Single battery, battery, and electrical equipment

The integration of a tab block structure in the insulating member limits tab free end movement, addressing safety issues and reducing costs by eliminating the need for tab cutting in batteries.

JP7726971B2Active Publication Date: 2025-08-20AESC JAPAN LTD
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Patent Information

Application Number
JP2023208526
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2023-10-26
Filing Date
2023-12-11
Publication Date
2025-08-20
Estimated Expiration
2043-12-11

AI Technical Summary

Technical Problem

Current batteries face safety issues due to the risk of tab free ends protruding from the joint between the insulating member and the insulating bracket, leading to potential short circuits and increased production costs from tab cutting to mitigate this risk.

Method used

A tab block structure is integrated into the insulating member to limit the movement of the tab free end, preventing contact with the housing by forming an accommodating space outside the housing, thus eliminating the need for tab cutting.

Benefits of technology

This solution enhances battery safety by preventing short circuits and reduces production costs by avoiding tab cutting, improving overall safety performance and efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

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Patent Text Reader

Abstract

To provide a battery which prevents a free end of a tab from contacting with an inner wall of a housing to achieve improvement of safe performance.SOLUTION: A one-cell battery 100 includes a housing 110, a first cover plate 150, a first terminal 160, an electrode assembly 120, and a first insulation member. The housing has a first opening 111. The first cover plate seals a first opening and is attached to the first opening. The electrode assembly is disposed in the housing and has a first tab 121 extending from the side close to the first cover plate. A first tab is fixedly connected to the first terminal and is formed having a first tab free end 1211. The first insulation member is attached to the side, which is close to the electrode assembly, of the first cover plate. A tab block structure 170 is provided at the first insulation member. The side, which is close to the electrode assembly, of the first terminal and the tab block structure form a first storage space 190.SELECTED DRAWING: Figure 1
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Description

[Technical Field]

[0001] The present invention relates to the technical field of batteries, and more particularly to a single battery, a battery, and an electrical device. [Background technology]

[0002] In currently available batteries, to solve the problem of contact between the tabs inside the housing and the inner wall of the housing, an insulating member and an insulating bracket are mostly provided between the cover plate and the electrode assembly, but there exists a butt gap between the currently available insulating member and the insulating bracket, and there is a risk that the extra tabs inside the housing will protrude from the joint between the insulating member and the insulating bracket and contact the inner wall of the housing, thus reducing the safety of the battery. Summary of the Invention [Problem to be solved by the invention]

[0003] In view of the above-mentioned shortcomings of the related art, the present invention provides a unitary battery, a battery, and an electrical device that improves on a technical problem present in currently available unitary batteries in that the free end of the tab is prone to contact the inner wall of the housing, leading to a short circuit. [Means for solving the problem]

[0004] To achieve the above and other related objects, the present invention provides a single battery including a housing, a first cover plate, a first terminal, an electrode assembly, and a first insulating member. The housing has a first opening. The first cover plate is attached to the first opening and seals the first opening. The first terminal is attached to the first cover plate. The electrode assembly is disposed within the housing and has a first tab extending from a side closer to the first cover plate. The first tab is fixedly connected to the first terminal and has a first tab free end. The first insulating member is attached to the side of the first cover plate closer to the electrode assembly. A tab block structure is provided on the first insulating member. The side of the first terminal closer to the electrode assembly and the tab block structure form a first accommodating space. The first accommodating space is used to limit the range of movement of the first tab free end, and the housing is located outside the first accommodating space.

[0005] In the single battery according to one embodiment of the present invention, the tab block structure is disposed on the front side in the extension direction of the first tab free end.

[0006] In a single battery according to one embodiment of the present invention, the first tab includes a plurality of stacked first tab pieces, and the free ends of the first tab pieces have a ragged edge structure.

[0007] In a single battery according to one embodiment of the present invention, the first insulating member includes a first insulating body and a first insulating bracket disposed between the first insulating body and the electrode assembly, and the tab blocking structure is provided on the first insulating body and / or the first insulating bracket and configured to block the first tab free end from passing through the gap between the first insulating body and the first insulating bracket.

[0008] In the single battery according to one embodiment of the present invention, the tab block structure includes a butt joint bend disposed at the abutting position of the first insulating body and the first insulating bracket.

[0009] In the single battery according to one embodiment of the present invention, in the thickness direction of the first cover plate, the butt seam of the butt seam bend portion bends away from the contact surface between the first tab and the first terminal.

[0010] In a single battery according to one embodiment of the present invention, the butt seam curved portion is located outside the movable area of the first tab free end.

[0011] In a single cell according to one embodiment of the present invention, the butt seam bend comprises a non-linear stretch butt structure.

[0012] In a unitary battery according to one embodiment of the present invention, the non-linear stretch butt seam structure includes one or a combination of a sawtooth butt, a wave butt, and a triangular butt.

[0013] In one embodiment of the single battery of the present invention, a part or the entire butt joint between the first insulating body and the first insulating bracket opposite the first tab free end is located outside the movable area of the first tab free end.

[0014] In a single battery according to one embodiment of the present invention, the tab blocking structure includes an extension portion, the root portion of which is connected to the first insulating body and / or the first insulating bracket and extends to block the front side in the extension direction of the first tab free end.

[0015] In the single battery according to one embodiment of the present invention, the extended end of the extension portion extends beyond the working area of the first tab free end.

[0016] In the single battery according to one embodiment of the present invention, a recess is provided in the first insulating bracket or the first insulating body at the front side in the extension direction of the extension part, and the extension end extends at least partially into the recess.

[0017] In one embodiment of the single battery of the present invention, in the extension direction of the first tab free end, the recess penetrates the corresponding wall of the first insulating body or the corresponding wall of the first insulating bracket. The extension and the recess are butted to form a curved butt seam. In the thickness direction of the first cover plate, the butt seam of the curved butt seam curves away from the contact surface between the first tab and the first terminal.

[0018] In the single battery according to one embodiment of the present invention, the extension and / or the recess are provided with a plug-in guide structure for guiding the two to butt together.

[0019] In the single battery according to one embodiment of the present invention, the plug-in guiding structure includes one or a combination of rounded corners and inclined surfaces.

[0020] In the single battery according to one embodiment of the present invention, the ratio of the minimum width W1 of the extension portion to the maximum width W2 of the first tab is 0.5-1.

[0021] In one embodiment of the single battery of the present invention, the first tab includes a plurality of stacked first tab pieces, and the ratio of the height H1 of the extension portion to the stacked thickness H2 of the plurality of stacked first tab pieces in the thickness direction of the first cover plate is 2.68 to 3.68.

[0022] In the single battery according to one embodiment of the present invention, the extension extends in a plane, and in a direction perpendicular to the extension, the orthogonal projection of the extension covers the orthogonal projection of the first tab free end.

[0023] In the single battery according to one embodiment of the present invention, the extension portion is provided with a draft angle that makes it easy to remove from the mold, and the draft angle is in the range of 1° to 10°.

[0024] In one embodiment of the single battery of the present invention, the extension is disposed on the first insulating body, and the thickness of the extension is 0.7 mm or more and less than the thickness from the edge of the groove to the outer wall of the first insulating body.

[0025] In a single battery according to one embodiment of the present invention, the first terminal includes a bottom plate disposed on a side of the first cover plate closer to the electrode assembly and welded to the first tab.

[0026] In one embodiment of the present invention, the battery is a prismatic battery. The first tab free end is close to the large surface of the housing. In a direction perpendicular to the large surface, the orthogonal projection of the extension portion covers the orthogonal projection of the first tab free end.

[0027] In one embodiment of the single battery of the present invention, the first insulating bracket is provided with a first tab receiving groove, and the orthogonal projection of the first tab receiving groove covers the orthogonal projection of the extension portion in a direction perpendicular to the major surface.

[0028] In a unitary battery according to one embodiment of the present invention, the first tab is a positive electrode tab.

[0029] In the single battery according to one embodiment of the present invention, the connection between the root portion of the extension portion and the first insulating body or the first insulating bracket includes one or a combination of an integral connection, an adhesive, a removable snap connection, a bendable connection, and a rotatable connection.

[0030] In the single battery according to one embodiment of the present invention, the root portion of the extension portion is connected to the first insulating body or the first insulating bracket so as to be able to bend or rotate.

[0031] In the single battery according to one embodiment of the present invention, the first insulating bracket includes a tab gathering structure for gathering the first tabs.

[0032] In one embodiment of the present invention, the tab collection structure includes a first protrusion opposite the extension portion, the first protrusion being connected to the first insulating bracket and protruding toward one side of the extension portion, and a first tab receiving groove formed on the side of the first protrusion closest to the first cover plate.

[0033] In one embodiment of the present invention, the tab collecting structure further includes a second protrusion disposed on the opposite side of the first protrusion, connected to the first insulating bracket, and protruding toward one side of the first protrusion to support the free end of the first tab.

[0034] In one embodiment of the present invention, the battery includes a housing further including a second opening, the second opening and the first opening being located on two opposing sides of the housing. The battery also includes a second cover plate attached to the second opening and sealing the second opening. The electrode assembly includes a second tab extending from the side closest to the second cover plate. The second tab is electrically connected to the housing, the second cover plate, or a terminal on the second cover plate.

[0035] The present invention further provides a battery, the battery comprising a single cell according to any one of the above.

[0036] The present invention further provides an electrical device, the electrical device comprising a single battery according to any one of the above. [Effects of the Invention]

[0037] In the unit battery provided by the present invention, the first insulating member is provided with a tab block structure. The tab block structure and the side of the first terminal closest to the electrode assembly form a first accommodating space. The first accommodating space is used to limit the operating area of the free end of the first tab, and the housing is located outside the first accommodating space. The tab block structure prevents the first tab from contacting the housing. The tab block structure blocks excess first tabs, eliminating the need for tab cutting. This reduces production costs and improves battery safety.

[0038] The batteries and electrical devices of the present invention include the unitary batteries of the present invention, thereby providing improved safety performance and reducing manufacturing costs. [Brief explanation of the drawings]

[0039] In order to more clearly illustrate the technical solutions provided in the embodiments of the present invention or related art, some accompanying drawings required by the embodiments or related art for explanation are briefly introduced below. The drawings in the following description are only some embodiments of the present invention, and it is obvious that those skilled in the art can obtain other drawings based on these drawings without creative efforts.

[0040] [Figure 1] FIG. 2 is a cross-sectional view of one side of a first cover plate in a single battery according to one embodiment of the present invention. [Figure 2] FIG. 2 is a schematic diagram of a single battery after welding of a first tab and a first terminal has been completed according to one embodiment of the present invention. [Figure 3] FIG. 2 is an exploded view of a first cover plate, a first insulating body, and a first insulating bracket in a single battery according to one embodiment of the present invention. [Figure 4] 1 is a side view of an assembled first cover plate, a first insulating body, and a first insulating bracket in a single battery according to one embodiment of the present invention. FIG. [Figure 5] FIG. 2 is a three-dimensional view of a first insulating body in a single battery according to one embodiment of the present invention. [Figure 6] FIG. 2 is a top view of a first insulating body in a single battery according to one embodiment of the present invention. [Figure 7] FIG. 2 is a top view of a first insulating bracket in a single battery according to one embodiment of the present invention. [Figure 8] FIG. 2 is a three-dimensional view of a first insulating bracket in a single battery according to one embodiment of the present invention. [Figure 9] FIG. 2 is a cross-sectional view of one side of a first cover plate in a single battery according to one embodiment of the present invention. [Figure 10] FIG. 10 is a schematic view of a single battery according to another embodiment of the present invention after welding of a first tab and a first terminal is completed. [Figure 11] FIG. 10 is an exploded view of a first cover plate, a first insulating body, and a first insulating bracket in a single battery according to another embodiment of the present invention. [Figure 12]FIG. 10 is an assembled side view of a first cover plate, a first insulating body, and a first insulating bracket in a single battery according to another embodiment of the present invention. [Figure 13] FIG. 10 is a three-dimensional view of a first insulating body in a single battery according to another embodiment of the present invention. [Figure 14] FIG. 10 is a top view of a first insulating body in a unitary battery according to another embodiment of the present invention. [Figure 15] FIG. 10 is a three-dimensional view of a first insulating bracket in a single battery according to another embodiment of the present invention. [Figure 16] FIG. 10 is a top view of a first insulating bracket in a single battery according to another embodiment of the present invention. [Figure 17] FIG. 4 is a cross-sectional view of one side of a first cover plate in a single battery according to another embodiment of the present invention. [Figure 18] FIG. 10 is a three-dimensional view of a first insulating body in a single battery according to yet another embodiment of the present invention. [Figure 19] 10 is a three-dimensional view of a first cover plate assembly when a first insulating body is in a first state in a single battery according to yet another embodiment of the present invention; FIG. [Figure 20] 10 is a three-dimensional view of a first cover plate assembly when a first insulating body is in a second state in a single battery according to yet another embodiment of the present invention; FIG. [Figure 21] 10 is a three-dimensional view of a first cover plate assembly when a first insulating body is in a first state in a single battery according to yet another embodiment of the present invention; FIG. [Figure 22] FIG. 10 is a cross-sectional view of one side of a first cover plate in a unit cell according to yet another embodiment of the present invention. [Figure 23] FIG. 10 is a cross-sectional view of one side of a first cover plate in a unit cell according to yet another embodiment of the present invention. [Figure 24] FIG. 10 is a three-dimensional view of a first insulating body in a single battery according to yet another embodiment of the present invention. [Figure 25] FIG. 10 is a three-dimensional view of a first insulating body in a single battery according to yet another embodiment of the present invention. [Figure 26] FIG. 10 is a cross-sectional view of one side of a first cover plate in a unit cell according to yet another embodiment of the present invention. [Figure 27] FIG. 10 is a cross-sectional view of one side of a first cover plate in a unit cell according to yet another embodiment of the present invention. [Figure 28] FIG. 2 is a structural diagram of a first tab free end in a single battery according to one embodiment of the present invention. [Figure 29] 1 is a structural diagram of a battery according to one embodiment of the present invention. [Figure 30] 1 is a structural diagram of an electrical device according to one embodiment of the present invention; DETAILED DESCRIPTION OF THE INVENTION

[0041] The implementation of the present invention is illustrated below by specific embodiments. Those skilled in the art will easily understand other advantages and effects of the present invention from the contents disclosed herein. The present invention can also be implemented or applied by other different specific implementation modes. The details in this specification can also be modified or changed based on different perspectives and applications without departing from the spirit of the present invention. It should be noted that the following embodiments and features in the embodiments can be combined with each other if not inconsistent. It should be understood that the terms used in the embodiments of the present invention are intended to describe specific embodiments, but are not intended to limit the scope of protection of the present invention. Test methods for which no specific conditions are specified in the following embodiments are generally based on conventional conditions or conditions recommended by each manufacturer.

[0042] When a numerical range is given in an embodiment, unless otherwise specified in the embodiment, it should be understood that the two endpoints of each numerical range and any numerical value between the two endpoints may be selected. Unless otherwise defined, all technical and scientific terms used in the present invention are consistent with the understanding of the prior art by those skilled in the art and the content of the present invention. Any methods, devices, and materials in the prior art that are similar or equivalent to the methods, devices, and materials described in the embodiments of the present invention can also be used to implement the present invention.

[0043] It should be noted that the terms "upper", "lower", "left", "right", "middle", and "one side" used in this specification are for convenience of explanation only and are not used to limit the scope of the present invention. Any change or adjustment of the relative relationship thereof shall be included in the scope of the present invention as long as it does not substantially change the technical content.

[0044] In currently available battery cells, contact between the tab and the housing can lead to short circuits and cause numerous problems. After research, designers discovered that the tabs of the electrode assemblies in currently available battery cells almost always extend outside the bare cell and connect to terminals on the cover. In particular, in prismatic batteries, the tabs include multiple tab pieces, which are stacked, bent, and welded to terminals on the cover plate. After welding, the excess free ends of the multiple tab pieces spread out to form irregular edge structures, making them more likely to contact the housing through the joint between the insulating member and the insulating bracket. To prevent the excess free ends of the tab pieces from contacting the housing when the cover plate closes the housing, an insulating member and an insulating bracket are often provided between the cover plate and the electrode assembly. However, currently available battery cells have a butt joint between the insulating member and the insulating bracket, which creates a risk that the excess free ends of the tab pieces inside the housing may protrude from the joint between the insulating member and the insulating bracket and contact the inner wall of the housing after the cover plate is welded to the housing. Reducing the amount of redundant tab pieces by cutting the tabs can further reduce the risk of contact between the tab pieces and the housing. However, cutting the tabs increases the number of processes and reduces assembly efficiency. In addition, cutting chips are generated during the cutting process, and if the chips get inside the housing, they can penetrate the separator of the electrode assembly, causing an internal short circuit in the battery, which reduces the safety of the battery.

[0045] Based on the above, and referring to FIGS. 1 to 27, the present invention first provides a single battery 100. The first insulating member 20 is provided with a tab block structure 170. The electrode assembly of the first terminal 160 120The side closest to the first tab 121 and the tab block structure 170 form a first accommodating space 190 used to limit the range of movement of the first tab free end 1211. The housing 110 is located outside the first accommodating space 190. The tab block structure 170 can prevent the first tab 121 from contacting the housing 110. The tab block structure 170 can block excess first tabs 121, eliminating the need for tab cutting. In this way, production costs can be reduced, the safety performance of the battery can be improved, and a technical problem seen in currently available unit batteries, in which the tab free end is prone to contact the inner wall of the housing and lead to short circuits, can be resolved.

[0046] The unitary battery 100 of the present invention may be a power battery or an energy storage battery. Referring to Figure 1, the unitary battery 100 includes a housing 110, a first cover plate 150, a first terminal 160, an electrode assembly 120, a first insulating body 140, and a first insulating bracket 130.

[0047] Referring to FIG. 1 , a housing cavity is formed in the housing 110, and one end of the housing cavity has a first opening 111. The housing cavity is used to accommodate the electrode assembly 120, an electrolyte (not shown), and other components, and the first opening 111 is used to assemble the electrode assembly 120 into the housing cavity. In the present invention, the housing 110 may have an opening only at one end of the housing cavity, or an opening may be provided at the opposite end of the housing cavity. The housing 110 may have various shapes, such as a substantially rectangular parallelepiped, a substantially cylindrical, a substantially prism, etc. The housing 110 may be made of various materials, such as copper, iron, aluminum, steel, aluminum alloy, etc. To prevent the housing 110 from rusting during long-term use, the surface of the housing 110 may be coated with a layer of anti-corrosion material, such as metallic nickel.

[0048] Referring to FIG. 1 , the first cover plate 150 is attached to seal the first opening 111. The shape of the first cover plate 150 may be circular, rectangular, or any other suitable shape, as long as the first cover plate 150 can be fixedly attached to the housing 110 and seal the first opening 111. Specifically, in consideration of the overall volume, it is preferable that the shape of the first cover plate 150 is similar to the shape of the first opening 111. In this embodiment, the single battery 100 is a prismatic battery. At the pond Ignoring the rounded corners, the housing 110 has a generally rectangular parallelepiped shape overall, and a generally rectangular parallelepiped accommodating cavity is enclosed within the housing 110. One end of the accommodating cavity has a generally rectangular opening 111. The shape of the first cover plate 150 is similar to the shape of the first opening 111, and the first cover plate 150 has a first positioning structure 151 that matches the inner wall and end wall of the first opening 111. The first positioning structure 151 may be any suitable structure that can be aligned with and positioned within the first opening 111. In this embodiment, the first positioning structure 151 includes a boss that protrudes into the first opening 111 and abuts the inner wall of the first opening 111. The first positioning structure 151 allows the first cover plate 150 to be quickly positioned and attached to the first opening 111 and can provide good stability during further welding or sealing and joining processes between the first cover plate 150 and the housing 110. Of course, those skilled in the art will understand that the above-mentioned first positioning structure 151 does not have to be provided.

[0049] The electrode assembly 120 is the component where the electrochemical reaction occurs within the cell. One or more electrode assemblies 120 may be contained within the housing 110. The electrode assembly 120 is typically formed by winding or stacking a positive electrode sheet and a negative electrode sheet, with a separator typically provided between the positive and negative electrode sheets. The positive electrode sheet includes a positive electrode current collector and a positive electrode active material layer, with the positive electrode active material layer coated on the surface of the positive electrode current collector. The positive electrode current collector includes a positive electrode coated region and a positive electrode tab connected to the positive electrode coated region. The positive electrode coated region is coated with the positive electrode active material layer, while the positive electrode tab is not coated with the positive electrode active material layer. The negative electrode sheet includes a negative electrode current collector and a negative electrode active material layer, with the negative electrode active material layer coated on the surface of the negative electrode current collector. The negative electrode current collector includes a negative electrode coated region and a negative electrode tab connected to the negative electrode coated region. The negative electrode coating region is coated with a negative electrode active material layer, and the negative electrode tab is not coated with a negative electrode active material layer. Taking a lithium-ion battery as an example, the material of the positive electrode current collector may be aluminum. The positive electrode active material includes a positive electrode active material, which may be lithium cobalt oxide, lithium iron phosphate, ternary lithium, or lithium manganese oxide. The material of the negative electrode current collector may be copper. The negative electrode active material layer includes a negative electrode active material, which may be carbon or silicon. The material of the separator may be polypropylene (PP) or polyethylene (PE), etc. To protect and insulate the cell, the cell may be externally covered with an insulating film, which may be made of PP, PE, PET, PVC, or other polymer materials.

[0050] Referring to FIG. 1 , the electrode assembly 120 is housed in the housing 110 and has a first tab 121 extending from a side closer to the first cover plate 150. The first tab 121 is fixedly and conductively connected to the first terminal 160, and one end of the first tab 121 outside the connection portion forms a first tab free end 1211. The first tab 121 may be the positive electrode tab or the negative electrode tab described above, and is not particularly limited herein. In this embodiment, the first tab 121 is a positive electrode tab. The first terminal 160 is fixedly attached to the first cover plate 150 and insulated from the first cover plate 150. One end of the first terminal 160 remote from the electrode assembly 120 is exposed to the outside of the first cover plate 150 and is used to form an externally connected electrode. One end of the first terminal 160 close to the electrode assembly 120 penetrates the first cover plate 150 and is electrically connected to the first tab 121. Methods of conductive connection include, but are not limited to, conductive welding, conductive bonding, etc. Specifically, in the single battery 100 provided in this embodiment, the first terminal 160 includes a bottom plate 161, which is disposed on the side of the first cover plate 150 closer to the electrode assembly 120 and is welded to the first tab 121.

[0051] 1 and 3, the first insulating member 20 is an electrode assembly of the first cover plate 150. 120 The electrode assembly of the first terminal 160 is provided with a tab block structure 170. 120 The side closest to the housing 110 and the tab block structure 170 form a receiving space 190 which is used to limit the range of movement of the first tab free end 1211. The housing 110 is located outside the first receiving space 190. In this arrangement, the first receiving space 190 is separated from the housing 110 by the tab block structure 170, and the first tab 121 is prevented from contacting the housing 110. The tab block structure 170 can block the excess first tab 121, and there is no need to cut the tab. In this way, the production cost is reduced and the power consumption is reduced. Pond Safety performance is improved.

[0052] Referring to FIGS. 1 and 3, in a single battery according to one embodiment of the present invention, First insulating member20 includes a first insulating body 140 and a first insulating bracket 130. The first insulating bracket 130 is disposed between the first insulating body 140 and the electrode assembly 120. The tab block structure 170 is disposed on the first insulating body and / or the first insulating bracket, and is located on the front side in the extension direction of the first tab free end 1211. The tab block structure 170 blocks the first tab free end 1211 from passing through the gap between the first insulating body 140 and the first insulating bracket 130.

[0053] Referring to Figures 1 to 6, First insulating body The first insulating body 140 is disposed on the side of the first cover plate 150 closer to the electrode assembly 120. The structure and attachment method of the first insulating body 140 are not limited. For example, the structure and attachment method of the lower plastic of currently available single batteries 100 may be referenced, but are not limited to, this. In this embodiment, the first terminal 160 penetrates the first cover plate 150 and the first insulating body 140. The first insulating body 140 is press-fitted into the side of the first cover plate 150 closer to the electrode assembly 120 via a bottom plate 161 above the first terminal 160. The first insulating body 140 may be made of any suitable insulating material, including, but not limited to, rubber and plastic.

[0054] 1 to 3 and 7 and 8, the first insulating bracket 130 is disposed inside the housing 110 between the first insulating body 140 and the electrode assembly 120 to support the electrode assembly 120. Specifically, the first insulating bracket 130 includes a first tab through-hole 133 corresponding to the position of the first tab 121. The first tab 121 extends through the first tab through-hole 133 and is conductively welded to the bottom plate 161 of the first terminal 160. Materials for the first insulating bracket 130 include, but are not limited to, rubber and plastic.

[0055] 1 to 9 , in the unit battery 100 of the present invention, the first insulating body 140 and / or the first insulating bracket 130 are provided with a tab block structure 170 that is disposed on the front side in the extension direction of the first tab free end 1211 (i.e., the direction opposite to the Y direction in FIG. 1 ) and is configured to block the first tab free end 1211 from passing through the joint between the first insulating body 140 and the first insulating bracket 130. It should be noted that the tab block structure 170 may be provided on only one of the first insulating body 140 or the first insulating bracket 130, or may be provided on both the first insulating body 140 and the first insulating bracket 130 so as to block the first tab free end 1211 together. The tab block structure 170 may be any appropriate structure that can block the first tab free end 1211 and prevent the first tab free end 1211 from passing through the joint between the first insulating body 140 and the first insulating bracket 130. For example, as shown in FIGS. 17 , 22 , and 23 , an overlapping region may be formed on the first insulating body 140 and the first insulating bracket 130 at the front end in the extension direction of the first tab free end 1211 to cover or seal the joint between the first insulating body 140 and the first insulating bracket 130. Another example, as shown in FIGS. 4 and 12 , includes, but is not limited to, a butt joint curved portion 173 at the front end in the extension direction of the first tab free end 1211 between the first insulating body 140 and the first insulating bracket 130. The tab blocking structure 170 prevents the first tab free end 1211 from passing through the joint between the first insulating body 140 and the first insulating bracket 130 and prevents the first tab 121 from contacting the housing 110. The extension portion 171 can block the excess first tab piece, eliminating the need for cutting the tab. This reduces production costs and improves the safety performance of the battery.

[0056] 2, 4, and 12, in a single battery 100 according to one embodiment of the present invention, the blocking structure includes a butt seam curved portion 173 provided at the butt seam position between the first insulating body 140 and the first insulating bracket 130. Considering that the end structure of the first tab free end 1211 generally extends along a straight line in the width direction of the first tab 121 (i.e., the Z direction in FIG. 2), those skilled in the art will understand that the butt seam curved portion 173 is formed by curving the front butt seam in the extension direction of the first tab free end 1211 within the width direction corresponding to the first tab free end 1211. That is, compared to the original flat butt seam structure, this can have the effect of blocking the protrusion of the first tab free end 1211.

[0057] 1 and 4, in a single battery 100 according to one embodiment of the present invention, the butt seam of the curved butt seam portion 173 is curved in the thickness direction of the first cover plate 150 (i.e., the X direction in FIG. 1 ) away from the contact surface 180 between the first tab 121 and the first terminal 160. The shape of the curved butt seam portion 173 is not particularly limited, as long as the butt seam can be further away from the contact surface 180 between the first tab 121 and the first terminal 160 than the original butt seam. For example, as shown in FIGS. 9 and 12, the butt seam is curved toward the first cover plate 150. Alternatively, as shown in FIGS. 1 and 4, the butt seam is curved away from the first cover plate 150. The butt seam may be curved in an arc-like, sawtooth, or generally trapezoidal shape, but is not limited thereto.

[0058] As long as the butt seam is curved in a corresponding region on the front side in the extension direction of the first tab free end 1211, the curved butt seam can prevent the first tab free end 1211 from passing through. However, in a single battery 100 according to one embodiment of the present invention, the butt seam curved portion 173 is preferably located outside the movable area of the first tab free end 1211. The movable area of the first tab free end 1211 may be determined comprehensively through the design size, welding position, and gravity, or may be determined through technical drawings, but is not limited thereto. In this embodiment, by locating the butt seam curved portion 173 outside the movable area of the first tab free end 1211 and on the front side in the extension direction of the first tab free end 1211, the possibility of the first tab free end 1211 passing through the butt seam between the first insulating body 140 and the first insulating bracket 130 can be significantly reduced or completely eliminated.

[0059] In some embodiments of the unitary battery 100 provided by the present invention, the butt seam curved portion 173 includes a nonlinear stretch butt seam structure. The nonlinear stretch butt seam structure is located at least partially within a width range corresponding to the first tab free end 1211. The nonlinear stretch butt seam structure includes one or a combination of a sawtooth butt, a wave butt, and a triangular butt. When the substantially planar first tab free end 1211 stretches into the nonlinear stretch butt seam structure, the labyrinth-like gap structure formed by the nonlinear stretch butt seam blocks the substantially straight first tab free end 1211, reducing the possibility of the first tab free end 1211 breaking through the butt seam. In order to effectively prevent the first tab free end 1211 from penetrating the nonlinear stretch butt joint structure, part or all of the butt joint between the first insulating body 140 and the first insulating bracket 130 on the opposite side of the first tab free end 1211 may be located outside the movable area of the first tab free end 1211.

[0060] 1 and 9, in a single battery 100 according to one embodiment of the present invention, the blocking structure includes an extension 171. The base of the extension 171 is connected to the first insulating body 140 and / or the first insulating bracket 130, and extends to block the front side of the first tab free end 1211 in the extension direction. The shape of the extension 171 may be, but is not limited to, a trapezoid, a rectangle, a tongue, or the like. By providing the extension 171 on the front side of the first tab free end 1211 in the extension direction, the extension 171 can prevent the first tab free end 1211 from continuing to move to contact the housing 110. The extension 171 can block the excess first tab 121, eliminating the need to cut the tab. In this way, production costs can be reduced and the battery can be increased. Pond Safety performance is improved.

[0061] 1 to 6, in one embodiment, the root of the extension 171 is connected to the first insulating body 140 by means of, but not limited to, integral connection, adhesion, etc. The extension end of the extension 171 extends toward one side of the first insulating bracket 130, thereby forming a shape that extends toward the first insulating bracket 130 and blocking the front side of the first tab free end 1211 in the extension direction.

[0062] 9 to 16, in another embodiment, the base of the extension 171 is connected to the first insulating bracket 130, and this connection may be made by, but is not limited to, integral connection, adhesion, etc. The extension end of the extension 171 extends toward one side of the first insulating body 140, forming a shape that extends toward the first insulating body 140 and blocking the front side of the first tab free end 1211 in the extension direction. However, those skilled in the art will understand that in other embodiments, the extension 171 may be provided on both the first insulating body 140 and the first insulating bracket 130, and multiple extensions may be arranged and combined in the width direction of the first tab 121 or the extension direction of the first tab free end 1211 to block the first tab free end 1211 together.

[0063] To achieve a desirable blocking effect, the extension end of the extension portion 171 extends beyond the movable area of the first tab free end 1211. Such an arrangement can significantly reduce the possibility of penetration by the first tab free end 1211 and can also eliminate the possibility of contact between the first tab free end 1211 and the housing 110.

[0064] Referring to FIG. 1 , in a single battery 100 according to one embodiment of the present invention, a corresponding recess 172 is disposed in the first insulating body 140 (or the first insulating bracket 130) at the front side in the extension direction of the extension portion 171. The depth of the recess 172 is preferably slightly greater than the height of the extension portion 171 to avoid interference during assembly. The extension end of the extension portion 171 extends at least partially into the recess 172. The shape of the recess 172 matches the shape of the extension portion 171. For example, when the extension portion 171 is trapezoidal, the recess 172 is also trapezoidal, and the extension portion 171 and the recess 172 abut against each other to form a substantially trapezoidal butt joint with an opening. When the extension portion 171 is trapezoidal, it must meet the requirement that it can be inserted into the recess 172 and conform to the side and bottom walls of the recess 172. For example, the shape of the extension 171 may be an isosceles trapezoid with an upper base close to the recess 172, a right-angled trapezoid with an upper base close to the recess 172, or a general trapezoidal structure that can be inserted into the recess 172 along a straight line. Furthermore, providing the extension 171 with a matching recess 172 allows a matching concave-convex structure to be formed between the first insulating body 140 and the first insulating bracket 130, without changing the overall space occupied by the first insulating body 140 and the first insulating bracket 130 within the housing 110. The butt joint between the first insulating body 140 and the first insulating bracket 130 on the front side in the extension direction of the first tab free end 1211 can also be moved farther away or outward from the movable area of the first tab free end 1211. In this way, the possibility of the first tab free end 1211 poking through the butt joint between the first insulating body 140 and the first insulating bracket 130 can be reduced.

[0065] 26 and 27 , in this embodiment, the recess 172 may be a groove-like structure provided on the inner side of the wall of the first insulating body 140 or the wall of the first insulating bracket 130. In this groove structure, the recess 172 penetrates only the wall of the first insulating body 140 or the wall of the first insulating bracket 130 on the side corresponding to the extension portion 171, forming an opening into which the extension portion 171 is inserted. In this case, the extension portion 171 and the recess 172 form a plug-in relationship. In the height direction of the first cover plate 150, no seam is formed between the first insulating body 140 and the first insulating bracket 130 on the front side in the extension direction of the extension portion 171, which can effectively prevent the first tab free end 1211 from contacting the housing 110.

[0066] 1, 4, 9, and 12, taking into consideration the wall thicknesses of the first insulating body 140 and the first insulating bracket, in a single battery 100 according to one embodiment of the present invention, in the extension direction of the first tab free end 1211, the recess 172 penetrates the corresponding wall of the first insulating body 140 or the corresponding wall of the first insulating bracket 130. The extension 171 and the recess 172 abut against each other to form a curved butt seam portion 173. In the thickness direction of the first cover plate 150, the butt seam of the curved butt seam portion 173 curves away from the contact surface between the first tab 121 and the first terminal 160. In this embodiment, the first tab 121 is welded to the bottom plate 161 of the first terminal 160, and the first tab free end 1211 is close to the contact surface 180 between the first tab 121 and the first terminal 160. Bending the butt seam of the butt seam bend 173 away from the contact surface 180 between the first tab 121 and the first terminal 160 can reduce the likelihood of the first tab free end 1211 reaching the butt seam, thereby reducing the risk of contact between the first tab free end 1211 and the housing 110 to at least some extent.

[0067] Referring to FIG. 4 , in a single battery 100 according to one embodiment of the present invention, the extension 171 and / or the recess 172 are provided with a plug-in guide structure 174 to guide the extension 171 and / or the recess 172 so that they abut against each other. The plug-in guide structure 174 may be disposed only on the extension 171, only on the recess 172, or on both the extension 171 and the recess 172, and the two may be aligned to achieve plug-in and guidance. The plug-in guide structure 174 may be of various types. For example, the plug-in guide structure may form a sloped surface or a rounded corner in the notch of the recess 172 to guide the extension 171 to enter. Alternatively, the plug-in guide structure may be a sloped surface provided on the side wall of the recess 172, and the sloped surface may cause the recess 172 to form a structure with a wide notch and a narrow bottom. Alternatively, the plug-in guiding structure may be a sloping surface or a rounded corner disposed on the free end of the extension 171, or the plug-in guiding structure may be a sloping surface disposed on the extension 171, which may cause the extension 171 to form a wedge-shaped structure with a narrow free end and a wide base. Alternatively, the above various assemblies may be provided on both the recess 172 and the extension 171.

[0068] 3 and 8, in one embodiment, the base of the extension 171 is connected to the first insulating body 140. The first insulating bracket 130 has a recess 172 that matches the extension 171, and the extension 171 has a generally trapezoidal shape. The plug-in guide structure 174 includes first inclined surfaces 1741 on both sides of the extension 171 and second inclined surfaces 1742 on both sides of the recess 172 that match the first inclined surfaces 1741. The two first inclined surfaces 1741 and the two second inclined surfaces 1742 are aligned and abut against each other. The upper bottom of the extension 171 and the bottom of the recess 172 abut against each other to form a generally trapezoidal butt joint without a lower bottom.

[0069] 11 to 16, in another embodiment of the present invention, a base portion of an extension portion 171 is connected to a first insulating bracket 130. A recess 172 is provided in a first insulating body 140 and matches the extension portion 171, and the extension portion 171 has a generally trapezoidal shape. The plug-in guide structure 174 includes first inclined surfaces 1741 provided on both sides of the extension portion 171 and second inclined surfaces 1742 provided on both sides of the recess 172 and matching the first inclined surfaces 1741. The two first inclined surfaces 1741 and the two second inclined surfaces 1742 are aligned and abut against each other. The upper bottom of the extension portion 171 and the bottom of the recess 172 abut against each other to form a generally trapezoidal butt joint without a lower bottom.

[0070] Those skilled in the art will understand that if the first inclined surface 1741 is provided on only one side of the above-mentioned extension 171 and the other side is a straight surface, a right-angled trapezoid extension 171 will be formed. The arrangement of a matching second inclined surface 1742 at a position corresponding to the first inclined surface 1741 in the recess 172 can also guide the extension 171 to enter. Alternatively, the extension end of the extension 171 can be provided with an arc-shaped structure, which also guides the extension 171 and the recess 172 to abut against each other.

[0071] Referring to FIG. 1 , in this embodiment, the risk of the first tab free end 1211 piercing the seam of the extension 171 and the single-piece first tab 121 is reduced. Referring to FIG. 28 , in a single battery 100 according to one embodiment of the present invention, the first tab 121 includes a plurality of stacked first tab pieces 1212, and the free ends of the first tab pieces 1212 have an uneven edge structure. Furthermore, in the thickness direction of the first cover plate 150, the ratio of the height H1 of the extension 171 to the stack height H2 of the plurality of first tab pieces 1212 is in the range of 2.68 to 3.68. However, if the ratio of H1 to H2 is less than 2.68, there is a risk that the first tab 121 will pierce the seam between the first insulating body 140 and the first insulating bracket 130. If the ratio of H1 to H2 is greater than 3.68, the recess 172 is too deep, which affects the stability of the first insulating body 140 or the first insulating bracket 130 where the recess 172 is located. PondAccording to the current structure, the height H1 from the extending end of the extending portion 171 to the contact surface between the first terminal 160 and the first tab 121 is generally 2 mm to 3 mm, and is 2.6 mm in this embodiment.

[0072] Although the structure of the present invention can be applied to various types of unit batteries 100 having cover plates, referring to FIGS. 1 and 10, in the unit battery 100 according to one embodiment of the present invention, the unit battery 100 is a prismatic battery. At the pond The first tab free end 1211 is close to the large surface 112 of the housing 110. In the direction perpendicular to the large surface 112 (i.e., the Y direction in FIG. 1), the orthogonal projection of the extension 171 covers the orthogonal projection of the first tab free end 1211. This arrangement allows the extension 171 to cover as much of the movable area of the first tab free end 1211 as possible, achieving a desirable blocking effect.

[0073] 1 and 9, in some embodiments of the present invention, the extension 171 disposed on the first insulating body 140 and / or the first insulating bracket 130 has a draft angle of 1° to 10°. The extension 171 gradually becomes thinner from the extended end to the root portion of the extension 171 due to the effect of the draft angle. The draft angle of 1° to 10° not only facilitates the entire first insulating body 140 to be demolded, but also prevents the thickness of the extension 171 from the root portion to the free end from changing excessively, which would result in the extension 171 having insufficient hardness.

[0074] 2, in a single battery 100 according to one embodiment of the present invention, the extension 171 is trapezoidal, and the ratio of the width w1 of the short side of the extension to the width w2 of the first tab 121 is 0.5 to 1. If the ratio of w1 to w2 is less than 0.5, the blocking effect of the extension 171 on the first tab free end 1211 is not obvious. If the ratio of w1 to w2 is greater than 1, the weight of the first insulating body 140 or the first insulating bracket 130 increases, and the length of the recess 172 on the first insulating bracket 130 or the first insulating body 140 opposite the extension 171 also increases, which may reduce the strength of the first insulating bracket 130.

[0075] 3, in a single battery 100 according to one embodiment of the present invention, an extension 171 is disposed on the first insulating body 140. The length w3 of the base of the extension 171 is 1 to 2 mm longer on each side than the length w4 of the opening of the recess 172 of the first insulating bracket 130. With this arrangement, the seam between these two can be made small without making assembly difficult due to errors.

[0076] Although the structure of the present invention is applicable to various types of unit cells 100 having cover plates, in the unit cell 100 according to one embodiment of the present invention, the unit cell 100 is a prismatic cell. At the pond 1 so as to approach the large surface 112 of the housing 110. In a direction perpendicular to the large surface 112, the orthogonal projection of the extension portion 171 covers the orthogonal projection of the first tab free end 1211, and such an arrangement provides a desirable blocking effect.

[0077] Referring to FIG. 1 , in a single battery 100 according to one embodiment of the present invention, a first insulating bracket 130 is provided with a first tab receiving groove 131. In a direction perpendicular to the large surface 112, the orthogonal projection of the first tab receiving groove 131 covers the orthogonal projection of the extension portion 171. Specifically, in a direction perpendicular to the large surface 112 (i.e., the Y direction in FIG. 1 ), the orthogonal projection length of the base portion of the extension portion 171 is greater than the orthogonal projection length of the bottom plate 161 of the first terminal 160, but less than the orthogonal projection length of the first tab receiving groove 131. When the orthogonal projection length of the base portion of the extension portion 171 is greater than the orthogonal projection length of the bottom plate 161 of the first terminal 160, the first tab free end 1211 is well blocked. When the orthogonal projection length of the extension portion 171 is less than the length of the first tab receiving groove 131, the difficulty of assembly is reduced. Currently available batteries Pond Considering the size, the length of the root part of the extension part 171 in orthogonal projection is preferably 26 to 50 mm, and may be, for example, 26 mm, 35 mm, or 50 mm, but is not limited to these, and is 45 mm in this embodiment.

[0078] 1, 3, 4, and 5, in a single battery 100 according to one embodiment of the present invention, an extension 171 is disposed on the first insulating body 140, and a recess 172 is disposed on the first insulating bracket 130. The root of the extension 171 is connected to the first insulating body 140, such connection including, but not limited to, integral connection, adhesive, rotational connection, removable snap connection, etc. The extended end of the extension 171 extends toward one side of the electrode assembly 120 and is inserted into the recess 172 on the first insulating bracket 130, forming a trapezoidal butt joint curved portion 173. Pond Considering the size specifications, it is preferable that the thickness t2 of the extension 171 (the thickness of the base of the extension 171 if a draft angle is provided) is greater than 0.7 mm and equal to or less than the thickness t1 of the side wall of the first insulating body (i.e., the thickness from the edge of the groove to the outer wall of the first insulating body 140). If the thickness t2 of the extension 171 is less than 0.7 mm, it is highly likely that the extension 171 will not be hard enough to block the first tab piece 1212. If t2 is greater than t1, the overall weight of the first insulating body 140 will increase, and the lateral space utilization rate of the single battery 100 may decrease.

[0079] 9 and 12, in a single battery 100 according to one embodiment of the present invention, an extension 171 is disposed on the first insulating bracket 130. The base of the extension 171 is connected to the first insulating bracket 130 by, but not limited to, integral connection, adhesive bonding, or rotational connection. The free end of the extension 171 extends toward one side of the first cover plate 150 and into a recess 172 on the first insulating body 140, forming a trapezoidal butt-joint curved portion 173. The ratio of the thickness t3 of the base of the extension 171 to the wall thickness t4 of the first insulating bracket 130 is 0.7 to 1.3. Considering the specifications of currently available single batteries, in this embodiment, the thickness t3 of the base of the extension 171 is 1.25 mm. If the ratio of the base thickness t3 of the extension 171 to the wall thickness t4 of the first insulating bracket 130 is less than 0.4, the extension 171 is likely to be insufficiently hard and unable to block the first tab 121. If the ratio of the base thickness t3 of the extension 171 to the wall thickness t4 of the first insulating bracket 130 is greater than 0.6, the contact area between the first insulating body 140 and the first insulating bracket 130 increases, making assembly more difficult and reducing structural stability. Considering the relative structures and sizes of currently available first insulating brackets 130 and first insulating bodies 140, the height H3 of the extension 171 is preferably 1 mm to 1.8 mm, for example, but not limited to, 1 mm, 1.3 mm, 1.5 mm, or 1.8 mm. The ratio of the height H3 of the extension 171 to the height H4 of the first insulating body 140 is 0.45 to 0.8. If the ratio of the height H3 of the extension 171 to the height H4 of the first insulating body 140 is less than 0.45, there is still a risk of the first tab 121 breaking through the joint between the first insulating body 140 and the first insulating bracket 130. If the ratio of the height H3 of the extension 171 to the height H4 of the first insulating body 140 is greater than 0.8, the first tab 121 is prevented from breaking through the joint, but the overall weight of the cell may increase.

[0080] 17 to 20 , in a unit battery 100 according to another embodiment of the present invention, the base of the extension 171 may be flexibly or rotatably connected to the first insulating body 140. The first insulating bracket 130 does not have a recess 172. The extension 171 extends inward from the side wall of the first insulating bracket 130 and blocks the front side of the first tab free end 1211 in the extension direction. Flexible connection structures include, but are not limited to, providing a relatively flexible connection at the base of the extension 171 or providing the extension 171 as a bendable material with a specific hardness. Rotatable connection structures include, but are not limited to, a structure in which a rotation axis and a groove are aligned. For example, a fixed or rotation axis may be provided in the extension 171, a groove aligned with the axis may be provided in the first insulating body 140, and the axis may be inserted into the groove to achieve rotation. Alternatively, a fixed or rotating shaft may be provided in the first insulating body 140, a groove corresponding to the shaft may be provided in the base of the extension 171, and the shaft may be inserted into the groove to achieve rotation. In this manner, before the first cover plate 150 is sealed and assembled to the housing 110, the extension 171 may first be inverted or bent outward to a first state, thereby providing sufficient space for welding between the first tab 121 and the first terminal 160. After welding is completed and the first cover plate 150 needs to be rotated to seal it in the first opening 111, the extension 171 may be inverted or bent to a second state perpendicular to the plate surface of the first cover plate 150. Therefore, the extension 171 can be inserted inside the side wall of the first insulating bracket 130 during the inversion process to block the seam between the first insulating body 140 and the first insulating bracket 130.

[0081] 23 to 25, in a unit battery 100 according to another embodiment of the present invention, the base portion of the extension portion 171 is connected to the first insulating bracket 130 so as to be flexible or rotatable. A flexible connection structure includes, but is not limited to, providing a relatively flexible connection band at the base portion of the extension portion 171 or making the extension portion 171 out of a bendable material having a specific hardness. A rotatable connection structure includes, but is not limited to, a structure in which a rotation shaft and a groove are aligned. For example, a fixed or rotation shaft may be provided on the extension portion 171, a groove corresponding to the shaft may be provided on the first insulating bracket 130, and the shaft may be inserted into the groove to achieve rotation. Alternatively, a fixed or rotation shaft may be provided on the first insulating bracket 130, and a groove corresponding to the shaft may be provided on the base portion of the extension portion 171, and the shaft may be inserted into the groove to achieve rotation. Before the first cover plate 150 is assembled to seal the housing 110, the extension 171 may first be inverted or bent outward to a first state, which provides sufficient space for welding the first tab 121 to the first terminal 160. After the welding is completed and the first cover plate 150 needs to be rotated to seal the first opening 111, the extension 171 may be inverted or bent to a second state perpendicular to the plate surface of the first cover plate 150. Thus, the extension 171 can be inserted inside the side wall of the first insulating body 140 during the inversion process to block the seam between the first insulating body 140 and the first insulating bracket 130. 22, the root portion of the extension portion 171 may be integrally connected to the first insulating bracket 130 in a non-flexible manner, and may be provided outside the joint between the first insulating body 140 and the first insulating bracket 130 corresponding to the front side in the extension direction of the first tab free end. In this way, even if the first tab free end 1211 penetrates the front joint, it can be blocked by the extension portion.

[0082] Referring to FIG. 1 , in a unit battery 100 according to one embodiment of the present invention, a first insulating bracket 130 includes a tab collecting structure 132 for collecting the first tabs 121. The tab collecting structure 132 may have various shapes as long as the first tabs 121 can be arranged thereon. The tab collecting structure 132 of the present invention includes a first protrusion 1321 arranged at the other end opposite the extension 171. The first protrusion 1321 is connected to the first insulating bracket 130 and protrudes toward one side of the extension 171. The first tab receiving groove 131 is formed on the side of the first protrusion 1321 that is closer to the first cover plate 150. The first protrusion 1321 allows the first tabs 121 to be tightly fixed between the first insulating bracket 130 and the bottom plate 161 of the first terminal 160 when the first tabs 121 are bent and curved, thereby facilitating welding of the first tabs 121 to the bottom plate 161 of the first terminal 160.

[0083] 1 , in another embodiment of the present invention, the tab collecting structure 132 further includes a second protrusion 1322 disposed on the opposite side to the first protrusion 1321. The second protrusion 1322 is connected to the first insulating bracket 130 and protrudes toward one side of the first protrusion 1321. The second protrusion 1322 is used to support the first tab free end 1211 to prevent the first tab free end 1211 from being inserted upside down and puncturing the separator of the electrode assembly. Of course, those skilled in the art will understand that, without considering the cumulative effect of the above-mentioned advantages, it is sufficient to provide only the first protrusion 1321 or the second protrusion 1322 on the insulating bracket 130.

[0084] Although the housing 110 of the present invention has only the first opening 111, in one embodiment of the present invention, the housing 110 may also include a second opening. The second opening is provided on the other side of the housing 110 opposite the first opening 111, forming a substantially rectangular parallelepiped channel with two-way openings in the housing 110. The single battery further includes a second cover plate (not shown). The structure of the second cover plate and the mounting structure on the housing 110 are different from currently available dual-path battery cells. PondThe structure of the negative electrode cover may be determined based on the structure of the negative electrode cover. As long as the second cover plate can seal and enclose the second opening, it may be the same as the structure of the first cover plate 150 in the present invention. In this embodiment, the shape of the second cover plate enclosing the second opening may be determined based on the mounting configuration of the first cover plate 150 and the first opening 111. A second tab (not shown) extends from the other end of the electrode assembly 120, away from the first tab 121. Furthermore, the polarity of the second tab and the first tab 121 is opposite, and the second tab is a negative electrode tab. The second tab is electrically connected to the second cover plate or a terminal on the second cover plate. Note that in this embodiment, the first tab 121 may be a negative electrode tab, and the second tab may be a positive electrode tab. A second insulating member and a second insulating bracket may be disposed between the second cover plate and the electrode assembly 120. The structure of the second insulating member may be the same as the structure of the first insulating body 140, or may be based on currently available plastic structures on the negative electrode side. The structure of the second insulating bracket may be the same as that of the first insulating bracket 130, or may refer to the structure of currently available negative electrode side insulating brackets. Furthermore, those skilled in the art will understand that the housing 110 may function as the negative electrode, and the second insulating member and second insulating bracket may not be provided.

[0085] It should be noted that in the present invention, if the butt seam curve or butt seam between the extension and the recess is located outside the movable area of the first tab free end, the butt seam does not need to be specifically defined. Ideally, the gap of the butt seam is 0 mm. However, considering the interference and error of assembly, in the present invention, the gap in the butt seam (i.e., the butt seam curve) between the extension and the recess is 0.2 mm to 0.4 mm. For example, the gap may be any value between 0.2 mm and 0.4 mm, such as 0.2 mm, 0.3 mm, 0.4 mm, etc. A gap less than 0.4 mm is not suitable for assembly, while a gap larger than 0.4 mm occupies the internal space of the cell and cannot ensure the blocking effect of the tab.

[0086] Referring to FIG. 29 , the present invention further provides a battery 10, which includes a single battery 100 according to any one of the above embodiments. The battery 10 may be, but is not limited to, a battery module, a battery block, or a battery pack. In one embodiment of the present invention, the battery 10 includes a housing and at least one single battery 100. The housing includes a first housing 101 and a second housing 102. The first housing 101 and the second housing 102 cover each other to form a storage space, and multiple single batteries 100 are stored in the storage space. The multiple single batteries 100 may be connected in series and / or parallel.

[0087] Referring to FIG. 30 , the present invention further provides an electric appliance 1. The electric appliance 1 may be a vehicle, a mobile phone, a mobile device, a laptop computer, a boat, a spacecraft, an electric toy, a power tool, etc. The vehicle may be, but is not limited to, a fuel vehicle, a gas vehicle, or a new energy vehicle, and the new energy vehicle may be a pure electric vehicle, a hybrid vehicle, a range-extended vehicle, etc. The spacecraft may include, but is not limited to, an airplane, a rocket, a space shuttle, a spaceship, etc. The electric toys may include, but are not limited to, a stationary or mobile electric toy, such as a game console, an electric car toy, an electric boat toy, an electric plane toy, etc. The power tools include, but are not limited to, a metal cutting power tool, a grinding power tool, an assembly power tool, a railroad power tool, such as an electric drill, an electric grinder, an electric wrench, an electric screwdriver, an electric hammer, an impact drill, a concrete vibrator, an electric planer, etc.

[0088] In the present invention, the electric device 1 includes an actuator 11 and the above-mentioned battery 10. The actuator 11 is electrically connected to the battery 10 to obtain electric energy support. The actuator 11 may be a unit component that can obtain electric energy from the battery 10 and perform corresponding operations, such as a blade rotation unit of a fan, a dust collection unit of a vacuum cleaner, a wheel drive unit of an electric vehicle, etc. In the embodiment of the present invention, the electric device is not particularly limited.

[0089] In the electric device 1 according to the embodiment of the present invention, the electric device 1 is a vehicle, the operating unit 11 is a vehicle body, and the battery 10 is fixedly attached to the vehicle body to provide driving force to the vehicle and realize the operation of the vehicle. [Industrial Applicability]

[0090] In the unit battery provided by the present invention, a tab block structure is provided on the first insulating body and / or the first insulating bracket, which are located at the front side in the extension direction of the first tab free end. The tab block structure prevents the first tab free end from passing through the joint between the first insulating body and the first insulating bracket, preventing the first tab from contacting the housing. The extension blocks the excess first tab piece, eliminating the need for tab cutting. This reduces production costs and improves battery safety. The battery and electrical device of the present invention include the unit battery of the present invention, improving battery safety and reducing production costs. Thus, several practical challenges in the related art are effectively overcome, and the present invention exhibits great utility and significance. The above-described embodiments only illustrate the principles and advantages of the present invention and are not intended to limit the present invention. Those skilled in the art may modify or alter the above-described embodiments without departing from the spirit and scope of the present invention. Therefore, equivalent modifications or variations made by those skilled in the art without departing from the spirit and technical concept disclosed by the present invention are also encompassed within the scope of the present invention. [Explanation of symbols]

[0091] 1: Electrical equipment 10:Battery 11: Operating unit 101: 1st box body 102:Second box body 100: Single battery 110: Cabinet 111: First opening 112: Large face 120: Electrode assembly 121: First tab 1211: First tab free end 130: First insulating bracket 131: First tab receiving groove 132: Tab collection structure 1321: First convex part 1322: Second convex part 133: First tab through hole 140: First insulating body 150: First cover plate 151: First positioning structure 160: 1st terminal 161: Bottom plate 170: Tab block structure 171: Stretching section 172: Recess 173: Butt joint curved section 174: Plug-in structure 1741:First slope 1742:Second slope 180: Contact surface 190: First Containment Space 20: First insulating member

Claims

1. a housing including a first opening; a first cover plate attached to seal the first opening; a first terminal attached to the first cover plate; an electrode assembly disposed within the housing and including a first tab extending from a side of the housing proximate the first cover plate; a first insulating member attached to the first cover plate on a side closer to the electrode assembly; Including, the first tab is fixedly connected to the first terminal and is formed with a first tab free end; a tab block structure is provided on the first insulating member, and the tab block structure and a side of the first terminal close to the electrode assembly form a first receiving space, the first receiving space being used to limit a movable range of the first tab free end, and the housing is located outside the first receiving space; the first insulating member includes a first insulating body and a first insulating bracket disposed between the first insulating body and the electrode assembly; the tab blocking structure is provided on the first insulating body and / or the first insulating bracket and is configured to block the first tab free end from passing through a gap between the first insulating body and the first insulating bracket; the tab block structure includes a butt joint bend disposed at abutment between the first insulating body and the first insulating bracket; Single battery.

2. The tab block structure is disposed on the extension direction side of the first tab free end. The single battery according to claim 1 .

3. the first tab includes a plurality of stacked first tab pieces, and free ends of the first tab pieces have a ragged end structure; The single battery according to claim 1 .

4. In the thickness direction of the first cover plate, the butt seam of the butt seam bending portion is bent in a direction away from the contact surface between the first tab and the first terminal. The single battery according to claim 1 .

5. the butt seam curved portion is located outside the movable area of the first tab free end; The single battery according to claim 1 .

6. a part or all of a butt joint between the first insulating body and the first insulating bracket on the extension direction side of the first tab free end is located outside a movable area of the first tab free end; The single battery according to claim 1 .

7. the tab block structure includes an extension portion connected to the first insulating body and / or the first insulating bracket and extending to block a side of the first tab free end in an extension direction; The extension end of the extension portion extends beyond the movable area of the first tab free end. The single battery according to claim 1 .

8. a recess is provided in the first insulating bracket or the first insulating body on the extension direction side of the extension portion, and the extension end at least partially extends into the recess; The single battery according to claim 7 .

9. In the extending direction of the first tab free end, the recess penetrates the corresponding wall of the first insulating body or the corresponding wall of the first insulating bracket; the extension and the recess butt together to form a butt seam curve; In the thickness direction of the first cover plate, the butt seam of the butt seam bending portion is bent in a direction away from the contact surface between the first tab and the first terminal. The single battery according to claim 8 .

10. the extension portion and / or the recess portion are provided with a plug-in guide structure for guiding the extension portion and the recess portion so that they are butted together; The plug-in guide structure includes one or a combination of a rounded corner and an inclined surface; The single battery according to claim 8 .

11. The single battery is a prismatic battery, the first tab free end is proximate a large surface of the housing; The first insulating bracket has a first tab receiving groove; an orthogonal projection of the extension portion covers an orthogonal projection of the first tab free end in a direction perpendicular to the large surface, and an orthogonal projection of the first tab receiving groove covers an orthogonal projection of the extension portion; The single battery according to claim 7 .

12. the first terminal is disposed on a side of the first cover plate closer to the electrode assembly and includes a bottom plate welded to the first tab; The single battery according to claim 1 .

13. the connection between the root portion of the extension portion and the first insulating body or the first insulating bracket includes any one of an integral connection, an adhesive, a removable snap connection, a bendable connection, and a rotatable connection; The single battery according to claim 7 .

14. the first insulating bracket includes a tab gathering structure for gathering the first tabs; the tab collection structure includes a first protrusion opposite the extension, the first protrusion being connected to the first insulating bracket and protruding toward one side of the extension; The single battery according to claim 7 .

15. the tab collection structure further includes a second protrusion disposed opposite to the first protrusion, the second protrusion being connected to the first insulating bracket and protruding toward one side of the first protrusion; The single battery according to claim 14.

16. the housing further includes a second opening; the second opening and the first opening are disposed on opposite sides of the housing, the single battery further includes a second cover plate attached to the second opening and sealing the second opening; the electrode assembly includes a second tab extending from a side closer to the second cover plate; the second tab is conductively connected to the housing, the second cover plate, or a terminal on the second cover plate; The first tab is a positive electrode tab and the second tab is a negative electrode tab. The single battery according to claim 1 .

17. A single battery according to any one of claims 1 to 16. Including, battery.

18. A single battery according to any one of claims 1 to 16. Including, Electrical equipment.

Citation Information

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