CORE FOR TRANSFORMER OR REACTOR
Provided is a core for a transformer or a reactor. The core according to the present invention comprises: a first leg ( 10 ), a second leg ( 12 ), and a third leg ( 14 ), which are made of widthwise rolled steel plates ( 11 ); a first yoke ( 16 ) for connecting one end of the legs ( 10, 12, 14 ) so as for a magnetic flux to pass therethrough; and a second yoke ( 18 ) for connecting the other end of the legs ( 10, 12, 14 ) so as for a magnetic flux to pass therethrough. The first yoke ( 16 ) and the second yoke ( 18 ) are made using lengthwise rolled steel plates ( 17 ). The first leg ( 10 ) has a first coil ( 10 ′) wound therearound, and the second leg ( 12 ) has a second coil ( 12 ′) wound therearound, and the third leg ( 14 ) has a third coil ( 14 ′) wound therearound. As such, the present invention can relatively increase an overall magnetic reluctance value and thus has the advantage of preventing the occurrence of magnetic saturation.
1 . A core for a transformer or a reactor, the core comprising:
at least two legs provided by laminating at least one of widthwise rolled steel plates and non-oriented steel plates on top of each other, and arranged in parallel to each other with a coil wound therearound;
a first yoke configured to connect first ends of the legs to pass a magnetic flux between the legs; and
a second yoke configured to connect second ends of the legs to pass a magnetic flux between the legs.
2 . The core of claim 1 , wherein the legs include:
a first leg with a first coil wound therearound; and
a second leg arranged in parallel to the first leg, with a second coil wound therearound.
3 . The core of claim 1 , wherein the legs include:
a first leg with a first coil wound therearound;
a second leg arranged in parallel to the first leg, with a second coil wound therearound; and
a third leg arranged in parallel to the second leg, with a third coil wound therearound.
4 . The core of claim 1 , wherein a length of each of the legs has a predetermined value, and a length of each of the yokes corresponding to a distance between the legs is formed to be shorter than the length of the legs.
5 . The core of claim 1 , wherein each of the first yoke and the second yoke is made of at least one of non-oriented steel plates, widthwise steel plates, and lengthwise steel plates.
6 . A core for a transformer or a reactor, the core comprising:
at least two legs provided by laminating steel plates and non-oriented steel plates on top of each other, and arranged in parallel to each other with a coil wound therearound;
a first yoke configured to connect first ends of the legs to pass a magnetic flux between the legs; and
a second yoke configured to connect second ends of the legs to pass a magnetic flux between the legs,
wherein at least one of the legs, the first yoke, and the second yoke is made of widthwise rolled steel plates or non-oriented steel plates, and remainder is made of at least one of widthwise rolled steel plates, non-oriented steel plates, and lengthwise rolled steel plates.
7 . The core of claim 6 , wherein a length of each of the legs has a predetermined value, and a length of each of the yokes corresponding to a distance between the legs are formed to be shorter than the length of the legs.