Battery top cover, battery monomer and electric device
By introducing a welding area for fixing components to connect with the tabs in the battery top cover design, the structural strength problem caused by the tabs and terminals being close to the edge of the cover plate was solved, thus achieving the stability of the cover plate and the smooth progress of the processing steps, and reducing production costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- JIANGSU ZENIO NEW ENERGY BATTERY TECH CO LTD
- Filing Date
- 2025-08-22
- Publication Date
- 2026-08-04
AI Technical Summary
In the prior art, the welding area between the tab and the pole is close to the edge of the cover plate, resulting in low structural strength of the cover plate and affecting subsequent processing steps.
Design a battery top cover, the terminal post includes a first connecting part, a second connecting part and a fixing member, the fixing member is connected to the terminal tab, the welding area extends along a first direction, the second connecting part is away from the edge of the cover plate, to ensure the structural strength of the cover plate and to avoid affecting the processing steps after injection molding.
The structural strength of the cover plate is improved, ensuring the assembly stability of the pole and avoiding the impact on the processing steps after injection molding, while reducing the production cost of the pole.
Smart Images

Figure CN224595631U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of battery technology, and in particular to a battery top cover, a battery cell, and an electrical device. Background Technology
[0002] The battery cell in the related technology includes a battery top cover, which includes a cover plate and a terminal post. The cover plate has a through hole, and the terminal post is located in the through hole and is directly connected to the tab.
[0003] For battery cells with edge-mounted tabs, the tabs are located at the edge of the cell. To reduce the height of the tabs, the welding area between the tabs and the terminal post is close to the edge of the cover plate, resulting in the through-hole being close to the edge of the cover plate, which reduces the structural strength of the cover plate. After injection molding, the injection molded part is too close to the edge, affecting subsequent laser welding and blue film coating processes. Utility Model Content
[0004] This utility model provides a battery top cover, a battery cell, and an electrical device to solve the technical problem in the prior art where the welding area between the tab and the terminal post is close to the edge of the cover plate.
[0005] Based on the above concept, the technical solution adopted by this utility model is as follows:
[0006] A battery top cover, comprising:
[0007] A cover plate having a first through hole extending along a second direction and penetrating the cover plate;
[0008] The pole includes a first connecting portion, at least two second connecting portions, and a fixing member. The first connecting portion and the second connecting portions are arranged along a first direction. The first connecting portion is located on one side of the cover plate along the second direction. At least a portion of the second connecting portions passes through the first through hole. At least a portion of the fixing member is located on the other side of the cover plate along the second direction and is connected to the second connecting portion. The first welding area on the fixing member for connecting with the electrode tab and the second welding area on the second connecting portion for connecting with the fixing member both extend along the first direction, wherein the first direction and the second direction intersect.
[0009] Preferably, the second connecting portion has a flange on the side away from the fixing member, the flange extending around the edge of the second connecting portion, and at least part of the flange extending beyond the edge of the first through hole.
[0010] Preferably, a seal is also included, which is located between the cover plate and the flange.
[0011] Preferably, on a dummy plane perpendicular to the second direction, the orthographic projection of the fixing member covers the orthographic projection of the first through hole, and a sealing member is provided between the fixing member and the cover plate.
[0012] Preferably, at least a portion of the seal extends into the first through hole.
[0013] Preferably, the second connecting portion includes a first metal layer and a second metal layer, the second metal layer being located on the side of the first metal layer near the fixing member, the first connecting portion including the first metal layer, and the second metal layer being connected to the fixing member.
[0014] A battery cell includes a housing, a cell assembly, and a battery top cover as described above. The cell assembly is disposed within the housing and has tabs. A first welding area on the fixing member is welded to the tabs.
[0015] Preferably, the tab has a third welding area for connection with the fastener, the third welding area being located on the side of the fastener away from the first connection portion along the first direction, and on a dummy plane perpendicular to the second direction, at least a portion of the orthographic projection of the third welding area is located outside the orthographic projection of the first through hole.
[0016] Preferably, at least a portion of the orthographic projection of the third welding zone lies within the orthographic projection of the first through hole.
[0017] Preferably, the electrode tab has a third welding area for connection with the fastener, and the distance between the third welding area and the edge of the cover plate along the first direction is 3mm-15mm.
[0018] An electrical device comprising a battery cell as described above.
[0019] The beneficial effects of this utility model are:
[0020] The battery top cover proposed in this utility model includes a cover plate and a terminal post. The cover plate has a first through hole that extends along a second direction and penetrates the cover plate. The terminal post includes a first connecting part, at least two second connecting parts, and a fixing member. The first connecting part and the second connecting parts are arranged along a first direction. The first connecting part is located on one side of the cover plate along the second direction, and at least a portion of the second connecting parts passes through the first through hole. At least a portion of the fixing member is located on the other side of the cover plate along the second direction and is connected to the second connecting part. A first welding area on the fixing member for connecting with the tab and a second welding area on the second connecting part for connecting with the fixing member extend along the first direction. By setting the fixing member, the second connecting part is connected to the tab, and the first welding area on the fixing member and the second welding area on the second connecting part extend along the first direction. For tabs with small heights, the second connecting part can be far away from the edge of the cover plate, and thus the first through hole is far away from the edge of the cover plate, ensuring the structural strength of the cover plate. After injection molding, the injection molded part is far away from the edge of the cover plate to prevent affecting subsequent processing steps, and at the same time, the terminal post can be fixed on the cover plate, ensuring the assembly stability of the terminal post. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the structure of a battery cell provided in an embodiment of this utility model;
[0022] Figure 2 This is an exploded structural diagram of a battery cell provided in an embodiment of the present invention;
[0023] Figure 3 This is an exploded structural diagram of the battery top cover provided in an embodiment of the present invention;
[0024] Figure 4 This is a schematic diagram of the first structure of the pole provided in this embodiment of the utility model;
[0025] Figure 5 This is a schematic diagram of the second structure of the pole provided in an embodiment of the present invention;
[0026] Figure 6 This is a top view of a battery cell provided in an embodiment of the present utility model;
[0027] Figure 7 yes Figure 6 Sectional view along axis AA;
[0028] Figure 8 This is a first cross-sectional view of a partial structure of a battery cell provided in an embodiment of the present invention;
[0029] Figure 9 This is a second cross-sectional view of a partial structure of a battery cell provided in an embodiment of the present invention;
[0030] Figure 10This is a cross-sectional view of another battery cell provided in an embodiment of this utility model;
[0031] Figure 11 This is a first cross-sectional view of a partial structure of another battery cell provided in this embodiment of the present invention;
[0032] Figure 12 This is a second cross-sectional view of a partial structure of another battery cell provided in this embodiment of the present invention;
[0033] Figure 13 This is a cross-sectional view of another battery cell provided in this embodiment of the present invention;
[0034] Figure 14 This is a first cross-sectional view of a partial structure of another battery cell provided in this embodiment of the present invention;
[0035] Figure 15 This is a second cross-sectional view of a partial structure of another battery cell provided in this embodiment of the present invention;
[0036] Figure 16 This is an exploded structural diagram of the battery pack provided in an embodiment of the present invention;
[0037] Figure 17 This is a schematic diagram of the electrical device provided in an embodiment of the present utility model.
[0038] In the picture:
[0039] 10. Outer shell; 11. Receiving cavity;
[0040] 20. Battery cell assembly; 21. Electrode tab; 211. Bending section; 212. Extension section;
[0041] 30. Battery top cover;
[0042] 31. Cover plate; 311. First through hole;
[0043] 32. Pole post; 321. First connecting part; 322. Second connecting part; 3221. First metal layer; 3222. Second metal layer; 323. Fastener; 324. Flanged edge;
[0044] 33. Sealing components;
[0045] 34. First insulating component;
[0046] 35. Second insulating component;
[0047] 100. Battery pack; 110. Battery housing; 120. Individual battery cell. Detailed Implementation
[0048] The embodiments of this utility model are described in detail below. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this utility model, and should not be construed as limiting this utility model.
[0049] In the description of this utility model, unless otherwise explicitly specified and limited, the terms "connected," "linked," and "fixed" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.
[0050] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.
[0051] The technical solution of this utility model will be further described below with reference to the accompanying drawings and specific embodiments.
[0052] See Figures 1 to 9 This embodiment provides a battery cell 120, which includes a housing 10, a cell assembly 20, and a battery top cover 30. The housing 10 has an opening at at least one end. The cell assembly 20 is disposed within the housing 10 and has tabs 21. The battery top cover 30 is disposed on the housing 10 and connected to the tabs 21. Exemplarily, the housing 10 has a receiving cavity 11 with an opening at one end. The cell assembly 20 is disposed within the receiving cavity 11, and the end of the cell assembly 20 with the tabs 21 faces the opening. The battery top cover 30 includes a cover plate 31 and terminal posts 32. The cover plate 31 closes the opening of the housing 10, specifically by embedding the cover plate 31 within the housing 10. The terminal posts 32 are disposed on the cover plate 31 and connected to the tabs 21.
[0053] In some embodiments, the electrode post 32 includes a first connecting portion 321 and at least two second connecting portions 322. The first connecting portion 321 and the second connecting portions 322 are arranged along a first direction, which is the X direction shown in the figure. The first connecting portion 321 is located on one side of the cover plate 31 along a second direction, which is the Z direction shown in the figure. The electrode tab 21 is located on the other side of the cover plate 31 along the second direction. The second connecting portions 322 are used to connect with the electrode tab 21 to form a third welding area on the electrode tab 21. The first direction intersects the second direction; preferably, the first direction is perpendicular to the second direction.
[0054] Along the first direction, the distance between the third welding area and the edge of the cover plate 31 is d1, where 3mm≤d1≤15mm. This ensures that the third welding area on the tab 21 is far from the edge of the cover plate 31, allowing for smooth connection with the pole post 32 while preventing the pole post 32 from being too close to the edge of the cover plate 31. This guarantees the structural strength of the cover plate 31 and avoids affecting subsequent processing steps after injection molding.
[0055] The second connecting portion 322 can be directly connected to the electrode tab 21 or indirectly connected to it. Exemplarily, the electrode post 32 also includes a fixing member 323, which connects the second connecting portion 322 to the electrode tab 21. The fixing member 323 includes a first connecting area and a second connecting area; the first connecting area is connected to the second connecting portion 322, and the second connecting area is connected to a third welding area. That is, when the fixing member 323 is provided, the third welding area of the electrode tab 21 is connected to the fixing member 323.
[0056] The fastener 323 has a first welding area, which is connected to the third welding area of the tab 21. The second connecting portion 322 has a second welding area, which is connected to the fourth welding area of the fastener 323. The first and fourth welding areas on the fastener 323 can be spaced apart or overlap each other. For example, the first and fourth welding areas on the fastener 323 are spaced apart along a first direction, so that the second connecting portion 322 is away from the tab 21. For example, the first and fourth welding areas on the fastener 323 overlap each other, so that the tab 21, the fastener 323, and the second connecting portion 322 are welded together, increasing structural strength.
[0057] like Figure 8As shown, the distance between the third welding area and the edge of the cover plate 31 is d1, where 3mm ≤ d1 ≤ 15mm. If d1 is less than 3mm, the electrode lug 21 is close to the edge of the cover plate 31, and the electrode post 32 is too close to the edge of the cover plate 31, resulting in low structural strength of the cover plate 31. If d1 is greater than 15mm, the electrode lug 21 is far from the edge of the cover plate 31, the length of the electrode lug 21 is large, the cost is high, and it occupies a large space. In some embodiments, 5mm ≤ d1 ≤ 10mm. In some embodiments, the distance d1 between the third welding area and the edge of the cover plate 31 is 3mm, 4mm, 5mm, 6mm, 7mm, 8mm, 9mm, 10mm, 11mm, 12mm, 13mm, 14mm, or 15mm.
[0058] For example, the cover plate 31 is provided with a first through hole 311, which extends along the second direction and penetrates the cover plate 31; the pole post 32 includes a first connecting part 321, at least two second connecting parts 322 and a fixing member 323, the first connecting part 321 and the second connecting parts 322 are arranged along the first direction, the first connecting part 321 is located on one side of the cover plate 31 along the second direction, at least a portion of the second connecting parts 322 passes through the first through hole 311, at least a portion of the fixing member 323 is located on the other side of the cover plate 31 along the second direction and is connected to the second connecting part 322, the first welding area on the fixing member 323 for connecting with the pole tab 21 and the second welding area on the second connecting part 322 for connecting with the fixing member 323 both extend along the first direction.
[0059] By setting a fastener 323, the second connecting part 322 is connected to the tab 21, and the first welding area on the fastener 323 and the second welding area on the second connecting part 322 extend along the first direction. For the tab 21 with a small height, the second connecting part 322 can be far away from the edge of the cover plate 31, and thus the first through hole 311 is far away from the edge of the cover plate 31, ensuring the structural strength of the cover plate 31. After injection molding, the injection molded part is far away from the edge of the cover plate 31 to prevent it from affecting subsequent processing steps.
[0060] Meanwhile, the projection of the fixing member 323 along the second direction covers the first through hole 311, which can fix the pole post 32 on the cover plate 31 and prevent the pole post 32 from moving away from the receiving cavity 11. Furthermore, the projections of the first connecting portion 321 and the second connecting portion 322 along the second direction cover the first through hole 311, preventing the pole post 32 from moving closer to the receiving cavity 11. It should be noted that the first connecting portion 321 and the second connecting portion 322 are integrally formed, and the entire structure of the first connecting portion 321 and the second connecting portion 322 covers the first through hole 311 along the second direction. Preferably, the projection of the second connecting portion 322 along the second direction covers the projection of the first through hole 311, and the projection of the first connecting portion 321 along the second direction overlaps with the cover plate 31. The first connecting part 321, the second connecting part 322 and the fixing member 323 are located on both sides of the cover plate 31, and their projection along the second direction covers the projection of the first through hole 311, preventing the pole post 32 from moving along the second direction and ensuring the assembly stability of the pole post 32.
[0061] Along the first direction, the distance between the edge of the fastener 323 and the edge of the cover plate 31 is f, where 1mm ≤ f ≤ 10mm, thereby reducing the length of the electrode tab 21 along the first direction to prevent the edge of the electrode tab 21 from bending. If f is less than 1mm, it is easy to contact the edge of the housing 10 or the cover plate 311, causing a short circuit. If f is greater than 10mm, it will not serve the function of the adapter electrode tab 21. For example, 3mm ≤ f ≤ 8mm. For example, the distance f between the edge of the fastener 323 and the edge of the cover plate 31 is 1mm, 2mm, 3mm, 4mm, 5mm, 6mm, 7mm, 8mm, 9mm, or 10mm.
[0062] In some embodiments, the thickness of the battery cell assembly 20 along the first direction is b, where b ≥ 40 mm. If b is less than 40 mm, the length of its tab 21 is sufficient to extend to the second connection portion 322, leaving insufficient space for the fixing member 323. For example, 40 mm ≤ b ≤ 100 mm. If the thickness of the battery cell assembly 20 is greater than 100 mm, heat dissipation of the battery cell assembly 20 becomes more difficult. For example, 50 mm ≤ b ≤ 80 mm. The width of the cover plate 31 along the first direction is equal to or slightly greater than the thickness of the battery cell assembly 20 along the first direction, therefore the width of the cover plate 31 along the first direction is b, where b ≥ 40 mm. For example, 40 mm ≤ b ≤ 100 mm; for example, 50 mm ≤ b ≤ 80 mm. For example, the width of the cover plate 31 along the first direction is 40 mm, 50 mm, 60 mm, 70 mm, 80 mm, 90 mm, or 100 mm.
[0063] The fastener 323 is welded to the pole post 32, specifically by laser welding. In some embodiments, such as... Figure 9As shown, a through hole is provided on the fixing member 323, and the second connecting part 322 passes through the through hole. The edge of the second connecting part 322 and the edge of the through hole are laser welded. The fixing member 323 is welded to the electrode tab 21, specifically by ultrasonic welding or laser welding.
[0064] In some embodiments, such as Figures 10 to 12 As shown, the fastener 323 and the pole post 32 are connected by a through-weld, where the electric arc or heat source can completely melt through the workpiece during welding. The fastener 323 is located at the bottom of the second connecting part 322, and the through-weld of the fastener 323 and the second connecting part 322 ensures full fusion of the weld in the thickness direction, preventing leakage. By placing the fastener 323 at the bottom of the second connecting part 322, the height of the pole post 32 in the second direction can be reduced, thereby reducing stamping difficulty and production costs.
[0065] Each cover plate 31 may be provided with one, two or more pole posts 32, and each pole post 32 shall have two or more first through holes 311, with each first through hole 311 corresponding to a second connecting portion 322. In some embodiments, the pole post 32 includes one first connecting portion 321 and two second connecting portions 322, with the two second connecting portions 322 distributed along a first direction on both sides of the first connecting portion 321. In some embodiments, the pole post 32 includes two first connecting portions 321 and three second connecting portions 322, with a first connecting portion 321 disposed between two adjacent second connecting portions 322.
[0066] For example, each cover plate 31 is provided with two pole posts 32, and two first through holes 311 are opened for each pole post 32. The two pole posts 32 are arranged at intervals along a third direction, and the two first through holes 311 opened for each pole post 32 are arranged at intervals along a first direction. The first connecting part 321 is located on the side of the cover plate 31 away from the cell assembly 20 along a second direction, and the fixing member 323 is located on the side of the cover plate 31 close to the cell assembly 20 along the second direction. Among them, the third direction, i.e., the Y direction shown in the figure, is perpendicular to each other by the first direction, the third direction, and the second direction.
[0067] A flange 324 is provided on the side of the second connecting portion 322 away from the fixing member 323. The flange 324 extends around the edge of the second connecting portion 322, and at least part of the flange 324 extends beyond the edge of the first through hole 311. The flange 324 acts as a limit for the second connecting portion 322. The flange 324 cooperates with the fixing member 323 to limit the second connecting portion 322 on both sides along the second direction, so that the pole post 32 and the cover plate 31 are firmly connected.
[0068] The battery top cover 30 also includes a seal 33, which is located between the fixing member 323 and the cover plate 31. The fixing member 323 presses against the seal 33, making the seal 33 stable and providing a seal to prevent electrolyte leakage. On a dummy plane perpendicular to the second direction, the orthographic projection of the fixing member 323 overlaps the orthographic projection of the first through hole 311, so that the fixing member 323 and the seal 33 are in full contact, resulting in better positioning of the seal 33.
[0069] Along the first direction, the width of the fastener 323 is d2, where 8mm ≤ d2 ≤ 30mm. This allows the fastener 323 to effectively hold the seal 33, saving material and facilitating welding between the fastener 323 and the tab 21. For example, 10mm ≤ d2 ≤ 20mm. For example, the width d2 of the fastener 323 along the first direction is 8mm, 10mm, 12mm, 15mm, 18mm, 20mm, 22mm, 25mm, 28mm, or 30mm.
[0070] In some embodiments, at least a portion of the seal 33 extends into the first through hole 311. Under the pressure of the fixing member 323, the seal 33 undergoes elastic deformation, filling the gap of the first through hole 311 and ensuring a better sealing effect.
[0071] The battery top cover 30 also includes a first insulating member 34, which is located between the terminal post 32 and the cover plate 31, serving as insulation and sealing. At least a portion of the edge of the first insulating member 34 is located between the flange 324 and the cover plate 31. The battery top cover 30 also includes a second insulating member 35, which is located between the cover plate 31 and the fixing member 323. A sealing member 33 is embedded in the second insulating member 35, and the sealing member 33 cooperates with the second insulating member 35 to enhance the insulation and sealing effect.
[0072] Along the first direction, the distance between the edge of the first insulating member 34 and the edge of the cover plate 31 is 'a', where a ≥ 4 mm. Increasing the distance between the edges of the first insulating member 34 and the cover plate 31 enhances the structural strength of the cover plate 31. To save on the width of the fastener 323, 'a' cannot be too large. For example, 4 mm ≤ a ≤ 20 mm. For example, 6 mm ≤ a ≤ 15 mm. For example, along the first direction, the distance 'a' between the edge of the first insulating member 34 and the edge of the cover plate 31 is 4 mm, 6 mm, 8 mm, 10 mm, 12 mm, 15 mm, 18 mm, or 20 mm.
[0073] In some embodiments, such as Figures 13 to 15As shown, the seal 33 is located between the cover plate 31 and the flange 324. The flange 324 presses against the seal 33, ensuring its stable position and providing a seal to prevent electrolyte leakage. The battery top cover 30 also includes a first insulating member 34, located between the flange 324 and the cover plate 31. The seal 33 is embedded in the first insulating member 34, and the seal 33 cooperates with the first insulating member 34 to enhance insulation and sealing. The battery top cover 30 also includes a second insulating member 35, located between the cover plate 31 and the fixing member 323.
[0074] The second connecting portion 322 includes a first metal layer 3221 and a second metal layer 3222. The second metal layer 3222 is located on the side of the first metal layer 3221 near the fixing member 323. The first connecting portion 321 includes the first metal layer 3221, and the second metal layer 3222 is connected to the fixing member 323. By setting the second connecting portion 322 as a composite structure, it is convenient to set the two metal layers to different materials according to requirements, thereby reducing costs. For example, the second metal layer 3222 is made of copper, and the first metal layer 3221 is made of aluminum, eliminating the need to make the entire pole post 32 made of copper, thus reducing costs. The fixing member 323 and the electrode tab 21 can be made of copper. When the fixing member 323 is welded to the second metal layer 3222 and the electrode tab 21, the same material is welded, which facilitates processing. It should be noted that the cost of copper is much higher than that of aluminum. By setting the second connecting portion 322 as a copper-aluminum composite structure, the cost of the pole post 32 can be reduced.
[0075] The first metal layer 3221 of the first connecting portion 321 and the first metal layer 3221 of the second connecting portion 322 can be integrally formed, facilitating processing and production. Along the first direction, the width of the second connecting portion 322 is c, where 4mm ≤ c ≤ 14mm. This reduces processing difficulty while considering cost, preventing cracking between the second metal layer 3222 and the first metal layer 3221. For example, 6mm ≤ c ≤ 12mm. For example, the width of the second metal layer 3222 is equal to the width of the second connecting portion 322. For example, along the first direction, the width c of the second connecting portion 322 is 4mm, 6mm, 8mm, 10mm, 12mm, or 14mm.
[0076] Along the first direction, the width of the pole post 32 is e, which is approximately b-2a, where 20mm ≤ e ≤ 60mm. Furthermore, 8% ≤ c / e ≤ 35%. If c / e is less than 8%, the width of the second connection portion 322 is too small, restricting the current flow of the entire pole post 32. If c / e is greater than 35%, the width of the second connection portion 322 is too large, resulting in excessively high costs. Preferably, 15% ≤ c / e ≤ 20%.
[0077] In some embodiments, the tab 21 has a third welding area for connection with the fastener 323. The third welding area is located on the side of the fastener 323 away from the first connection portion 321 along the first direction. On a dummy plane perpendicular to the second direction, at least part of the orthographic projection of the third welding area is outside the orthographic projection of the first through hole 311, so that the tab 21 is away from the first through hole 311, and the first through hole 311 is away from the edge of the cover plate 31, thus ensuring the structural strength of the cover plate 31.
[0078] At least part of the orthographic projection of the third welding area is located within the orthographic projection of the first through hole 311, so that the electrode 21 can be located on the lower side of the second connecting part 322. The electrode 21, the fastener 323 and the second connecting part 322 are welded to improve the structural strength.
[0079] In some embodiments, the tab 21 includes a bent portion 211 and an extension portion 212. The extension portion 212 is located on one side of the fixing member 323 along a second direction. On a dummy plane perpendicular to the second direction, at least a portion of the orthographic projection of the extension portion 212 is located outside the orthographic projection of the second connecting portion 322. This causes the tab 21 to be away from the second connecting portion 322, and consequently, the first through hole 311 to be away from the edge of the cover plate 31, ensuring the structural strength of the cover plate 31. One end of the bent portion 211 is connected to the cell body of the cell assembly 20, and the other end of the bent portion 211 is connected to the extension portion 212.
[0080] On the dummy plane, the projection of the fastener 323 covers the projection of the extension 212, increasing the contact area between the fastener 323 and the tab 21 and increasing the structural strength.
[0081] The tab 21 has multiple layers. Along the first direction, the tab 21 is misaligned, resulting in an uneven width. The misaligned portion can be cut off or a tapered tab 21 can be used. The minimum width of the extension 212 is g, where 4mm ≤ g ≤ 20mm. For example, 8mm ≤ g ≤ 16mm.
[0082] For example, along the first direction, the width of the cover plate 31 is b, and the minimum width of the extension 212 is g, wherein 4% ≤ g / b ≤ 30%. For example, 10% ≤ g / b ≤ 25%. For example, along the first direction, the width of the cover plate 31 is b, and the minimum width of the extension 212 is g, where the value of g / b is 4%, 5%, 6%, 8%, 10%, 12%, 15%, 16%, 18%, 20%, 25%, or 30%.
[0083] See Figure 16 and Figure 17This embodiment also provides an electrical device, including the aforementioned battery cell 120. The electrical device can directly use the battery cell 120, or it can use a battery pack 100. The battery pack 100 includes a battery housing 110 and multiple battery cells 120 disposed inside the battery housing 110. The electrical device can be, but is not limited to, mobile phones, tablets, laptops, electric toys, power tools, electric vehicles, electric cars, ships, spacecraft, etc. Among them, electric toys can include stationary or mobile electric toys, such as game consoles, electric car toys, electric ship toys, and electric airplane toys, etc. Spacecraft can include airplanes, rockets, space shuttles, and spacecraft, etc.
[0084] In some embodiments, the electrical device can be a gasoline-powered vehicle or a new energy vehicle, such as a pure electric vehicle, a hybrid electric vehicle, or a range-extended electric vehicle. The electrical device internally houses a battery pack 100. The battery pack 100 can be used to power the electrical device; for example, the battery pack 100 can serve as the operating power source for the electrical device. The electrical device may also include a controller and a motor. The controller controls the battery pack 100 to supply power to the motor, for example, to meet the power requirements of the electrical device during startup, navigation, and operation.
[0085] The above embodiments merely illustrate the basic principles and characteristics of this utility model. This utility model is not limited to the above embodiments. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.
Claims
1. A battery top cover characterized by, include: A cover plate (31) is provided with a first through hole (311), which extends along a second direction and penetrates the cover plate (31). The pole post (32) includes a first connecting part (321), at least two second connecting parts (322) and a fixing member (323). The first connecting part (321) and the second connecting parts (322) are arranged along a first direction. The first connecting part (321) is located on one side of the cover plate (31) along the second direction. At least a portion of the second connecting parts (322) passes through the first through hole (311). At least a portion of the fixing member (323) is located on the other side of the cover plate (31) along the second direction and is connected to the second connecting part (322). The first welding area on the fixing member (323) for connecting with the electrode tab (21) and the second welding area on the second connecting part (322) for connecting with the fixing member (323) both extend along the first direction, wherein the first direction and the second direction intersect.
2. The battery header of claim 1, wherein, The second connecting portion (322) has a flange (324) on the side away from the fastener (323). The flange (324) extends around the edge of the second connecting portion (322), and at least part of the flange (324) extends beyond the edge of the first through hole (311).
3. The battery top cover according to claim 2, characterized in that, It also includes a seal (33) located between the cover plate (31) and the flange (324).
4. The battery header of claim 1, wherein, On a dummy plane perpendicular to the second direction, the orthographic projection of the fixing member (323) covers the orthographic projection of the first through hole (311), and a sealing member (33) is provided between the fixing member (323) and the cover plate (31).
5. The battery cover of claim 3 or 4, wherein the cover includes a plurality of protrusions extending from the cover, the protrusions being configured to engage the battery cover to the battery. At least a portion of the seal (33) extends into the first through hole (311).
6. The battery header of claim 1, wherein, The second connecting portion (322) includes a first metal layer (3221) and a second metal layer (3222). The second metal layer (3222) is located on the side of the first metal layer (3221) close to the fastener (323). The first connecting portion (321) includes the first metal layer (3221), and the second metal layer (3222) is connected to the fastener (323).
7. A battery cell characterized by, The battery includes a housing (10), a cell assembly (20), and a battery top cover according to any one of claims 1-6, wherein the cell assembly (20) is disposed within the housing (10), the cell assembly (20) has tabs (21), and the first welding area on the fastener (323) is welded to the tabs (21).
8. The battery cell of claim 7, wherein, The tab (21) has a third welding area for connection with the fastener (323), the third welding area being located on the side of the fastener (323) away from the first connection portion (321) along the first direction, and on a dummy plane perpendicular to the second direction, at least a portion of the orthographic projection of the third welding area is located outside the orthographic projection of the first through hole (311).
9. The battery cell of claim 8, wherein, At least part of the orthographic projection of the third welding zone lies within the orthographic projection of the first through hole (311).
10. The battery cell of claim 7, wherein, The tab (21) has a third welding area for connection with the fastener (323), and the distance between the third welding area and the edge of the cover plate (31) along the first direction is 3mm-15mm.
11. An electrical device, characterized by Includes the battery cell as described in any one of claims 7-10.