Slot wall insulation for a stator of an electric motor
An electric motor including a stator body with a stator laminated core and a stator slot, wherein the stator slot has a slot wall with a slot wall insulation for electrical insulation, as well as at least one electrical conductor which is received by the stator slot, the slot wall insulation having a tooth-shaped configuration.
1. An electric motor comprising:
a stator body with a stator laminated core and at least one stator slot, wherein the at least one stator slot has a slot wall with a slot wall insulation for electrical insulation, as well as at least one electrical conductor, wherein the slot wall insulation has a tooth-shaped configuration which establishes a position for at least one U-shaped electrical conductor disposed in the at least one stator slot, wherein the tooth-shaped configuration receives the at least one electrical conductor in the at least one stator slot within a gap is formed between two mutually opposite teeth protruding toward an interior of the stator slot from opposite sides of the stator wall, wherein a first electrical conductor and a second electrical conductor are received in adjacent stator slots forming a fluid duct between a top side of the first electrical conductor and the U-shaped bottom side of the second electrical conductor.
2. The electric motor as claimed in claim 1 , wherein the slot wall insulation is formed on a surface of at least one stator sheet of the stator laminated core.
3. The electric motor as claimed in claim 1 , wherein at least one electrical conductor is formed or stamped out.
4. The electric motor as claimed in claim 1 , wherein the at least one electrical conductor can be glued or clamped or press-fitted in the at least one stator slot.
5. A method for producing an electric motor with a stator body with a stator laminated core and at least one stator slot, wherein the at least one stator slot has a slot wall with a slot wall insulation for electrical insulation, and the at least one stator slot is designed to receive electrical conductors, the method comprising:
a) fabricating a stator with the stator laminated core and the at least one stator slot in an injection molding;
b) simultaneously forming of a tooth-shaped configuration of the slot wall insulation during the injection molding;
c) providing of at least one U-shaped electrical conductor;
d) inserting the at least one U-shaped electrical conductor into the tooth-shaped slot wall insulation;
e) forming at least one gap by the tooth-shaped configuration between two mutually opposite teeth protruding toward an interior of the stator slot from opposite sides of the stator wall, wherein a first electrical conductor and a second electrical conductor are received in adjacent stator slots forming a fluid duct between a top side of the first electrical conductor and the U-shaped bottom side of the second electrical conductor; and
f) placing the electric motor in operation and running a fluid through the at least one gap.
6. The method as claimed in claim 5 , wherein the at least one electrical conductor is formed before being introduced into the tooth-shaped slot wall insulation.