Fixing structure between busbar and terminal
09837774 ยท 2017-12-05
Assignee
Inventors
Cpc classification
Y02E60/10
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
H01M50/507
ELECTRICITY
H01M2220/20
ELECTRICITY
H01R25/162
ELECTRICITY
International classification
H01R33/00
ELECTRICITY
Abstract
A fixing structure between a busbar and a terminal includes a busbar and a terminal. The busbar includes a busbar main body, an arm, and a fixing target portion. The terminal includes a wire connection portion to which a wire is to be electrically connected, a busbar fixing portion which is fixed and electrically connected to the fixing target portion of the busbar, and an arm fixing portion provided between the wire connection portion and the busbar fixing portion and fixed to the arm of the busbar.
Claims
1. A fixing structure between a busbar and a terminal, comprising: the busbar; and the terminal, wherein the busbar includes: a busbar main body; an arm; and a fixing target portion, wherein the busbar main body, the arm and the fixing target portion are integrated in one piece, wherein the terminal includes: a wire connection portion to which a wire is to be electrically connected; a busbar fixing portion which is fixed and electrically connected to the fixing target portion of the busbar; and an arm fixing portion provided between the wire connection portion and the busbar fixing portion and fixed directly to the arm of the busbar.
2. The fixing structure according to claim 1, wherein the fixing target portion projects from one side edge of the arm in a direction that is perpendicular to a projecting direction of the arm from the busbar main body, and wherein the arm fixing portion of the terminal is fixed to an end portion of the arm locating on an opposite side of the busbar main body.
3. The fixing structure according to claim 1, wherein the busbar fixing portion of the terminal is crimped to the fixing target portion by swaging, and wherein the arm fixing portion of the terminal is fixed to the arm by swaging.
4. The fixing structure according to claim 1, wherein the busbar main body is held in a resin holding member, and wherein the holding member has, on two respective sides in a direction that is perpendicular to a projecting direction of the arm, support walls which support the arm.
5. A busbar module comprising: a resin wire routing body configured to be attached to a battery assembly of a plurality of battery cells; and the fixing structure according to claim 1, in which the terminal is connected to the busbar housed in a busbar housing unit of the resin wire routing body.
6. The fixing structure according to claim 1, wherein the arm includes a swaging target portion which has a U-shape, and the arm fixing portion wraps around the swaging target portion.
7. The fixing structure according to claim 6, wherein the fixing target portion of the busbar is adjacent to the swaging target portion of the arm.
8. The fixing structure according to claim 1, wherein the arm includes a tip and the fixing target portion of the busbar is located at the tip of the arm.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
(13) An exemplary embodiment will be hereinafter described with reference to the drawings.
(14) As shown in
(15) As shown in
(16) The busbar main body 12 is rectangular in a plan view, and an arm 13 projects from it. However, the plan shape of the busbar main body 12 is not limited to a rectangle and may be an ellipse, for example.
(17) The arm 13 projects outward from an edge of the busbar main body 12. The arm 13 has, at the tip, a swaging target portion 13a which is bent so as to be U-shaped in a sectional view (see
(18) The fixing target portion 14 projects from one side edge of the tip portion of the arm 13 so as to extend in the direction that is perpendicular to the projecting direction of the arm 13. As a result, the fixing target portion 14 extends approximately parallel with the edge, from which the arm 13 projects, of the busbar main body 12 with a gap formed between them.
(19) As shown in
(20) The wire connection portion 22 has a conductor crimping portion 31 and a covering crimping portion 32 which are arranged in this order from the side of the arm fixing portion 24. The conductor crimping portion 31 has a pair of conductor crimping pieces 31a and the covering crimping portion 32 has a pair of covering crimping pieces 32a.
(21) The busbar fixing portion 23 is fixed to the fixing target portion 14 of the busbar 11 and thereby electrically connected thereto. The busbar fixing portion 23 has a pair of busbar crimping pieces 23a.
(22) The arm fixing portion 24 projects sideways from a side edge of a portion, between the wire connection portion 22 and the busbar fixing portion 23, of the terminal 21. The arm fixing portion 24 has approximately the same width as the swaging target portion 13a of the arm 13 of the busbar 11.
(23) In a state that an end portion, where a portion of the conductor 2 is exposed from the covering 3, of the wire 1 is placed on the wire connection portion 22 of the terminal 21, the conductor crimping pieces 31a of the conductor crimping portion 31 are crimped onto the conductor 2 of the wire 1 and the covering crimping pieces 32a of the covering crimping portion 32 are crimped onto the covering 3 of the wire 1. As a result, the wire 1 is electrically connected to the wire connection portion 22 of the terminal 21. The method for connecting the wire 1 to the wire connection portion 22 is not limited to crimping and may be, for example, ultrasonic bonding or pressure welding.
(24) As shown in
(25) As shown in
(26) To connect the terminal 21 to the busbar 11, first, the busbar fixing portion 23 of the terminal 21 is placed under the fixing target portion 14 of the arm 13 and the middle portion, between the busbar fixing portion 23 and the wire connection portion 22, of the terminal 21 is placed under the swaging target portion 13a of the arm 13. In this state, the busbar crimping pieces 23a of the busbar fixing portion 23 of the terminal 21 and the arm fixing portion 24 are swaged. As a result, the tip-side busbar fixing portion 23 of the terminal 21 is fixed, by crimping, to the fixing target portion 14 of the arm 13 and the middle arm fixing portion 24 of the terminal 21 is fixed (fastened) to the tip swaging target portion 13a of the arm 13. Thus, the terminal 21 whose wire connection portion 22 is electrically connected to the wire 1 is fixed to and electrically connected to the busbar 11.
(27) Incidentally, in a fixing structure shown in
(28) As a result, in this fixing structure, if external force is exerted from the wire 1 to the terminal 21A in, for example, the vertical direction (indicated by arrow B or C in
(29) In contrast, in the fixing structure according to the embodiment, the portion, between the wire connection portion 22 and the busbar fixing portion 23, of the terminal 21 is fixed to the arm 13 by swaging the arm fixing portion 24 located between the wire connection portion 22 and the busbar fixing portion 23 onto the arm 13.
(30) As a result, even if external force is exerted from the wire 1 to the terminal 21 in, for example, the vertical direction (indicated by arrow D or E in
(31) The busbar fixing portion 23 of the terminal 21 is crimped onto the fixing target portion 14 and the arm fixing portion 24 of the terminal 21 is fixed, by swaging, to the tip swaging target portion 13a of the arm 13. Thus, crimping of the busbar fixing portion 23 onto the fixing target portion 14 and fixing of the arm fixing portion 24 to the swaging target portion 13a of the arm 13 can be performed as swaging operations of the same step. This makes it possible to fix the terminal 21 to the busbar 11 strongly without unduly complicating work of connecting the terminal 21 to the busbar 11.
(32) Next, a description will be made of a busbar module to which the busbar-terminal fixing structure according to the embodiment is applied.
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(34) As shown in
(35) Each busbar module 41 is equipped with a resin wire routing body 45 (holding member) which holds busbars 11. Busbars 11 are fastened to electrodes that project from the plural battery cells 42 that constitute the battery assembly 43. End portions of wires 1 leading from voltage detection devices (not shown) are connected to terminals 21.
(36) As shown in
(37) As shown in
(38) With the busbar module 41 having the above structure, since the portion, between the wire connection portion 22 and the busbar fixing portion 23, of the terminal 21 is fixed to the arm 13 by the arm fixing portion 24, even if external force is exerted from the wire 1 to the terminal 21 at the time of, for example, routing of the wire 1, the degree of concentration of force on the base portion N of the portion where the busbar fixing portion 23 of the terminal 21 is fixed to the fixing target portion 14 which projects from the side edge of the arm 13 is made very low. Thus, the influence of external force on the portion where the busbar fixing portion 23 of the terminal 21 is fixed to the fixing target portion 14 of the busbar 11 is minimized, whereby the busbar module 41 is achieved in which the reliability of connection of the portion where the busbar 11 and the terminal 21 are electrically connected to each other can be kept high.
(39) In each busbar module 41, the busbar main body 12 is held by the resin wire routing body 45 and the arm 13 which projects from the busbar main body 12 is supported by the support walls 52 which are located on both sides in the direction that is perpendicular to the direction in which the arm 13 extends from the busbar main body 12.
(40) With this structure, even if the wire 1 is pulled at the time of, for example, its routing and external force thereby acts on the arm 13 in the direction perpendicular to its projecting direction, since both side portions of the arm 13 are supported by the support walls 52 of the wire routing body 45, deformation of the arm 13 by such external force can be suppressed and the reliability of connection can be increased further.
(41) Next, a description will be made of the wire holding unit 61 which is provided in the wire routing body 45 of each busbar module 41.
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(43) As shown in
(44) In the thus-configured wire holding unit 61, as shown in
(45) Incidentally, as shown in
(46) In contrast, in the above-described wire holding unit 61, the lock nail portions 66 on which the lid 62 is to be locked project from the other side wall 56B toward the one side wall 56A. Thus, the wire holding unit 61 is free of increase of its total width due to outward projection of some portion from the other side wall 56B and hence can be miniaturized. Furthermore, the wire holding unit 61 is free of a problem that a projected portion interferes with another component.
(47) The invention is not limited the above embodiment, and various modifications, improvements, etc. can be made as appropriate. And the material, shape, dimensions, number (where plural ones are provided), location, etc. of each constituent element of the embodiment are optional and no limitations are imposed on them as long as the invention can be implemented.
(48) According to embodiments, a fixing structure between a busbar 11 and a terminal 21 includes a busbar 11, and a terminal 21. The busbar 11 includes a busbar main body 12, an arm 13 projecting from the busbar main body 12, and a fixing target portion 14 projecting from the arm 13. The busbar main body 12, the arm 13, and the fixing target portion 14 are integrally formed in a single piece. The terminal 21 includes a wire connection portion 22 to which a wire 1 is to be electrically connected, a busbar fixing portion 23 which is fixed and electrically connected to the fixing target portion 14 of the busbar 11, and an arm fixing portion 24 provided between the wire connection portion 22 and the busbar fixing portion 23 and fixed to the arm 13 of the busbar 11.
(49) In this structure, the terminal to whose wire connection portion the wire is connected electrically is electrically connected to the busbar by fixing the busbar fixing portion of the terminal to the fixing target portion of the busbar. And the portion, between the wire connection portion and the busbar fixing portion, of the terminal is fixed to the arm by fixing the arm fixing portion located between the wire connection portion and the busbar fixing portion to the arm. With these structures, even if external force is exerted from the wire to the terminal at the time of, for example, routing of the wire, the degree of concentration of force on a base portion of the portion where the busbar fixing portion is fixed to the fixing target portion is made very low. Thus, the influence of external force on the portion where the busbar fixing portion of the terminal is fixed to the fixing target portion of the busbar is minimized, whereby the reliability of connection of the portion where the busbar and the terminal are electrically connected to each other can be kept high.
(50) In the fixing structure, the fixing target portion 14 may project from one side edge of the arm 13 in a direction that is perpendicular to a projecting direction of the arm 13. The arm fixing portion 24 of the terminal 21 may be fixed to an end portion of the arm 13 locating on an opposite side of the busbar main body 12.
(51) In this structure, the arm fixing portion of the terminal is fixed to the end portion of the arm. With this structure, the degree of concentration of force on the base portion of the portion where the busbar fixing portion is fixed to the fixing target portion which projects from the one side edge of the arm is made very low, whereby the reliability of connection of the portion where the busbar and the terminal are electrically connected to each other can be kept high.
(52) In the fixing structure, the busbar fixing portion 23 of the terminal 21 may be crimped to the fixing target portion 14 by swaging. The arm fixing portion 24 of the terminal 21 may be fixed to the arm 13 by swaging.
(53) In this structure, the busbar fixing portion of the terminal is crimped onto the fixing target portion and the arm fixing portion of the terminal is fixed, by swaging, to the arm. Thus, crimping of the busbar fixing portion onto the fixing target portion and fixing of the arm fixing portion to the arm can be performed as swaging operations of the same step. This makes it possible to fix the terminal to the busbar strongly without unduly complicating work of connecting the terminal to the busbar.
(54) In the fixing structure, the busbar main body 12 may be held in a resin holding member 45. The holding member 45 may have, on two respective sides in a direction that is perpendicular to a projecting direction of the arm 13, support walls 52 which support the arm 13.
(55) In this structure, even if the wire is pulled at the time of, for example, its routing and external force thereby acts on the arm, since both side portions of the arm are supported by the support walls of the holding member, deformation of the arm by such external force can be suppressed and the reliability of connection can be increased further.
(56) According to embodiments, a busbar module includes a resin wire routing body 45 to be attached to a battery assembly 43 of a plurality of battery cells 42, and the fixing structure in which the terminal 21 is connected to the busbar 11 housed in a busbar housing unit 51 of the wire routing body 45.
(57) In the busbar module, the portion, between the wire connection portion and the busbar fixing portion, of the terminal is fixed to the arm by the arm fixing portion. With this structure, even if external force is exerted from the wire to the terminal at the time of, for example, routing of the wire, the degree of concentration of force on a base portion of the portion where the busbar fixing portion of the terminal is fixed to the arm of the busbar is made very low. Thus, the influence of external force on the portion where the busbar fixing portion of the terminal is fixed to the fixing target portion of the busbar is minimized. As a result, in the busbar module, the reliability of connection of the portion where the busbar and the terminal are electrically connected to each other can be kept high.
DESCRIPTION OF REFERENCE NUMERALS
(58) 1: Wire 11: Busbar 12: Busbar main body 13: Arm 14: Fixing target portion 21: Terminal 22: Wire connection portion 23: Busbar fixing portion 24: Arm fixing portion 41: Busbar module 42: Battery cell 43: Battery assembly 45: Wire routing body (holding member) 51: Busbar housing unit 52: Support wall.