Stator and rotating electric machine including the same
A stator includes a stator core, a winding, and a temperature sensor. In the stator core, a plurality of slots are formed in a circumferential direction of the stator. The winding is formed by a plurality of conductors which are housed in the slots and are electrically connected. The slots are formed such that a predetermined number of the conductors are housed and arrayed in a radial direction of the stator. The temperature sensor is located in at least one of the slots and detects temperature of the conductors.
1. A stator comprising:
a stator core in which a plurality of slots are arranged in a circumferential direction of the stator;
a winding that is configured by a plurality of conductors, each of the conductors including a slot-housed portion that is housed in each of the slots and a coil end portion that projects from an end surface of each of the slots in an axial direction of the stator, the winding being stacked and arrayed in a radial direction of the stator;
a plurality of wedges that are fitted into the slots and provided between one of two circumferential-direction wall surfaces of each of the slots and a circumferential-direction end surface of the arrayed conductors facing the one of two circumferential-direction wall surfaces of each of the slots; and
a temperature sensor that is provided in at least one of the wedges so that the temperature sensor is circumferentially between (i) all of slot-housed portions of the arrayed conductors housed in the slot into which the at least one of the wedges is fitted and (ii) the one of two circumferential-direction wall surfaces of the slot into which the at least one of the wedges is fitted; wherein:
the at least one of the wedges includes a radially outer portion and a radially inner portion;
the radially outer portion is thicker than the radially inner portion and has a notch provided in a corner of the radially outer portion; and
the temperature sensor is disposed in the notch.
2. The stator according to claim 1 , wherein:
a wedge-shaped space is formed between one of two circumferential-direction wall surfaces of each of the slots and a circumferential-direction end surface of the arrayed conductors facing the one of two circumferential-direction wall surfaces of each of the slots; and
each of the wedges is a wedge-shaped plate member having a shape that is substantially similar to a shape of the wedge-shaped space.
3. A rotating electric machine comprising:
a stator; and
a rotor that opposes the stator in a rotatable manner,
the stator including:
a stator core in which a plurality of slots are arranged in a circumferential direction of the stator;
a winding that is configured by a plurality of conductors, each of the conductors including a slot-housed portion that is housed in each of the slots and a coil end portion that projects from an end surface of each of the slots in an axial direction of the stator, the winding being stacked and arrayed in a radial direction of the stator;
a plurality of wedges that are fitted into the slots and provided between one of two circumferential-direction wall surfaces of each of the slots and a circumferential-direction end surface of the arrayed conductors facing the one of two circumferential-direction wall surfaces of each of the slots; and
a temperature sensor that is provided in at least one of the wedges so that the temperature sensor is circumferentially between (i) all of slot-housed portions of the arrayed conductors housed in the slot into which the at least one of the wedges is fitted and (ii) the one of two circumferential-direction wall surfaces of the slot into which the at least one of the wedges is fitted; wherein:
the at least one of the wedges includes a radially outer portion and a radially inner portion; and
the radially outer portion is thicker than the radially inner portion and has a notch provided in a corner of the radially outer portion; and
the temperature sensor is disposed in the notch.
4. The rotating electric machine according to claim 3 , wherein:
a wedge-shaped space is formed between one of two circumferential-direction wall surfaces of each of the slots and a circumferential-direction end surface of the arrayed conductors facing the one of two circumferential-direction wall surfaces of each of the slots; and
each of the wedges is a wedge-shaped plate member having a shape that is substantially similar to a shape of the wedge-shaped space.