Battery Wiring Module
The battery wiring module addresses the issue of wire positioning by using displacement regulating portions and slits with inclined portions to prevent interference and enhance assembly, ensuring efficient wire placement and module space utilization.
Patent Information
- Application Number
- JP2022122701
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-08-01
- Publication Date
- 2026-02-03
- Estimated Expiration
- 2042-08-01
AI Technical Summary
Existing battery wiring modules lack effective mechanisms to limit the position of electric wires, leading to potential interference and assembly challenges.
A battery wiring module with a case and cover that includes displacement regulating portions to restrict the position of electric wires, featuring slits with inclined portions and inner wall structures to prevent pinching and ensure ease of assembly.
The solution effectively restricts the position of electric wires, preventing interference with other components and improving assembly efficiency while maintaining space within the module.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present disclosure relates to a battery wiring module. [Background technology]
[0002] For example, as disclosed in Patent Document 1, a battery wiring module is attached to a high-voltage battery installed as a power source for driving vehicles such as electric vehicles and hybrid vehicles. The battery wiring module includes electric wires electrically connected to the battery, a case having an electric wire housing portion for housing the electric wires, and a cover for covering the electric wire housing portion. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Patent Publication No. 2021-190156 Summary of the Invention [Problem to be solved by the invention]
[0004] The present inventors have been studying how to limit the position of the electric wires in the battery wiring module described above. An object of the present disclosure is to provide a battery wiring module that makes it possible to limit the position of electric wires. [Means for solving the problem]
[0005] The battery wiring module of the present disclosure is a battery wiring module that is attached to a battery, and includes: an electric wire electrically connected to the battery; a case having an electric wire accommodating portion that accommodates the electric wire; and a cover having a lid portion that covers the electric wire accommodating portion, wherein the cover has a displacement regulating portion extending from the lid portion, and the displacement regulating portion regulates displacement of the electric wire in a direction approaching the lid portion. [Effects of the Invention]
[0006] The battery wiring module of the present disclosure has the effect of restricting the position of the electric wires. [Brief explanation of the drawings]
[0007] [Figure 1] FIG. 1 is a schematic plan view of a battery wiring module according to an embodiment. [Figure 2] FIG. 2 is a perspective view showing a part of the battery wiring module of the same configuration. [Figure 3] FIG. 3 is an exploded perspective view showing a part of the battery wiring module of the same configuration. [Figure 4] FIG. 4 is a plan view showing a part of the case of the battery wiring module of the same configuration. [Figure 5] FIG. 5 is a cross-sectional view taken along line 5-5 in FIG. [Figure 6] FIG. 6 is a schematic diagram showing the state when the cover is attached to the battery wiring module of the same configuration. [Figure 7] FIG. 7 is an exploded perspective view showing a part of the battery wiring module of the same configuration. [Figure 8] FIG. 8 is a schematic diagram showing the state when the cover is attached to the battery wiring module of the same configuration. DETAILED DESCRIPTION OF THE INVENTION
[0008] [Description of the embodiments of the present disclosure] First, embodiments of the present disclosure will be listed and described. The battery wiring module of the present disclosure includes: [1] A battery wiring module to be attached to a battery, comprising: an electric wire electrically connected to the battery; a case having an electric wire accommodating section for accommodating the electric wire; and a cover having a lid for covering the electric wire accommodating section, wherein the cover has a displacement regulating section extending from the lid, and the displacement regulating section regulates displacement of the electric wire in a direction approaching the lid.
[0009] According to this configuration, the electric wire can be accommodated in the electric wire accommodating portion while the position of the electric wire is restricted by the displacement restricting portion. [2] In the above [1], the electric wire accommodating portion may have a slit through which the electric wire is led out, and the displacement restricting portion may be configured to close a part of the slit.
[0010] According to this configuration, the position of the electric wire can be restricted by the displacement restricting portion in the vicinity of the slit through which the electric wire is led out. [3] In the above [2], the case has an engaging portion that engages with an electrical component attached to the case, the engaging portion is provided at a position opposite the slit on the outside of the wire accommodating portion, and when viewed from the opposing direction of the engaging portion and the slit, the position of the tip of the displacement regulating portion may be located farther from the lid portion than the engaging portion.
[0011] According to this configuration, the distal end of the displacement restricting portion can restrict the position of the electric wire to a position farther from the lid than the engaging portion, thereby suppressing interference between the electric wire and the electrical component that engages with the engaging portion.
[0012] [4] In the above [2] or [3], the wire accommodating section may have a bottom wall, and a first side wall and a second side wall each extending from the bottom wall and facing each other, the ends of the first side wall and the second side wall opposite the bottom wall being open ends, the lid section may cover the open end sides of the wire accommodating section, and the slit may be provided in the first side wall so as to extend from the open end to an end connected to the bottom wall.
[0013] According to this configuration, the position of the electric wire can be restricted by the displacement restricting portion in the vicinity of the slit provided in the first side wall of the electric wire accommodating portion. [5] In the above item [4], the cover may have an abutting portion that abuts against the open end of the first side wall.
[0014] With this configuration, the abutting portion of the cover abuts against the open end of the first side wall, preventing the cover from moving any closer to the bottom wall, thereby preventing the cover from being pushed toward the bottom wall and the electric wires from being pinched between the displacement restricting portion and the bottom wall.
[0015] [6] In the above item [5], the contact portion may include a first contact portion and a second contact portion provided on both sides of the displacement restricting portion. With this configuration, the first and second contact portions of the cover contact the open end of the first side wall on both sides of the displacement restricting portion, respectively, and therefore the first and second contact portions can effectively prevent the displacement restricting portion from approaching the bottom wall when the cover is pushed in.
[0016] [7] In any one of the above [4] to [6], the displacement regulating portion may have an insertion portion that is inserted into the slit. According to this configuration, it is possible to configure the displacement restriction portion including the insertion portion so that it is not positioned inside the electric wire housing portion, which contributes to ensuring space within the electric wire housing portion.
[0017] [8] In any one of the above [4] to [7], the slit may have an inclined portion whose width increases toward the open end of the first side wall. According to this configuration, the inclined portion makes it easier to insert the electric wire into the slit, thereby improving the ease of assembling the electric wire into the case.
[0018] [9] In the above [8], the displacement regulating portion may have an inner wall portion located inside the wire accommodating portion, and the inner wall portion may be located at a position overlapping the inclined portion when viewed from the direction in which the first side wall and the second side wall face each other.
[0019] According to this configuration, the inner wall portion can prevent the electric wire from being pinched between the inclined portion and the displacement restricting portion.
[10] In the above [8], the slits having the inclined portions may be provided in the case along the longitudinal direction of the wire accommodating portion, the displacement regulating portions may be provided in the cover in a plurality of portions corresponding to the plurality of slits, the wire accommodating portion may have a wire lead-out portion at an end in the longitudinal direction, and a plurality of the wires may be provided, one end of each of the plurality of wires may be led out individually from each of the plurality of slits, and the other end of each of the plurality of wires may be led out collectively from the wire lead-out portion.
[0020] According to this configuration, since each slit has an inclined portion, it is possible to improve the ease of assembling a plurality of electric wires. Also, since a plurality of displacement restricting portions are provided corresponding to the plurality of slits, the position of the electric wire in each slit can be restricted by the displacement restricting portion.
[0021]
[11] In the above
[10] , the plurality of displacement regulating portions may include a first displacement regulating portion and a second displacement regulating portion, the first displacement regulating portion having an insertion portion inserted into the slit, the second displacement regulating portion having an inner wall portion located inside the wire accommodating portion, the inner wall portion being provided at a position overlapping the inclined portion when viewed from the direction in which the first side wall and the second side wall face each other, the first displacement regulating portion not having the inner wall portion, and the first displacement regulating portion being provided corresponding to a slit among the plurality of slits that is closest to the wire leading-out portion.
[0022] According to this configuration, in the slit where the second displacement restriction portion is arranged, the inner wall portion prevents the electric wire from being pinched between the inclined portion and the displacement restriction portion. Furthermore, the first displacement restriction portion, which does not have an inner wall portion, is provided corresponding to the slit closest to the electric wire guide portion. Of the multiple electric wires, the electric wire guided out of the slit closest to the electric wire guide portion is arranged close to the bottom wall, so that the electric wire is less likely to float up in a direction away from the bottom wall in that slit. Therefore, by configuring the first displacement restriction portion corresponding to that slit without an inner wall portion, it is possible to contribute to ensuring space within the electric wire accommodating portion.
[0023]
[12] In the above
[11] , the second displacement regulating portion may be provided corresponding to the slit farthest from the wire leading-out portion among the plurality of slits. According to this configuration, the electric wire leading out of the slit farthest from the electric wire leading-out portion is positioned away from the bottom wall of the electric wire accommodating portion. Therefore, the electric wire is likely to float up in the slit in a direction away from the bottom wall. Therefore, the electric wire is likely to be pinched between the inclined portion and the displacement restricting portion in the slit. Here, the second displacement restricting portion corresponding to the slit has an inner wall portion, which effectively prevents the electric wire from being pinched between the inclined portion and the displacement restricting portion.
[0024]
[13] In the above
[10] , the plurality of displacement regulating portions may each have an inner wall portion located inside the wire accommodating portion, and the inner wall portion may be located at a position overlapping the inclined portion when viewed from the direction in which the first side wall and the second side wall face each other.
[0025] According to this configuration, the inner wall portion can prevent the electric wire from being pinched between the inclined portion and the displacement restricting portion in each slit. [Details of the embodiments of the present disclosure] Specific examples of the battery wiring module of the present disclosure will be described below with reference to the drawings. In each drawing, for ease of explanation, some of the configuration may be exaggerated or simplified. The dimensional ratios of each part may differ between drawings. In this specification, "facing" refers to surfaces or components facing each other, and includes not only cases where they are completely facing each other, but also cases where they are partially facing each other. In this specification, "facing" also includes both cases where a separate component is interposed between the two parts, and cases where nothing is interposed between the two parts.
[0026] As shown in Fig. 1, a battery wiring module 10 of this embodiment is attached to a battery 11 installed in, for example, an electric vehicle or a hybrid vehicle. The battery 11 is, for example, a secondary battery. The battery 11 supplies power to a traction motor of the vehicle (not shown). The battery 11 also receives power from the traction motor or the power generation motor depending on the state of charge and the operating state of the vehicle.
[0027] The battery 11 includes a plurality of battery cells 12. The battery 11 has, for example, a substantially rectangular parallelepiped shape with the plurality of battery cells 12 arranged in one direction. In the following description, the direction in which the battery cells 12 are arranged is referred to as the X direction, and the direction perpendicular to the X direction is referred to as the Y direction. The Z direction perpendicular to the X and Y directions is referred to as the up-down direction, and the side of the battery 11 on which the battery wiring module 10 is attached is referred to as the upper side. That is, the battery 11 has a module attachment surface 13 on which the battery wiring module 10 is attached on the upper side surface.
[0028] Each battery cell 12 has two battery terminals 14. One of the two battery terminals 14 is a positive terminal and the other is a negative terminal. When the battery cells 12 are aligned in the X direction, the two battery terminals 14 are aligned along the Y direction on the top surface of the battery cell 12.
[0029] (Configuration of battery wiring module 10) The battery wiring module 10 includes a plurality of electric wires 21 electrically connected to the batteries 11 and a case 22 that houses the electric wires 21. The battery wiring module 10 also includes, for example, a plurality of bus bars 23 supported by the case 22. The bus bars 23 are arranged, for example, on both sides of the case 22 in the Y direction, side by side in the X direction. Each bus bar 23 connects battery terminals 14 adjacent to each other in the X direction. The bus bars 23 are connected to the battery terminals 14 by, for example, welding. Each bus bar 23 is electrically connected to a corresponding electric wire 21. Each electric wire 21 is, for example, a voltage detection wire for detecting the voltage of each bus bar 23. Each electric wire 21 is connected to a connector 24 for connection to a voltage detection device (not shown). The battery wiring module 10 also includes a cover 25 that covers the upper part of the case 22.
[0030] (Configuration of Case 22) The case 22 is formed of an insulating material such as synthetic resin. The case 22 has a first bus bar holding portion 26 and a second bus bar holding portion 27. The first bus bar holding portion 26 and the second bus bar holding portion 27 have different shapes. A plurality of the first bus bar holding portions 26 and the second bus bar holding portions 27 are arranged alternately in the X direction. Two rows of the first bus bar holding portions 26 and the second bus bar holding portions 27 are provided corresponding to the two rows of the bus bars 23 arranged in the X direction. A pair of the first bus bar holding portion 26 and the second bus bar holding portion 27 adjacent to each other in the X direction holds one bus bar 23. Each bus bar 23 is arranged so as to straddle the first bus bar holding portion 26 and the second bus bar holding portion 27 adjacent to each other in the X direction.
[0031] The case 22 has a sensor housing portion 30. For example, a plurality of sensor housing portions 30 are provided. At least one of the plurality of sensor housing portions 30 houses a temperature sensor 60 for detecting the temperature of the battery 11.
[0032] 2, 3, and 4 are diagrams showing the vicinity of the sensor accommodating section 30 in the case 22. As shown in Fig. 4, the case 22 has an electric wire accommodating section 31 extending in the X direction. Two electric wire accommodating sections 31 are provided on both sides of the case 22 in the Y direction, corresponding to the two rows of the bus bars 23 aligned in the X direction.
[0033] The wire accommodating portion 31 has a bottom wall 32 and a first side wall 33 and a second side wall 34 facing each other in the Y direction. The lower surface of the bottom wall 32 faces the module mounting surface 13 in the Z direction. The first side wall 33 and the second side wall 34 each extend upward from the bottom wall 32. The wires 21 are accommodated between the first side wall 33 and the second side wall 34 in the Y direction. The first side wall 33 is a side wall located outward in the Y direction from the second side wall 34. The first bus bar holding portion 26 and the second bus bar holding portion 27 are provided on the outer side of the wire accommodating portion 31 in the Y direction.
[0034] The open upper side of the wire accommodating portion 31 is covered with the cover 25. More specifically, the first side wall 33 and the second side wall 34 each have open ends 33a, 34a that are opposite ends connected to the bottom wall 32. The cover 25 covers the open ends 33a, 34a of the wire accommodating portion 31.
[0035] 3 and 4, the sensor accommodating portion 30 is formed so as to straddle one first bus bar holding portion 26 and one second bus bar holding portion 27 that are adjacent to each other in the X direction. Note that, hereinafter, the first bus bar holding portion 26 and the second bus bar holding portion 27 that the sensor accommodating portion 30 straddles will be described as the first bus bar holding portion 26a and the second bus bar holding portion 27a, respectively. Also, the first bus bar holding portion 26 other than the first bus bar holding portion 26a will be referred to as the first bus bar holding portion 26b. Also, the second bus bar holding portion 27 other than the second bus bar holding portion 27a will be referred to as the second bus bar holding portion 27b.
[0036] The first bus bar holding portion 26b and the second bus bar holding portion 27b extend outward in the Y direction from the wire accommodating portion 31. Openings 35 are provided in the first side wall 33 of the wire accommodating portion 31 at positions corresponding to the second bus bar holding portions 27b, respectively. One end of the wire 21 connected to the bus bar 23 held by the second bus bar holding portion 27b is drawn outward in the Y direction from inside the wire accommodating portion 31 through the openings 35.
[0037] The first bus bar holding portion 26a and the second bus bar holding portion 27a extend outward in the Y direction from the sensor accommodating portion 30. A slit 36 is provided in the first side wall 33 of the electric wire accommodating portion 31 at a position corresponding to the second bus bar holding portion 27a. One end of the electric wire 21 connected to the bus bar 23 held by the second bus bar holding portion 27a is drawn outward in the Y direction from inside the electric wire accommodating portion 31 through the slit 36.
[0038] The electric wire accommodating section 31 has an electric wire leading-out section 28 (see FIG. 1) at an end in the longitudinal direction. The ends of the electric wires 21 opposite to the end connected to the bus bar 23 are led out of the case 22 from the electric wire leading-out section 28 and connected to the connector 24.
[0039] (Configuration of sensor housing 30) 2 and 4, the case 22 has an opposing wall portion 37 that straddles the first bus bar holding portion 26a and the second bus bar holding portion 27a. The opposing wall portion 37 is provided on the outer side in the Y direction of the first side wall 33 of the wire accommodating portion 31. The opposing wall portion 37 is, for example, parallel to the first side wall 33. The opposing wall portion 37 faces the first side wall 33 in the Y direction. The first bus bar holding portion 26a extends outward in the Y direction from the opposing wall portion 37.
[0040] The sensor accommodating portion 30 is provided between the first side wall 33 and the opposing wall portion 37. The sensor accommodating portion 30 is also provided between the first bus bar holding portion 26a and the electric wire accommodating portion 31. The sensor accommodating portion 30 has a spring support portion 38. The spring support portion 38 is formed to connect the first side wall 33 and the opposing wall portion 37.
[0041] As shown in FIG. 5, the sensor accommodating section 30 accommodates a temperature sensor 60 and a spring member 61. The spring member 61 is provided between the temperature sensor 60 and the spring member 61. The spring member 61 biases the temperature sensor 60 downward. The temperature sensor 60 is, for example, a thermistor. The temperature sensor 60 has a temperature detection surface 60a. The biasing force of the spring member 61 presses the temperature detection surface 60a of the temperature sensor 60 against the upper surface 12a of the battery cell 12.
[0042] As shown in FIGS. 2 and 5 , the sensor accommodating section 30 has a holding piece 41 that holds the temperature sensor 60. The holding piece 41 is provided on the outer side of the wire accommodating section 31 in the Y direction. The holding piece 41 has an extension 42 that extends upward in the Z direction from the base end of the second busbar holding section 27a, and a claw 43 that protrudes from the tip of the extension 42 along the X direction. The extension 42 is formed to be flexible in the X direction. The temperature sensor 60 is hooked onto the claw 43 upward in the Z direction. This allows the claw 43 to restrict upward displacement of the temperature sensor 60 in the Z direction. The claw 43 of the holding piece 41 is provided in a position facing the opening direction of the slit 36. The opening direction of the slit 36 is along the Y direction. That is, the claw 43 of the holding piece 41 faces the slit 36 in the Y direction.
[0043] (Configuration of slit 36) As shown in FIGS. 3 and 6 , the slit 36 has a straight portion 51 and an inclined portion 52. The straight portion 51 is formed in the first side wall 33 from the middle portion of the slit 36 in the Z direction to the lower end portion connected to the bottom wall 32. The inclined portion 52 is formed in the first side wall 33 from the upper end of the straight portion 51 to the open end 33a. That is, in this embodiment, the straight portion 51 is formed in approximately the lower half of the slit 36, and the inclined portion 52 is formed in approximately the upper half of the slit 36. The straight portion 51 has a uniform width in the X direction in the Z direction. The inclined portion 52 has a shape in which its width in the X direction increases toward the open end 33a. The end surface of the slit 36 at the inclined portion 52 has, for example, a straight shape.
[0044] A plurality of slits 36 are provided corresponding to the plurality of sensor accommodating sections 30, respectively. The case 22 of this embodiment has two sensor accommodating sections 30 and two slits 36. As shown in Fig. 1, of the plurality (two in this embodiment), the slit 36 closest to the electric wire leading-out section 28 is designated as a first slit 36a. Furthermore, of the plurality (two in this embodiment), the slit 36 farthest from the electric wire leading-out section 28 is designated as a second slit 36b.
[0045] (Cover 25 configuration) As shown in FIGS. 2 and 3 , the cover 25 is made of an insulating material such as synthetic resin. The cover 25 has a lid portion 70 that covers the electric wire accommodating portion 31. The lid portion 70 is, for example, in the shape of a plate perpendicular to the Z direction. The upper surface of the lid portion 70 is configured to be, for example, at the same position as the open end 33a of the first side wall 33 in the Z direction. The cover 25 also has a locking portion 70a extending from the lid portion 70. The locking portion 70a is engaged with a locking protrusion 33b provided on the first side wall 33. This secures the cover 25 to the case 22.
[0046] The cover 25 has a first displacement restriction portion 71 and a second displacement restriction portion 72 extending in the Z direction from the lid portion 70. The first displacement restriction portion 71 is provided corresponding to the first slit 36a (see FIG. 3). The second displacement restriction portion 72 is provided corresponding to the second slit 36b (see FIG. 7).
[0047] (Configuration of first displacement regulating portion 71) 3 and 5, the first displacement restricting portion 71 has an insertion portion 73 that is inserted into the first slit 36a. The insertion portion 73 is configured to block a portion of the first slit 36a. Specifically, the insertion portion 73 blocks a range in the first slit 36a from the upper end of the inclined portion 52 to the middle portion of the straight portion 51 in the Z direction. The shape of the insertion portion 73 when viewed from the opening direction of the first slit 36a, i.e., the Y direction, follows the shapes of the inclined portion 52 and the straight portion 51. That is, the insertion portion 73 has a shape that tapers toward the bottom to match the shape of the first slit 36a.
[0048] As shown in FIG. 5 , the first displacement restriction portion 71 has a tip 71a in its extension direction. In the first displacement restriction portion 71, the tip 71a coincides with the lower end of the insertion portion 73. In the first slit 36a, the electric wire 21 is led out of the electric wire accommodating portion 31 through a gap formed between the tip 71a of the first displacement restriction portion 71 and the bottom wall 32. When the cover 25 is assembled to the case 22, the position of the tip 71a of the first displacement restriction portion 71, as viewed from the Y direction, is located farther from the lid portion 70 than the claw portion 43 of the holding piece 41. In other words, as viewed from the Y direction, the tip 71a is located lower in the Z direction than the claw portion 43.
[0049] The cover 25 has a first abutment portion 74a and a second abutment portion 74b. The first abutment portion 74a and the second abutment portion 74b are provided on both sides of the first displacement restriction portion 71 in the X direction. In other words, the first displacement restriction portion 71 is located between the first abutment portion 74a and the second abutment portion 74b in the X direction. The first abutment portion 74a and the second abutment portion 74b each abut against the open end portion 33a of the first side wall 33. Note that the position of the open end portion 33a in the Z direction is lowered by the thickness of the lid portion 70 in the Z direction at each point where it abuts against the first abutment portion 74a and the second abutment portion 74b.
[0050] (Configuration of second displacement regulating portion 72) 7 and 8, the second displacement restriction portion 72 has an insertion portion 73 similar to that of the first displacement restriction portion 71, and an inner wall portion 75. The insertion portion 73 of the second displacement restriction portion 72 is inserted into the second slit 36b. The configuration of the insertion portion 73 of the second displacement restriction portion 72, such as its shape, is similar to that of the insertion portion 73 of the first displacement restriction portion 71, and therefore a detailed description thereof will be omitted.
[0051] The inner wall portion 75 extends from the insertion portion 73 on both sides in the X direction. The inner wall portion 75 is formed integrally with the insertion portion 73. In the second displacement restriction portion 72, the insertion portion 73 is formed to protrude in the Y direction from the inner wall portion 75. In the second displacement restriction portion 72, the lower end position of the insertion portion 73 and the lower end position of the inner wall portion 75 are aligned.
[0052] When the cover 25 is attached to the case 22, the inner wall portion 75 is located inside the wire accommodating portion 31. In the X direction, the width of the inner wall portion 75 is greater than the width of the straight portion 51 of the second slit 36b. As a result, the inner wall portion 75 is located at a position overlapping the inclined portion 52 when viewed from the opening direction of the second slit 36b, i.e., the Y direction.
[0053] A tip 72a of the second displacement restriction portion 72 in the extension direction has the same configuration as the tip 71a of the first displacement restriction portion 71. That is, in the second slit 36b, the electric wire 21 is led out of the electric wire accommodating portion 31 through a gap formed between the tip 72a of the second displacement restriction portion 72 and the bottom wall 32. When the cover 25 is assembled to the case 22, the position of the tip 72a of the second displacement restriction portion 72 as viewed from the Y direction is located farther from the lid portion 70 than the claw portion 43 of the holding piece 41. That is, as viewed from the Y direction, the tip 72a is located lower in the Z direction than the claw portion 43.
[0054] The first contact portion 74a and the second contact portion 74b are also formed on both sides in the X direction of the second displacement restriction portion 72. That is, the second displacement restriction portion 72 is located between the first contact portion 74a and the second contact portion 74b in the X direction.
[0055] Next, the manner in which the electric wires 21, the cover 25, and the temperature sensor 60 are assembled in the battery wiring module 10 will be described. When arranging the plurality of electric wires 21 in the case 22, the electric wires 21 are assembled in order starting from the electric wires 21 connected to the bus bars 23 closest to the electric wire lead-out portion 28. Therefore, the electric wires 21 connected to the bus bars 23 closer to the electric wire lead-out portion 28 pass closer to the bottom wall 32 in the electric wire accommodating portion 31. Then, the electric wires 21 connected to the bus bars 23 farther from the electric wire lead-out portion 28 are arranged on top of the electric wires 21 arranged earlier.
[0056] After the electric wires 21 are arranged in the case 22, the cover 25 is attached to the case 22. 6 shows how the first displacement restriction portion 71 is inserted into the first slit 36a when the cover 25 is assembled. As shown in the figure, the electric wire 21 passed through the first slit 36a may rise in a direction away from the bottom wall 32 and be positioned above the claw portion 43 of the holding piece 41. In this case, when the first displacement restriction portion 71 is inserted downward in the Z direction into the first slit 36a, the tip portion 71a of the first displacement restriction portion 71 comes into contact with the electric wire 21 and moves the electric wire 21 below the claw portion 43.
[0057] If the temperature sensor 60 is assembled with the electric wire 21 positioned above the claw 43, the electric wire 21 may be pinched between the claw 43 and the temperature sensor 60. In this regard, in the present embodiment, the first displacement restriction portion 71 restricts the electric wire 21 from moving above the claw 43. This prevents the electric wire 21 from being pinched between the claw 43 and the temperature sensor 60.
[0058] The first slit 36a is located closer to the wire leading-out portion 28 than the second slit 36b. Therefore, in the wire accommodating portion 31, another wire 21 is arranged above the wire 21 passed through the first slit 36a. Therefore, the wire 21 passed through the first slit 36a is less likely to float up in a direction away from the bottom wall 32.
[0059] On the other hand, the second slit 36b is located farther from the wire leading-out portion 28 than the first slit 36a. Therefore, the wire 21 passed through the second slit 36b is disposed above the other wires 21 in the wire accommodating portion 31. Therefore, the wire 21 passed through the second slit 36b is likely to float up in a direction away from the bottom wall 32.
[0060] FIG. 8 shows how the second displacement-regulating portion 72 is inserted into the second slit 36b when the cover 25 is assembled. As shown in the figure, the electric wire 21 passing through the second slit 36b may rise up to the inclined portion 52 of the second slit 36b. In this case, when the second displacement-regulating portion 72 is inserted downward in the Z direction, the lower end of the inner wall portion 75 of the second displacement-regulating portion 72 comes into contact with the electric wire 21, moving the electric wire 21 downward. At this time, the electric wire 21 is pushed downward by the inner wall portion 75, moves downward along the inclined portion 52 of the second slit 36b, and enters the straight portion 51. Thereafter, the electric wire 21 is pushed downward by the tip portion 72a of the second displacement-regulating portion 72 below the claw portion 43.
[0061] Here, let us consider a case where the second displacement regulating portion 72 does not have the inner wall portion 75. In this case, when the electric wire 21 is raised up to the inclined portion 52, even if the insertion portion 73 is inserted into the second slit 36b, the electric wire 21 cannot be brought into contact with the lower end of the insertion portion 73, and the electric wire 21 may be pinched between the inclined portion 52 and the second displacement regulating portion 72. In this regard, in the present embodiment, the second displacement regulating portion 72 has the inner wall portion 75 that guides the electric wire 21 at the inclined portion 52 to the straight portion 51. Therefore, it is possible to prevent the electric wire 21 from being pinched between the inclined portion 52 and the second displacement regulating portion 72.
[0062] The first displacement restriction portion 71 corresponding to the first slit 36a does not have an inner wall portion 75. As described above, the electric wire 21 passed through the first slit 36a is unlikely to float up in a direction away from the bottom wall 32, and therefore the electric wire 21 is unlikely to float up to the inclined portion 52 of the first slit 36a. For this reason, the inner wall portion 75 is omitted from the first displacement restriction portion 71 to ensure space within the electric wire accommodating portion 31.
[0063] The effects of this embodiment will be described. (1) The cover 25 has a first displacement restriction portion 71 and a second displacement restriction portion 72 extending from the lid portion 70. The first displacement restriction portion 71 and the second displacement restriction portion 72 each restrict displacement of the electric wire 21 in a direction approaching the lid portion 70. According to this configuration, the position of the electric wire 21 is restricted by the first displacement restriction portion 71 and the second displacement restriction portion 72, so that it is possible to suppress interference between the electric wire 21 and the temperature sensor 60, for example.
[0064] (2) The wire accommodating portion 31 has the slit 36 through which the wire 21 is led out. The first displacement regulating portion 71 and the second displacement regulating portion 72 are each configured to block a part of the slit 36. With this configuration, the first displacement regulating portion 71 and the second displacement regulating portion 72 can restrict the position of the wire 21 in the vicinity of the slit 36 through which the wire 21 is led out.
[0065] (3) The case 22 has the claws 43 as engaging portions that engage with the temperature sensor 60 attached to the case 22. The claws 43 are provided at positions facing the slits 36 on the outside of the wire accommodating portion 31. When viewed from the Y direction, which is the opposing direction of the claws 43 and the slits 36, the tip ends 71 a, 72 a of the first displacement restricting portion 71 and the second displacement restricting portion 72 are positioned farther from the lid portion 70 than the claws 43. With this configuration, the tip ends 71 a, 72 a of the first displacement restricting portion 71 and the second displacement restricting portion 72 can restrict the position of the wire 21 to a position farther from the lid portion 70 than the claws 43. This makes it possible to suppress interference between the temperature sensor 60 that engages with the claws 43 and the wire 21.
[0066] (4) The wire accommodating portion 31 has a bottom wall 32 and a first side wall 33 and a second side wall 34 that extend from the bottom wall 32 and face each other. The lid portion 70 covers the open ends 33a, 34a of the wire accommodating portion 31. The slit 36 is provided in the first side wall 33 so as to extend from the open end 33a to an end portion that connects to the bottom wall 32. With this configuration, the first displacement restricting portion 71 and the second displacement restricting portion 72 can restrict the position of the wire 21 in the vicinity of the slit 36 provided in the first side wall 33 of the wire accommodating portion 31.
[0067] (5) The cover 25 has the first contact portion 74a and the second contact portion 74b that contact the open end 33a of the first side wall 33. According to this configuration, the first contact portion 74a and the second contact portion 74b each contact the open end 33a of the first side wall 33, thereby preventing the cover 25 from moving any closer to the bottom wall 32. This prevents the cover 25 from being pushed toward the bottom wall 32 and the wires 21 from being pinched between the first displacement restricting portion 71, the second displacement restricting portion 72 and the bottom wall 32.
[0068] (6) The first contact portion 74a and the second contact portion 74b are provided on both sides of the first displacement restriction portion 71 in the X direction. As a result, the first contact portion 74a and the second contact portion 74b each contact the open end 33a of the first side wall 33 on both sides of the first displacement restriction portion 71. Furthermore, the first contact portion 74a and the second contact portion 74b are provided on both sides of the second displacement restriction portion 72 in the X direction. As a result, the first contact portion 74a and the second contact portion 74b each contact the open end 33a of the first side wall 33 on both sides of the second displacement restriction portion 72. Therefore, the first contact portion 74a and the second contact portion 74b can suitably prevent the first displacement restriction portion 71 and the second displacement restriction portion 72 from approaching the bottom wall 32 when the cover 25 is pushed in.
[0069] (7) The first displacement restriction portion 71 has an insertion portion 73 that is inserted into the first slit 36a. With this configuration, it is possible to configure the first displacement restriction portion 71 including the insertion portion 73 so that it is not positioned inside the wire accommodating portion 31. This can contribute to ensuring space within the wire accommodating portion 31.
[0070] (8) The slit 36 has an inclined portion 52 whose width increases toward the open end 33a of the first side wall 33. With this configuration, the inclined portion 52 makes it easier to insert the electric wire 21 into the slit 36. As a result, it is possible to improve the ease of assembling the electric wire 21 into the case 22.
[0071] (9) The second displacement restriction portion 72 has an inner wall portion 75 located inside the wire accommodating portion 31. The inner wall portion 75 is disposed at a position overlapping the inclined portion 52 when viewed from the Y direction, which is the opposing direction of the first side wall 33 and the second side wall 34. With this configuration, the inner wall portion 75 can prevent the wire 21 from being pinched between the inclined portion 52 and the second displacement restriction portion 72.
[0072] (10) A plurality of slits 36 each having an inclined portion 52 are provided in the case 22 along the longitudinal direction of the electric wire accommodating portion 31. The electric wire accommodating portion 31 has an electric wire guide-out portion 28 at an end portion in the longitudinal direction. One end of each of the plurality of electric wires 21 is individually guided out from each of the plurality of slits 36. The other end of each of the plurality of electric wires 21 is collectively guided out from the electric wire guide-out portion 28. According to this configuration, the plurality of slits 36 corresponding to the plurality of electric wires 21 respectively have an inclined portion 52. This makes it possible to improve the ease of assembly of each electric wire 21.
[0073] (11) The first displacement restricting portion 71 is provided corresponding to the first slit 36a, which is the closest of the multiple slits 36 to the electric wire leading-out portion 28. The first displacement restricting portion 71 has an insertion portion 73 that is inserted into the first slit 36a, and does not have an inner wall portion 75 like the second displacement restricting portion 72. The electric wire 21 leading out from the first slit 36a is disposed close to the bottom wall 32 of the electric wire accommodating portion 31, and therefore the electric wire 21 is unlikely to float up in a direction away from the bottom wall 32. Therefore, in the first slit 36a, the electric wire 21 is unlikely to be pinched between the inclined portion 52 and the first displacement restricting portion 71. Therefore, the inner wall portion 75 can be omitted from the first displacement restricting portion 71, which contributes to ensuring space within the electric wire accommodating portion 31.
[0074] (12) The second displacement regulating portion 72 is provided corresponding to the second slit 36b, which is the farthest from the wire leading-out portion 28 among the multiple slits 36. The wire 21 leading out from the second slit 36b tends to float up in a direction away from the bottom wall 32. Therefore, in the second slit 36b, the wire 21 tends to rise up to the position of the inclined portion 52. Therefore, by having the inner wall portion 75 of the second displacement regulating portion 72 corresponding to the second slit 36b, the inner wall portion 75 can effectively prevent the wire 21 from being pinched between the inclined portion 52 and the second displacement regulating portion 72.
[0075] (Example of change) This embodiment can be modified as follows: This embodiment and the following modifications can be combined and implemented within the scope of technical compatibility.
[0076] In the above embodiment, the second displacement regulating portion 72 may be replaced with the first displacement regulating portion 71 . In the above embodiment, the first displacement regulating portion 71 may be changed to a second displacement regulating portion 72. That is, all of the displacement regulating portions provided corresponding to the plurality of slits 36 may be changed to the second displacement regulating portion 72 having the inner wall portion 75. According to this configuration, the inner wall portion 75 can prevent the electric wire 21 from being pinched between the inclined portion 52 and the second displacement regulating portion 72 in each slit 36.
[0077] In the above embodiment, the number of sensor accommodating sections 30 and the number of corresponding slits 36 are two, but this is not limited thereto, and the number of sensor accommodating sections 30 and the number of corresponding slits 36 may be one, or three or more.
[0078] The shape of the second displacement regulating portion 72 is not limited to that of the above embodiment. For example, the insertion portion 73 may be omitted from the second displacement regulating portion 72 of the above embodiment, and the second displacement regulating portion 72 may be formed only by the plate-shaped inner wall portion 75. Furthermore, the first displacement regulating portion 71 may be formed only by the plate-shaped inner wall portion 75.
[0079] In the above embodiment, the first displacement regulating portion 71 and the second displacement regulating portion 72 are provided at positions that block a portion of the slit 36. However, other than this, for example, the first displacement regulating portion 71 and the second displacement regulating portion 72 may be provided at positions that do not block the slit 36 within the electric wire accommodating portion 31. Furthermore, a displacement regulating portion that extends from the lid portion 70 and regulates the displacement of the electric wire 21 in a direction approaching the lid portion 70 may be provided at a position corresponding to the opening 35.
[0080] In the above embodiment, the temperature sensor 60 is taken as an example of an electrical component that is attached to the case 22 and engaged with the claw portion 43, but components other than the temperature sensor 60 may also be used as the electrical component.
[0081] In the above embodiment, one of the first contact portion 74a and the second contact portion 74b may be omitted. That is, the contact portion that contacts the open end portion 33a of the first side wall 33 may be provided on only one side in the X direction of at least one of the first displacement regulating portion 71 and the second displacement regulating portion 72.
[0082] The shape of the end face of the slit 36 in the inclined portion 52 as viewed from the Y direction may be changed to, for example, a curved shape. The inclined portions 52 may be omitted from each slit 36, and each slit 36 may be formed only with the straight portions 51.
[0083] In the above embodiment, the sensor accommodating portion 30 is provided across the first bus bar holding portion 26a and the second bus bar holding portion 27a, but the position of the sensor accommodating portion 30 in the case 22 is not particularly limited to that in the above embodiment.
[0084] The cover 25 may be formed integrally with the case 22. The embodiments and modifications disclosed herein are illustrative in all respects, and the present invention is not limited to these examples. That is, the scope of the present invention is defined by the claims, and it is intended to include all modifications within the meaning and scope of the claims. [Explanation of symbols]
[0085] 10 Battery wiring module 11 Batteries 12 battery cells 12a Top side 13 Module mounting surface 14 Battery terminal 21 Electric wire 22 cases 23 Bus Bar 24 connectors 25 Cover 26 (26a, 26b) First bus bar holding portion 27 (27a, 27b) Second bus bar holding portion 28 Wire lead-out section 30 Sensor housing 31 Wire housing 32 Bottom wall 33 First side wall 33a open end 33b Locking protrusion 34 Second side wall 34a open end 35 Opening 36 Slit 36a First slit (slit) 36b Second slit (slit) 37 Opposing wall 38 Spring support 41 Holding piece 42 Extension part 43 Claw part (engaging part) 51 Straight section 52 Slope 60 Temperature sensor (electrical component) 60a Temperature detection surface 61 Spring member 70 Lid 70a Lock 71 First displacement regulating portion (displacement regulating portion) 71a Tip 72 Second displacement control section (displacement control section) 72a Tip 73 Insertion section 74a 1st contact part (contact part) 74b Second contact part (contact part) 75 Inner wall X direction Y direction (opposing direction of the engaging portion and the slit, opposing direction of the first side wall and the second side wall) Z direction
Claims
1. A battery wiring module to be attached to a battery, an electric wire electrically connected to the battery; a case having a wire housing portion for housing the wire; a cover having a lid portion that covers the electric wire accommodating portion, the cover has a displacement restriction portion extending from the lid portion, the displacement restriction portion restricts displacement of the electric wire in a direction approaching the lid portion, The electric wire accommodating portion has a slit through which the electric wire is led out, the displacement restriction portion is configured to close a part of the slit, The wire accommodating portion has a bottom wall and a first side wall and a second side wall that extend from the bottom wall and face each other, an end portion of the first side wall and an end portion of the second side wall opposite to the bottom wall are open ends, and the lid portion covers the open ends of the wire accommodating portion; the slit is provided in the first side wall so as to extend from the open end to an end connected to the bottom wall, the slit has an inclined portion whose width increases toward the open end of the first side wall, the displacement restriction portion has an inner wall portion located inside the wire accommodating portion, the inner wall portion is provided at a position overlapping the inclined portion when viewed from a direction in which the first side wall and the second side wall face each other. Battery wiring module.
2. the case has an engaging portion that engages with an electrical component attached to the case, the engaging portion is provided at a position facing the slit on the outside of the wire accommodating portion, When viewed from a direction in which the engaging portion and the slit face each other, a tip end of the displacement regulating portion is positioned farther from the lid portion than the engaging portion. The battery wiring module according to claim 1 .
3. The cover has an abutment portion that abuts against the open end of the first side wall. The battery wiring module according to claim 1 .
4. The abutment portion includes a first abutment portion and a second abutment portion provided on both sides of the displacement restriction portion. The battery wiring module according to claim 3 .
5. The displacement regulating portion has an insertion portion that is inserted into the slit. The battery wiring module according to claim 1 .
6. a plurality of the slits each having an inclined portion are provided in the case along a longitudinal direction of the wire accommodating portion, a plurality of the displacement regulating portions are provided on the cover corresponding to the plurality of slits, The wire accommodating portion has a wire leading-out portion at an end portion in the length direction, The electric wire is provided in plurality, one end of each of the plurality of electric wires is individually led out from each of the plurality of slits, The other ends of the plurality of electric wires are collectively led out from the electric wire lead-out portion. The battery wiring module according to claim 1 .
7. the plurality of displacement regulating portions include a first displacement regulating portion and a second displacement regulating portion, the first displacement restriction portion has an insertion portion that is inserted into the slit, the second displacement restriction portion has an inner wall portion located inside the wire accommodating portion, the inner wall portion is provided at a position overlapping the inclined portion when viewed from a direction in which the first side wall and the second side wall face each other, the first displacement restriction portion does not have the inner wall portion, The first displacement regulating portion is provided corresponding to a slit among the plurality of slits that is closest to the electric wire leading-out portion. The battery wiring module according to claim 6 .
8. The second displacement regulating portion is provided corresponding to the slit farthest from the wire leading-out portion among the plurality of slits. The battery wiring module according to claim 7 .
9. Each of the plurality of displacement regulating portions has an inner wall portion located inside the electric wire accommodating portion, the inner wall portion is provided at a position overlapping the inclined portion when viewed from a direction in which the first side wall and the second side wall face each other. The battery wiring module according to claim 6 .
Citation Information
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