow a coolant to enter into or exit from said coolant passages, and a pair of coolant galleries, one for each end turn support and in fluid communication with the associated slot in the corresponding end turn support; and means interconnecting each of said galleries for circulating a liquid coolant between the same via said coolant passages and said slots in said end turn supports. - View Dependent Claims (2)
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3. In a rotary electric machine the combination of:
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a stator having a rotor receiving opening; a rotor journalled within said opening, said rotor including a body of magnetizable material having at least two opposed axially extending slots an end turn support on each end of said body, each having a radially extending axially opening slot aligned with the slots on said body to define a continuous passage for the receipt of windings at least one winding in said passage and composed of a plurality of turns of an electrical conductor having a generally circular cross section, said turns being precision wound in a plurality of layers such that each successive turn in a given layer is parallel to and in substantial abutment with the preceding turn and such that the turns in each successive layer are parallel to and generally in abutment with two turns in each of the preceding and succeeding layer within said body slots, the interstices between said turns defining axially extending coolant passages, radially extending spacers in each of said slots in said end turn supports spacing the turns of adjacent layers a sufficient distance to allow a coolant to enter into or exit from said coolant passages, and a pair of coolant galleries, one for each end turn support and in fluid communication with the associated slot in the corresponding end turn support; and means interconnecting each of said galleries for circulating a liquid coolant between the same via said coolant passages and said slots in said end turn supports.
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Specification