This invention relates to a metal core board to be used in an electric connection box and an electric connection box distributing electric power by using the metal core board.
Many various electronic apparatuses are provided in a car. For distributing electric power from an electric power source to the various electronic apparatuses, an electric connection box is arranged in the car. The electric connection box, which is configured to have one of various structures, is applied for that and for example, the electric connection shown in Patent Document 1 is configured to distribute by using a metal core board.
As shown in
The metal core board 501 is provided with the core metal plate 502, insulation layers 504a, 504b covering the core metal plate 502 and conductive circuits 505 arranged at each of surfaces of the insulation layers 504a, 405b. The conductive circuit 505 is made of cupper foil.
The above-mentioned connector 507a includes an L-shaped terminal 571a and a connector housing 570a. The terminal 571a includes a first connecting portion 572a to be connected with a connector of a wiring harness connected to the battery and a second connecting portion 573a mounted at the metal core board 501. The first connecting portion 572a is arranged inside the connector housing 570a. The second connecting portion 573a is joined to the metal core circuit board 501 so as to pass through the metal core board 501 and be connected electrically to the conductive circuit 505 and be insulated from the core metal plate 502.
The above-mentioned connector 507b includes an L-shaped terminal 571b and a connector housing 570b. The terminal 571b includes a first connecting portion 572b to be connected with a connector of a wiring harness connected to the alternator and a second connecting portion 573b mounted at the metal core board 501. The first connecting portion 572b is arranged inside the connector housing 570b. The second connecting portion 573b is joined to the metal core circuit board 501 so as to pass through the metal core board 501 and be connected electrically to the conductive circuit 505 and the core metal plate 502.
As mentioned above, in the electric connection box 510, the electric power distributing circuit for distributing the electric power from the battery is structured by only the conductive circuit 505 arranged at each of the surfaces of the insulation layers 504a, 504b, and a power distributing circuit for distributing the electric power from the alternator is structured by the conductive circuit 505 and the core metal plate 502. According to such power distributing circuit for distributing the electric power from the battery, thickness of the conductive circuit 505 is thinner than thickness of the core metal plate 502, so that correspondingly, larger surface area is required, and thereby it is problem that the metal core circuit board 510 becomes larger.
As a solution for the problem, according to an electric connection box 610 as shown in
In
Patent Document
Patent Document 1: Japan Patent Application Published No. 2007-325345
Objects to be solved
According to the electric connection box 610, in which the core metal plate 602 is only divided simply to two portions by forming the line-shaped slit 603 as shown in
According to the above problems, an object of the present invention is to provide a metal core board, which can limit increase of the size thereof and be prevented from bending along the slit, can be provided.
How to attain the object of the present invention
In order to overcome the above problems and attain the object, the present invention is to provide a metal core board which is used for an electric connection box, and includes a plurality of core metal plates; insulation resin filled between each of the plurality of core metal plates, and at least one of the plurality of core metal plates is divided to a plurality of s so as to forma slit filled with the insulation resin, and the slit overlapped on a same one line when viewing in a vertical direction about the metal core board is formed partially so as to eliminate the slit overlapping over whole length of the core metal plate.
An invention according to claim 2 is specified in the present invention described in claim 1 in that the slit is formed at all of the plurality of core metal plates.
An invention according to claim 3 is specified in the present invention described in claim 1 in that the slit is formed at the plurality of core metal plates other than at least one of the plurality of core metal plates.
An invention according to claim 4 is specified in an electric connection box in that the electric connection box includes the metal core board according to claim 1, 2 or 3, and distributes electric power inputted from a plurality of power source systems respectively to each of the core metal plates and each of the separate plates.
According to the present invention, at least one of the plurality of core metal plates is divided to plurality of separate plates so as to form a slit filled with the insulation resin, so that the each of the core metal plates or the each of the separate plates can be used as an electric power distributing circuit for electric power from a plurality of power sources. Also, the slit overlapped on the same one line when viewing in a vertical direction about the metal core board is formed partially so as to eliminate a slit overlapping over whole length of the core metal plate, so that each of slits is overlapped by the part of the core metal plate, which has no slit, and a part which is weakened by forming a slit can be enforced. Therefore, the metal core board, which enlarging the size thereof can be limited and bending along the slit can be prevented, is provided.
According to the invention described in claim 2, the slit is arranged at all core metal plates, so that each of the separate plates can be applied as the electric power distributing circuit distributing electric power from the plurality of power source systems. Thereby, increasing the size of the metal core board can be limited. The metal core board which can limit increase of the size thereof and be prevented from bending along the slit, can be provided.
According to the invention described in claim 3, the slit is not formed at the at least one of the plurality of core metal plates. Thereby, the core metal plate having no slit overlaps the slit of the other core metal plates, so that a part of the core metal plate weakened by the slit can be enforced. Therefore, the metal core board which can limit increase of the size thereof and be prevented from bending along the slit, can be provided.
According to the present invention claimed in claim 4, the electric connection box includes the metal core board described in any one of claims 1-3, so that the electric connection box having the metal core board, which can limit increase of the size thereof and be prevented from bending along the slit, can be provided.
FIRST EMBODIMENT: A metal core board and an electric connection box as a first embodiment according to the present invention are described with reference to drawings
The electric connection box 10 according to the embodiment is mounted at a car and configured to distribute electric power from a plurality of power source systems including a battery and an alternator to a plurality of electronic apparatuses. The electric connection box 10 as shown in
The metal core board 1 as shown in
The core metal plate 21, 22 is formed with a rectangular cupper plate or a rectangular metal plate including cupper. At the core metal plates 21, 22, as shown in
The insulation layer 4 is composed of prepreg which is made by impregnating epoxy resin into glass fiber fabrics. In other words, the above slits 3A, 3B are fixed by the epoxy resin. The three-layered insulation layers 4 adhere and integrate the two core metal plates 21, 22.
The relay 6 includes a plurality of terminals 61 inserted into each through hole of the metal core board 1 and soldered with them, as shown in
The connector block 7 includes a housing 70 made of synthetic resin and a plurality of L-shaped terminals 72 supported by the housing 70 as shown in
The fuse block 9 includes a housing 90 made of synthetic resin and a plurality of L-shaped terminals 92 supported by the housing 90. The housing 90 is provided with a pair of screw fixing portions 91 to be fixed by screws to the metal core plate 1. The terminal 92 includes a first connecting portion 93 to be connected with a fuse and a second connecting portion 94 inserted into the through hole of the metal core board 1 and soldered therewith.
Such electric connection box 10 distributes electric power from the plurality of power source systems including the battery and the alternator through the wiring harnesses and the connector block 7 to the conductive print circuit layer 5, the relay 6 and the fuse block 9, and toward each of the electronic apparatuses.
According to the present invention, the core metal plates 21, 22, that is the separate plates 21a, 21b and 22a, 22b, can be used not only for heat dissipation, but also as a part of an electric power distributing circuit, so that increase of the metal core board 1 can be limited.
In the electric connection box 10 according to the present invention, for preventing that the metal core board 1 is bent along the slit 3A and 3B by loading weights of the relay 6, the connector block 7 and the fuse block 9 and a weight of the metal core board 1 itself at the slits 3A and 3B having strength weaker than the other portion, reinforce structures described hereafter are applied.
As a first one of the reinforce structures according to the present invention, the slits 3A and 3B are arranged so as to be not on the same line when viewed in a direction vertical to the metal core board 1 as shown in
As a second one of the reinforce structures according to the present invention, one of the relays 6 is arranged to bridge over the slit 3B, and at least one of a plurality of terminals 61 of the one of the relays 6 is soldered with the separate plate 22a, and remains of the plurality of terminals 61 are soldered with the separate plate 22b, as show in
As a third one of the reinforce structures according to the present invention, the connector block 7 is arranged to bridge over the slits 3A and 3B, one of the pair of screw fixing portions 71 of the connector block 7 is fixed by screw to the separate plate 21a and the separate plate 22a, and the other one of the pair of screw fixing portions 71 is fixed by screw to the separate plate 21b and the separate plate 22 as shown in
As a fourth one of the reinforce structures according to the present invention, the fuse block 9 is arranged to bridge over the slit 3B, and one of a pair of screw fixing portions 91 of the fuse block 9 is fixed by screw to the separate plate 21a and the separate plate 22a, and the other one of the pair of screw fixing portions 91 is fixed by screw to the separate plate 21a and the separate plate 22b. Furthermore, some terminals 92 of the fuse block 9 are soldered with the separate plate 21a and the separate plate 22a, and remains of the terminals 92 of the fuse block 9 are soldered with the separate plate 21a and the separate plate 22b.
According to the present invention, the metal core board 1, which can limit increase of size thereof and can prevent from bending along the slits 3A, 3B, and the electric connection box 10 including the metal core board 1 can be provided.
The second embodiment: the metal core board and the electric connection according to the second embodiment of the present invention will be described with reference to drawings
The electric connection box 110 according to the embodiment is mounted at a car and configured to distribute electric power from the plurality of power source systems including the battery and the alternator to the plurality of electronic apparatuses. The electric connection box 110 as shown in
The metal core board 101 as shown in
The core metal plate 121, 122 is formed with a rectangular cupper plate or a rectangular metal plate including cupper. At the core metal plates 121, 122, as shown in
Such electric connection box 110 distributes electric power inputted from the plurality of power source systems including the battery and the alternator to each of separate plates 121a, 121b, 122a and 122b toward each of the electronic apparatuses.
In the electric connection box 110 according to the present invention, for preventing that the metal core board 101 is bent along the slit 3A and 3C by loading weights of the relay 6, the connector block 7 and the fuse block 9 and a weight of the metal core board 101 itself at the slits 3A and 3C having strength weaker than the other portion, reinforce structures described hereafter are applied.
As the reinforce structures according to the present invention, the slits 3A and 3C are arranged so as to intersect each other when viewed in the direction vertical to the metal core board 101 as shown in
According to the present invention, the metal core board 101, which can limit increase of size thereof and can prevent from bending along the slits 3A, 3C, and the electric connection box 110 including the metal core board 101 can be provided.
The third embodiment: the metal core board and the electric connection according to the second embodiment of the present invention will be described with reference to drawings
The electric connection box 210 according to the embodiment is mounted at a car and configured to distribute electric power from a plurality of power source systems including a battery and an alternator to a plurality of electronic apparatuses. The electric connection box 210 as shown in
The metal core board 201 as shown in
The core metal plate 221, 222 is formed with a rectangular cupper plate or a rectangular metal plate including cupper. At the core metal plates 221, 222, as shown in
Such electric connection box 210 distributes electric power inputted from the plurality of power source systems including the battery and the alternator to each separate plates 221a, 221b, 222a, 222b toward each of the electronic apparatuses.
In the electric connection box 210 according to the present invention, for preventing that the metal core board 201 is bent along the slit 3D and 3E by loading weights of the relay 6, the connector block 7 and the fuse block 9 and a weight of the metal core board 201 itself at the slits 3D and 3E having strength weaker than the other portion, reinforce structures described hereafter are applied.
As a first one of the reinforce structures according to the present invention, the slits 3D and 3E are arranged so as to be not on the same line when viewed in a direction vertical to the metal core board 201 as shown in
As a second one of the reinforce structures according to the present invention, the slits 3D and 3E are arranged so as to be not straight shape as shown in
According to the second one of the reinforce structures, the slits 3D and 3E are formed not into one straight line, so that a part having weaker strength is dispersed comparing with a case that the slit is one straight line. Thereby, the metal core board 201 is prevented from bending along the slits 3D and 3E. The first straight portion 31 and the second straight portion 32 are formed to be not on the same straight line, so that the metal core board 201 can be prevented from bending along the first straight portion 31 and the second straight portion 32. The slits 3D, 3E are formed into a zigzag shape, a part having weaker strength is dispersed comparing with the case that the slit is formed into one straight line. In addition, thereby, length of the slit 3D, 3E is formed longer and amount of resin for adhering the separate plates 221a, 221b, 222a, 222b, so that the metal core board 210 can be prevented from bending along the slits 3D and 3E.
According to the present invention, the metal core board 201, which can limit increase of size thereof and can prevent from bending along the slits 3D, 3E, and the electric connection box 210 including the metal core board 201 can be provided.
The fourth embodiment: the metal core board and the electric connection according to the second embodiment of the present invention will be described with reference to drawings
The electric connection box 310 according to the embodiment is mounted at a car and configured to distribute electric power from a plurality of power source systems including a battery and an alternator to a plurality of electronic apparatuses. The electric connection box 310 as shown in
The metal core board 301 as shown in
The core metal plate 321, 322 is formed with a rectangular cupper plate or a rectangular metal plate including cupper. At the core metal plates 321, 322, as shown in
Such electric connection box 310 distributes electric power inputted from the plurality of power source systems including the battery and the alternator to each separate plates 321a, 321b, 322a, 322b, 323a, 323b, toward each of the electronic apparatuses.
In the electric connection box 310 according to the present invention, for preventing that the metal core board 301 is bent along the slit 3A, 3B and 3A′ by loading weights of the relay 6, the connector block 7 and the fuse block 9 and a weight of the metal core board 301 itself at the slits 3A, 3B and 3A′ having strength weaker than the other portion, a reinforce structure described hereafter is applied.
As the reinforce structure according to the present invention, the slit, which is arranged so as to be on the same line when viewed in a direction vertical to the metal core board 301 as shown in
According to the reinforce structure, the slits 3A and 3A′ overlap a part of the core metal plate 322, at which the slit 3B is not formed, that is the separate plate 332b, and the slit 3B overlaps a part of the core metal plate 321, at which the slit 3A is not formed, that is the separate plate 321a, and a part of the core metal plate 323, at which the slit 3A′ is not formed, that is the separate plate 323a. Thereby, a part having weaker strength by forming the slits 3A, 3B, 3A′ can be reinforced.
According to the present invention, in case that the metal core board includes three layered core metal plates, the slits of the two core metal plates can be formed on the same line. In other words, meaning of that the slit, which is arranged so as to be on the same line when viewed in a direction vertical to the metal core board 301 is formed at all of core metal plates 321, 322, 323 corresponds to a case of that the slit 3B overlaps the slits 3A and 3A′ on the same line.
According to the present invention, the metal core board 301, which can limit increase of size thereof and can prevent from bending along the slits 3A, 3B, 3A′ and the electric connection box 310 including the metal core board 301 can be provided.
The fifth embodiment: the metal core board and the electric connection according to the second embodiment of the present invention will be described with reference to drawings
The electric connection box 410 according to the embodiment is mounted at a car and configured to distribute electric power from a plurality of power source systems including a battery and an alternator to a plurality of electronic apparatuses. The electric connection box 410 as shown in
The metal core board 401 as shown in
The core metal plate 421, 422, 423 is formed with a rectangular cupper plate or a rectangular metal plate including cupper. At the core metal plates 421, 422, 423, as shown in
Such electric connection box 410 distributes electric power inputted from the plurality of power source systems including the battery and the alternator to each separate plates 421a, 421b, 422a, 422b and the core metal plate 423 toward each of the electronic apparatuses.
In the electric connection box 410 according to the present invention, for preventing that the metal core board 401 is bent along the slit 3A and 3A′ by loading weights of the relay 6, the connector block 7 and the fuse block 9 and a weight of the metal core board 401 itself at the slits 3A and 3A′ having strength weaker than the other portion, a reinforce structure described hereafter are applied.
As the reinforce structure according to the present invention, the slit, which is arranged so as to be on the same line when viewed in a direction vertical to the metal core board 401 as shown in
According to the reinforce structure, the slits 3A and 3A′ overlap the core metal plate 423, which no slit is arranged, so that parts, which have weaker strength by arranging the slits 3A and 3A′, can be reinforces.
According to the present invention, when the core metal plate of the metal core board is structured by three layers, slits overlapping on the same line can be formed about two layers.
According to the present invention, the metal core board 401, which can limit increase of size thereof and can prevent from bending along the slits 3A, 3A′, and the electric connection box 410 including the metal core board 401 can be provided.
According to the above-mentioned embodiment, all core metal plates and all separate plates are used for the electric power distributing circuit for distributing the electric power from the power source. According to the present invention, all core metal plates and all separate plates may not used for the electric power distributing circuit for distributing the electric power from the power source. In other words, some of the plurality of core metal plates and some of the plurality of separate plates can be used only for heat dissipation.
The present inventions are described based in the embodiments as mentioned above, but the present invention is not limited in above embodiments. Various change and modifications can be made with the scope of the present invention.
Remarks
1, 101, 201, 301, 401 Metal core board
3A, 3A′, 3B, 3C, 3D, 3E Slit
10, 110, 210, 310, 410 Electric connection box
21, 22, 121, 122, 221, 222, 321, 322, 323, 421, 422, 423 Core metal plate
21
a,
21
b,
22
a,
22
b,
121
a,
121
b,
122
a,
122
b,
221
a,
221
b,
222
a,
222
b,
321
a,
321
b,
322
a,
322
b,
323
a,
323
b,
421
a,
421
b,
422
a,
422
b Separate plate
Number | Date | Country | Kind |
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2010-235153 | Oct 2010 | JP | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/JP2011/074738 | 10/20/2011 | WO | 00 | 4/17/2013 |