WO2023130861A1 - 用于包覆电芯的绝缘件、电极组件、电池单体、电池、用电装置和电极组件的组装方法 - Google Patents
用于包覆电芯的绝缘件、电极组件、电池单体、电池、用电装置和电极组件的组装方法 Download PDFInfo
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- WO2023130861A1 WO2023130861A1 PCT/CN2022/135362 CN2022135362W WO2023130861A1 WO 2023130861 A1 WO2023130861 A1 WO 2023130861A1 CN 2022135362 W CN2022135362 W CN 2022135362W WO 2023130861 A1 WO2023130861 A1 WO 2023130861A1
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- Prior art keywords
- flap
- fold line
- battery
- sheet
- extension
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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
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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
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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
- H01M50/10—Primary casings; Jackets or wrappings
- H01M50/172—Arrangements of electric connectors penetrating the casing
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E60/00—Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
- Y02E60/10—Energy storage using batteries
Definitions
- the present application relates to the field of battery technology, and in particular to an assembly method for an insulating member for covering a battery cell, an electrode assembly, a battery cell, a battery, an electrical device, and an electrode assembly.
- a battery pack composed of at least one battery cell needs to be placed in an aluminum casing to complete the assembly.
- the outside of the battery pack is covered with a Mylar (a tough polyester polymer) film, but there is still the problem of the shell being corroded.
- Some embodiments of the present application propose an assembly method for an insulating member, an electrode assembly, a battery cell, a battery, an electrical device, and an electrode assembly for covering a battery cell, so as to alleviate the problem of corrosion of the casing.
- Some embodiments of the present application provide an insulating member for covering electric cores, which includes: a middle flap with a positioning hole; a first flap connected to the middle flap at the first fold line connected, the first flap includes a first main flap, and a side flap connected to the first main flap at a third fold line, the third fold line is perpendicular to the first fold line; the extension sheet , connected to the end of the side flap near the middle flap at the fourth fold line, the fourth fold line is perpendicular to the third fold line; and the second flap is connected to the middle flap at the second fold line
- the folds are connected, and the second fold line is parallel to the first fold line; wherein, the middle fold is configured to cover the bottom of the cell, and the first fold and the second fold are configured to After being folded, the circumferential side of the electric core is covered, and the extension piece is configured to completely cover the positioning hole after being folded.
- the side flap of the insulator is connected to the extension piece. After the extension piece is folded, it covers the positioning hole and plays the role of insulation protection. It can prevent the battery part at the positioning hole from contacting the shell, and can catch the pole pieces falling from the battery core.
- the falling active material prevents the active material from falling on the shell to cause electrochemical corrosion of the shell, and has the function of protecting the performance and safety of the battery cell.
- the extension piece is configured to not exceed the area between the first fold line and the second fold line in the width direction of the middle fold after being folded along the fourth fold line .
- the extension sheet After the extension sheet is folded, in the width direction of the middle flap, it does not exceed the area between the first fold line and the second fold line, which is beneficial to ensure that the battery core absorbs the electrolyte in the casing.
- the distance between the middle fold piece and the first fold line in the width direction is at least 2mm, and the The distance between the second fold lines is at least 2 mm.
- the maximum width of the extension piece is at least 4 mm smaller than the distance between the first fold line and the second fold line, and the corresponding unilateral gap is greater than or equal to 2 mm, which is beneficial to ensure that the battery absorbs the electrolyte in the casing.
- the extension piece is configured to cover at least part of the ends along the length direction of the battery core after being folded along the fourth fold line.
- the extension sheet After the extension sheet is folded, it covers at least part of the end of the battery core along the length direction, which can prevent the end of the battery core in the length direction from contacting the casing, and can catch the activity falling from the end of the battery core along the length direction. material, to prevent the active material from falling into the shell, causing electrochemical corrosion of the shell.
- the number of the electric cores is multiple, and the extension sheet is configured to cover at least part of the ends along the length direction of each electric core after being folded along the fourth folding line.
- the extension sheet After the extension sheet is folded, it covers at least part of the ends along the length direction of each battery core, which can prevent the ends of the length direction of each battery core from contacting the casing, and can catch the end parts along the length direction of each battery core. Partially dropped active material, to prevent the active material from falling into the shell, causing electrochemical corrosion of the shell.
- the length direction of the extension sheet is defined to be perpendicular to the fourth fold line, and the length of the extension sheet is defined as L, and L is not greater than the distance between the first fold line and the second fold line .
- the length L of the extension piece is not greater than the distance between the first fold line and the second fold line, which can be used for positioning the location of the positioning hole.
- the length of the extension sheet is L>s+d+x, wherein, s is the minimum distance between the positioning hole and the fourth fold line after the extension sheet is folded along the fourth fold line , d is the diameter of the positioning hole, x is not less than 2mm.
- the length of the extension piece L>s+d+x can ensure that the extension piece completely covers the positioning hole.
- the side flaps include a first side flap and a second side flap, the first side and the second side of the first main flap each have a third fold line; the first side The flap is connected to the first main flap at a third fold line on the first side of the first main flap; the second side flap is connected to the third fold line on the second side of the first main flap; The three-fold line is connected with the first main flap; the extension sheet includes a first extension sheet and a second extension sheet, and the first side flap and the second side flap are close to the middle flap Each end has a fourth fold line; the first extension piece is connected to the first side flap at the fourth fold line on the first side flap; the second extension piece is connected to the second side flap The fourth fold line is connected with the second side flap; the positioning hole includes a first positioning hole and a second positioning hole, and the battery core includes a first side, a second side and a bottom; the first An extension sheet is configured to cover at least part of the corners of the first side and the bottom of the cell after being folded, and
- a first side flap and a second side flap are respectively arranged on both sides of the first main flap, and the first side flap and the second side flap are used to wrap the two ends of the cell in the length direction.
- the first side flap is connected to the first extension piece
- the second side flap is connected to the second extension piece.
- the first extension piece and the second extension piece can cover the corners of the sides and the bottom of the two ends of the battery cell, and are used for covering the insulation.
- the mechanical equipment automatically grabs the insulating part, which is beneficial to the operation of the covering insulating part.
- Two positioning holes are set on the insulating part.
- the first extension piece and the second extension piece can cover one positioning hole respectively, so as to realize the positioning of the battery core. Full coverage.
- the second flap includes a second main flap, and an overlapping flap connected to the second main flap at a fifth fold line, the overlapping flap and the side flaps Configured to overlap each other when folded, the fifth fold line is perpendicular to the second fold line.
- the overlapping pieces and side flaps can overlap each other to completely cover the two ends of the cell in the length direction, the middle flap covers the bottom of the cell, and the first main flap and the second main flap are folded. Covering the two sides of the battery core in the width direction can realize the comprehensive covering of the battery core.
- Some embodiments of the present application also provide an electrode assembly, which includes at least one electric core, and the above-mentioned insulating member, the insulating member is folded to cover at least part of the surface of the at least one electric core.
- the electrode assembly includes the insulator provided by the embodiment of the present disclosure, and correspondingly has the beneficial effects of the insulator provided by the embodiment of the present disclosure, which will not be repeated here.
- Some embodiments of the present application also provide a battery cell, which includes a casing and the above-mentioned electrode assembly, and the electrode assembly is arranged in the casing.
- the battery cell includes the electrode assembly provided by the embodiment of the present disclosure, and correspondingly has the beneficial effects of the electrode assembly provided by the embodiment of the present disclosure, which will not be repeated here.
- Some embodiments of the present application also provide a battery, which includes a box body and at least one battery cell as described above, and the battery cell is arranged in the box body.
- the battery includes the battery cell provided by the embodiment of the present disclosure, and correspondingly has the beneficial effects of the battery cell provided by the embodiment of the present disclosure, which will not be repeated here.
- Some embodiments of the present application also provide an electric device, which includes the above-mentioned battery.
- the electric device includes the battery provided by the embodiment of the present disclosure, and correspondingly has the beneficial effects of the battery provided by the embodiment of the present disclosure, which will not be repeated here.
- Some embodiments of the present application also provide a method for assembling an electrode assembly, which includes the following steps: providing at least one electric core; providing an insulating member, and the insulating member includes: a middle flap with a positioning hole; the second a flap connected to the middle flap at a first fold line, the first flap including a first main flap, and side flaps connected to the first main flap at a third fold line, The third fold line is perpendicular to the first fold line; the extension piece is connected to an end of the side flap near the middle fold line at a fourth fold line, and the fourth fold line is perpendicular to the third fold line; and a second fold, connected to the middle fold at a second fold line, the second fold line being parallel to the first fold line; placing the at least one electric core on the middle fold, and along the The direction between the first fold line and the second fold line is arranged in order, so that the middle fold covers the bottom of the at least one battery cell; and the first fold and the second fold are folded , making the first flap and the second
- the middle flap wraps the bottom of the cell
- the first flap and the second flap wrap the circumferential side of the cell
- the extension sheet wraps at least part of the corners of the side and the bottom of the cell, and completely covers the positioning hole
- the insulator can cover the circumferential side, bottom, and corner area of the side and bottom of the cell, and can also cover the positioning holes set by itself, which can cover the cell in all directions to avoid electrochemical corrosion of the shell .
- the present application at least has the following beneficial effects:
- the side flaps of the insulator are connected to the extension piece, and the extension piece completely covers the positioning hole after being folded, which plays the role of insulation protection, prevents the battery core at the positioning hole from contacting the housing, and can catch the The active material falling from the pole piece of the battery prevents the active material from falling onto the shell to cause electrochemical corrosion of the shell, and has the function of protecting the performance and safety of the battery.
- Fig. 1 is a schematic structural view of a vehicle disclosed in some embodiments of the present application.
- Fig. 2 is a schematic diagram of an exploded structure of a battery disclosed in some embodiments of the present application.
- Fig. 3 is a schematic diagram of an exploded structure of a battery cell disclosed in some embodiments of the present application.
- Fig. 4 is a schematic diagram of an unfolded structure of an insulator for covering a battery core disclosed in some embodiments of the present application;
- Fig. 5 is a schematic diagram of the folding process of an insulator for covering a battery core disclosed in some embodiments of the present application;
- Fig. 6a is a schematic diagram of an end cap assembly and a cell disclosed in some embodiments of the present application.
- Fig. 6b is a schematic diagram of an insulator covering a cell disclosed in some embodiments of the present application.
- Fig. 6c is a schematic side view of an insulator covering a cell disclosed in some embodiments of the present application.
- Fig. 6d is a schematic bottom view of an electric core covered by an insulating member disclosed in some embodiments of the present application.
- Fig. 7a is a schematic diagram of an end cap assembly and two electric cores disclosed in some embodiments of the present application.
- Fig. 7b is a schematic diagram of an insulating member covering two electric cores disclosed in some embodiments of the present application.
- Fig. 7c is a schematic side view of an insulating member covering two electric cores disclosed in some embodiments of the present application.
- Fig. 7d is a schematic bottom view of an insulating member covering two electric cores disclosed in some embodiments of the present application.
- Fig. 8a is a schematic diagram of an end cap assembly and four electric cores disclosed in some embodiments of the present application.
- Fig. 8b is a schematic diagram of an insulating member covering four electric cores disclosed in some embodiments of the present application.
- Fig. 8c is a schematic side view of four electric cores covered by an insulating member disclosed in some embodiments of the present application.
- Fig. 8d is a schematic bottom view of four electric cores covered by an insulating member disclosed in some embodiments of the present application.
- Power batteries are not only used in energy storage power systems such as hydraulic, thermal, wind and solar power plants, but also widely used in electric vehicles such as electric bicycles, electric motorcycles, electric vehicles, as well as military equipment and aerospace and other fields . With the continuous expansion of power battery application fields, its market demand is also constantly expanding.
- the battery mentioned in the embodiments of the present application refers to a single physical module including one or more battery cells to provide higher voltage and capacity.
- the battery mentioned in this application may include a battery module or a battery pack, and the like.
- Batteries generally include a case for containing battery cells. The box can prevent liquid or other foreign objects from affecting the charging or discharging of the battery cells.
- the battery of the present application can be used for electric devices, which can provide electric energy for electric devices.
- Electric devices can be mobile phones, portable devices, notebook computers, battery cars, electric vehicles, ships, spacecraft, electric toys and electric tools, etc.
- Spacecraft include airplanes, rockets, space shuttles and spaceships, etc.
- Electric toys include fixed or mobile electric toys, such as game consoles, electric car toys, electric boat toys and electric airplane toys, etc.
- Electric tools include metal cutting electric Tools, grinding power tools, assembly power tools and railway power tools, such as electric drills, electric grinders, electric wrenches, electric screwdrivers, electric hammers, impact drills, concrete vibrators and electric planers.
- the electric device can also be a vehicle 400, such as a new energy vehicle, and the new energy vehicle can be a pure electric vehicle, a hybrid vehicle, or an extended-range vehicle, etc.; or the electric device can also be a drone or a ship.
- vehicle 400 such as a new energy vehicle
- the new energy vehicle can be a pure electric vehicle, a hybrid vehicle, or an extended-range vehicle, etc.
- the electric device can also be a drone or a ship.
- a vehicle 400 includes an axle 401, a wheel 402 connected to the axle 401, a motor 403, a controller 404 and a battery 300, the motor 403 is used to drive the axle 401 to drive the wheel 402 to rotate, and the controller 404 is used to control the motor 403 works, the battery 300 can be arranged at the bottom, head or tail of the vehicle 400, and is used to provide electric energy for the operation of the motor 403 and other components in the vehicle.
- the battery 300 includes a case 301 , a cover 302 and at least one battery cell 200 .
- At least one battery cell 200 includes more than two battery cells 200 , and the multiple battery cells 200 may be connected in series, in parallel, or in parallel.
- the hybrid connection refers to a mixture of series and parallel connections.
- both the box body 301 and the cover body 302 are fastened together.
- both the box body 301 and the cover body 302 can be hollow cuboids and only one face is an opening face, the opening of the box body 301 and the opening of the cover body 302 are arranged oppositely, and the box body 301 and the cover body 302 are interlocked to form a A box with a closed chamber.
- the box body 301 is a cuboid with an opening and the cover body 302 is a plate shape, or the cover body 302 is a cuboid body with an opening and the box body 301 is a plate shape, and the box body 301 and the cover body 302 are arranged oppositely and snapped together.
- a box is formed with a closed chamber.
- a plurality of battery cells 200 are connected in parallel, in series or mixed, and placed in a closed chamber formed by fastening the box body 301 and the cover body 302 .
- each battery cell 200 includes an electrode assembly 100, a casing 201 and an end cap assembly 202.
- the casing 201 is determined according to the combined shape of one or more electrode assemblies 100.
- the casing 201 can be Hollow cuboid or square or cylinder, and one of the faces of the casing 201 has an opening so that one or more electrode assemblies 100 are placed in the casing 201, for example, when the casing 201 is a hollow cuboid or cube, the casing
- One of the planes of the body 201 is an open surface, that is, the plane does not have a shell wall so that the inside and outside of the shell 201 communicate.
- the circular side of the shell 201 is an open face, that is, the The circular side does not have a shell wall so that the inside and outside of the shell 201 communicate.
- the end cap assembly 202 is connected with the casing 201 at the opening of the casing 201 to form a closed casing for placing the electrode assembly 100 , and the casing 201 is filled with electrolyte.
- the end cover assembly 202 includes an end cover 202a and two terminals 202b.
- the end cover 202a is basically in the shape of a flat plate.
- the two terminals 202b are located on the flat surface of the end cover 202a and pass through the flat surface of the end cover 202a.
- the two terminals 202b are respectively For the positive terminal and the negative terminal.
- An explosion-proof valve 202c may also be provided on the flat surface of the end cover 202a, and the explosion-proof valve 202c may be a part of the flat surface of the end cover 202a, or may be welded with the flat surface of the end cover 202a.
- the explosion-proof valve 202c is cracked to cause the inside and outside of the casing to communicate, and the gas is released through the crack of the explosion-proof valve 202c. thereby avoiding an explosion.
- the electrode assembly 100 includes a plurality of electric cores 101 arranged side by side and electrically connected to each other, and a tab assembly 103, and the tab assembly 103 is connected to a terminal 202b.
- the tab assembly 103 is formed by folding tabs of a plurality of battery cells 101 .
- the cell 101 includes a pole piece and a separator, wherein the pole piece includes an anode piece and a cathode piece.
- Both the anode sheet and the cathode sheet include a current collector and a coating layer.
- the active material of the anode sheet is coated on the current collector of the anode sheet to form a coating layer
- the active material of the cathode sheet is coated on the current collector of the cathode sheet to form a coating layer.
- the isolation film is an insulator, arranged between the anode sheet and the cathode sheet, and the isolation film is used to separate the coating layer of the anode sheet from the coating layer of the cathode sheet.
- the anode sheet, the separator and the cathode sheet are stacked and wound in sequence to form the cell 101 .
- the housing 201 is made of metal materials such as aluminum, before the electrode assembly 100 is placed in the housing 201, it is necessary to coat the circumferential side and bottom of the battery pack composed of multiple battery cells 101 made of insulating material.
- the insulator is used to avoid corrosion of the casing 201 caused by the contact between the electric core 101 and the casing 201 .
- the inventors have found that although the circumferential sides and bottom of the cell group of the electrode assembly 100 are covered with insulators, at the corners of the side and bottom of the cell, the cell 101 is still easily in contact with the casing 201, resulting in a
- the body 201 is corroded, and in order to position and install the insulator, a positioning hole needs to be set on the insulator, and after the insulator covers the battery pack, the positioning hole is generally located at the bottom of the battery pack, and some active components on the pole pieces will fall from the positioning hole. Substances cause the shell 201 to overlap with the pole piece, causing electrochemical corrosion to the shell 201 .
- some embodiments of the present disclosure provide an assembly method for an insulating member, an electrode assembly, a battery cell, a battery, an electrical device, and an electrode assembly for covering a battery cell, by improving the structure of the insulating member itself , so that it can cover the circumferential side, bottom, corners of the side and the bottom of the battery pack, and positioning holes, etc., to alleviate the problem of shell corrosion.
- the insulating member 102 for covering the electric core includes a middle flap 3 , a first flap 1 , an extension sheet 4 and a second flap 2 .
- the middle flap 3 is provided with a positioning hole 31 .
- the first flap 1 is connected to the middle flap 3 at the first fold line 51, the first flap 1 includes the first main flap 11, and the side flaps connected to the first main flap 11 at the third fold line 53 12.
- the third fold line 53 is perpendicular to the first fold line 51 .
- the extension sheet 4 is connected to an end of the side flap 12 close to the middle flap 3 at the fourth fold line 54 , and the fourth fold line 54 is perpendicular to the third fold line 53 .
- the second flap 2 is connected to the middle flap 3 at the second fold line 52 , and the second fold line 52 is parallel to the first fold line 51 .
- the middle flap 3 is configured to cover the bottom of the cell 101
- the first flap 1 and the second flap 2 are configured to wrap the circumferential side of the cell 101 after being folded
- the extension sheet 4 is configured to completely cover the positioning hole 31 after being folded.
- the insulating member 102 is made of insulating material.
- insulation 102 comprises a mylar or polypropylene film.
- the electrode assembly 100 includes a casing 201 and a cell 101 or a plurality of cells 101
- the casing 201 is made of aluminum, if one cell 101 or a plurality of cells 101 are directly placed in the casing 201, the cell 101 is easy to contact with the shell 201 and cause the shell 201 to corrode, and if only the insulator 102 is used to cover the circumferential side and bottom of the electric core 101, there will still be contact with the shell at the corner of the side and bottom of the electric core 101.
- the body 201 contacts and corrodes the shell 201, and the corners of the side and the bottom of the battery cell 101 will also drop the active material on the pole piece, causing the shell 201 to overlap with the pole piece, which will cause electrochemical damage to the shell 201.
- the positioning hole 31 needs to be set on the insulating part 102. After the insulating part 102 covers the electric core 101, the positioning hole 31 is generally located at the bottom of the electric core 101. The active material on the pole piece will also fall from the hole 31 , causing the shell 201 to overlap with the pole piece, and cause electrochemical corrosion to the shell 201 .
- the side flap 12 of the insulator 102 is connected to the extension sheet 4, and the extension sheet 4 covers at least part of the corners of the side and the bottom of the cell 101 after being folded, and completely covers the positioning hole 31, thereby
- the role of insulation protection can prevent the side and bottom corners of the battery cell 101, and the battery cell 101 at the positioning hole 31 from contacting the housing 201, and can catch the active material falling from the pole piece of the battery cell 101.
- the material prevents the active material from falling onto the casing 201 to cause electrochemical corrosion of the casing 201, and has the function of protecting the performance and safety of the battery cell.
- the middle flap 3 of the insulator 102 in the embodiment of the present disclosure wraps the bottom of the cell 101, and the first flap 1 and the second flap 2 wrap the circumferential side of the cell 101 after being folded, so
- the insulator 102 provided by the embodiment of the present disclosure can cover the circumferential side, the bottom, and the corner area between the side and the bottom of the electric core 101, and can also cover the positioning hole 31 provided by itself, so that it can cover the electric core 101 in all directions.
- the core 101 prevents electrochemical corrosion of the casing 201 .
- the insulating member 102 can be formed by cutting a whole piece of insulating material. By simply cutting the whole piece of insulating material, the middle flap 3 and the extension piece 4 can be cut out, and then the insulation can be folded along the fold line. The insulating member 102 can cover the cell 101 in all directions. The preparation method of the insulating member 102 is simple and has a good protective effect.
- the entire piece of insulating material has a square shape.
- Each crease line on the insulating member 102 in this embodiment may be a solid crease, or the crease line may be formed by providing continuous point holes on the insulating member 102 .
- the extension sheet 4 is configured such that after being folded along the fourth fold line 54 , it does not exceed the area between the first fold line 51 and the second fold line 52 in the width direction of the middle fold sheet 3 .
- the extension sheet 4 After the extension sheet 4 is folded, in the width direction of the middle flap 3 , it does not exceed the area between the first fold line 51 and the second fold line 52 , which is beneficial to ensure that the battery cell 101 absorbs the electrolyte in the casing 201 .
- the extension piece 4 is formed by cutting the whole piece of insulating material
- the width of the extension piece 4 formed after cutting is smaller than the distance between the first fold line 51 and the second fold line 52, therefore, no material is wasted
- the electrolyte in the casing 201 can pass through the gap between the extension piece 4 and the first fold line 51, and extend
- the gap between the sheet 4 and the second folding line 52 enters the battery cell 101 , which is also beneficial to ensure that the battery cell 101 absorbs the electrolyte in the casing 201 .
- the extension sheet 4 Since the width of the extension sheet 4 is smaller than the distance between the first fold line 51 and the second fold line 52, the extension sheet 4 covers part of the corners of the side and the bottom of the cell 101 after being folded, and the extension sheet 4 and the first fold line 51
- the gap between them, and the gap between the extension sheet 4 and the second fold line 52 mainly refer to the corners of the side and bottom of the battery cell 101 not covered by the extension sheet 4 .
- the distance between the middle flap 3 and the first fold line 51 in the width direction is at least 2 mm
- the distance between the second fold line 52 and the second fold line 52 is at least 2 mm. The distance between them should be at least 2mm.
- the maximum width W of the extension piece 4 is at least 4mm smaller than the distance between the first fold line 51 and the second fold line 52, corresponding to a unilateral gap greater than or equal to 2mm, and the electrolyte in the housing 201 can pass through the extension piece 4 and the first fold line
- the gap between 51 and the gap between the extension piece 4 and the second folding line 52 enters the cell 101 , which is beneficial to ensure that the cell 101 absorbs the electrolyte in the casing 201 .
- the extension sheet 4 is configured to cover at least part of the ends of the battery cells 101 along the length direction after being folded along the fourth folding line 54 .
- the cell 101 is formed by sequentially stacking and winding the anode sheet, the separator and the cathode sheet. It is defined that the corner end of the cell 101 is the end of the cell 101 in the length direction.
- the dimension between the two flat sides of the battery cell 101 is the width dimension of the battery cell 101
- the dimension between the two oval end faces of the battery cell 101 is the height dimension of the battery cell 101 .
- the end of the battery cell 101 in the longitudinal direction is easy to contact with the housing 201, and the active material is easy to drop, and the extension sheet 4 is folded to cover the end of the battery cell 101 in the longitudinal direction.
- the extension sheet 4 is folded to cover the end of the battery cell 101 in the longitudinal direction. can prevent the end of the battery cell 101 in the length direction from contacting the housing 201, and can catch the active material dropped from the end of the battery cell 101 in the length direction, preventing the active material from falling to the housing 201, so that The casing 201 is galvanically corroded.
- the number of electric cores 101 is multiple, and the extension sheet 4 is configured to cover the ends of each electric core 101 along the length direction after being folded along the fourth folding line 54. At least partially.
- the battery cell 101 is formed by stacking and winding the anode sheet, separator and cathode sheet in sequence.
- the corner end of the battery cell 101 is the end of the length direction of the battery cell 101.
- the end of the length direction of the battery cell 101 is easy to contact with the casing 201, and the active material is easy to drop.
- the extension sheet 4 covers the end of each battery cell 101 along the length direction after being folded, which can prevent the length of each battery cell 101
- the end of the direction is in contact with the housing 201, and can catch the active material falling from the end of each battery cell 101 along the length direction, so as to prevent the active material from falling to the housing 201 and cause electrochemical corrosion of the housing 201. .
- the ends in the length direction of each battery cell 101 are generally located in the middle area of the middle flap 3 in the width direction.
- the extension sheet 4 is configured to be located in the middle area of the middle flap 3 in the width direction after being folded along the fourth fold line 54 , and the extension sheet 4 can cover the ends of the battery cells 101 along the length direction.
- an electric core 101 is covered inside the insulator 102, the width of the extension piece 4 is smaller than the width of one electric core 101, and the extension piece 4 is located in the middle after being folded.
- the end of the length direction of the battery cell 101 is generally also located in the middle area of the width direction of the middle flap 3.
- the width of the extension sheet 4 is not less than 100% of the width of the battery cell 101. 1/2, ie W ⁇ (1/2)H, where W is the width of the extension piece 4 and H is the width of a single cell 101 to cover the end of the cell 101 along the length direction.
- the insulator 102 is covered with two battery cells 101, and the extension sheet 4 is located in the middle area of the width direction of the middle flap 3 after being folded.
- the width of the extension sheet 4 is not less than 2/3 of the total width of the two cells 101, that is, W ⁇ (2/3)2H, where W is the width of the extension sheet 4, and H is the width of a single cell 101 .
- the insulator 102 is covered with four battery cells 101, and the extension sheet 4 is located in the middle area of the width direction of the middle flap 3 after being folded. Yes, the width of the extension sheet 4 is not less than 4/5 of the total width of the four cells 101, that is: W ⁇ (4/5)4H, where W is the width of the extension sheet 4, and H is the width of a single cell 101 width.
- the insulator 102 covers n battery cells 101, and the extension sheet 4 is located in the middle area of the width direction of the middle flap 3 after being folded, and the width of the extension sheet 4 is not less than 1/2 of the total width of the n battery cells 101.
- n/(n+1) that is, W ⁇ (n/(n+1))nH.
- W is the width of the extension sheet 4
- H is the width of a single battery cell 101 .
- the insulator 102 is covered with n cells 101, and the extension sheet 4 is located in the middle area of the width direction of the middle flap 3 after being folded, and the width of the extension sheet 4 is at least greater than that of n-1 cells. Width, wherein, n is the number of electric cores 101 covered by the insulating member 102, and n is an integer greater than 0.
- the length direction of the extension sheet 4 is defined to be perpendicular to the fourth fold line 54 , and the length of the extension sheet 4 is defined as L, and L is not greater than the distance between the first fold line 51 and the second fold line 52 .
- the width of the extension sheet 4 is defined as W.
- the length L of the extension sheet 4 is not greater than the distance between the first folding line 51 and the second folding line 52 , which can be used for positioning the location of the positioning hole 31 .
- the extension piece 4 is formed by cutting the entire piece of insulating material
- the length of the extension piece 4 formed after cutting will naturally be smaller than the distance between the first fold line 51 and the second fold line 52, therefore, in order to make full use of
- the position of the positioning hole 31 should meet the requirement that the extension piece 4 covers the positioning hole 31 after being folded.
- the length L of the extension sheet 4 >s+d+x, wherein, s is the minimum distance between the positioning hole 31 and the fourth folding line 54 after the extension sheet 4 is folded along the fourth folding line 54, and d is the positioning hole
- s is the minimum distance between the positioning hole 31 and the fourth folding line 54 after the extension sheet 4 is folded along the fourth folding line 54
- d is the positioning hole
- the diameter of 31, x is not less than 2mm.
- the length L>s+d+x of the extension piece 4 can ensure that the extension piece 4 completely covers the positioning hole 31 .
- the maximum value of the length L of the extension piece is equal to the width of the middle flap 3 .
- the side flap 12 includes a first side flap 12a and a second side flap 12b, and the first side and the second side of the first main flap 11 each have a third fold line 53 .
- the first side flap 12a is connected to the first main flap 11 at the third fold line 53 on the first side of the first main flap 11 .
- the second side flap 12b is connected to the first main flap 11 at a third fold line 53 on the second side of the first main flap 11 .
- the extension sheet 4 includes a first extension sheet 41 and a second extension sheet 42 , and the ends of the first side flap 12 a and the second side flap 12 b near the middle flap each have a fourth fold line 54 .
- the first extension piece 41 is connected to the first side flap 12a at the fourth fold line 54 on the first side flap 12a.
- the second extension piece 42 is connected to the second side flap 12b at the fourth fold line 54 on the second side flap 12b.
- the positioning hole 31 includes a first positioning hole 31a and a second positioning hole 31b, and the battery cell includes a first side, a second side and a bottom.
- the first extension sheet 41 is configured to cover at least part of the corners of the first side and the bottom of the cell after being folded, and completely cover the first positioning hole 31a.
- the second extension piece 42 is configured to cover at least part of the corners of the second side and the bottom of the cell after being folded, and completely cover the second positioning hole 31b.
- a first side flap 12a and a second side flap 12b are respectively arranged on both sides of the first main flap 11, and the first side flap 12a and the second side flap 12b are used to wrap the length direction of the electric core 101. Sides at both ends.
- the first side flap 12a is connected to the first extension piece 41
- the second side flap 12b is connected to the second extension piece 42.
- the first extension piece 41 and the second extension piece 42 can cover the corners of the sides and the bottom of the two ends of the battery cell 101.
- the insulator 102 is provided with two positioning holes 31, the first extension piece 41 and the second The extension pieces 42 can respectively cover one positioning hole 31 , so as to cover the battery cell 101 in all directions.
- the second flap 2 includes the second main flap 21, and the lapping piece 22 connected with the second main flap 21 at the fifth fold line 55, the lapping piece 22 and the side flap 12 are
- the fifth folding line 55 is perpendicular to the second folding line 52 and is configured to overlap each other after being folded.
- the lapping sheet 22 and the side flaps 12 overlap each other after being folded and can completely cover the two ends of the battery cell 101 in the length direction, the middle flap 3 covers the bottom of the cell 101, the first main flap 11 and the second After being folded, the two main flaps 21 cover the two sides of the battery cell 101 in the width direction, so as to cover the battery cell 101 in all directions.
- the straps 22 include a first strap 22a and a second strap 22b, and the second main flap 21 has a fifth fold line 55 on both the first side and the second side.
- the first overlapping piece 22a is connected to the second main flap 21 at the fifth fold line 55 on the first side of the second main flap 21 .
- the first overlapping piece 22a is configured to overlap with the first side flap 12a after being folded.
- the second bridging piece 22b is connected to the second main flap 21 at the fifth fold line 55 on the second side of the second main flap 21 .
- the second overlapping piece 22b is configured to overlap with the second side flap 12b after being folded.
- Some embodiments also provide an electrode assembly 100 , which includes at least one electric core 101 , and the above-mentioned insulating member 102 , and the insulating member 102 is folded to cover at least part of the surface of the at least one electric core 101 .
- the electrode assembly 100 includes the insulator 102 provided by the embodiment of the present disclosure, and correspondingly has the beneficial effects of the insulator 102 provided by the embodiment of the present disclosure, which will not be repeated here.
- Some embodiments also provide a battery cell 200 , which includes a casing 201 and the above-mentioned electrode assembly 100 , and the electrode assembly 100 is disposed in the casing 201 .
- the battery cell 200 includes the electrode assembly 100 provided by the embodiment of the present disclosure, and correspondingly has the beneficial effects of the electrode assembly 100 provided by the embodiment of the present disclosure, which will not be repeated here.
- Some embodiments also provide a battery 300 , which includes a box body 301 and at least one battery cell 200 described above, and the battery cell 200 is disposed in the box body 301 .
- the battery 300 includes the battery cell 200 provided by the embodiment of the present disclosure, and correspondingly has the beneficial effects of the battery cell 200 provided by the embodiment of the present disclosure, which will not be repeated here.
- Some embodiments also provide an electrical device, which includes the above-mentioned battery 300 .
- the electric device includes the battery 300 provided by the embodiment of the present disclosure, and correspondingly has the beneficial effects of the battery 300 provided by the embodiment of the present disclosure, which will not be repeated here.
- the electrical device includes a vehicle 400 .
- Some embodiments also provide a method for assembling an electrode assembly, which includes the following steps:
- An insulating piece 102 is provided, and the insulating piece 102 includes: a middle flap 3 with a positioning hole 31; a first flap 1 connected to the middle flap 3 at a first fold line 51, and the first flap 1 includes a first The main flap 11, and the side flap 12 connected to the first main flap 11 at the third fold line 53, the third fold line 53 is perpendicular to the first fold line 51; the extension sheet 4 is connected to the side flap at the fourth fold line 54
- the flap 12 is near one end of the middle flap 3, the fourth fold line 54 is perpendicular to the third fold line 53; and the second flap 2 is connected with the middle flap 3 at the second fold line 52, and the second fold line 52 is parallel to the first fold line.
- the middle flap 3 wraps the bottom of the cell 101
- the first flap 1 and the second flap 2 wrap the circumferential sides of the cell 101
- the extension sheet 4 wraps at least part of the side and the bottom of the cell 101 corner, and completely cover the positioning hole 31
- the insulator 102 can cover the circumferential side, bottom, and corner area of the side and bottom of the battery cell 101, and can also cover the positioning hole 31 provided by itself, and can cover all directions. Covering the cell 101 prevents electrochemical corrosion of the casing 201 .
- the insulator 102 used to cover the electric core includes a middle folded piece 3 , a first folded piece 1 , an extension piece 4 and a second folded piece 2 .
- the first flap 1 is connected to the middle flap 3 at the first fold line 51
- the second flap 2 is connected to the middle flap 3 at the second fold line 52 .
- the middle flap 3 is provided with a first positioning hole 31a and a second positioning hole 31b.
- the first flap 1 includes a first main flap 11 , a first side flap 12 a and a second side flap 12 b, and the first side and the second side of the first main flap 11 each have a third fold line 53 .
- the first side flap 12a is connected to the first main flap 11 at the third fold line 53 on the first side of the first main flap 11 .
- the second side flap 12b is connected to the first main flap 11 at a third fold line 53 on the second side of the first main flap 11 .
- the extension sheet 4 includes a first extension sheet 41 and a second extension sheet 42 , and the ends of the first side flap 12 a and the second side flap 12 b near the middle flap each have a fourth fold line 54 .
- the first extension piece 41 is connected with the first side flap 12a at the fourth fold line 54 on the first side flap 12a.
- the second extension piece 42 is connected to the second side flap 12b at the fourth fold line 54 on the second side flap 12b.
- the second flap 2 includes a second main flap 21 , a first bridging piece 22 a and a second bridging piece 22 b, and the first side and the second side of the second main flap 21 each have a fifth fold line 55 .
- the first overlapping piece 22a is connected to the second main flap 21 at the fifth fold line 55 on the first side of the second main flap 21 .
- the second bridging piece 22b is connected to the second main flap 21 at the fifth fold line 55 on the second side of the second main flap 21 .
- the middle flap 3 wraps the bottom of the battery cell 101, and the first main flap 11 and the second main flap 21 wrap the two sides of the cell 101 in the width direction; the first overlapping sheet 22a overlaps with the first side flap 12a, and the second overlaps 22b overlaps with the second side flap 12b, so as to cover the two sides (the first side and the second side) of the battery cell 101 in the length direction.
- the first extension sheet 41 covers at least part of the corners of the first side and the bottom of the cell, and completely covers the first positioning hole 31a;
- the second extension sheet 42 covers the second side and the bottom of the cell At least part of the corner of the bottom completely covers the second positioning hole 31b.
- FIG. 5 it is the folding process of the insulating part 102, and Fig. 5a shows the unfolded state of the insulating part 102; Fig. 5b shows that the first main flap 11 and the second main flap 21 are folded; Fig. 5c shows It is shown that the first overlapping piece 22a is folded and overlapped with the first side flap 12a, the second overlapping piece 22b is folded and overlapped with the second side flap 12b, and the first extension piece 41 and the second The two extension pieces 42 are folded to complete the folding of the insulating member 102 .
- FIG. 6 a it is an electric core 101 and an end cap assembly 202 ; as shown in FIG. 6 b , FIG. 6 c and FIG. 6 d , an insulating member 102 covers one electric core 101 .
- FIG. 7 a there are two electric cores 101 and an end cap assembly 202 ; as shown in FIGS. 7 b , 7 c and 7 d , the insulating member 102 covers the two electric cores 101 .
- FIG. 8a there are four electric cores 101 and end cap assemblies 202; as shown in FIG. 8b, FIG. 8c and FIG. 8d, the insulating member 102 covers four electric cores 101.
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- Connection Of Batteries Or Terminals (AREA)
Abstract
Description
Claims (14)
- 一种用于包覆电芯的绝缘件,包括:中间折片(3),其上设有定位孔(31);第一折片(1),在第一折线(51)处与所述中间折片(3)连接,所述第一折片(1)包括第一主折片(11)、以及在第三折线(53)处与所述第一主折片(11)连接的侧折片(12),所述第三折线(53)与所述第一折线(51)垂直;延伸片(4),在第四折线(54)处连接于所述侧折片(12)靠近所述中间折片(3)的一端,所述第四折线(54)与所述第三折线(53)垂直;以及第二折片(2),在第二折线(52)处与所述中间折片(3)连接,所述第二折线(52)平行于所述第一折线(51);其中,所述中间折片(3)被配置为包覆电芯(101)的底部,所述第一折片(1)和所述第二折片(2)被配置为折叠后包覆电芯(101)的周向侧部,所述延伸片(4)被配置为折叠后完全覆盖所述定位孔(31)。
- 根据权利要求1所述的绝缘件,其中所述延伸片(4)被配置为沿所述第四折线(54)折叠后,在所述中间折片(3)的宽度方向上,不超出所述第一折线(51)与所述第二折线(52)之间的区域。
- 根据权利要求1或2所述的绝缘件,其中所述延伸片(4)被配置为沿所述第四折线(54)折叠后,在所述中间折片(3)的宽度方向上,与所述第一折线(51)之间的距离至少为2mm,以及与所述第二折线(52)之间的距离至少为2mm。
- 根据权利要求1至3任一项所述的绝缘件,其中所述延伸片(4)被配置为沿所述第四折线(54)折叠后,覆盖至少部分所述电芯(101)的沿 长度方向的端部。
- 根据权利要求1至4任一项所述的绝缘件,其中所述电芯(101)的数量为多个,所述延伸片(4)被配置为沿所述第四折线(54)折叠后,覆盖每个所述电芯(101)的沿长度方向的端部的至少部分。
- 根据权利要求1至5任一项所述的绝缘件,其中定义所述延伸片(4)的长度方向垂直于所述第四折线(54),定义所述延伸片(4)的长度为L,L不大于所述第一折线(51)与所述第二折线(52)之间的距离。
- 根据权利要求6所述的绝缘件,其中所述延伸片(4)的长度L>s+d+x,其中,s为所述延伸片(4)沿所述第四折线(54)折叠后,所述定位孔(31)与所述第四折线(54)的最小距离,d为所述定位孔(31)的直径,x不小于2mm。
- 根据权利要求1至7任一项所述的绝缘件,其中所述侧折片(12)包括第一侧折片(12a)和第二侧折片(12b),所述第一主折片(11)的第一侧和第二侧均具有第三折线(53);所述第一侧折片(12a)在所述第一主折片(11)的第一侧的第三折线(53)处与所述第一主折片(11)连接;所述第二侧折片(12b)在所述第一主折片(11)的第二侧的第三折线(53)处与所述第一主折片(11)连接;所述延伸片(4)包括第一延伸片(41)和第二延伸片(42),所述第一侧折片(12a)和所述第二侧折片(12b)靠近所述中间折片的一端均具有第四折线(54);所述第一延伸片(41)在所述第一侧折片(12a)上的第四折线(54)处与所述第一侧折片(12a)连接;所述第二延伸片(42)在所述第二侧折片(12b)上的第四折线(54)处与所述第二侧折片(12b)连接;所述定位孔(31)包括第一定位孔(31a)和第二定位孔(31b),所述电芯包括第一侧部、第二侧部和底部;所述第一延伸片(41)被配置为折叠后包覆所述电芯的第一侧部与底部的至少部分拐角,并完全覆盖所述第一定位孔(31a);所述第二延伸片(42)被配置为折叠后包覆所述电芯的第二侧部与底部的至少部分拐角,并完全覆盖所述第二定位孔(31b)。
- 根据权利要求1至8任一项所述的绝缘件,其中所述第二折片(2)包括第二主折片(21)、以及在第五折线(55)处与所述第二主折片(21)连接的搭接片(22),所述搭接片(22)和所述侧折片(12)被配置为折叠后相互搭接,所述第五折线(55)垂直于所述第二折线(52)。
- 一种电极组件,包括至少一个电芯(101),以及根据权利要求1至9任一项所述的绝缘件(102),所述绝缘件(102)折叠以包覆所述至少一个电芯(101)的至少部分表面。
- 一种电池单体,包括壳体(201)和根据权利要求10所述的电极组件(100),所述电极组件(100)设于所述壳体(201)内。
- 一种电池,包括箱体(301)和至少一个根据权利要求11所述的电池单体(200),所述电池单体(200)设于所述箱体(301)内。
- 一种用电装置,包括根据权利要求12所述的电池(300)。
- 一种电极组件的组装方法,包括以下步骤:提供至少一个电芯(101);提供绝缘件(102),所述绝缘件(102)包括:中间折片(3),其上设有定位孔(31);第一折片(1),在第一折线(51)处与所述中间折片(3)连接,所述第一折片(1)包括第一主折片(11)、以及在第三折线(53)处与所述第一主折片(11)连接的侧折片(12),所述第三折线(53)与所述第一折线(51)垂直;延伸片(4),在第四折线(54)处 连接于所述侧折片(12)靠近所述中间折片(3)的一端,所述第四折线(54)与所述第三折线(53)垂直;以及第二折片(2),在第二折线(52)处与所述中间折片(3)连接,所述第二折线(52)平行于所述第一折线(51);将所述至少一个电芯(101)放置在所述中间折片(3)上,且沿所述第一折线(51)与所述第二折线(52)之间的方向依次排布,使所述中间折片(3)包覆所述至少一个电芯(101)的底部;以及折叠所述第一折片(1)和所述第二折片(2),使所述第一折片(1)和所述第二折片(2)包覆所述至少一个电芯(101)的周向侧部,折叠所述延伸片(4),使所述延伸片(4)完全覆盖所述定位孔(31)。
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| CN202290000712.1U CN222735132U (zh) | 2022-01-10 | 2022-11-30 | 用于包覆电芯的绝缘件、电极组件、电池单体、电池和用电装置 |
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| CN202210021155.8A CN116454487B (zh) | 2022-01-10 | 2022-01-10 | 用于包覆电芯的绝缘件、电极组件、电池单体、电池、用电装置和电极组件的组装方法 |
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Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN118630433A (zh) * | 2024-05-16 | 2024-09-10 | 欣旺达动力科技股份有限公司 | 二次电池及用电装置 |
| WO2025055368A1 (zh) * | 2023-09-13 | 2025-03-20 | 宁德时代新能源科技股份有限公司 | 电池单体、电池及用电装置 |
Families Citing this family (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN116454487B (zh) * | 2022-01-10 | 2026-03-10 | 宁德时代新能源科技股份有限公司 | 用于包覆电芯的绝缘件、电极组件、电池单体、电池、用电装置和电极组件的组装方法 |
| CN220692195U (zh) * | 2023-07-24 | 2024-03-29 | 宁德时代新能源科技股份有限公司 | 电池单体以及电池、用电装置 |
| CN221427967U (zh) * | 2023-11-07 | 2024-07-26 | 宁德时代新能源科技股份有限公司 | 电池单体、电池以及用电装置 |
Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN205543031U (zh) * | 2016-03-22 | 2016-08-31 | 东莞塔菲尔新能源科技有限公司 | 一种裸电芯绝缘片及使用该绝缘片的电池 |
| CN208062159U (zh) * | 2018-05-15 | 2018-11-06 | 宁德时代新能源科技股份有限公司 | 二次电池 |
| CN109037509A (zh) * | 2016-03-28 | 2018-12-18 | 宁德时代新能源科技股份有限公司 | 二次电池顶盖组件、含该组件的二次电池及装配方法 |
| CN213150885U (zh) * | 2020-09-15 | 2021-05-07 | 东莞塔菲尔新能源科技有限公司 | 一种电芯用的绝缘片及动力电池 |
Family Cites Families (11)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| JP2012054029A (ja) * | 2010-08-31 | 2012-03-15 | Sanyo Electric Co Ltd | 積層式電池 |
| EP2866279B1 (en) * | 2012-06-26 | 2017-08-23 | Kabushiki Kaisha Toyota Jidoshokki | Accumulator device |
| US20170250388A1 (en) * | 2014-09-03 | 2017-08-31 | Hitachi Automotive Systems, Ltd. | Prismatic secondary battery |
| CN107275682B (zh) * | 2017-08-02 | 2023-11-03 | 合肥国轩高科动力能源有限公司 | 一种锂电池电芯外膜热熔机构 |
| CN207587896U (zh) * | 2017-12-14 | 2018-07-06 | 合肥国轩高科动力能源有限公司 | 一种锂离子二次电池卷芯包膜结构 |
| CN207183432U (zh) * | 2017-12-31 | 2018-04-03 | 深圳市百格自动化设备有限公司 | 一种动力电池直线包膜机构 |
| CN208507842U (zh) * | 2018-06-28 | 2019-02-15 | 惠州华科技术研究院有限公司 | 电池绝缘膜包膜装置 |
| CN108963177B (zh) * | 2018-09-13 | 2024-12-13 | 蜂巢能源科技股份有限公司 | 一种锂电池电芯及锂电池电芯包绝缘膜方法 |
| CN209843857U (zh) * | 2019-05-31 | 2019-12-24 | 广东利元亨智能装备股份有限公司 | 一种电芯包膜夹具 |
| CN215184291U (zh) * | 2021-06-24 | 2021-12-14 | 上海卡耐新能源有限公司 | 一种绝缘膜及电池 |
| CN116454487B (zh) * | 2022-01-10 | 2026-03-10 | 宁德时代新能源科技股份有限公司 | 用于包覆电芯的绝缘件、电极组件、电池单体、电池、用电装置和电极组件的组装方法 |
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2022
- 2022-01-10 CN CN202210021155.8A patent/CN116454487B/zh active Active
- 2022-11-30 CN CN202290000712.1U patent/CN222735132U/zh active Active
- 2022-11-30 WO PCT/CN2022/135362 patent/WO2023130861A1/zh not_active Ceased
Patent Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN205543031U (zh) * | 2016-03-22 | 2016-08-31 | 东莞塔菲尔新能源科技有限公司 | 一种裸电芯绝缘片及使用该绝缘片的电池 |
| CN109037509A (zh) * | 2016-03-28 | 2018-12-18 | 宁德时代新能源科技股份有限公司 | 二次电池顶盖组件、含该组件的二次电池及装配方法 |
| CN208062159U (zh) * | 2018-05-15 | 2018-11-06 | 宁德时代新能源科技股份有限公司 | 二次电池 |
| CN213150885U (zh) * | 2020-09-15 | 2021-05-07 | 东莞塔菲尔新能源科技有限公司 | 一种电芯用的绝缘片及动力电池 |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2025055368A1 (zh) * | 2023-09-13 | 2025-03-20 | 宁德时代新能源科技股份有限公司 | 电池单体、电池及用电装置 |
| CN118630433A (zh) * | 2024-05-16 | 2024-09-10 | 欣旺达动力科技股份有限公司 | 二次电池及用电装置 |
Also Published As
| Publication number | Publication date |
|---|---|
| CN222735132U (zh) | 2025-04-08 |
| CN116454487B (zh) | 2026-03-10 |
| CN116454487A (zh) | 2023-07-18 |
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