Electrode tab welding device, electrode tab welding method, and electrode assembly
The electrode tab welding apparatus and method address the breakage issue by using tab guides and alignment rollers to securely weld electrode tabs closer to the electrode assembly, preventing disconnection and improving safety.
Patent Information
- Application Number
- JP2025179923
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2021-12-23
- Filing Date
- 2025-10-24
- Publication Date
- 2026-02-10
AI Technical Summary
The breakage of electrode tabs in pouch-type secondary batteries due to deformation or expansion of the battery case, which increases the risk of fires, is a significant issue, especially for outermost electrode tabs with reduced length from the electrode assembly to the welding point.
An electrode tab welding apparatus and method that uses a pair of tab guides and alignment rollers to gather and press electrode tabs towards the electrode assembly, followed by welding, ensuring a longer length from the electrode to the welded portion, particularly for the outermost tab, using elastomeric rollers to maintain pressure and prevent breakage.
Prevents breakage of electrode tabs by increasing the length from the electrode assembly to the welded portion, enhancing safety and reliability by minimizing disconnection due to external forces.
Smart Images

Figure 2026021397000001_ABST
Abstract
Description
[Technical Field]
[0001] This application claims the benefit of priority based on Korean Patent Application No. 10-2021-0186535, filed December 23, 2021, the entire contents of which are incorporated herein by reference.
[0002] The present invention relates to an electrode tab welding apparatus and an electrode tab welding method for welding a plurality of electrode tabs, and to an electrode assembly including a plurality of electrode tabs welded by the electrode tab welding apparatus or electrode tab welding method. [Background technology]
[0003] In general, secondary batteries refer to batteries that can be charged and discharged, unlike primary batteries that cannot be recharged, and are widely used in electronic devices such as mobile phones, laptops, and camcorders, as well as electric vehicles, etc. In particular, lithium secondary batteries have a larger capacity and higher energy density than nickel-cadmium batteries or nickel-metal hydride batteries, and therefore their use is rapidly increasing.
[0004] Depending on the shape of the battery case, secondary batteries can be classified into cylindrical batteries and prismatic batteries in which the electrode assembly is housed in a cylindrical or prismatic metal can, and pouch batteries in which the electrode assembly is housed in a pouch-shaped case made of an aluminum laminate sheet.
[0005] FIG. 1 is a diagram showing an example of a pouch-type secondary battery. The pouch-type secondary battery 1 includes an electrode assembly 10 formed by alternately stacking electrodes and separators, and a pouch 20 that houses the electrode assembly 10. Electrode tabs 15 may be connected to the electrodes of the electrode assembly 10. The electrode tabs 15 may be welded to each other in predetermined areas and then connected to an electrode lead 17. The pouch 20 includes a concave cup portion 21 for housing the electrode assembly 10. The pouch 20 may have one or two cup portions 21. FIG. 1 illustrates a pouch 20 including a left cup portion and a right cup portion. A peripheral portion (terrace) 23 for sealing is formed around the periphery of the cup portion 21.
[0006] However, when a pulling force is applied to the electrode tab 15 due to deformation of the peripheral portion 23 of the pouch 20, the electrode tab 15 may be gradually pulled and broken. Alternatively, when a pulling force is applied to the electrode tab 15 due to expansion of the pouch 20, the electrode tab 15 may be gradually pulled and broken. Such breaking is considered to be a major cause of fires. In recent years, in the case of pouch-type secondary batteries, the length of the peripheral portion 23 has been reduced to increase energy density in response to demands for higher capacity and performance. However, this leads to a reduction in the "length from the electrode assembly 10 to the welding point of the electrode tab 15" of the electrode tab 15, further increasing the risk of breaking. Summary of the Invention [Problem to be solved by the invention]
[0007] An object of the present invention is to provide an electrode tab welding apparatus and an electrode tab welding method that prevent breakage of the electrode tab. Another object of the present invention is to provide an electrode assembly in which breakage of the electrode tabs is prevented. [Means for solving the problem]
[0008] An electrode tab welding apparatus according to an embodiment of the present invention can weld a plurality of electrode tabs of an electrode assembly, and may include a pair of tab guides for gathering the plurality of electrode tabs, a pair of alignment rollers that apply pressure to the plurality of electrode tabs gathered by the pair of tab guides and rotate in a direction that presses the outermost electrode tabs toward the electrode assembly, and a welding unit that welds the plurality of electrode tabs aligned by the pair of alignment rollers.
[0009] A point on the electrode assembly where the pair of alignment rollers press the electrode tabs may be farther away than a point on the electrode assembly where the pair of tab guides press the electrode tabs.
[0010] The pair of alignment rollers may rotate while pressing the electrode tabs when the pair of tab guides form a first distance, and may be spaced apart from the electrode tabs when the pair of tab guides form a second distance smaller than the first distance.
[0011] The welding portion can weld the electrode tabs together when the pair of tab guides form the second interval. The pair of alignment rollers may include an elastomeric material.
[0012] The pair of alignment rollers may be disposed to face each other in a height direction of the electrode assembly with the electrode tabs interposed therebetween, and the distance between the pair of alignment rollers may be configured to be adjustable.
[0013] An electrode tab welding method according to an embodiment of the present invention can weld a plurality of electrode tabs of an electrode assembly, and the electrode tab welding method may include the steps of: moving a pair of tab guides close to each other to gather the plurality of electrode tabs; rotating a pair of alignment rollers while applying pressure to the plurality of electrode tabs gathered by the pair of tab guides to press the outermost electrode tab of the plurality of electrode tabs toward the electrode assembly; and welding the plurality of electrode tabs aligned by the pair of alignment rollers to each other at a welded portion.
[0014] When the pair of alignment rollers rotate, the pair of tab guides form a first spacing, and when the welding portion welds the plurality of electrode tabs, the pair of tab guides can form a second spacing that is narrower than the first spacing.
[0015] When the pair of alignment rollers rotate, a step can be generated between the outer ends of the plurality of electrode tabs. When the welding portion welds the electrode tabs, the pair of alignment rollers can be spaced apart from the electrode tabs.
[0016] An electrode assembly according to an embodiment of the present invention may include a plurality of electrodes stacked with separators interposed therebetween, and a plurality of electrode tabs connected to the plurality of electrodes and welded to each other to form welded portions. Both outermost electrode tabs among the plurality of electrode tabs may be curved convexly outward. The outermost electrode tabs may include a first section extending from the electrode and a second section extending from the first section and having a steeper slope than the first section. The first section may include a flat portion connected to the electrode and formed flat, and a curved portion connecting the flat portion to the second section.
[0017] The outermost electrode tabs can bend more significantly. The outer end of the outermost electrode tab may have an inward step relative to the outer ends of the other electrode tabs. The outermost electrode tab may further include a third section extending from the second section to the welded portion and having a gentler slope than the second section. [Effects of the Invention]
[0018] According to a preferred embodiment of the present invention, the electrode tabs are welded together by the welding portion while being pressed toward the electrode assembly by the alignment roller, so that the length from the electrode to the welded portion can be increased for each electrode tab, particularly the outermost electrode tab, thereby preventing the electrode tabs, particularly the outermost electrode tab, from being broken or disconnected due to external forces such as deformation of the electrode lead, thereby improving the safety and reliability of the electrode assembly. In addition, the present invention can include effects that can be easily predicted by a person skilled in the art from the configurations according to the preferred embodiments of the present invention. [Brief explanation of the drawings]
[0019] The following drawings attached to this specification illustrate preferred embodiments of the present invention and, together with the detailed description of the invention described below, serve to further understand the technical concept of the present invention. Therefore, the present invention should not be interpreted as being limited to only the matters depicted in the drawings.
[0020] [Figure 1] FIG. 1 is a diagram showing an example of a pouch-type secondary battery. [Figure 2a] 10A to 10C are diagrams illustrating an example of a process that can be applied when welding electrode tabs of a pouch-type secondary battery. [Figure 2b] 10A to 10C are diagrams illustrating an example of a process that can be applied when welding electrode tabs of a pouch-type secondary battery. [Figure 2c] 10A to 10C are diagrams illustrating an example of a process that can be applied when welding electrode tabs of a pouch-type secondary battery. [Figure 2d] 10A to 10C are diagrams illustrating an example of a process that can be applied when welding electrode tabs of a pouch-type secondary battery. [Figure 3] 1 is a cross-sectional view showing a portion of a battery module in which a plurality of pouch-type batteries are housed in a case. [Figure 4] 1A to 1C are diagrams for explaining the configuration and operation of an electrode tab welding device according to an embodiment of the present invention. [Figure 5]1A to 1C are diagrams for explaining the configuration and operation of an electrode tab welding device according to an embodiment of the present invention. [Figure 6] 1A to 1C are diagrams for explaining the configuration and operation of an electrode tab welding device according to an embodiment of the present invention. [Figure 7] 5 is a flowchart of an electrode tab welding method according to another embodiment of the present invention. [Figure 8] 10A and 10B are views showing an electrode assembly according to still another embodiment of the present invention; DETAILED DESCRIPTION OF THE INVENTION
[0021] The present invention will now be described in detail with reference to the accompanying drawings, in which preferred embodiments of the present invention can be easily implemented by those skilled in the art, although the present invention may be embodied in various different forms and should not be construed as being limited to the following embodiments.
[0022] In order to clearly explain the present invention, detailed descriptions of parts that are not relevant to the explanation or related prior art that may unnecessarily obscure the gist of the present invention will be omitted. In this specification, when referring to components in each drawing, the same or similar reference symbols will be used throughout the specification to refer to the same or similar components.
[0023] Furthermore, the terms and words used in this specification and claims should not be interpreted in a limited way to their ordinary or dictionary meanings, but should be interpreted in a way that is consistent with the technical idea of the present invention, in accordance with the principle that inventors can appropriately define the concepts of terms in order to best explain their inventions.
[0024] 2a to 2d are diagrams illustrating an example of a process that can be applied when welding electrode tabs of a pouch-type secondary battery, and FIG. 3 is a cross-sectional view showing a portion of a battery module in which multiple pouch-type batteries are housed in a case.
[0025] First, as shown in Figure 2a, an electrode assembly 10 can be prepared in which a plurality of electrodes 11 and a plurality of separators 13 are alternately stacked. The plurality of electrodes 11 can include positive and negative electrodes, and each electrode 11 can be connected to an electrode tab 15. For convenience of explanation, only a negative electrode tab connected to a negative electrode is shown in the drawings, but those skilled in the art will readily understand that a positive electrode tab connected to a positive electrode can also be provided in the electrode assembly 10 and can be welded in the same manner as the negative electrode tab.
[0026] 2b, a pair of tab guides 30 may press the electrode tabs 15 to gather the electrode tabs 15. The pair of tab guides 30 may face each other in the height direction of the electrode assembly 10 with the electrode tabs 15 interposed therebetween, and the distance between them may be adjustable.
[0027] 2c, the electrode tabs 15 can be welded together via a welding portion 50. More specifically, the welding portion 50 can weld the electrode tabs 15 together to form a welded portion 16. With respect to the electrode assembly 10, the welded portion 16 formed on the electrode tabs 15 can be located farther away from the point where the electrode tabs 15 are pressed by the pair of tab guides 30.
[0028] Through this process, an electrode assembly 10 can be manufactured, which includes a plurality of electrode tabs 15 welded to welded portions 16. After connecting electrode leads 17 (see FIG. 1) to the plurality of welded electrode tabs 15, the electrode assembly 10 can be housed in a pouch 20 (see FIG. 1), thereby manufacturing a pouch-type battery 1.
[0029] As shown in FIG. 3 , a plurality of pouch-type batteries 1 can be housed in a case C to be manufactured into a battery module. However, during the manufacturing process of the battery module, the periphery 23 of the pouch 20 can bend. The deformation of the periphery 23 can induce bending of the electrode leads 17, which can result in a pulling force on the electrode tabs 15 connected to the electrode leads 17. This force can pull the electrode tabs 15 too hard, causing breakage of the electrode tabs 15, and is particularly pronounced on the outermost electrode tab 15a. The expansion of the pouch-type battery 1 can also cause the above-mentioned breakage problem.
[0030] The present invention, which will be described in detail below, is intended to solve the above-mentioned problem of wire breakage. 4 to 6 are diagrams for explaining the configuration and operation of an electrode tab welding device according to one embodiment of the present invention.
[0031] An electrode tab welding apparatus according to one embodiment of the present invention can weld a plurality of electrode tabs 15 of an electrode assembly 10. More specifically, the electrode tab welding apparatus may include a pair of tab guides 30 that collect the plurality of electrode tabs 15, a pair of alignment rollers 40 that apply pressure to the plurality of electrode tabs 15 collected by the pair of tab guides 30 and rotate in a direction that presses the electrode tabs 15 toward the electrode assembly 10, and a welding unit 50 that welds the plurality of electrode tabs 15 that have been aligned by the pair of alignment rollers 40.
[0032] The pair of tab guides 30 may face each other with the electrode tabs 15 interposed therebetween in the height direction of the electrode assembly 10. The pair of tab guides 30 may be configured so that the distance between them is adjustable. More specifically, at least one of the pair of tab guides 30 may be configured to be movable up and down in the height direction of the electrode assembly 10.
[0033] 4, a pair of tab guides 30 can approach each other to gather the plurality of electrode tabs 15. In this process, the pair of tab guides 30 can come into contact with a pair of outermost electrode tabs 15a of the plurality of electrode tabs 15. The closer the distance between the pair of tab guides 30 is, the stronger the pressure that the pair of tab guides 30 can apply to the plurality of electrode tabs 15 .
[0034] The pair of alignment rollers 40 may face each other with the electrode tabs 15 interposed therebetween in the height direction of the electrode assembly 10. The pair of alignment rollers 40 may be configured so that the distance between them is adjustable. More specifically, at least one of the pair of alignment rollers 40 may be configured to be movable up and down in the height direction of the electrode assembly 10.
[0035] 4, the pair of alignment rollers 40 can rotate while applying pressure to the plurality of electrode tabs 15 gathered by the pair of tab guides 30. More specifically, the pair of alignment rollers 40 can come into contact with the pair of outermost electrode tabs 15a and can rotate in a direction that presses the pair of outermost electrode tabs 15a toward the electrode assembly 10.
[0036] The electrode tabs 15 may be pressed toward the electrode assembly 10 due to frictional force between each other, and the outermost electrode tabs 15 may be pressed more toward the electrode assembly 10. This may cause a step s (see FIG. 8) between the outer ends of the electrode tabs 15. That is, the pair of alignment rollers 40 may align the electrode tabs 15 so that a step is generated between the outer ends of the electrode tabs 15.
[0037] The alignment roller 40 may be made of an elastic material having a high surface friction coefficient. More specifically, the alignment roller 40 may include an elastomer material such as rubber. This maintains a high frictional force between the alignment roller 40 and the outermost electrode tab 15a, allowing the alignment roller 40 to rotate without slipping relative to the outermost electrode tab 15a. In addition, the alignment roller 40 can be elastically deformed by pressing against the outermost electrode tab 15a, preventing damage to the outermost electrode tab 15a.
[0038] The pair of alignment rollers 40 may be located farther from the electrode assembly 10 than the pair of tab guides 30. More specifically, the point at which the pair of alignment rollers 40 presses the electrode tabs 15 may be farther from the point at which the pair of tab guides 30 presses the electrode tabs 15 from the electrode assembly 10.
[0039] As shown in FIG. 5, after the electrode tabs 15 are aligned, a pair of tab guides 30 can apply more pressure to the electrode tabs 15 to fix them in place.
[0040] More specifically, the pair of alignment rollers 40 can rotate while pressing the plurality of electrode tabs 15 when the pair of tab guides 30 form a first gap g1, and can move away from the plurality of electrode tabs 15 when the pair of tab guides 30 form a second gap g2 that is smaller than the first gap g1.
[0041] The pair of alignment rollers 40 can align the plurality of electrode tabs 15 when the pair of tab guides 30 form a first gap g1, and once the alignment of the plurality of electrode tabs 15 is complete, the pair of tab guides 30 can move closer to each other to form a second gap g2 that is smaller than the first gap g1.
[0042] When the pair of tab guides 30 form the first gap g1, the electrode tabs 15 are not completely fixed between the pair of tab guides 30 and are movable in the longitudinal direction. Therefore, when the pair of alignment rollers 40 rotate, the electrode tabs 15 can be pressed inward between the pair of tab guides 30.
[0043] When the pair of tab guides 30 are spaced apart by the second distance g2, the electrode tabs 15 can be fixed between the pair of tab guides 30. This allows the electrode tabs 15 to be fixed between the pair of tab guides 30 in an aligned state.
[0044] Once the electrode tabs 15 are secured between the pair of tab guides 30 , the pair of alignment rollers 40 can be moved away from each other to separate from the electrode tabs 15 .
[0045] 6, the welding portion 50 can be formed by welding a plurality of electrode tabs 15 aligned by a pair of alignment rollers 40 to form a welded portion 16. The welded portion 16 can be a portion where a plurality of electrode tabs 15 are welded to each other.
[0046] The welding portion 50 can perform welding in a state in which the plurality of electrode tabs 15 are fixed by the pair of tab guides 30. More specifically, the welding portion 50 can weld the plurality of electrode tabs 15 when the pair of tab guides 30 form the second gap g2.
[0047] For example, the welding unit 50 may ultrasonically weld the electrode tabs 15 together. In this case, the welding unit 50 may include an anvil positioned on one side (e.g., below) of the electrode tabs 15 and a horn positioned on the other side (e.g., above) of the electrode tabs 15. The welding unit 50 may be configured to adjust the distance between the anvil and the horn. With the electrode tabs 15 pressed between the anvil and the horn, the horn may vibrate at a high frequency, thereby welding the electrode tabs 15 together.
[0048] With respect to the electrode assembly 10, the welding portion 50 may be located farther away from the pair of tab guides 30. More specifically, with respect to the electrode assembly 10, the welded portion 16 may be located farther away from the point where the pair of tab guides 30 press the electrode tabs 15.
[0049] The operation of the welding device according to this embodiment will be described below. 4, a pair of tab guides 30 approach each other and press the outermost electrode tabs 15a to gather the electrode tabs 15. At this time, the pair of tab guides 30 may apply a relatively weak pressure so that the electrode tabs 15 are not completely fixed.
[0050] Thereafter, the pair of alignment rollers 40 may approach each other to press the outermost electrode tabs 15a and may rotate to press the outermost electrode tabs 15a toward the electrode assembly 10. As a result, the electrode tabs 15 may be pressed toward the electrode assembly 10 and aligned between the pair of tab guides 30. Since the outermost electrode tabs 15 are pressed more strongly, the outer ends of the electrode tabs 15 may have steps.
[0051] Thereafter, as shown in FIG. 5, the pair of tab guides 30 can be moved closer to each other to completely secure the plurality of electrode tabs 15, and the pair of alignment rollers 40 can be moved away from each other, away from the outermost electrode tabs 15a.
[0052] Thereafter, as shown in FIG. 6, a weld 50 can be formed by welding a plurality of electrode tabs 15 together to form a welded portion 16. Since the welding portion 50 welds the aligned electrode tabs 15 while the tab guide 30 fixes the aligned electrode tabs 15, the length L (see FIG. 8) from the electrode assembly 10 to the welded portion 16 can be made longer for the electrode tabs 15, particularly the outermost electrode tab 15a. In other words, the electrode tabs 15, particularly the outermost electrode tab 15a, can have a length margin.
[0053] This makes it possible to prevent the electrode tabs 15, particularly the outermost electrode tab 15a, from being broken or disconnected due to expansion of the electrode assembly 10 or external force applied to the electrode tabs 15.
[0054] FIG. 7 is a flowchart of an electrode tab welding method according to another embodiment of the present invention. An electrode tab welding method using the above-described electrode tab welding device will now be described as another embodiment of the present invention.
[0055] The electrode tab welding method according to the present embodiment can weld a plurality of electrode tabs 15 of an electrode assembly 10. The electrode tab welding method includes the steps of: moving a pair of tab guides 30 close to each other to gather the plurality of electrode tabs 15 (S10); rotating a pair of alignment rollers 40 while applying pressure to the plurality of electrode tabs 15 gathered by the pair of tab guides 30 to press the outermost electrode tab 15a toward the electrode assembly 10 (S20); and welding the plurality of electrode tabs 15 aligned by the pair of alignment rollers 40 to each other (S30).
[0056] During the step (S10) of gathering the electrode tabs 15, the pair of tab guides 30 can approach each other and press the outermost electrode tabs 15a to gather the electrode tabs 15 together.
[0057] During step S20 of pushing the outermost electrode tab 15a toward the electrode assembly 10, the pair of alignment rollers 40 can approach each other to push the outermost electrode tab 15a and rotate so that the outermost electrode tab 15a is pushed toward the electrode assembly 10.
[0058] When the pair of alignment rollers 40 rotate, the pair of tab guides 30 can be spaced apart by a first distance g1. The pair of tab guides 30 spaced apart by the first distance g1 can apply relatively weak pressure to the electrode tabs 15 so that they are not completely fixed.
[0059] As a result, the electrode tabs 15 may be aligned by being pushed toward the electrode assembly 10 through the pair of tab guides 30 due to the mutual frictional force. The outermost electrode tabs 15 may be pushed more strongly, so that the outer ends of the electrode tabs 15 may have steps.
[0060] In the step S30 of welding the electrode tabs 15 to each other, the welding portion 50 may form the welded portion 16 by welding the electrode tabs 15 to each other. When the welding portion 50 welds the electrode tabs 15, the pair of tab guides 30 can form a second gap g2 that is narrower than the first gap g1. The pair of tab guides 30 forming the second gap g2 can completely fix the electrode tabs 15. This allows the electrode tabs 15 to be welded by the welding portion 50 while maintaining their alignment.
[0061] Furthermore, when the welding unit 50 welds the electrode tabs 15, the pair of alignment rollers 40 may be spaced apart from the electrode tabs 15. For example, the electrode assembly 10 may be moved from a first process position where the alignment rollers 40 are located to a second process position where the welding unit 50 is located. This allows the welding unit 15 to weld the electrode tabs 15 regardless of the position of the alignment rollers 40.
[0062] FIG. 8 is a view showing an electrode assembly according to still another embodiment of the present invention. Hereinafter, an electrode assembly 10 including a plurality of electrode tabs 15 welded by the above-described electrode tab welding device or electrode tab welding method will be described as another embodiment of the present invention.
[0063] The electrode assembly 10 according to the present embodiment may include a plurality of electrodes 11 stacked with a plurality of separators 13 interposed therebetween, and a plurality of electrode tabs 15 connected to the plurality of electrodes 11 and welded to each other to form welded portions 16. Of the plurality of electrode tabs 15, both outermost electrode tabs 15a may be bent outwardly in a convex shape.
[0064] At least some of the electrode tabs 15 may be bent convexly outward, and the outermost electrode tabs 15 may bend more greatly. Therefore, the outermost electrode tab 15a may bend the most greatly.
[0065] The length L from the electrode 11 to the welded portion 16 for the outermost electrode tab 15a can be longer than if the outermost electrode tab 15a were formed by being pulled without being bent, which makes it possible to prevent the outermost electrode tab 15a from being broken or disconnected due to expansion of the electrode assembly 10 or an external force applied to the electrode tab 15.
[0066] More specifically, the outermost electrode tab 15a may include a first section 151 extending from the electrode 11 and a second section 152 extending from the first section 151 and having a steeper slope than the first section 151. The outermost electrode tab 15a may further include a third section 153 extending from the second section 152 to the welded portion 16 and having a gentler slope than the second section 152. This configuration of the outermost electrode tab 15a is a feature obtained by welding the outermost electrode tab 15a in an aligned state after being pressed toward the electrode assembly 10 by the alignment roller 40.
[0067] The first section 151 may include a flat portion 151a connected to the electrode 11 and a curved portion 151b connecting the flat portion 151a and the second section 152. That is, the point where the outermost electrode tab 15a begins to curve may be spaced a predetermined distance from the electrode 11 with the flat portion 151a interposed therebetween, which has the advantage of preventing excessive stress concentration on the outermost electrode tab 15a.
[0068] The outer end of the outermost electrode tab 15a may have a step on the inside relative to the outer ends of the other electrode tabs 15. For example, a predetermined step S may be formed between the outer end of the outermost electrode tab 15 and the outer end of the central electrode tab.
[0069] However, cutting or other processing may be performed to align the outer ends of the multiple electrode tabs 15. In this case, a step does not need to be formed between the outer end of the outermost electrode tab 15a and the outer ends of the other electrode tabs 15a.
[0070] The above description is merely an illustrative example of the technical concept of the present invention, and various modifications and variations are possible within the scope of the essential characteristics of the present invention, by those having ordinary knowledge in the technical field to which the present invention pertains.
[0071] Therefore, the embodiments disclosed in the present invention are intended to illustrate, not to limit, the technical idea of the present invention, and the scope of the technical idea of the present invention is not limited by such embodiments.
[0072] The scope of protection of the present invention should be interpreted by the following claims, and all technical ideas within the scope equivalent thereto should be interpreted as being included in the scope of the present invention. [Explanation of symbols]
[0073] 10: Electrode assembly 11: Electrode 13: Separator 15: Electrode tab 15a: outermost electrode tab 151: First Section 151a: Flat section 151b: Bent section 152: Second Section 153: Third Section 16: Welded part 30: Tab guide 40: Alignment roller 50: Welded section
Claims
1. An electrode tab position adjusting device for adjusting the positions of a plurality of electrode tabs of an electrode assembly, a pair of tab guides for collecting the plurality of electrode tabs; a pair of alignment rollers that press the plurality of electrode tabs gathered by the pair of tab guides and rotate in a direction that pushes the outermost electrode tabs toward the electrode assembly; an electrode tab position adjustment device including:
2. 2. The electrode tab position adjusting device of claim 1, wherein a point where the pair of alignment rollers press the electrode tabs is farther from a point where the pair of tab guides press the electrode tabs with respect to the electrode assembly.
3. The pair of alignment rollers the pair of tab guides rotate while applying pressure to the plurality of electrode tabs when the pair of tab guides form a first gap; The electrode tab position adjusting device according to claim 1 , wherein the pair of tab guides are spaced apart from the plurality of electrode tabs when the pair of tab guides form a second spacing that is smaller than the first spacing.
4. The electrode tab position adjustment device of claim 1 , wherein the pair of alignment rollers comprises an elastomeric material.
5. The pair of alignment rollers 2. The electrode tab position adjusting device according to claim 1, wherein the plurality of electrode tabs are arranged to face each other with a gap therebetween in the height direction of the electrode assembly, and the distance between the electrode tabs is adjustable.
6. 1. A method for adjusting electrode tab positions of a plurality of electrode tabs of an electrode assembly, comprising: a pair of tab guides moving toward each other to gather the plurality of electrode tabs; a pair of alignment rollers rotating while pressing the plurality of electrode tabs gathered by the pair of tab guides, and pushing the outermost electrode tabs of the plurality of electrode tabs toward the electrode assembly; The electrode tab position adjusting method includes:
7. When the pair of alignment rollers rotate, the pair of tab guides form a first distance; The electrode tab position adjusting method according to claim 6 , wherein the pair of tab guides form a second interval narrower than the first interval when the plurality of electrode tabs are welded.
8. The electrode tab position adjusting method according to claim 6 , wherein steps are generated between outer ends of the plurality of electrode tabs when the pair of alignment rollers rotate.
9. The electrode tab position adjusting method according to claim 6 , wherein the pair of alignment rollers are spaced apart from the electrode tabs when the electrode tabs are welded.