Dry-type transformer
The present disclosure relates to electrical windings for a dry transformer which allows construction of a compact dry transformer even in relatively high voltage classes. For this purpose, the electrical winding has multiple windings of a winding conductor wound to form a coil. The coil has been embedded into a solid insulation body. In some embodiments, a coating of an electrically conductive material, comprising a resin matrix with at least 0.05% by weight of nanoscale filler, has been applied to at least one surface of the insulation body.
1. An electrical winding for a dry transformer with a winding conductor, the winding comprising:
multiple windings wound to form a coil;
a solid insulation body with the coil embedded therein; and
a coating on at least one surface of the insulation body;
wherein the coating comprises a resin component and a nanoscale, electrically conductive filler, the nanoscale filler comprising carbon nanotubes having a particle size of less than 500 nm;
wherein the coating comprises no microscale filler with a particle size above 500 nm;
wherein the nanoscale filler makes up less than 20% by weight and/or 10% by volume of the coating; and
wherein the coating has a sheet resistance defined by the particle size and a filling fraction of the nanoscale filler in the range from 10 2 Ω/□ to 10 5 Ω/□.
2. The electrical winding as claimed in claim 1 , wherein the coating completely covers the surface of the insulation body.
3. The electrical winding as claimed in claim 1 , wherein the coating comprises semiconductive material.
4. The electrical winding as claimed in claim 1 , wherein the coating comprises bimodal filling with at least two filler particle fractions present.
5. The electrical winding as claimed in claim 1 , wherein the coating is applied by a spraying method.
6. The electrical winding as claimed in claim 1 , wherein a formulation for the coating comprises water as solvent.
7. The electrical winding as claimed in claim 1 , wherein the coating is grounded.
8. The electrical winding as claimed in claim 1 , wherein a defined sheet resistance of the coating is adjustable via the setting of the ratio of at least two filler particle fractions in the formulation.
9. The electrical winding as claimed in claim 1 , wherein a thickness of the coating is in the range from 1 μm to 5 mm.