The present invention relates to a fusible link unit which is fixed to a post of a battery for a motor vehicle.
As a conventional structure for assembling a fuse box, a configuration shown in
In addition, as another conventional structure for assembling a fuse box, a configuration shown in
Furthermore, as still another conventional structure for assembling a fuse box, a configuration shown in
As described above, with these conventional configurations, when the nut is tightened or loosened, a load is applied to the battery terminal and the like, or the fusible link unit collides against the side wall, so that there is a problem in that these parts can be damaged and are therefore poor in durability.
Accordingly, an object of the invention is to provide a fusible link unit in which during the assembling of the fusible link unit to the buttery or removal thereof at the time of maintenance, the fusible link main body is prevented from being rotated together by the tightening or loosening of the nut, and the fusible link unit including accessory parts such as the battery terminal is prevented from becoming damaged, thereby overcoming the above-described problems.
The above-described object of the invention can be attained by the following configurations.
a battery terminal that is connected to a battery post of a battery; and
a fusible link main body that includes a bus bar for connecting to the battery terminal,
wherein the fusible link main body includes an L-shaped housing having a first face and a second face which oppose two side surfaces forming a corner portion of the battery;
wherein the bus bar is connected to a fuse portion and is extended from the first face of the housing; and
wherein abutment portions for abutting against the side surfaces of the battery are provided on the first and second faces of the housing respectively.
Here, it is preferable that, the bus bar in the housing is connected to a wire harness which is connected to an electrical equipment circuit.
Here, it is preferable that, the abutment portions are projected in first and second directions which are respectively perpendicular to an extending direction of the buttery post.
According to the configuration of item (1) above, since the respective faces of the L-shaped housing of the fusible link main body abut against the side surfaces of the battery, during the tightening of the nut at the time of fixing the fusible link main body to the battery post or during the loosening of the nut at the time of maintenance, the fusible link main body is reliably supported and fixed with respect to a direction in which the fusible link main body receives the rotational moment.
According to the configuration of item (2) above, since the fusible link unit is supported by a plurality of surfaces straddling a corner portion of the battery, it is possible to alleviate the rotational torque (rotational moment) in both mutually opposing directions.
According to the configuration of item (3) above, since a gap is formed between the side surface of the battery and the fusible link unit by the protruding portions (ribs), the heat radiation effect of the fusible link unit during its energization and heat generation is ensured.
According to the configuration of item (4) above, since the free end of the fusible link unit is supported by the supporting portion abutting against the upper surface of the battery, even if the self weight or tension of the wire harness connected to the fusible link unit is applied to the connecting portion between the battery terminal and the bus bar of the fusible link unit, the rocking movement of the fusible link unit is restricted, and the fusible link unit can be supported appropriately.
According to the configuration of item (5) above, since a gap is formed between the upper surface of the battery and the fusible link unit by means of the protruding portion (rib), the heat radiation effect of the fusible link unit during its energization and heat generation is ensured.
According to the invention, during the during the tightening of the nut at the time of fixing the fusible link main body to the battery post or during the loosening of the nut at the time of maintenance, the fusible link main body is prevented from being rotated together, and the fusible link unit including accessory parts such as the battery terminal is prevented from becoming damaged.
The above objects and advantages of the present invention will become more apparent by describing in detail preferred exemplary embodiments thereof with reference to the accompanying drawings, wherein:
Referring now to the accompanying drawings, a description will be given of an embodiment of the invention.
A fusible link unit 10 includes a fusible link main body (hereafter referred to as the main body) 12 and a bus bar 14 which is insert-molded in the main body 12. The main body 12 is made of a plastic and has an L-shaped housing 16, and the bus bar 14 having integrally molded fusible portions 18 is insert-molded therein.
A connecting end portion 20 of the bus bar 14 is provided extendingly from one side of the housing 16 in a direction toward the battery 16. In addition, four stud bolts 22 for connecting to a wire harness are fitted on the bus bar 14. A wire harness 24, which is connected to respective electrical parts, is tightened onto each stud bolt 22 by means of a connecting end portion 26 and a nut 28. In addition, a stud bolt 32 for a battery terminal 30 is fitted to the connecting end portion 20 of the bus bar 14, and the battery terminal 30 is connected to that stud bolt 32 by means of a nut 34. The battery terminal 30 has a pair of clamping pieces 36 at its end portion, and the battery terminal 30 is assembled to a battery post 38 as the clamping pieces 36 are placed on the battery post 38 and are tightened by a bolt 40.
Respective sides (faces) 42 and 44 making up an L-shape of the housing 16 are adapted to oppose two side surfaces 48 and 50 making up a corner portion of a battery 46. Further, ribs 52 and 54, which project toward the side surfaces 48 and 50 of the battery 46 and abut against the side surfaces 48 and 50 of the battery 46, are respectively provided on the respective sides 42 and 44 of the housing 16 along the vertical direction.
The main body 12 has window portions 56 for visually confirming the fusible portions 18, and these window portions 56 are closed by a cover 58 which is fitted on top of the main body 12.
According to the fusible link unit 10 having the above-described configuration, the electric current which flows from the battery 46 passes through the bus bar 14 having the fusible portions 18 and is supplied to a downstream circuit. In the event that an abnormal current has been generated, the fusible portion or portions 18 melt down, thereby preventing the smoke generation from the wire harness 24.
As shown in
Then, since the side surfaces 48 and 50 against which the ribs 52 and 54 abut receive rotational moment, the main body 12 is prevented from being rotated together with the rotation of the nut 34. Accordingly, excessive load is not applied to the main body 12 and the battery terminal 30, so that these parts do not become damaged and therefore excel in durability.
It should be noted that the ribs 52 and 54 are not always in abutment against the side walls 48 and 50, normally have slight gaps with respect to the side walls 48 and 50, and abut against the side walls 48 and 50 when the rotational moment has been applied to the housing 16. Thus, in a case where a clockwise rotational moment has been applied by tightening the nut 34, as shown in
In addition, instead of the above-described arrangement, I the ribs 52 and 54 are respectively brought into close contact with the side walls 48 and 50 without providing the very small gaps therebetween, and the main body 12 is supported by being pressed against the battery 46, the installing direction of the main body 12 with respect to the battery 46 can be maintained in a fixed state. Further, after the installation to the battery 46, even if the fusible link unit 10 undergoes vibrations in directions in which the ribs 52 and 54 are supported onto the side surfaces 48 and 50 of the battery 46, the ribs 52 and 54 limit the vibrations and make it possible to alleviate an excessive concentration from being concentrated on the battery terminal 30.
In addition, since the arrangement provided is such that the ribs 52 and 54 constituted by elongated protrusions abut against the side walls 48 and 50, a fixed interval is formed between the battery 46 and the main body 12. As a result, even if the battery side surfaces 48 and 50 have irregular surface configurations, the ribs 52 and 54 are able to reliably abut against the side surfaces 48 and 50, so that the heat radiation effect of the fusible link unit 10 during its energization and heat generation is not impaired.
As shown in
It should be noted that the invention is not limited to the above-described embodiment, and various modifications are possible based on the technological concept of the invention. For example, the ribs 52 and 54 may not be in the form of elongated protrusions, and may be mere projections. In addition, the number of the ribs 52 and 54 may be arbitrary and is not particularly limited.
Although the invention has been illustrated and described for the particular preferred embodiments, it is apparent to a person skilled in the art that various changes and modifications can be made on the basis of the teachings of the invention. It is apparent that such changes and modifications are within the spirit, scope, and intention of the invention as defined by the appended claims.
The present application is based on Japan Patent Application No. 2007-283073 filed on Oct. 31, 2007, the contents of which are incorporated herein for reference.
Number | Date | Country | Kind |
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2007-283073 | Oct 2007 | JP | national |
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