INDUCTOR FOR THE EXCITATION OF POLYHARMONIC ROTATING MAGNETIC FIELDS
An inductor for the excitation of polyharmonic rotating magnetic fields (RMF) for controlling the crystalline structure of continuous ingots and castings in metallurgy and other foundry applications. The inductor design makes it possible to use standard sources of sinusoidal currents for generating polyharmonic RMF, and significantly increase cos φ of the inductor.
1 . An inductor for the for the excitation of polyharmonic rotating magnetic fields comprising:
a support plate;
an electrical connector coupled to the support plate, the electrical connector capable of receiving an electrical current, the electrical current comprising at least one frequency, and at least one phase; and,
a plurality of poles coupled to the support plate, electrically coupled to the electrical connector and arranged around the inductor bore, the plurality of poles comprising at least two poles per frequency of the electrical current and at least one pole per phase of the electrical current, each pole further comprising a coil disposed thereon;
wherein the poles associated with each frequency are magnetically isolated from each other.
2 . The inductor of claim 1 , wherein at least one of the poles comprises at least one ferroceramic.
3 . The inductor of claim 1 , wherein the inductor further comprising an inductor bore, the inductor bore further comprising a shield.
4 . The inductor of claim 3 , wherein the shield is made of stainless steel.
5 . The inductor of claim 1 , the inductor further comprising an inductor bore, each pole of the plurality of poles being arranged at the same radial distance from the center inductor bore.
6 . The inductor of claim 1 , the inductor further comprising an inductor bore, at least one pole of the plurality of poles being arranged at radial distance from the center of the inductor bore that is different than the other poles within the plurality of poles.
7 . The inductor of claim 1 , the poles comprising a ferroceramic.
8 . A method for minimizing reactive currents generated when applying polyharmonic currents to an inductor, the method comprising:
applying a first electrical current to a first plurality of poles, the first electrical current having a first frequency and at least two phases; and,
applying a second electrical current to a second plurality of poles, the second electrical current having a second frequency and at least two phases;
wherein the first plurality of poles and the second plurality of poles are magnetically isolated from each other.
9 . The method of claim 8 , further comprising:
applying a third electrical current to a third plurality of poles, the third electrical current having a third frequency and at least two phases;
wherein the third plurality of poles is magnetically isolated from the first plurality of poles and the second plurality of poles.