WO2024060145A1 - 二次电池及包含其的电子装置 - Google Patents
二次电池及包含其的电子装置 Download PDFInfo
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- WO2024060145A1 WO2024060145A1 PCT/CN2022/120612 CN2022120612W WO2024060145A1 WO 2024060145 A1 WO2024060145 A1 WO 2024060145A1 CN 2022120612 W CN2022120612 W CN 2022120612W WO 2024060145 A1 WO2024060145 A1 WO 2024060145A1
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- insulating glue
- layer
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- glue layer
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M50/00—Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
- H01M50/10—Primary casings; Jackets or wrappings
- H01M50/102—Primary casings; Jackets or wrappings characterised by their shape or physical structure
- H01M50/105—Pouches or flexible bags
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M50/00—Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
- H01M50/50—Current conducting connections for cells or batteries
- H01M50/531—Electrode connections inside a battery casing
- H01M50/534—Electrode connections inside a battery casing characterised by the material of the leads or tabs
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M50/00—Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
- H01M50/10—Primary casings; Jackets or wrappings
- H01M50/172—Arrangements of electric connectors penetrating the casing
- H01M50/174—Arrangements of electric connectors penetrating the casing adapted for the shape of the cells
- H01M50/178—Arrangements of electric connectors penetrating the casing adapted for the shape of the cells for pouch or flexible bag cells
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M50/00—Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
- H01M50/10—Primary casings; Jackets or wrappings
- H01M50/183—Sealing members
- H01M50/184—Sealing members characterised by their shape or structure
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M50/00—Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
- H01M50/10—Primary casings; Jackets or wrappings
- H01M50/183—Sealing members
- H01M50/186—Sealing members characterised by the disposition of the sealing members
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M50/00—Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
- H01M50/10—Primary casings; Jackets or wrappings
- H01M50/183—Sealing members
- H01M50/19—Sealing members characterised by the material
- H01M50/193—Organic material
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M50/00—Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
- H01M50/10—Primary casings; Jackets or wrappings
- H01M50/183—Sealing members
- H01M50/19—Sealing members characterised by the material
- H01M50/197—Sealing members characterised by the material having a layered structure
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M50/00—Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
- H01M50/10—Primary casings; Jackets or wrappings
- H01M50/183—Sealing members
- H01M50/19—Sealing members characterised by the material
- H01M50/198—Sealing members characterised by the material characterised by physical properties, e.g. adhesiveness or hardness
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M50/00—Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
- H01M50/50—Current conducting connections for cells or batteries
- H01M50/531—Electrode connections inside a battery casing
- H01M50/533—Electrode connections inside a battery casing characterised by the shape of the leads or tabs
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M50/00—Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
- H01M50/50—Current conducting connections for cells or batteries
- H01M50/543—Terminals
- H01M50/552—Terminals characterised by their shape
- H01M50/553—Terminals adapted for prismatic, pouch or rectangular cells
- H01M50/557—Plate-shaped terminals
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M2220/00—Batteries for particular applications
- H01M2220/30—Batteries in portable systems, e.g. mobile phone, laptop
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M50/00—Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
- H01M50/10—Primary casings; Jackets or wrappings
- H01M50/116—Primary casings; Jackets or wrappings characterised by the material
- H01M50/117—Inorganic material
- H01M50/119—Metals
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01M—PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSION OF CHEMICAL ENERGY INTO ELECTRICAL ENERGY
- H01M50/00—Constructional details or processes of manufacture of the non-active parts of electrochemical cells other than fuel cells, e.g. hybrid cells
- H01M50/50—Current conducting connections for cells or batteries
- H01M50/543—Terminals
- H01M50/547—Terminals characterised by the disposition of the terminals on the cells
- H01M50/55—Terminals characterised by the disposition of the terminals on the cells on the same side of the cell
Definitions
- the present application relates to the field of energy storage devices, and in particular, to a secondary battery and an electronic device including the battery.
- Lithium-ion secondary batteries have the characteristics of high energy density, long cycle life, high nominal voltage, low self-discharge rate, small size, and light weight. They are widely used in various fields such as electrical energy storage, portable electronic devices, and electric vehicles.
- lithium-ion secondary batteries need to pass a series of tests before leaving the factory, including internal short circuit tests, drop tests, puncture tests, etc.
- the drop test is a more stringent safety test for lithium-ion secondary batteries. After a lithium-ion secondary battery is dropped, problems such as the top seal being broken open and liquid leakage may occur at the tabs.
- the sealing effect is usually improved by installing insulating glue at the tab packaging position. However, the sealing effect between the existing insulating glue and the housing still needs to be improved.
- An object of the present application is to provide a secondary battery that can improve the packaging strength at the tab position and an electronic device including the secondary battery.
- a first aspect of this application provides a secondary battery, including an electrode assembly, a tab assembly and a packaging bag.
- the electrode assembly is contained in the packaging bag.
- the packaging bag includes a sealing portion, and the tab assembly includes tabs and insulating glue respectively provided on both sides of the tabs.
- the tabs are connected to the electrode assembly and extend out of the packaging bag through the sealing portion.
- Insulating glue connects the tabs and packaging bag.
- the insulating glue includes a first insulating glue layer, a second insulating glue layer and a third insulating glue layer that are stacked sequentially along the first direction.
- the first insulating glue layer is connected to the tab, and the third insulating glue layer is connected to the packaging bag.
- the insulating glue includes a first part, and the first part is a region of the insulating glue that coincides with the tab in the first direction and is spaced apart from the sealing part.
- the thickness of the insulating glue is h1
- the thickness of the first insulating glue layer is A1
- the thickness of the second insulating glue layer is B1
- the thickness of the third insulating glue layer is C1, 10.5 %h1 ⁇ B1 ⁇ 35%h1, 90%B1 ⁇ C1 ⁇ 500%B1, C1>A1, 60%B1 ⁇ A1 ⁇ 400%B1.
- the secondary battery provided by this application has 10.5%h1 ⁇ B1 ⁇ 35%h1, which ensures that the second insulating adhesive layer will not be over-melted or insufficiently fused when the package is heated, causing the second insulating adhesive layer and the first insulating adhesive layer to The interface and delamination of the three insulating adhesive layers will lead to a reduction in packaging strength; 90% B1 ⁇ C1 ⁇ 500% B1, 60% B1 ⁇ A1 ⁇ 400% B1, C1 > A1, ensuring that the third insulating adhesive layer and the packaging bag can be fully integrated. And the first insulating glue layer is fused and bonded to the tab.
- the insulating glue layer is asymmetric in thickness.
- the three-layer structure with asymmetric thickness enables the insulating glue and the packaging bag to be completely integrated without an obvious interface during packaging, thus improving the packaging strength between the insulating glue and the packaging bag. , improve the sealing effect and reduce the risk of leakage.
- the packaging pulling force ⁇ 5.75N, as the thickness of the third insulating adhesive layer increases, the packaging pulling force increases after packaging, and it becomes more difficult to obtain the secondary battery 100 If leakage occurs, 8.18A1 ⁇ C1, during packaging, the third insulating adhesive layer, the encapsulating layer, and the second insulating adhesive layer will have insufficient melting and the interface will cause the packaging tension to decrease, increasing the risk of leakage of the secondary battery 100.
- the packaging pulling force is ⁇ 6.2N, and the secondary battery 100 obtained after packaging is less likely to leak.
- the thickness of the tab in the first direction is t, and 3t ⁇ 2h1 ⁇ 0.9t.
- the insulating glue further includes a second part, and the second part is an area where the insulating glue coincides with the sealing part in the first direction.
- the insulating glue includes a second part of a first insulating glue layer, a second part of a second insulating glue layer and a second part of a third insulating glue layer that are stacked sequentially along the first direction. direction, the thicknesses of the second part of the first insulating glue layer, the second part of the second insulating glue layer, and the second part of the third part of the insulating glue layer are A2, B2, and C2 respectively.
- a thickness of the third insulating adhesive layer of the second portion in the first direction is C2, and 92% C1 ⁇ C2 ⁇ 98% C1.
- the packaging bag includes an encapsulation layer connected to a third insulating adhesive layer, and the thickness of the encapsulation layer in the first direction is P; in the second part, the total thickness of the third insulating adhesive layer and the encapsulation layer in the first direction is H, 0.25(C2+P) ⁇ H ⁇ 0.75(C2+P).
- the thickness of the first insulating adhesive layer of the second part in the first direction is A2, and A1 and A2 satisfy the following formula: 5 ⁇ m ⁇ A1-A2 ⁇ 0.5 ⁇ m.
- the thickness of the second insulating glue layer of the second part in the first direction is B2, and B1 and B2 satisfy the following formula: 3 ⁇ m ⁇ B1-B2 ⁇ 0.1 ⁇ m.
- the packaging bag includes an packaging layer connected to the third insulating glue layer.
- the thickness of the packaging bag is T and the thickness of the packaging layer is P; along the first direction, the tab assembly and The thickness of the part corresponding to the second part is G, and the thickness of the part of the secondary battery corresponding to the second part and the tab is K, where, 2T+G-(2P+2t) ⁇ 75% ⁇ K ⁇ 2T+ G-(2P+2t) ⁇ 15%.
- the insulating glue also includes a third part.
- the third part is the area where the insulating glue does not coincide with the sealing part and the tab in the first direction.
- the insulating glue includes a third part of a first insulating glue layer, a third part of a second insulating glue layer and a third part of a third insulating glue layer that are stacked sequentially along the first direction. .
- the thickness of the insulating glue is h3, the thickness of the first insulating glue layer is A3, the thickness of the second insulating glue layer is B3, the thickness of the third insulating glue layer is C3, 10.5%h3 ⁇ B3 ⁇ 35%h3, C3>A3 ,90%B3 ⁇ C3 ⁇ 500%B3, 60%B3 ⁇ A3 ⁇ 400B3%.
- the tab assembly includes a bonding area.
- the bonding area is a portion of the insulating glue on both sides of the tab in the first direction that adheres to each other.
- the bonding area includes an adhesive area.
- the thickness of the bonding area is Q, and the thickness of the first insulating adhesive layer in the bonding area is D.
- the thickness of the second insulating glue layer in the bonding area is B4, and the thickness of the third insulating glue layer in the bonding area is C4, 10.5% (Q ⁇ 0.5) ⁇ B4 ⁇ 35% (Q ⁇ 0.5), C4>0.5D, 90 %B4 ⁇ C4 ⁇ 500%B4, 120%B4 ⁇ D ⁇ 800B4%.
- the melting points of the first insulating glue layer and the third insulating glue layer are 100-140°C, and the melting points of the second insulating glue layer are 140-200°C.
- the first insulating glue layer, the second insulating glue layer and the third insulating glue layer all include polypropylene, polyethylene, polyvinylidene fluoride, vinylidene fluoride-hexafluoropropylene copolymer, One or more of polymethyl methacrylate or polyethylene glycol.
- the first insulating glue layer and/or the third insulating glue layer further includes a toughening modifier.
- the toughening modifier includes ethylene-propylene diene rubber, ethylene-propylene diene rubber, styrene-butadiene rubber, low-density polyethylene, ethylene-vinyl acetate copolymer, linear low-density polyethylene, nylon , one or more of polyethylene terephthalate, polycarbonate, and ultra-high molecular weight polyethylene.
- the content of the toughening modifier is 3%-10% based on the total mass of the first insulating glue layer; and/or the content of the toughening modifier is based on the total mass of the third insulating glue layer. is 3%-10%.
- h1 is 30-160 ⁇ m.
- a second aspect of the present application also provides an electronic device, including the above-mentioned secondary battery.
- FIG1 is a schematic diagram of a secondary battery provided in one embodiment of the present application.
- Figure 2 is a schematic cross-sectional view of the battery shown in Figure 1 along II-II;
- FIG3 is a cross-sectional schematic diagram of a packaging film provided in one embodiment of the present application.
- Figure 4 is a schematic cross-sectional view of an insulating glue provided by an embodiment of the present application.
- FIG. 5 is a schematic diagram of an electronic device provided by an embodiment of the present application.
- the first packaging film 41 is the first packaging film 41
- spatially relative terms such as “on,” etc., may be used herein for convenience to describe the relationship of one element or feature to another element(s) or feature(s) as illustrated in the figures. It will be understood that the spatially relative terms are intended to encompass different orientations of the device or device in use or operation in addition to the orientation depicted in the figures. For example, if the device in the diagram is turned over, features described as “above” or “on” other features or features would then be oriented “below” or “beneath” the other features or features. Thus, the exemplary term “upper” may include both upper and lower directions. It will be understood that, although the terms first, second, third, etc.
- an embodiment of the present application provides a secondary battery 100 , including an electrode assembly 10 , a tab assembly, and a packaging bag 40 .
- the pole assembly includes a pole 20 and two insulating glues 30 respectively provided on both sides of the pole.
- the tab 20 is connected to the electrode assembly 10 .
- the packaging bag 40 wraps the electrode assembly 10 and covers a part of the pole tabs 20 .
- the insulating glue 30 is disposed between the packaging bag 40 and the pole tabs 20 and connects the packaging bag 40 and the pole tabs 20 .
- the number of pole tabs 20 is two, namely the positive pole tab and the negative pole tab.
- the two pole tabs 20 are located on the same side of the secondary battery 100 and extend out of the packaging bag 40; the number of insulating glue 30 is Four, of which two insulating glues 30 are disposed on the two opposite surfaces of one tab 20, and the other two insulating glues 30 are disposed on the two opposite surfaces of the other tab 20, and are located between the two tabs 20.
- the two insulating glues on the same side are placed 30 degrees apart.
- the material of the positive electrode tab may include at least one of Ni, Ti, Al, Ag, Au, Pt, Fe and combinations thereof.
- the material of the negative electrode tab may include at least one of Ni, Ti, Cu, Ag, Au, Pt, Fe and combinations thereof.
- the two insulating glues 30 located on the same side of the two tabs 20 can be connected to each other to form a whole, and the two tabs 20 can also be located on different sides of the secondary battery 100.
- the electrode assembly 10 includes a positive electrode sheet, a negative electrode sheet, and a separator disposed between the positive electrode sheet and the negative electrode sheet.
- the electrode assembly 10 is formed by stacking or winding the positive electrode sheet, the separator, and the negative electrode sheet.
- the positive electrode sheet and the negative electrode sheet are electrically connected to two tabs 20, respectively.
- the packaging bag 40 includes a first packaging film 41 and a second packaging film 42 arranged oppositely.
- the shapes of the first packaging film 41 and the second packaging film 42 match each other.
- the first encapsulating film 41 and the second encapsulating film 42 are connected to each other and enclose to form an accommodating cavity 410 .
- the accommodating cavity 410 is used to accommodate at least part of the electrolyte, the electrode assembly 10 , the tab 20 and the insulating glue 30 .
- the edges of the first encapsulation film 41 and the second encapsulation film 42 are connected to form a sealing portion 420 .
- the sealing portion 420 extends from the outer surface of the accommodating cavity 410 toward a side away from the accommodating cavity 410 .
- the sealing portion 420 is a portion of the packaging bag 40 that is sealed through a hot pressing process after containing the electrode assembly 10 and the electrolyte.
- the pole tab 20 is partially received in the accommodation cavity 410 and extends out of the packaging bag 40 through the sealing portion 420 .
- Both the first encapsulation film 41 and the second encapsulation film 42 include an encapsulation layer 401 , a metal layer 402 and a protective layer 403 that are stacked sequentially along the first direction Z.
- the encapsulation layer 401 is disposed close to the electrode assembly 10
- the protective layer 403 is disposed away from the electrode assembly 10 .
- the material of the packaging layer 401 is a polymer, such as polypropylene, polyamide, etc.
- the packaging layer 401 of the first packaging film 41 and the second packaging film 42 are connected to seal the packaging bag 40 to prevent the packaging bag 40 from being contaminated by the electrolyte.
- the organic solvent in the electrolyte is dissolved or swollen, and the encapsulation layer 401 is also used to prevent the electrolyte in the electrolyte from contacting the metal layer 402, causing the metal layer 402 to be corroded.
- the protective layer 403 is made of polymer resin and is used to protect the metal layer 402 to prevent the metal layer 402 from being damaged by external forces. It can also prevent the air from the external environment from infiltrating and maintain a water-free and oxygen-free environment inside the secondary battery 100 .
- the metal layer 402 is made of metal, such as aluminum, steel, etc., and is used to prevent moisture penetration from the external environment and prevent external forces from causing damage to the secondary battery 100 .
- the packaging film can be folded in half, and then a heat sealing head is used to apply a certain temperature (180-215°C) and pressure (0.3-0.6MPa) to the surface of the folded packaging film at a certain level. Heat sealing is performed within a period of time (1.5-3S) to melt and connect the encapsulating layer 401 of the encapsulating film. At this time, the innermost layer of the packaging bag 40 is the packaging layer 401 .
- the insulating adhesive 30 includes a first portion 303, a third portion 301, and a second portion 302 that are connected to each other.
- the first portion 303 is a region where the insulating adhesive 30 overlaps with the tab 20 in the first direction Z and is spaced apart from the sealing portion 420.
- the third portion 301 is a region where the insulating adhesive 30 does not overlap with the tab 20 and the sealing portion 420 in the first direction Z.
- the second portion 302 is a region where the insulating adhesive 30 overlaps with the sealing portion 420 in the first direction Z.
- the second direction X is perpendicular to the first direction Z.
- the first direction Z is the thickness direction of the tab 20
- the second direction X is the length direction of the tab 20.
- the first part 303 includes a first end 303a located in the packaging bag 40 and a second end 303b located outside the packaging bag 40.
- the insulating glue 30 includes four third parts 301 distributed at four corners, wherein two third parts 301 are located in the packaging bag 40 and are located on both sides of the first end 303a in the third direction Y, and the other two third parts 301 are located outside the packaging bag 40 and are located on both sides of the second end 303b in the third direction Y.
- the third direction Y is perpendicular to the first direction Z and the second direction X. In this embodiment, the third direction Y is the width direction of the tab 20.
- the insulating glue 30 is extended inwardly from the sealing part 420 to the accommodating cavity 410 to avoid the risk of the effective sealing width being narrowed due to the insulating glue 30 not extending from the sealing part 420 to the inside of the packaging bag 40; and the insulating glue 30 is extended outwardly from the sealing part 420 to the outside of the packaging bag 40 to avoid the risk of the edge of the packaging bag 40 being compressed during packaging, which is conducive to sealing.
- the insulating glue 30 includes a first insulating glue layer 31 , a second insulating glue layer 32 and a third insulating glue layer 33 which are stacked in sequence.
- the first insulating glue layer 31 and The tabs 20 are connected, and the third insulating glue layer 33 is connected to the packaging layer 401 of the packaging bag 40 .
- the first insulating glue layer 31 and the third insulating glue layer 33 play a sealing role, and the second insulating glue layer 32 plays a supporting role to prevent the insulating glue 30 from over-melting and causing a short circuit.
- the first part 303, the third part 301 and the second part 302 all include a first insulating glue layer 31, a second insulating glue layer 32 and a third insulating glue layer 33.
- the thickness of the second insulating glue layer 32 and the third insulating glue layer 33 are approximately equal.
- the insulating glue is located in different areas and has different names.
- the insulating glue includes the first insulating glue layer 31 and the second insulating glue layer 32.
- the third insulating glue layer 33 in the second part 302, the insulating glue includes a second part of a first insulating glue layer 31, a second part of a second insulating glue layer 32, and a second part of a third insulating glue layer 33; in the third part Part 301, the insulating glue includes a third part of a first insulating glue layer 31, a third part of a second insulating glue layer 32, and a third part of a third part of the insulating glue layer 33.
- the thickness of the first insulating glue layer 31, the second insulating glue layer 32 and the third insulating glue layer 33 of the first end 303a is different from that of the insulating glue. 30
- the thicknesses of the first insulating glue layer 31 , the second insulating glue layer 32 and the third insulating glue layer 33 before encapsulation are approximately equal.
- the tab assembly also includes a bonding area 201, which is a portion where the insulating glue 30 on both sides of the tab 20 along the first direction Z adheres to each other.
- the bonding area 201 is composed of a second portion 302 and a third portion 301 of the insulating glue 30 located on the same side of the tab 20 in the third direction Y.
- the first insulating glue layers 31 of the two insulating glues 30 are bonded to form a first insulating glue bonding layer.
- the melting point of the first insulating glue layer 31 and the third insulating glue layer 33 is 100-140°C, and the melting point of the second insulating glue layer 32 is 140-200°C.
- the first insulating glue layer 31 , the second insulating glue layer 32 and the third insulating glue layer 33 may each include polypropylene (PP), polyethylene, polyvinylidene fluoride, vinylidene fluoride-hexafluoropropylene copolymer, polyethylene One or more of methyl methacrylate or polyethylene glycol.
- the first insulating glue layer 31 and/or the third insulating glue layer 33 also includes a toughening modifier for improving flexibility and impact performance to improve the packaging strength of the insulating glue 30 and the packaging bag 40 .
- Toughening modifiers can include rubber particles such as ethylene-propylene rubber (EPR), ethylene-propylene diene rubber (EPDM), styrene-butadiene rubber, etc., to prevent cracks from spreading.
- the toughening modifier may also include one or more of flexible polymers, rigid polymers or ultra-high molecular weight polyethylene (UHMWPE), used to strengthen the connection between crystals and blur the interface between crystals.
- UHMWPE ultra-high molecular weight polyethylene
- Flexible polymers can be low-density polyethylene (LDPE), ethylene-vinyl acetate copolymer (EVA), linear low-density polyethylene (LLDPE), etc.
- Rigid polymers can be nylon (PA6), polyethylene terephthalate (PET), polycarbonate (PC), etc.
- the toughening modifier is ultra-high molecular weight polyethylene, and the amount of the toughening modifier added to the first insulating glue layer 31 and/or the third insulating glue layer 33 is 3%-10%.
- the added amount of the toughening modifier is 3% to 10%, the packaging strength of the insulating glue 30 and the packaging bag 40 is relatively high.
- the amount of toughening modifier added is excessive (more than 10%), the crystals will become integrated and delamination will occur.
- the thickness of the insulating glue 30 is h1
- the thickness of the first insulating glue layer 31 is A1
- the thickness of the second insulating glue layer 32 is B1.
- the secondary battery provided by this application has 10.5% h1 ⁇ B1 ⁇ 35% h1, which ensures that the second insulating adhesive layer will not be over-melted or insufficiently fused when the package is heated, causing the second insulating adhesive layer and the first insulating adhesive layer 31, Interfaces and delaminations occur in the third insulating adhesive layer 33, resulting in reduced packaging strength; 90% B1 ⁇ C1 ⁇ 500% B1, 60% B1 ⁇ A1 ⁇ 400% B1, C1 > A1, ensuring that the third insulating adhesive layer 33 is in contact with the packaging bag 40 can be completely fused and the first insulating glue layer 31 can be fused and bonded to the tab 20.
- the third insulating glue layer 33 is heated first compared to the first insulating glue layer during packaging, this design can avoid the third insulating glue layer.
- 33 Over-melting causes the packaging bag 40 and the second insulating glue layer 32 to fuse, resulting in a poor fusion interface problem. It can also avoid insufficient fusion or over-melting of the first insulating glue layer 31 to cause poor adhesion to the tab 20, and the first insulating glue layer 31
- the insulating glue layer 31, the second insulating glue layer 32 and the third insulating glue layer 33 are asymmetric in thickness, and adopt the three-layer structure with asymmetric thickness, so that the insulating glue 30 and the packaging bag 40 can be completely integrated during packaging. , there is no obvious interface, thereby improving the sealing strength between the insulating glue 30 and the packaging bag 40, improving the sealing effect, and reducing the risk of leakage.
- the secondary battery 100 can have high packaging strength while taking into account high insulation and Corrosion resistance.
- the packaging tension of the secondary battery 100 increases after packaging, making it less likely to leak.
- the third insulation The adhesive layer 33 , the encapsulating layer 401 and the second insulating adhesive layer 32 may have insufficient melting and interfaces, resulting in reduced packaging tension, increasing the risk of leakage of the secondary battery 100 .
- the secondary battery 100 can have high packaging strength while taking into account high insulation and corrosion resistance.
- the packaging pulling force is ⁇ 6.2N, and the secondary battery 100 obtained after packaging is less likely to leak.
- the thickness of the pole tab 20 in the first direction Z is t.
- t and h1 satisfy the following formula: 3t ⁇ 2h1 ⁇ 0.9t. With this arrangement, the secondary battery 100 can have high packaging strength and high insulation and corrosion resistance properties.
- the thickness of the first insulating glue layer 31 of the second part is A2
- the thickness of the second insulating glue layer 32 of the second part is B2
- the thickness of the third insulating glue layer 33 is C2.
- Such an arrangement makes the thickness of the second part of the third insulating adhesive layer 33 change less before and after heat sealing, which is beneficial to improving the packaging strength.
- the thickness of the encapsulation layer 401 in the first direction Z is P.
- the encapsulating layer 401 of the packaging bag 40 and the second part and the third insulating glue layer 33 of the insulating glue 30 are melted due to heat sealing, and the encapsulating layer 401 and the second part of the third insulating glue layer 33 are in the first
- the total thickness in direction Z is H.
- 0.25(C1+P) ⁇ H ⁇ 0.75(C1+P) such setting can completely fuse the packaging layer 401 of the packaging bag 40 with the second part and third insulating glue layer 33 of the insulating glue 30, Improve packaging strength.
- the thickness of the portion of the tab assembly corresponding to the second portion 302 of the insulating glue 30 is G.
- the thickness of the packaging bag 40 in the first direction Z is T.
- the thickness of the first packaging film 41 and the second packaging film 42 in the first direction Z are both T.
- the thickness of the portion of the secondary battery 100 corresponding to the tab 20 and the second portion 302 is K, wherein 2T+G-(2P+2t) ⁇ 75% ⁇ K ⁇ 2T+G-(2P+2t) ⁇ 15%.
- the thickness of the insulating glue 30 is h3
- the thickness of the first insulating glue layer 31 is A3
- the thickness of the second insulating glue layer 32 of the third part is B3
- the thickness of the third part 30 is h3.
- C3>A3 ensures that the third part of the third insulating glue layer 33 and the packaging layer 401 of the packaging bag 40 can be completely integrated, because the third part of the third part of the third insulating glue layer 33 is relatively different from the third part of An insulating glue layer 31 is heated and melted first.
- This design can prevent the third part of the third insulating glue layer 33 from over-melting, causing the encapsulation layer 401 and the third part of the second insulating glue layer 32 to fuse, resulting in poor fusion interface problems; Moreover, the thickness of the third part of the first insulating glue layer 31, the third part of the second insulating glue layer 32 and the third part of the third part of the insulating glue layer 33 are asymmetrical, and the three-layer structure with asymmetrical thickness is adopted, so that in packaging At this time, the insulating glue 30 and the packaging layer 401 of the packaging bag 40 can be completely integrated without an obvious interface, thereby improving the packaging strength between the insulating glue 30 and the packaging bag 40 and improving the sealing effect.
- the thickness of the bonding area 201 is Q
- the thickness of the first insulating adhesive layer in the bonding area is D
- the thickness of the second insulating adhesive layer 32 in the bonding area is B4.
- the thickness of the third insulating glue layer 33 in the bonding area is C4, where 10.5% (Q ⁇ 0.5) ⁇ B4 ⁇ 35% (Q ⁇ 0.5), C4>0.5D, 90%B4 ⁇ C4 ⁇ 500%B4, 120%B4 ⁇ D ⁇ 800B4%.
- the secondary battery provided in the present application has 10.5% (Q ⁇ 0.5) ⁇ B4 ⁇ 35% (Q ⁇ 0.5), which ensures that the second insulating adhesive layer of the second part will not be over-melted or not fused enough when the package is heated, so that the second insulating adhesive layer of the second part and the first insulating adhesive layer 31 of the second part and the third insulating adhesive layer 33 of the second part will have an interface and delamination, resulting in reduced packaging strength; C4>0.5D, 90%B4 ⁇ C4 ⁇ 500%B4, 120%B4 ⁇ D ⁇ 800B4%, which ensures that the third insulating adhesive layer 33 of the second part can be completely fused with the packaging bag 40 and the second part
- the first insulating rubber layer 31 is fused and bonded to the pole ear 20.
- the third insulating rubber layer 33 of the second part is heated and melted first relative to the first insulating rubber layer of the second part during packaging, this design can avoid the problem of poor fusion interface caused by overmelting of the third insulating rubber layer 33 of the second part, which causes fusion between the packaging bag 40 and the second insulating rubber layer 32 of the second part. It can also avoid the problem that the first insulating rubber layer 31 of the second part is insufficiently fused or overmelted, resulting in poor adhesion to the pole ear 20.
- the first insulating rubber layer 31 of the second part, the second insulating rubber layer 32 of the second part and the third insulating rubber layer 33 of the second part are asymmetric in thickness.
- the three-layer structure with asymmetric thickness is adopted, so that during packaging, the insulating rubber 30 and the packaging bag 40 can be completely fused without obvious interface, thereby improving the packaging strength between the insulating rubber 30 and the packaging bag 40, improving the sealing effect, and reducing the risk of leakage.
- an embodiment of the present application also provides an electronic device 200 .
- the electronic device 200 includes a main body 220 and a secondary battery 100 .
- the secondary battery 100 is housed in the main body 220 .
- the electronic device 200 may be one of a mobile phone, a tablet, and an e-reader.
- the electronic device 200 is a mobile phone as an example.
- the secondary battery 100 is installed in the mobile phone to provide power to the mobile phone for use by the mobile phone.
- the main body 220 is a mobile phone structure. It can be understood that in other embodiments, the electronic device 200 can also have other structures, and is not limited to the above-mentioned mobile phones, tablets, and e-readers.
- Insulating glue 30 with a thickness h1 of 80 ⁇ m and 5 ⁇ 0.1mm aluminum strips and nickel strips are hot-melted and flat pressed to form the tab assembly as shown in Figure 1.
- the shoulder width of the insulating glue 30 is 2.2mm and is located at the tab 20 The distance between two insulating glues 30 on the same side is 20mm.
- the shoulder width of the insulating glue 30 is the distance along the third direction Y (the width direction of the tab 20 ), and one edge of the insulating glue 30 exceeds the edge on the same side of the tab.
- the above-mentioned tab assembly is put into a packaging bag 40 with a thickness T of 91 ⁇ m, and then a 1.5 mm wide heat sealing head is used for heat sealing to obtain a secondary battery as shown in Figure 1.
- the heat sealing temperature is 205°C.
- the pressure is 0.4MPa and the heat sealing time is 1.5S.
- samples are cut along the width or length direction of the tab 20, and the cross-section of the sample is tested using a Keyence VHX-5000 microscope (test magnification of 200X).
- the thickness of 5 to 10 points evenly distributed in each area of the sample (first insulating adhesive layer 31, second insulating adhesive layer 32, third insulating adhesive layer 33, first insulating adhesive bonding layer, tab assembly, packaging layer 401, packaging bag 40) is tested and recorded, and the average value is taken as the thickness of each layer; along the first direction, the boundaries between some components are blurred due to heat sealing, and the color difference of each component can be used as an auxiliary line to help measure the thickness of each component;
- the first adhesive insulating adhesive layer is composed of two first insulating adhesive layers bonded to each other, and half of the thickness of the first adhesive insulating adhesive layer can be regarded as the thickness of the first insulating adhesive layer.
- the thickness A1 of the first insulating glue layer 31 is 14.8 ⁇ m
- the thickness B1 of the second insulating glue layer 32 is 15.6 ⁇ m
- the thickness t of the tab 20 is 100 ⁇ m.
- the thickness C2 of the second part of the third insulating glue layer 33 is 48.6 ⁇ m
- the total thickness H of the second part of the third part of the insulating glue layer 33 and the encapsulation layer 401 is 38.7 ⁇ m
- the second part of the first insulating glue layer 33 has a thickness C2 of 48.6 ⁇ m.
- the thickness A2 of the adhesive layer 31 is 14.9 ⁇ m
- the thickness B2 of the second part of the second insulating adhesive layer 32 is 14.8 ⁇ m.
- the thickness G of the portion of the tab assembly corresponding to the second part 302 of the insulating glue 30 is 260 ⁇ m
- the thickness P of the packaging layer 401 is 35 ⁇ m
- the portion of the secondary battery 100 corresponding to the tab 20 and the second part 302 The thickness K is 360 ⁇ m.
- the thickness h3 of the insulating glue 30 is 80 ⁇ m
- the thickness A3 of the first insulating glue layer 31 of the third part is 14.8 ⁇ m
- the thickness B3 of the second insulating glue layer 32 of the third part is 15.6.
- the thickness C3 of the third insulating glue layer 33 is 49.6 ⁇ m.
- the thickness Q of the tab assembly is 160 ⁇ m
- the thickness D of the first insulating adhesive layer in the bonding area is 29.6 ⁇ m
- the thickness B4 of the second insulating adhesive layer 32 in the bonding area is 15.6 ⁇ m
- the thickness C4 of the third insulating adhesive layer 33 in the bonding area is 49.6 ⁇ m.
- the first insulating adhesive layer 31 is made of PP and has a melting point of 145°C.
- the second insulating glue layer 32 is made of PP and has a melting point of 145°C.
- the third insulating glue layer 33 includes PP with a mass fraction of 95% and UHMWPE with a mass fraction of 5%, and has a melting point of 120°C.
- the battery prepared in Example 1 was subjected to a packaging tensile test, and the battery was visually inspected for leakage.
- the specific package tensile test is as follows: cut the part of the battery corresponding to the second part of the tab and the insulating glue along the width direction of the tab to obtain a sample with a width of 5mm and a length of 5cm; clamp the sample on a high-speed rail tensile machine. The pole lug is fixed on the upper clamp and the packaging bag is fixed on the lower clamp. Set the stretching speed to 175 ⁇ 5mm/min. Pull the sample upward in the 180-degree direction for peeling and read the peeling force. Divide the read peeling force value (unit N) by the width of the sample to calculate the packaging tensile force F (N/mm) of the sample.
- Embodiment 2-12 and Comparative Example 1-9 and Embodiment 1 lies in the thickness A1 of the first insulating glue layer 31, the thickness B1 of the second insulating glue layer 32 and the thickness A1 of the first insulating glue layer 32 in the first part 303 of the insulating glue 30.
- the thickness C1 of the three insulating adhesive layers 33 is different, and the specific parameters and test results are shown in Table 1.
- X/320 means that the number of leaking batteries among the 320 samples tested is X.
- the packaging tensile force is ⁇ 5.75N.
- the thickness C1 of the third insulating adhesive layer 33 is within the above range, the secondary battery 100 can have High packaging strength takes into account high insulation and corrosion resistance. As the thickness of the third insulating glue layer 33 increases, the packaging tension of the secondary battery 100 increases after packaging, making it less likely to leak. When the thickness of the third insulating glue layer 33 exceeds a certain range, the third insulation The adhesive layer 33 , the encapsulating layer 401 and the second insulating adhesive layer 32 may have insufficient melting and interfaces, resulting in reduced packaging tension, increasing the risk of leakage of the secondary battery 100 .
- the secondary battery 100 can have high packaging strength while taking into account high insulation and corrosion resistance.
- the packaging pulling force is ⁇ 6.1N, and the secondary battery 100 obtained after packaging is less likely to leak.
- Example 20-23 The difference between Examples 20-23 and Comparative Examples 10-11 and Example 1 is that the thickness t of the tab 20 is different.
- the specific parameters and test results are shown in Table 2.
- the packaging tension F increases with the increase of the 2h1/t ratio.
- 3 ⁇ 2h1/t ⁇ 0.9 the number of leaking batteries is 0, completely avoiding the problem of battery leakage; when 2h1/t ⁇ 0.9
- t ⁇ 0.9 or 2h1/t ⁇ 3 the thicker the tab thickness or the thickness of the insulating glue will be unfavorable for packaging.
- Embodiments 24-25 and Comparative Examples 12-14 and Embodiment 1 lies in the thickness C2 of the second third insulating glue layer 33 in the second part 302 of the insulating glue 30 and the first part of the second part of the insulating glue 30 At least one of the thickness C1 of the second part of the third insulating glue layer 33 in 301 is different.
- the specific parameters and test results are shown in Table 3.
- Embodiments 26-30 and Comparative Examples 15-16 and Embodiment 1 lies in the thickness A1 of the first insulating glue layer 31, the thickness B1 of the second insulating glue layer 32, and the thickness of the third insulating glue layer 303 in the first part 303 of the insulating glue layer 30.
- the thickness C1 of the insulating glue layer 33, the thickness C2 of the second part of the third insulating glue layer 33 in the second part 302 of the insulating glue layer 30, and the thickness C2 of the second part of the third insulating glue layer 33 in the second part 302 and the encapsulation layer 401 At least one of the total thickness H is different.
- the specific parameters and test results are shown in Table 4.
- Example 1 The difference between Examples 31, 32 and Comparative Examples 17-18 and Example 1 is that the thickness A2 of the first insulating glue layer 31 in the second part 302 is different.
- the specific parameters and test results are shown in Table 5.
- Example 33-34 The difference between Examples 33-34 and Comparative Examples 19-20 and Example 1 is that the thickness B2 of the second insulating glue layer 32 in the second part 302 is different.
- the specific parameters and test results are shown in Table 6.
- Embodiments 35-36 and Comparative Examples 21-22 and Embodiment 1 lies in the thickness A1 of the first insulating glue layer 31, the thickness B1 of the second insulating glue layer 32, the thickness A1 of the third insulating glue layer 303 in the first part 303 of the insulating glue 30. At least one of the thickness C1 of the glue layer 33, the thickness G of the portion of the tab assembly corresponding to the second portion 302 of the insulating glue 30, and the thickness K of the portion of the secondary battery 100 corresponding to the second portion 302 and the tab 20.
- Table 7 The specific parameters and test results are shown in Table 7.
- Embodiments 37-49 and Comparative Examples 23-31 and Embodiment 1 lies in the thickness h3 of the third part 301 of the insulating glue 30, and the thickness A3 of the third part of the first insulating glue layer 31 in the third part 301.
- at least one of the thickness B3 of the third part of the second insulating glue layer 32 and the thickness C3 of the third part of the third insulating glue layer 33 is different.
- Table 8 The specific parameters and test results are shown in Table 8.
- Example 50-62 and Comparative Examples 32-40 and Example 1 lies in the thickness Q of the bonding area 201 of the tab assembly, the thickness D of the first insulating glue bonding layer in the bonding area, At least one of the thickness B4 of the second insulating glue layer 32 and the thickness C4 of the third insulating glue layer 33 in the bonding area is different.
- the specific parameters and test results are shown in Table 9.
- Examples 63-68 and Comparative Examples 41-42 and Example 1 The difference between Examples 63-68 and Comparative Examples 41-42 and Example 1 is that the materials of the first insulating glue layer 31, the second insulating glue layer 32 and the third insulating glue layer 33 are different.
- the specific parameters and test results are as shown in the table. Shown in 10.
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Abstract
Description
| A1(um) | A2(um) | A1-A2 | F(N/mm) | 漏液情况 | |
| 实施例1 | 14.8 | 12 | 2.8 | 6.76 | 0/320 |
| 实施例31 | 14.8 | 14.3 | 0.5 | 6.26 | 2/320 |
| 实施例32 | 14.8 | 9.8 | 5 | 6.65 | 0/320 |
| 对比例17 | 14.8 | 14.6 | 0.2 | 4.85 | 12/320 |
| 对比例18 | 14.8 | 5.5 | 10.2 | 5.15 | 9/320 |
| B1(um) | B2(um) | B1-B2 | F(N/mm) | 漏液情况 | |
| 实施例1 | 15.6 | 14.8 | 0.8 | 6.76 | 0/320 |
| 实施例33 | 15.6 | 15.5 | 0.1 | 5.95 | 2/320 |
| 实施例34 | 15.6 | 12.7 | 2.9 | 6.63 | 0/320 |
| 对比例19 | 15.6 | 8.4 | 7.2 | 5.32 | 8/320 |
| 对比例20 | 15.6 | 6.4 | 9.2 | 4.93 | 10/320 |
Claims (21)
- 一种二次电池,包括电极组件、极耳组件和包装袋,所述电极组件容纳于所述包装袋中,所述包装袋包括密封部,所述极耳组件包括极耳和分别设置在所述极耳两侧的绝缘胶,所述极耳与所述电极组件连接并穿过所述密封部伸出所述包装袋外,所述绝缘胶连接所述极耳和所述包装袋,其特征在于,所述绝缘胶包括沿第一方向依次堆叠设置的第一绝缘胶层、第二绝缘胶层以及第三绝缘胶层,所述第一绝缘胶层与所述极耳连接,所述第三绝缘胶层与所述包装袋连接;沿与所述第一方向垂直的第二方向,所述绝缘胶包括第一部分,第一部分为所述绝缘胶在所述第一方向上与所述极耳重合且与所述密封部间隔设置的区域,所述第一部分包括第一端部,所述第一端部位于所述包装袋内,在所述第一端部中,沿所述第一方向,所述绝缘胶的厚度为h1,所述第一绝缘胶层的厚度为A1,所述第二绝缘胶层的厚度为B1,所述第三绝缘胶层的厚度为C1,10.5%h1≤B1≤35%h1,C1>A1,90%B1≤C1≤500%B1,60%B1≤A1≤400%B1。
- 如权利要求1所述的二次电池,其中,8.18A1≥C1≥1.05A1。
- 如权利要求1所述的二次电池,其中,7A1≥C1≥1.3A1。
- 如权利要求1所述的二次电池,其中,所述极耳在所述第一方向上的厚度为t,3t≥2h1≥0.9t。
- 如权利要求1所述的二次电池,其中,沿所述第二方向,所述绝缘胶还包括第二部分,所述第二部分为所述绝缘胶在所述第一方向上与所述密封部重合的区域,在所述第二部分,所述绝缘胶包括沿第一方向依次堆叠设置的第二部分第一绝缘胶层、第二部分第二绝缘胶层以及第二部分第三绝缘胶层,沿第一方向,所述第二部分第一绝缘胶层、第二部分第二绝缘胶层以及第二部分第三绝缘胶层的厚度分别为A2、B2、C2。
- 如权利要求5所述的二次电池,其中,92%C1≤C2≤98%C1。
- 如权利要求5所述的二次电池,其中,7μm≥C1-C2≥1μm。
- 如权利要求5所述的二次电池,其中,所述包装袋包括与所述第三绝缘胶层连接的封装层,所述封装层在所述第一方向上的厚度为P;在所述第二部分中,所述第二部分第三绝缘胶层和所述封装层在所述第一方向上的总厚度为H,0.25(C2+P)≤H≤0.75(C2+P)。
- 如权利要求8所述的二次电池,其中,0.4(C2+P)≤H≤0.7(C2+P)。
- 如权利要求5所述的二次电池,其中,A1和A2满足以下公式:5μm≥A1-A2≥0.5μm。
- 如权利要求5所述的二次电池,其中,3μm≥B1-B2≥0.1μm。
- 如权利要求5所述的二次电池,其中,所述包装袋包括与所述第三绝缘胶层连接的封装层,沿所述第一方向,所述包装袋的厚度为T,所述封装层的厚度为P;沿所述第一方向,所述极耳组件与所述第二部分相对应的部分的厚度为G,所述二次电池与所述第二部分和所述极耳相对应的部分的厚度为K,其中,2T+G-(2P+2t)×75%<K<2T+G-(2P+2t)×15%。
- 如权利要求1所述的二次电池,其中,沿所述第二方向,所述绝缘胶还包括第三部分,所述第三部分为所述绝缘胶在所述第一方向上与所述密封部和所述极耳不重合的区域,在所述第三部分中,沿所述第一方向,所述绝缘胶包括沿第一方向依次堆叠设置的第三部分第一绝缘胶层、第三部分第二绝缘胶层以及第三部分第三绝缘胶层,所述绝缘胶的厚度为h3,所述第一绝缘胶层的厚度为A3,所述第二绝缘胶层的厚度为B3,所述第三绝缘胶层的厚度为C3,10.5%h3≤B3≤35%h3,C3>A3,90%B3≤C3≤500%B3,60%B3≤A3≤400B3%。
- 如权利要求1所述的二次电池,其中,所述极耳组件包括粘合区域,所述粘合区域为沿所述第一方向所述极耳两侧的绝缘胶相互贴合的部分;沿所述第一方向,所述粘合区域包括第一 绝缘胶粘合层、粘合区第二绝缘胶层及粘合区第三绝缘胶层,所述粘合区域的厚度为Q,所述第一绝缘胶粘合层的厚度为D,所述粘合区第二绝缘胶层的厚度为B4,所述粘合区第三绝缘胶层的厚度为C4,10.5%(Q×0.5)≤B4≤35%(Q×0.5),C4>0.5D,90%B4≤C4≤500%B4,120%B4≤D≤800B4%。
- 如权利要求1所述的二次电池,其中,所述第一绝缘胶层和所述第三绝缘胶层的熔点为100~140℃,所述第二绝缘胶层的熔点为140~200℃。
- 如权利要求1所述的二次电池,其中,所述第一绝缘胶层、所述第二绝缘胶层以及所述第三绝缘胶层均包括聚丙烯、聚乙烯、聚偏二氟乙烯、偏二氟乙烯-六氟丙烯共聚物、聚甲基丙烯酸甲酯或聚乙二醇中的一种或多种。
- 如权利要求16所述的二次电池,其中,所述第一绝缘胶层和/或所述第三绝缘胶层还包括增韧改性剂。
- 如权利要求17所述的二次电池,其中,所述增韧改性剂包括二元乙丙橡胶、三元乙丙橡胶、丁苯橡胶、低密度聚乙烯、乙烯-乙酸乙烯酯共聚物、线性低密度聚乙烯、尼龙、聚对苯二甲酸乙二醇酯、聚碳酸酯、超高分子量聚乙烯中的一种或多种。
- 如权利要求17所述的二次电池,其中,基于所述第一绝缘胶层的总质量,所述增韧改性剂含量为3%-10%;和/或基于所述第三绝缘胶层的总质量,所述增韧改性剂含量为3%-10%。
- 如权利要求1所述的二次电池,其中,h1为30~160μm。
- 一种电子装置,其中,包括如权利要求1-20中任一项所述的二次电池。
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| CN202280017424.1A CN117083755A (zh) | 2022-09-22 | 2022-09-22 | 二次电池及包含其的电子装置 |
| EP22959153.2A EP4583267A4 (en) | 2022-09-22 | 2022-09-22 | SECONDARY BATTERY AND ELECTRICAL APPLIANCE INCLUDING IT |
| PCT/CN2022/120612 WO2024060145A1 (zh) | 2022-09-22 | 2022-09-22 | 二次电池及包含其的电子装置 |
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| CN117855767A (zh) * | 2024-01-09 | 2024-04-09 | 宁德新能源科技有限公司 | 绝缘件、极耳组件、电芯、电池及用电设备 |
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| JP2022018978A (ja) | 2020-07-16 | 2022-01-27 | 大日本印刷株式会社 | 金属端子用接着性フィルム、金属端子用接着性フィルム付き金属端子、接着性フィルム付き金属端子、当該金属端子用接着性フィルムを用いた接着性フィルム付き金属端子の製造方法、当該金属端子用接着性フィルムを用いた蓄電デバイス、及び蓄電デバイスの製造方法 |
| CN114824642A (zh) * | 2021-03-30 | 2022-07-29 | 宁德新能源科技有限公司 | 电化学装置和电子装置 |
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| JP4635415B2 (ja) * | 2003-07-15 | 2011-02-23 | 凸版印刷株式会社 | 電極タブ用シーリング材 |
| JP2014229505A (ja) * | 2013-05-23 | 2014-12-08 | 日立マクセル株式会社 | 薄型電池用封止材 |
| JP7136102B2 (ja) * | 2017-07-24 | 2022-09-13 | 大日本印刷株式会社 | 金属端子用接着性フィルム、金属端子用接着性フィルム付き金属端子、当該金属端子用接着性フィルムを用いた電池、及び電池の製造方法 |
| EP4738588A2 (en) * | 2020-03-30 | 2026-05-06 | Ningde Amperex Technology Limited | Cell and electronic device having same |
| JP2022084420A (ja) * | 2020-11-26 | 2022-06-07 | 双葉電子工業株式会社 | タブリード及び非水電解質デバイス |
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- 2022-09-22 CN CN202280017424.1A patent/CN117083755A/zh active Pending
- 2022-09-22 EP EP22959153.2A patent/EP4583267A4/en active Pending
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2025
- 2025-03-21 US US19/086,450 patent/US20250219260A1/en active Pending
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| CN203528010U (zh) * | 2013-10-14 | 2014-04-09 | 东莞新能源科技有限公司 | 一种软包装锂离子电池用极耳胶和极耳 |
| WO2015141772A1 (ja) | 2014-03-19 | 2015-09-24 | 凸版印刷株式会社 | 二次電池 |
| US20180186136A1 (en) * | 2016-12-30 | 2018-07-05 | Toray Plastics (America), Inc. | Easy opening metalized hermetic films and methods to manufacture the same |
| CN106784998A (zh) * | 2017-01-22 | 2017-05-31 | 宁德新能源科技有限公司 | 一种二次电池及加热装置 |
| JP2022018978A (ja) | 2020-07-16 | 2022-01-27 | 大日本印刷株式会社 | 金属端子用接着性フィルム、金属端子用接着性フィルム付き金属端子、接着性フィルム付き金属端子、当該金属端子用接着性フィルムを用いた接着性フィルム付き金属端子の製造方法、当該金属端子用接着性フィルムを用いた蓄電デバイス、及び蓄電デバイスの製造方法 |
| CN113097617A (zh) * | 2021-03-30 | 2021-07-09 | 宁德新能源科技有限公司 | 电化学装置和电子装置 |
| CN114824642A (zh) * | 2021-03-30 | 2022-07-29 | 宁德新能源科技有限公司 | 电化学装置和电子装置 |
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Also Published As
| Publication number | Publication date |
|---|---|
| CN117083755A (zh) | 2023-11-17 |
| US20250219260A1 (en) | 2025-07-03 |
| EP4583267A1 (en) | 2025-07-09 |
| EP4583267A4 (en) | 2025-12-03 |
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