The electrode assembly, the battery cell including this electrode assembly, and the method of soldering the electrode wires.

VN126574APending Publication Date: 2026-07-01LG ENERGY SOLUTION LTD
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Patent Information

Authority / Receiving Office
VN · VN
Patent Type
Applications
Current Assignee / Owner
LG ENERGY SOLUTION LTD
Filing Date
2024-10-30
Publication Date
2026-07-01

AI Technical Summary

Technical Problem

The existing methods for welding electrode leads to electrode tabs, particularly those made of metalized film, often result in poor weld quality or partial detachment.

Method used

The introduction of a type 2 electrode tab, which is longer than standard electrode tabs, facilitates easy identification and welding of the electrode lead, ensuring secure attachment.

Benefits of technology

This solution allows for reliable and efficient welding of electrode leads to electrode tabs, enhancing the structural integrity and performance of battery cells.

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Abstract

The invention relates to an electrode assembly comprising multiple electrodes having electrode conducting lugs and electrode conducting wires coupled to electrode conducting lugs, wherein the multiple electrode conducting lugs comprising first-class and second-class electrode conducting lugs coupled to a surface of electrode conducting wire and being formed to extend beyond the first-class electrode conducting lugs.
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Description

Electrode assembly, battery cell including same, and electrode lead welding method

[0001] Cross-citation with related applications

[0002] This application claims the benefit of priority to Korean Patent Application No. 10-2023-0149501, filed November 1, 2023, and Korean Patent Application No. 10-2024-0148952, filed October 28, 2024, the entire contents of which are incorporated herein by reference.

[0003] Technology field

[0004] The present invention relates to an electrode assembly, a battery cell including the same, and a method for welding electrode leads.

[0005] In recent years, rising energy prices due to the depletion of fossil fuels and growing concerns about environmental pollution have made the demand for eco-friendly alternative energy sources essential for future living. Research is continuing into various power generation technologies, such as solar, wind, and tidal power. Furthermore, significant interest is being focused on power storage devices, such as batteries, to more efficiently utilize the generated electricity.

[0006] Moreover, with the development of technology and increasing demand for battery-powered electronic mobile devices and battery-powered automobiles, the demand for batteries as an energy source is rapidly increasing, and accordingly, much research is being conducted on batteries that can meet various needs.

[0007] Batteries are attracting significant attention as an energy source for a variety of products, including mobile devices and electric vehicles. Secondary batteries, in particular, are an excellent energy source that can replace the use of existing fossil fuel-powered products. They are also gaining recognition as an eco-friendly energy source, as they produce no byproducts from energy use.

[0008] Meanwhile, secondary batteries are also attracting attention as a power source for electric vehicles (EVs), hybrid electric vehicles (HEVs), and plug-in hybrid electric vehicles (PHEVs), which are being proposed as solutions to address air pollution issues caused by conventional gasoline and diesel vehicles that use fossil fuels. Specifically, these secondary batteries are utilized in battery packs containing multiple battery modules.

[0009] Secondary batteries include anodes and cathodes, which are laminated with a separator between them to form an electrode assembly. Each anode and cathode has an electrode tab, and since multiple anodes and multiple cathodes have electrode tabs, a plurality of electrode tabs are formed. These multiple electrode tabs are electrically connected to electrode leads. Conventionally, electrode tabs were made of metal. Recently, electrode tabs have begun to be manufactured from materials other than metal. A representative example is metallized films, which deposit metal on a non-metallic material, specifically a polymer layer.

[0010] When a metallized film, in which a metal layer is deposited on a non-metallic layer on an electrode tab, is included, there have been difficulties in welding the electrode leads and the electrode tabs. Conventionally, the electrode tabs were first welded together, and then the electrode leads were added to weld them. However, when this method was applied to a metallized film, there were problems such as poor welding, not reaching the target fusion strength even when welded, or partial separation.

[0011] The present invention has been devised to solve the above problems, and the object of the present invention is to provide an electrode assembly, which includes an electrode tab that is formed to be longer than other electrode tabs so that the position of the electrode lead can be easily identified when welding is performed by placing the electrode lead between electrode tabs, and a battery cell and an electrode lead welding method including the same so that the portion where the electrode lead is welded to the electrode tab can be easily identified.

[0012] An electrode assembly according to one aspect of the present invention comprises a plurality of electrodes having electrode tabs; and electrode leads coupled with the electrode tabs, wherein the plurality of electrode tabs may include first-type electrode tabs; and second-type electrode tabs coupled with one surface of the electrode leads and formed to extend longer than the first-type electrode tabs.

[0013] The above second type electrode tab can be combined with at least one of both sides of the electrode lead.

[0014] Each of the first type electrode tab and the second type electrode tab may include a pair of metal layers arranged at the outermost portion; and a non-metal layer arranged between the pair of metal layers.

[0015] The above pair of metal layers is characterized in that they are deposited on both sides of the non-metal layer.

[0016] The non-metallic layer may include a polymer, and the metal layer may include aluminum.

[0017] The electrode lead may be coupled to the electrode tab at the center of the thickness direction of the electrode.

[0018] The above second type electrode tabs are configured as a pair, and the pair of second type electrode tabs can be respectively coupled to one side and the other side of the electrode lead.

[0019] The above pair of second type electrode tabs can be respectively coupled to opposite sides of the electrode lead.

[0020] Based on the above electrode lead, the same number of electrode tabs can be arranged in the upper and lower directions of the electrode lead.

[0021] The above electrode lead and the second type electrode tab can be joined by welding.

[0022] The above first type electrode tab is composed of a plurality of tabs, and the plurality of first type electrode tabs may all have the same length.

[0023] The above plurality of electrode tabs can be stacked in one direction.

[0024] According to another aspect of the present invention, a battery cell includes an electrode assembly; and a battery case accommodating the electrode assembly, wherein the electrode assembly includes a plurality of electrodes having electrode tabs; and electrode leads coupled to the electrode tabs, wherein the plurality of electrode tabs may include first-type electrode tabs; and second-type electrode tabs coupled to one surface of the electrode leads and formed to extend longer than the first-type electrode tabs.

[0025] According to another aspect of the present invention, a lead welding method can weld an electrode tab and an electrode lead. The lead welding method includes a step of placing the electrode lead at a location where the electrode tab is located; and a step of welding the electrode tab and the electrode lead, wherein the electrode tab includes a first-type electrode tab; and a second-type electrode tab that is connected to one side of the electrode lead and extends longer than the first-type electrode tab, and in the step of placing the electrode lead, the electrode lead can be placed at a location where the second-type electrode tab is located.

[0026] The electrode assembly according to the present invention, the battery cell including the same, and the electrode lead welding method include an electrode tab formed to extend longer than other electrode tabs, thereby having the effect of making it easy to identify the portion where the electrode lead is positioned and welded.

[0027] 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 idea of ​​the present invention, and therefore, the present invention should not be interpreted as being limited to matters described in such drawings.

[0028] FIG. 1 is a schematic diagram of a battery cell according to one embodiment of the present invention.

[0029] Figure 2 is an enlarged view of part A of Figure 1.

[0030] Figure 3 is a plan view of the electrode and electrode tab illustrated in Figure 1.

[0031] Figure 4 is a schematic diagram illustrating an electrode assembly according to another embodiment of the present invention.

[0032] FIG. 5 is a cross-sectional view showing a cross-section of an electrode tab according to one embodiment of the present invention.

[0033] Figure 6 is a flowchart of an electrode lead welding method according to another embodiment of the present invention.

[0034] Hereinafter, with reference to the attached drawings, preferred embodiments of the present invention will be described in detail so that those skilled in the art can easily implement the invention. However, the present invention may be implemented in various different forms and is not limited or restricted by the following examples.

[0035] In order to clearly explain the present invention, a detailed description of a part that is irrelevant to the description or a related known technology that may unnecessarily obscure the gist of the present invention has been omitted, and when adding reference signs to components of each drawing in this specification, the same or similar reference signs are attached to the same or similar components throughout the specification.

[0036] In addition, terms and words used in this specification and claims should not be interpreted as limited to their usual or dictionary meanings, but should be interpreted as meanings and concepts that conform to the technical idea of ​​the present invention based on the principle that the inventor can appropriately define the concept of the term to explain his or her own invention in the best way.

[0037]

[0038] Electrode assembly and battery cell

[0039] Hereinafter, an electrode assembly (10) and a battery cell (1) including the same according to one embodiment of the present invention will be described in detail with reference to FIGS. 1 to 5.

[0040] FIG. 1 is a schematic diagram of a battery cell according to one embodiment of the present invention, FIG. 2 is an enlarged view of part A of FIG. 1, FIG. 3 is a plan view of an electrode and an electrode tab shown in FIG. 1, FIG. 4 is a schematic diagram showing an electrode assembly according to another embodiment of the present invention, and FIG. 5 is a cross-sectional view showing a cross-section of an electrode tab according to one embodiment of the present invention.

[0041] Referring to FIG. 1, a battery cell (1) according to one embodiment of the present invention may include an electrode assembly (10) and a battery case (20). The electrode assembly (10) may be accommodated in the battery case (20). An electrolyte may be accommodated within the battery case (20). The electrode assembly (10) may be impregnated with the electrolyte. The electrolyte may permeate the electrode assembly (10), thereby enabling movement of ions between electrodes. The battery case (20) may be formed of a pouch-shaped material.

[0042] An electrode assembly (10) according to one embodiment of the present invention may include a plurality of electrodes (11) and electrode leads (13). The electrode assembly (10) may be formed by stacking electrodes (11) and a separator on top of each other.

[0043] A plurality of electrodes (11) may each be provided with electrode tabs (12). The electrodes (11) may be positive or negative. The positive electrode may include a region coated with an active material layer and a positive electrode non-coated region where the active material layer is not coated. The negative electrode may include a region coated with an active material layer and a negative electrode non-coated region where the active material layer is not coated.

[0044] The electrode tab (12) may be plural since it is connected to a plurality of electrodes (11). The electrode tab (12) may include a first type electrode tab (121) and a second type electrode tab (122). The electrode tab (12) may be a positive electrode tab or a negative electrode tab. The positive electrode tab is an electrode tab (12) connected to the positive electrode, and the negative electrode tab is an electrode tab (12) connected to the negative electrode. The positive and negative electrode tabs and the negative electrode tabs may each be connected to electrode leads (13).

[0045] The first type electrode tab (121) may be a positive electrode tab or an electrode negative electrode tab. A plurality of the first type electrode tabs (121) may be formed. A plurality of the first type electrode tabs (121) may be welded to each other.

[0046] The second type electrode tab (122) can be combined with one side of the electrode lead (13). The second type electrode tab (122) can be formed to be longer than the first type electrode tab (121). At this time, the length of the second type electrode tab (122) can be extended so that it can be confirmed to be longer than the first type electrode tab (121) when viewed with the naked eye. Of course, the length difference between the first and second type electrode tabs (121, 122) can be appropriately modified in consideration of observation equipment, etc. The second type electrode tab (122) can be combined with at least one of both sides of the electrode lead (13). That is, the second type electrode tab (122) can be combined with the lower surface or the upper surface of the electrode lead (13).

[0047] At this time, the plurality of type 1 electrode tabs (121) may all have the same length. Here, the plurality of type 1 electrode tabs (121) all having the same length may be interpreted to include not only that the plurality of type 1 electrode tabs (121) all have the exact same length, but also that they have the same length in appearance. More specifically, even if there is a difference in length between the plurality of type 1 electrode tabs (121), it may mean that the difference is relatively small compared to the difference in length between the type 1 electrode tabs (121) and the type 2 electrode tabs (122).

[0048] Referring to FIG. 4, an electrode assembly according to one embodiment of the present invention may include a pair of second type electrode tabs (122). The pair of second type electrode tabs (122) may be respectively coupled to one side and the other side of an electrode lead (13). For example, as illustrated, the pair of second type electrode tabs (122) may respectively be coupled to the upper and lower surfaces of the electrode lead (13).

[0049] Since the second type electrode tab (122) is formed longer than the first type electrode tab (121), the position of the second type electrode tab (122) can be easily identified among a plurality of first type electrode tabs (121). Since the electrode lead (13) must be welded to the second type electrode tab (122), the position at which the electrode lead (13) is welded can be easily distinguished. After the electrode lead (13) is placed between the second type electrode tab (122) and the first type electrode tab (121), the electrode lead (13) and the electrode tab (12) can be welded.

[0050] The first type electrode tab (121) and the second type electrode tab (122) may each include a pair of metal layers (123) and a non-metal layer (124). The first type electrode tab (121) and the second type electrode tab (122) may be a metallized film in which a metal layer is deposited on a non-metal layer. The metallized film may be formed thinner than the electrode tab composed of metal.

[0051] The metal layer (123) is provided in pairs and can be arranged at the outermost layer. The metal layer (123) can include aluminum. The metal layer (123) is provided so that the electrode tabs (12) can be electrically connected to each other.

[0052] A non-metallic layer (124) may be placed between a pair of metal layers (123). Metal layers (123) may be deposited on both sides of the non-metallic layer (124). Since the metal layer (123) is deposited on the non-metallic layer (124), the non-metallic layer (124) may be formed to be thinner than when composed solely of metal. The non-metallic layer (124) may include a polymer.

[0053] The electrode lead (13) can be connected to the electrode tab (12) at the center of the thickness direction of the electrode (11). The electrode lead (13) can be electrically connected to the electrode tab (12). A lead film can be connected to the electrode lead (13). The lead film can be placed between the electrode lead (13) and the battery case (20).

[0054] The electrode lead (13) may be positioned adjacent to the second type electrode tab (122). As illustrated in FIG. 2, the electrode lead (13) may be positioned and welded on the upper portion of the second type electrode tab (122). That is, when determining the position for welding the electrode lead (13), there is an effect in which the second type electrode tab (122) can be easily identified. However, the present invention is not limited thereto, and the second type electrode tab (122) may be positioned on the upper portion of the electrode lead (13) as illustrated in FIG. 4. In this case, the electrode lead (13) may be positioned below the second type electrode tab (122) and welded.

[0055] In order to weld the electrode lead (13), the same number of electrode tabs (12) must be placed above and below the position where the electrode lead (13) is placed. If not otherwise indicated, the task of counting the number of electrode tabs (12) was required. However, as described above, since the second type electrode tab (122) is formed longer than the first type electrode tab (121), the position of the second type electrode tab (122) can be quickly identified, and since the position where the electrode lead (13) should be placed can be easily known, there is an effect of being able to omit the process of counting the number of electrode tabs (12).

[0056] An equal number of electrode tabs (12) can be arranged in the upper and lower directions of the electrode lead (13) based on the electrode lead (13). The electrode lead (13) and the second type electrode tab (122) can be welded and joined. The electrode lead (13) can also be welded and joined to the first type electrode tab (121).

[0057]

[0058] Electrode lead welding method

[0059] Hereinafter, an electrode lead welding method according to an embodiment of the present invention will be described in detail with reference to FIGS. 2, 4, and 6.

[0060] FIG. 2 is a schematic diagram illustrating the electrode assembly illustrated in FIG. 1, FIG. 4 is a schematic diagram illustrating an electrode assembly according to another embodiment of the present invention, and FIG. 6 is a flowchart of an electrode lead welding method according to another embodiment of the present invention.

[0061] Hereinafter, an electrode lead welding method using the electrode assembly (10) and battery cell (1) described above will be described as another embodiment of the present invention.

[0062] Referring to FIG. 6, an electrode tab (12) and an electrode lead (13) can be welded through an electrode lead welding method according to an embodiment of the present invention. The electrode lead welding method according to an embodiment of the present invention may include a step (S1) of placing an electrode lead and a step (S2) of welding an electrode tab (12) and an electrode lead (13).

[0063] In the step of placing the electrode lead (S1), the electrode lead (13) can be placed where the second type electrode tab (122) is located. Since the electrode lead (13) must be placed and welded at the center in the thickness direction of the electrode (11), the electrode lead (13) must be placed where the second type electrode tab (122) is located.

[0064] In the step (S2) of welding the electrode lead, the electrode lead (13) and the electrode tab (12) can be welded together. At this time, a plurality of electrode tabs (12) can be welded at once. In the step (S2) of welding the electrode lead, the number of electrode tabs (12) arranged on the lower side of the electrode lead (13) may be greater than the number of electrode tabs (12) arranged on the upper side of the electrode lead (13).

[0065] In the electrode lead welding method according to an embodiment of the present invention, the electrode tab (12) may have a structure in which a metal layer (123) is deposited on a non-metal layer (124). In the existing electrode lead welding method, the electrode lead is welded after a pre-welding step of welding the electrode tab separately, but the method of the present invention has the feature of being able to weld the electrode lead (13) and the electrode tab (12) at once without a pre-welding step.

[0066] However, when welding is performed by placing the electrode lead (13) on one side of the electrode tab (12) as in the past, there was a problem that welding was impossible. In the present invention, the electrode lead (13) is placed between the electrode tabs (12) and welded, and in order to facilitate welding, the electrode lead (13) is placed in the center of the thickness direction of the electrode (11) and welded. Therefore, there is an effect that the electrode lead (13) can be appropriately placed and welded by providing the second type electrode tab (122).

[0067] Although the present invention has been described above with reference to limited embodiments and drawings, the present invention is not limited thereto, and various embodiments are possible within the scope equivalent to the technical idea of ​​the present invention and the patent claims to be described below by a person having ordinary skill in the art to which the present invention pertains.

[0068] [Explanation of symbols]

[0069] 1: Battery cell

[0070] 10: Electrode assembly

[0071] 11: Electrode

[0072] 12: Electrode tab

[0073] 121: Type 1 electrode tab

[0074] 122: Type 2 electrode tab

[0075] 123: Metal layer

[0076] 124: Non-metallic layer

[0077] 13: Electrode leads

[0078] 20: Battery case

[0079] S1: Deployment phase

[0080] S2: Welding stage

Claims

1. A plurality of electrodes having electrode tabs; and comprising an electrode lead coupled to the electrode tab; A plurality of the above electrode tabs, Type 1 electrode tab; and An electrode assembly comprising a second type electrode tab that is coupled to one side of the electrode lead and extends longer than the first type electrode tab.

2. In paragraph 1, An electrode assembly in which the second type electrode tab is coupled to at least one of both sides of the electrode lead.

3. In paragraph 1, Each of the above first type electrode tab and the above second type electrode tab, A pair of metal layers arranged at the outermost layer; and An electrode assembly comprising a non-metallic layer disposed between the pair of metal layers.

4. In paragraph 3, An electrode assembly characterized in that the pair of metal layers are deposited on both sides of the non-metal layer.

5. In paragraph 3, The above non-metallic layer comprises a polymer, The above metal layer is an electrode assembly comprising aluminum.

6. In paragraph 1, An electrode assembly in which the electrode lead is joined to the electrode tab at the center in the thickness direction of the electrode.

7. In paragraph 6, The above-mentioned second type electrode tab is composed of a pair, The above pair of second type electrode tabs is an electrode assembly which is respectively connected to one side and the other side of the electrode lead.

8. In paragraph 7, An electrode assembly in which the above pair of second type electrode tabs are respectively joined to opposite sides of the electrode lead.

9. In paragraph 6, An electrode assembly in which the same number of electrode tabs are arranged in the upper and lower directions of the electrode lead based on the electrode lead.

10. In paragraph 1, An electrode assembly in which the above electrode lead and the second type electrode tab are welded and joined.

11. In paragraph 1, The above first type electrode tab is composed of a plurality of An electrode assembly wherein the plurality of first type electrode tabs above all have the same length.

12. In paragraph 1, The above plurality of electrode tabs are an electrode assembly, stacked in one direction.

13. Electrode assembly; and A battery case is included in which the electrode assembly is accommodated, The above electrode assembly, a plurality of electrodes having electrode tabs; and comprising an electrode lead coupled to the electrode tab; A plurality of the above electrode tabs, Type 1 electrode tab; and A battery cell comprising a second type electrode tab that is joined to one side of the electrode lead and formed to extend longer than the first type electrode tab.

14. In an electrode lead welding method for welding an electrode tab and an electrode lead, a step of placing the electrode lead where the electrode tab is located; and comprising a step of welding the electrode tab and the electrode lead, The above electrode tab is Type 1 electrode tab; and A second type electrode tab is formed to be connected to one side of the electrode lead and extend longer than the first type electrode tab, In the step of placing the above electrode leads, An electrode lead welding method in which the electrode lead is placed where the second type electrode tab is located.