Patent classifications
H02K3/48
DEVICE EQUIPPED WITH OPEN AND CLOSE FINGER FOR GUIDING COIL WIRE INTO SLOT
In an open and close finger device, fingers are arranged to guide coil wires when the coil wires are respectively inserted into slots in a motor core. A cam plate includes cam slots, each of which is engaged with a cam follower which is fixed to corresponding one of the fingers. When the cam plate is turned, the fingers are advanced along a radial direction while being guided within guide grooves in a finger guide. The cam plate is turned while being guided via a bearing by a cap fixed to the finger guide.
DEVICE EQUIPPED WITH OPEN AND CLOSE FINGER FOR GUIDING COIL WIRE INTO SLOT
In an open and close finger device, fingers are arranged to guide coil wires when the coil wires are respectively inserted into slots in a motor core. A cam plate includes cam slots, each of which is engaged with a cam follower which is fixed to corresponding one of the fingers. When the cam plate is turned, the fingers are advanced along a radial direction while being guided within guide grooves in a finger guide. The cam plate is turned while being guided via a bearing by a cap fixed to the finger guide.
ROTATING ELECTRICAL MACHINE AND STATOR FOR ROTATING ELECTRICAL MACHINE
A stator, of a rotating electrical machine, includes a core including a plurality of teeth and a slot formed between the teeth, and a plurality of coils inserted into the slot and fixed with varnish, in which the plurality of coils is disposed side by side in a radial direction in the slot, and the varnish is most applied to at least an innermost diameter side coil among the plurality of coils in the slot.
AXIAL FLUX MOTOR FOR PERCUTANEOUS CIRCULATORY SUPPORT DEVICE
An axial flux motor includes a housing; a drive shaft disposed within the housing; at least one rotor; and at least one stator. The at least one rotor includes a diametrically-magnetized single pole pair magnetic ring having a rotor aperture defined through the center of the magnetic ring, where the drive shaft extends through the rotor aperture and where the at least one rotor is fixed to the drive shaft. The at least one stator includes a number of conductive windings and a stator aperture, where the drive shaft extends through the stator aperture and where the drive shaft is rotatable within the aperture. The at least one stator is configured to generate an axial magnetic field that causes the at least one rotor to rotate, thereby rotating the drive shaft.
Manufacturing method of stator for vehicle rotary electric machine
A step of inserting an insulating paper into a slot of a stator core (second step) is performed, a step of placing a jig at a position that is on a side opposite to a side from which a segment coil is inserted into the slot of the stator core and that overlaps with a protrusion when viewed in an inserting direction of the segment coil (third step) is performed, and then a step of inserting the segment coil into the slot (fourth step) is performed. Therefore, even when the insulating paper is dragged by the segment coil in the process of inserting the segment coil into the slot, the insulating paper abuts the jig and the movement of the insulating paper is restricted, thereby suppressing displacement of the insulating paper from the slot.
Manufacturing method of stator for vehicle rotary electric machine
A step of inserting an insulating paper into a slot of a stator core (second step) is performed, a step of placing a jig at a position that is on a side opposite to a side from which a segment coil is inserted into the slot of the stator core and that overlaps with a protrusion when viewed in an inserting direction of the segment coil (third step) is performed, and then a step of inserting the segment coil into the slot (fourth step) is performed. Therefore, even when the insulating paper is dragged by the segment coil in the process of inserting the segment coil into the slot, the insulating paper abuts the jig and the movement of the insulating paper is restricted, thereby suppressing displacement of the insulating paper from the slot.
METHOD FOR MANUFACTURING STATOR OF ROTATING ELECTRICAL MACHINE, STATOR OF ROTATING ELECTRICAL MACHINE, AND ROTATING ELECTRICAL MACHINE
The reliability of a rotating electrical machine is improved. A method for manufacturing a stator used in a rotating electrical machine includes: a first step of arranging a first segment coil and a second segment coil to face each other; a second step of processing the first segment coil to generate a bridge part that comes into contact with the second segment coil; and a third step of joining the bridge part and the second segment coil by laser welding.
METHOD FOR MANUFACTURING STATOR OF ROTATING ELECTRICAL MACHINE, STATOR OF ROTATING ELECTRICAL MACHINE, AND ROTATING ELECTRICAL MACHINE
The reliability of a rotating electrical machine is improved. A method for manufacturing a stator used in a rotating electrical machine includes: a first step of arranging a first segment coil and a second segment coil to face each other; a second step of processing the first segment coil to generate a bridge part that comes into contact with the second segment coil; and a third step of joining the bridge part and the second segment coil by laser welding.
Hairpin winding electric machine
An electric machine includes a stator core defining slots and a single-layer winding disposed in the core and having first and second parallel paths. Each path includes hairpins interconnected to form a continuous circuit between a terminal and a neutral. The hairpins of the first path include a first type of hairpins each having a first leg, a second leg, a crown connecting between the legs, an outwardly extending twist joined to the first leg, and an inwardly extending twist joined to the second leg, wherein the legs are spaced apart by a span of five slots, and a second type of hairpins each having a first leg, a second leg, a crown connecting between the legs, an inwardly extending twist joined to the first leg, and an outwardly extending twist joined to the second leg, wherein the legs are spaced apart by a span of seven slots.
Hairpin winding electric machine
An electric machine includes a stator core defining slots and a single-layer winding disposed in the core and having first and second parallel paths. Each path includes hairpins interconnected to form a continuous circuit between a terminal and a neutral. The hairpins of the first path include a first type of hairpins each having a first leg, a second leg, a crown connecting between the legs, an outwardly extending twist joined to the first leg, and an inwardly extending twist joined to the second leg, wherein the legs are spaced apart by a span of five slots, and a second type of hairpins each having a first leg, a second leg, a crown connecting between the legs, an inwardly extending twist joined to the first leg, and an outwardly extending twist joined to the second leg, wherein the legs are spaced apart by a span of seven slots.