TRANSFORMER HAVING NOISE REDUCTION STRUCTURE
The present invention relates to a transformer having a noise reduction structure. A tank ( 12 ) forms the exterior of the transformer ( 10 ). An inner space ( 14 ) filled with insulating oil is formed inside the tank ( 12 ). An iron core ( 20 ) is provided inside the tank ( 12 ) by a lower frame ( 16 ) and an upper frame ( 18 ), and coils ( 22 ) are wound around parts of the iron core ( 20 ) extending in the direction of gravity. An insulating sheet ( 24 ) is provided to encompass the surface of each of the coils ( 22 ), and has ridge portions ( 26 ) and groove portions ( 28 ), which are formed to extend in the height direction of the iron core ( 20 ). It is preferable that the side surfaces of the groove portions ( 28 ) are formed in parallel so as to face each other. The present invention as above minimizes the transfer of vibrations, generated from the coils ( 22 ), to the insulating sheets ( 24 ) provided on the surfaces of the coils ( 22 ) and removes a part of the vibrations since the vibrations coming out after having passed through the insulating sheets ( 24 ) are transferred to the insulating oil so as to cancel each other out. Therefore, the present invention can relatively reduce vibration and noise, which are generated from the transformer.
1 . A transformer having a noise reduction structure, the transformer comprising:
a tank provided therein with an inner space filled with an insulating oil;
an iron core provided in the tank and serving as a passage for lines of magnetic force;
coils wound on the iron core, and performing voltage and current transformation through electromagnetic interaction when electric power is applied to the coils; and
an insulating sheet surrounding a surface of each of the coils and performing insulation, with ridge portions and groove portions alternately provided on a surface of the insulating sheet.
2 . The transformer of claim 1 , wherein the insulating sheet is provided such that ridge portions provided on a surface facing the surface of each of the coils are attached to the surface of the coil.
3 . The transformer of claim 2 , wherein opposite side surfaces of each of the groove portions face each other in parallel.
4 . The transformer of claim 1 , wherein the ridge portions and the groove portions are provided on opposite surfaces of the insulating sheet to correspond to each other, such that groove portions of a second surface of the insulating sheet are formed by forming ridge portions of a first surface of the insulating sheet.
5 . The transformer of claim 4 , wherein the ridge portions and the groove portions extend in a height direction of each of the coils.
6 . The transformer of claim 2 , wherein the ridge portions and the groove portions are provided on opposite surfaces of the insulating sheet to correspond to each other, such that groove portions of a second surface of the insulating sheet are formed by forming ridge portions of a first surface of the insulating sheet.
7 . The transformer of claim 3 , wherein the ridge portions and the groove portions are provided on opposite surfaces of the insulating sheet to correspond to each other, such that groove portions of a second surface of the insulating sheet are formed by forming ridge portions of a first surface of the insulating sheet.