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solutions including:. Virtual DJ DJC Version. 5.5RC3. 2012Â .1. Field of the Invention
The invention relates to a rotor winding and a method of producing a stator winding for motors, in particular for high-voltage direct-current machines and for network windings.
2. Description of the Prior Art
High-voltage direct-current machines are used in areas that require high levels of energy density, and with the aim of improving the efficiency of this type of motor, it is often necessary to operate the machine at high rotation speeds.
These motors also include rotor windings, which are arranged within the rotary part of the machine and have to be configured such that they have sufficient capacity to cope with the higher currents that are called for in the event of short-circuiting and that do not lead to any unacceptable increase in the resistance of the winding.
One solution to these problems is to use numerous turns of wire that are arranged in a close-packed manner in order to increase the amount of current that flows through the winding. However, this does not involve any significant increase in the amount of time that is required to produce the winding, and this in turn gives rise to problems relating to the size of the conductors and their position in the winding.
It is common in the prior art for these windings to have steel bars that are connected by means of welding to form a core. Some high-voltage direct-current machines with rotor windings have movable cores that are supported in a friction