The present invention relates to a production method for a laminated coil having a first coil part and a second coil part formed by bending a flat coil.
In general, a reactor includes a coil and a magnetic core and forms inductance by bending the coil around the magnetic core. According to the related art, reactors are used in boosting circuits, inverter circuits, active filter circuits and the like. In particular, in reactors used in boosting circuits for vehicles, in order to obtain a high degree of inductance in a high current region, two coils are commonly connected in parallel such that current flowing in the coils flows in a forward direction. However, since may be difficult to consecutively produce the first coil part and the second coil part, the first coil part and the second coil part may be separately produced and subsequently connected to each other by a method such as a soldering method or the like. Since such a production method requires two types of coil part and needs to include a connection process using soldering or the like, a process for insulation processing in a connection portion, a process for inspecting electrical characteristics in the associated connection portion, a process for inspecting electrical insulating characteristics, and the like, the number of production processes may be increased, mass productivity may be deteriorated and at the same time, costs required therefor may be increased. In addition, a product produced by the method described above has a connection portion and further, the connection portion is disposed outwardly of the coil, which may deteriorate performance of the product such as degrading reliability, generating quality deviations, and the like.
Alternatively, a method of consecutively forming the first coil part and the second coil part without a connection process such as soldering or the like, but in which the second coil part is bent at an angle of 180° with respect to the first coil part to form a bent connection portion exists. However, stress concentration may be disadvantageously generated in the bent connection portion produced by this method.
Alternatively, a method of forming first and second coil parts such that a bent portion formed by bending a single flat coil from respective ends thereof in a length direction is stacked in an angular tube shape exists. However, the coil formation method further requires a length measuring process for measuring a length of a connection portion immediately before the completion of a second coil after a first coil has been completed while the first coil is formed before the formation of the second coil, a length dividing process for dividing the measured length of the connection portion into a length thereof for a preset interval between both coils and a length thereof for adjusting the flat coil set in the second coil, and a final bending process for installing an offset portion in one side of an edge of the bent portion in the second coil so as to correspond to the divided length, and simultaneously, setting the interval between the both coils. Consequently, since the coil formation method includes a large number or processes and particularly, further includes a process for measuring a length of the remaining wire in a manufacturing process of a connection coil, it may be disadvantageous in terms of efficiency and costs in a manufacturing method.
An aspect of the present invention provides a production method for a laminated coil, capable of consecutively producing coil parts using a single flat coil during the production of the coil to thereby allow for a simplified coil production process as compared to the case of a production method according to the related art, a reduction in producing costs, improvements in product reliability, and securement in a predetermined performance.
According to an aspect of the present invention, there is provided a production method for a laminated coil, the production method including bending a single flat coil from an initiation point thereof, spaced apart from a first end thereof in one direction, to form a first coil part having the flat coil stacked in an angular tube shape; forming a connection portion in a stacking direction by bending the flat coil of the first coil part; bending the flat coil of the connection portion in an extended state thereof in a length direction and stacking the flat coil in an angular tube shape to form a second coil part; and spreading the bent connection portion such that the first coil part and the second coil part are disposed in parallel in the same direction on the same plane.
Moreover, in a first example of the present invention, in the forming of the connection portion, a first bent portion of the connection portion may be bent in a direction perpendicular to the length direction of the flat coil.
Furthermore, in a second example of the present invention, in the forming of the connection portion, the flat coil may be bent in a direction perpendicular to the length direction thereof such that a first bent portion of the connection portion is aligned with the stacking direction of the flat coil, and a second bent portion of the connection portion may be re-bent.
According to embodiments of the present invention, a first coil part and a second coil part may be consecutively produced in a coil production process, such that an additional connection process such as soldering or the like may be unnecessary in a connection portion between the first coil part and the second coil part. A process for bending the connection portion may be additionally included in the coil production process, such that the connection portion may be finally disposed on the same plane without being bent. In addition, a process for measuring a length of the remaining wire in the connection portion may not be required in the coil production process, whereby the number of production processes may be significantly reduced.
In addition, a reduction, in costs required at the time of production, improvements in product reliability, and securement in a predetermined performance may be achieved.
b is a view illustrating a process of bending the flat coil from an end thereof in one direction.
c is a view illustrating a process of forming a first coil part having the flat coil stacked in an angular tube shape by the process.
d is a view illustrating a process of forming a first bent portion by bending the flat coil of the first coil part.
e is a view illustrating a first example of a process of forming a second coil part by stacking the flat coil in an angular tube shape.
f is a view illustrating a process of forming a second bent portion by re-bending the first bent portion of a connection portion, bent once.
g is a view illustrating a second example of a process of forming the second coil part by stacking the flat coil in an angular tube shape.
[Representative Figure]
Hereinafter, the present invention relates to a production method for a laminated coil. Hereinafter, embodiments of the present invention will be described in detail with reference to the accompanying drawings.
a is a view illustrating a process of preparing a flat coil before the bending thereof.
In a first embodiment, as illustrated in
As illustrated in
An end 90 of the second coil part 60 may be formed in a position spaced apart from a termination point 70 of the second coil part 60 in which the stacking of the flat coil is terminated, by a determined distance.
In a second embodiment, the processes of
The end 80 of the second coil part 60 may be formed in a position spaced apart from the termination point 70 of the second coil part 60 in which the stacking of the flat coil is terminated, by a determined distance.
In the coil produced according to the first example and the second example described above, the bent connection portion 35 may spread out such that the first coil part 30 and the second coil part 60 are disposed in parallel in the same direction on the same plane, as illustrated in
5: flat coil
10: first end
20: initiation point
30: first coil part
35: connection portion
40: first bent portion
50: second bent portion
60: second coil part
70: termination point
80: second end
Number | Date | Country | Kind |
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10-2011-0047209 | May 2011 | KR | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/KR12/03919 | 5/17/2012 | WO | 00 | 11/13/2013 |