CN201262970Y - Polymer battery packaging structure - Google Patents

Polymer battery packaging structure Download PDF

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Publication number
CN201262970Y
CN201262970Y CNU200820047076XU CN200820047076U CN201262970Y CN 201262970 Y CN201262970 Y CN 201262970Y CN U200820047076X U CNU200820047076X U CN U200820047076XU CN 200820047076 U CN200820047076 U CN 200820047076U CN 201262970 Y CN201262970 Y CN 201262970Y
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China
Prior art keywords
battery
electric core
unit
parts
encapsulating structure
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Expired - Fee Related
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CNU200820047076XU
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Chinese (zh)
Inventor
林斌
曾令文
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Huizhou Desay Battery Co Ltd
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Huizhou Desay Battery Co Ltd
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    • YGENERAL 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/10Energy storage using batteries

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Abstract

The utility model relates to the technical field of lithium cell packaging, in particular to the packaging of a polymer soft electric core. The packaging structure of a polymer cell comprises an electric core unit, an electric core prevention unit, a battery head part and a battery tail part. The electric core unit is fixed in the electric core prevention unit and circuit conduction connection is carried out between the battery head part and the electric core unit; the battery head part and the battery tail part are partially fixed with the electric core prevention unit in a connection way; and the electric core prevention unit, the battery head part and the battery tail part form the appearance of the battery. Under the premise of guaranteeing the safety of battery packaging, the utility model realizes the maximization of the electric core volume in the packaging battery and effectively promotes the volume and capacity ratio of the battery. The packaging structure simplifies the technique, reduces the cost, is favorable to the automatic production of batteries and causes more varied selection of electric cores during battery design.

Description

The encapsulating structure of polymer battery
Technical field
The utility model relates to the lithium battery encapsulation technology field, is specifically related to the improvement of the encapsulating structure of polymer soft battery.
Background technology
Along with the development of lithium-ion electric pool technology, its cost performance improves constantly, and makes lithium battery by all trades and professions extensive use.Nearly one or two years,, had higher requirement in the aspects such as encapsulation of capacity, charge-discharge performance and the battery battery core of lithium battery along with the develop rapidly of mechanics of communication.Both required to have the capacity of super large, cube is little again, at above-mentioned requirements, each battery production factory has also taked various ways, but main battery battery core of still how packing in inside as much as possible under with identical battery volume situation improves aspect this, and promptly the encapsulating structure to battery improves.
Lithium ion battery divides two kinds of polymer lithium ion battery and liquid lithium ionic cells.The maximum difference of polymer Li-ion battery and liquid lithium ionic cell is that the two electrolyte that adopts is different, and liquid lithium ionic cell adopts electrolyte, and its electric core need place steel metal-back or aluminum metal shell.And the electrolyte that polymer Li-ion battery adopts is a colloidal polymer, and its electric core does not need to resemble and places in the metal shell the liquid lithium ion electricity core, but the electrostrictive polymer core is softer, need encapsulate electric core by the hard protection housing.
For battery packaging technology, by the injection moulding mode electric core moulding is encapsulated mostly.As Fig. 1,2, face-piece 8 and drain pan 9 that injection moulding forms are used for encapsulating electric core 10, also have by mould-injection frame 91 on electric core 10, seal to be connected with plastic cement cover plate 81 and glue frame again to encapsulate electric core, shown in Fig. 3,4.This class injection moulding packaged type not only forms burr easily, and molten resin material can damage the interior battery of housing when battery in the metal die contact during injection moulding.Moreover because the requirement of plastic mould moulding has limited the thickness of glue shell, if the thickness of face-piece, drain pan is just very difficult and be difficult to ensure the safety of electric core less than 0.35 millimeter shaping, the battery technology maturation of injection mo(u)lding encapsulation, packaging cost is low, but the housing of battery injection moulding is thicker, the thick space availability ratio of the length and width of battery is low, and cell body holds than big.
Innovation along with encapsulation technology, the encapsulating housing of Baogang has appearred moulding, as shown in Figure 5, drain pan 92 and the face-piece 82 of moulding Baogang's formation encapsulate electric core 10 by the superpressure mode, the length and the Width of this kind packaged type battery need be than large spaces, the body of battery holds than medium, but the packaging cost height.
Also have a kind of special electric core, as disclosed battery component in No. 200610073939.6 application for a patent for invention specifications of China, its electric core encapsulation is to carry out electric core protection by the composite material 93 at electric core 10 outer surface coiling adhered plastics and metal.Referring to Fig. 6,7, because the design of mobile phone makes the lead-out terminal that is applied to the battery on the mobile phone not lay down hard and fast rule, the outgoing position of battery often appears at the parallel or vertical plane of electric core length or Width, if adopt above-mentioned special electric core packaged type, be implemented in the Width head output of electric core or the length direction side output of electric core, just need be manufactured on electric core head and draw the electric core that two kinds of specifications of lug are drawn in lug and electric core side, will make the packaging cost of battery increase like this.
Above scheme is difficult for realizing on automation or semi-automatic production, the manufacturing process of present stage electricity core is ripe substantially, the room for promotion of the volume capacity ratio of its electric core has been subjected to the restriction of existing encapsulation technology, the lithium battery industry endeavours to study how to reduce the capacity that cell package thickness improves battery always, but does not all seek solution preferably always.
The utility model content
Technical problem to be solved in the utility model provides the encapsulating structure that a kind of simple in structure, low cost of manufacture and cocoa improve the electrostrictive polymer core of encapsulation back capacity.
For solving the problems of the technologies described above, the utility model is achieved through the following technical solutions:
Design a kind of encapsulating structure of polymer battery, include electric core unit, electric core protective unit, battery head piece and battery caudal components, wherein electric core unit is fixed in the electric core protective unit, the battery head assembly carries out circuit turn-on with electric core unit and is connected, battery head assembly, battery rail unit carry out part with electric core protective unit respectively and are connected and fixed, and electric core protective unit and battery head assembly, battery rail unit form the battery profile.
Improvement as such scheme; the battery head piece includes battery head configuration parts and safety protective circuit plate; the safety protective circuit plate is long plates or L shaped plates; the safety protective circuit plate is connected with battery head configuration parts by clamping or bonding mode, and described battery caudal components is made up of battery afterbody profile parts.
To be 0.02MM connect the two ends of making to the sheet metal of 0.30MM or sheet metal and plastic sheet to electricity core protective unit leaves the box-like body of opening and constitute by thickness, between the upper end open of box-like body and the battery head configuration parts and the lower ending opening of box-like body be connected by plastic deformation mode or strain mode respectively with battery afterbody profile parts.
Another kind as such scheme improves; the battery head piece includes battery head configuration parts, union piece and safety protective circuit plate; the safety protective circuit plate is lengthy motion picture shape or L shaped plates; the safety protective circuit plate is arranged at by clamping or bonding mode in the middle of battery head configuration parts and the union piece, and the battery caudal components is made up of the coupled afterbody connector of battery afterbody profile parts.
Union piece that metal material is made and afterbody connector are I-shaped support body, and support body thickness and cell thickness are roughly the same.Between union piece and the battery head configuration parts, and adopt respectively between afterbody connector and the battery afterbody profile parts and mould Baogang or welding or snap fit and be connected.
Between the upper end open and battery head piece of electricity core protective unit box-like body, and be connected by metal welding or flow of metal mode between the lower ending opening of box-like body and the battery caudal components.
The utility model has following remarkable result compared to existing technology:
The utility model is broken through existing packaging technology in packaging technology, under the prerequisite that guarantees the cell package fail safe, has realized the maximization of electric core volume in the packaged battery, has effectively promoted the battery capacity volume ratio.
The work simplification of this encapsulating structure, cost reduces.Favourable for the battery automated production, more diversified to choosing of electric core when battery design.In addition, this structure also can be applied to the encapsulation of lithium-ion electric core.
Description of drawings
Fig. 1 is the battery structure outline drawing of existing injection moulding encapsulation;
Fig. 2 is the decomposing schematic representation of Fig. 1;
Fig. 3 is the battery structure outline drawing of another existing injection moulding encapsulation;
Fig. 4 is the decomposing schematic representation of Fig. 3;
Fig. 5 is the existing STRUCTURE DECOMPOSITION schematic diagram of moulding Baogang's packaged battery;
Fig. 6 is existing special electric core packaging appearance structure chart;
Fig. 7 is the deployed configuration schematic diagram of Fig. 6;
Fig. 8 is the parts decomposing schematic representation of a kind of cell package mode of the utility model;
Fig. 9 is the structure chart that battery head configuration parts cooperate with the safety protective circuit plate among Fig. 8,
Figure 10 is the schematic diagram that battery head configuration parts and electric core protection box-like body is connected among Fig. 8;
Figure 11 is the enlarged diagram of A portion among Figure 10;
Figure 12 is the profile schematic diagram after the encapsulation of Fig. 8 parts;
Figure 13 is the enlarged diagram of B portion among Figure 12;
Figure 14 is the parts decomposing schematic representation of the another kind of cell package mode of the utility model;
Figure 15 is the schematic diagram that battery head configuration parts among Figure 14, battery afterbody profile parts cooperate with electric core protection box-like body;
Figure 16 is the profile schematic diagram after the encapsulation of Figure 14 parts;
Figure 17 is the schematic cross-section of battery head among Figure 16;
Figure 18 is the enlarged diagram of the C portion among Figure 17.
Figure 19 is the decomposing schematic representation of the third battery packaging structure of the utility model;
Figure 20 is the decomposing schematic representation of the 4th kind of battery packaging structure of the utility model;
Figure 21 is the decomposing schematic representation of the 5th kind of battery packaging structure of the utility model;
Figure 22 is the parts decomposing schematic representation of Figure 21;
Figure 23 cooperates schematic diagram between L shaped safety protective circuit plate and battery head configuration parts and the union piece in the utility model.
Embodiment
Below in conjunction with accompanying drawing the utility model is further specified:
Embodiment 1
Referring to Fig. 8~13, a kind of encapsulating structure of polymer battery, include electric core unit, electric core protective unit, battery head piece and battery caudal components, wherein electric core unit is fixed in the electric core protective unit, the battery head assembly carries out circuit turn-on with electric core unit and is connected, battery head assembly, battery rail unit carry out part with electric core protective unit respectively and are connected and fixed, and electric core protective unit and battery head assembly, battery rail unit form the battery profile.
The sheet material that electricity core protective unit is made to the metal of 0.30MM or plastic cement or metal and plastic material by 0.02MM processes box-like body 40 and constitutes, and box-like body can be that plates are made, and also can be that box body more than two or two docks and forms.
The electricity core unit is encapsulated in the box-like body of electric core protective unit by sheet viscosity filled media 41, and the electric core 10 of electric core unit adopts the soft electric core of conventional polymer, and the positive and negative lug of electric core is positioned on the Width face of electric core.But the lead-out terminal of the battery after the utility model encapsulation can be in the cell widths direction, also can be on the length direction of battery.Certainly the variation by the lead-out terminal direction can also realize battery output terminal is arranged on parallel or vertical with the battery head piece relatively direction.
The battery head piece is made up of safety protective circuit plate 22 and battery head configuration parts 20 in the present embodiment.The battery caudal components only is made up of battery afterbody profile parts 30.Battery head configuration parts are processed into U shape cell body, and battery afterbody profile parts are processed into plate body.Battery head configuration parts, battery afterbody profile parts are made by plastic resin, or constitute by the assembly of plastic resin and metal material, the combination of plastic resin and metal material can be littler the size of head component processing, helps contacting of mobile phone and battery.
Battery head configuration parts and battery afterbody profile component surface are respectively equipped with to the location hole inside battery encapsulating or that be used for the production and assembly frock clamp.Because may still there be irregular space in the inside battery that encapsulation is formed, consider the requirement of falling of battery self, in assembling process or assembling finish after to inside battery by the location hole encapsulating form electric core shaping parts 12 strengthen the intensity of integral battery door and make its dimensionally stable or support that assembling cooperates with battery head piece or battery caudal components as stressed parts.
The lead-out terminal that is connected with the positive and negative lug of electric core is arranged on the safety protective circuit plate; safety protective circuit plate termination is provided with projection 221; battery head configuration parts are U shape cell body; the through hole that lead-out terminal on the safety protective circuit plate is exposed is arranged on the bottom land; the position, hole 201 that place, bottom land two ends can cooperate with above-mentioned projection in addition; cooperation by the Kong Weiyu projection between safety protective circuit plate and the battery head configuration parts is connected; end with the safety protective circuit plate is fixed on earlier in the battery head configuration parts earlier, makes the plastic deformation of battery head configuration parts come the positioning security protective circuit plate other end by external force then.
When battery head piece, battery caudal components are connected with electric core protective unit in the present embodiment, mainly connect by means of plastic deformation.At battery head configuration parts body salient point 200 is set evenly up and down, and offer corresponding with it through hole 400 in the sheet material termination of protective unit, when both are connected at that time, salient point 200 on the battery head configuration parts is deformed, just can be battery head piece and firm the connecting as one of electric core protective unit.
Embodiment 2
Referring to Figure 14~18; present embodiment and embodiment 1 battery packaging structure are similar; the battery head piece also is that battery head configuration parts and safety protective circuit plate are formed; Baogang's form is moulded in the employing of battery head configuration parts or adhesive form is connected with the safety protective circuit plate, and the safety protective circuit plate carries out circuit turn-on with electric core and is connected.
The battery caudal components is made up of tabular bodily form battery afterbody profile parts, and the protective unit box-like body of processing by the sheet material that metal or plastic cement or metal and plastic material are made, with being connected or adopting the plastic deformation mode of battery head piece, battery caudal components.Sawtooth body 401 is offered at the two ends that join with electric core head and afterbody at electric core protective unit sheet material, the corresponding corresponding with it draw-in groove 201 of setting on battery head piece and battery caudal components, when both dock, make it produce deformation by external force and form firm connection.In order to make encapsulation more firmly or the space of eliminating inside battery, also can pour into the support that macromolecular material or assembling cooperate with battery head piece or battery caudal components and be used as stressed parts to inside battery.
Embodiment 3
Referring to Figure 19, the present embodiment difference from Example 1 is, battery head piece and battery caudal components are formed square shape frame body 5 by brace, the electricity core unit is arranged within the frame body, and to be 0.02MM connect the two ends of making to the sheet metal of 0.30MM or sheet metal and plastic sheet leaves the electric core protective unit of box-like body of opening and be connected outside the frame body by thickness.Be out of shape by metallic elastic between the frame body of electricity core protective unit and battery head piece and the formation of battery caudal components and interconnect.
Electricity core protective unit box-like body is installed with frame body and is cooperated back punching press on the box-like body two ends to be formed with punching press deforming position 402, and the battery head piece is lived in the pressing of punching press deforming position and the battery caudal components forms the one encapsulating structure.
Certainly, also the mode that can punch on the electric core protective unit that Metal Flake material is made is connected with the battery caudal components with the battery head piece, referring to Figure 20.
Embodiment 4
Referring to Figure 21~23, the battery head piece includes battery head configuration parts 20, union piece 21 and safety protective circuit plate 22 in the present embodiment.The battery caudal components is made of battery afterbody profile parts 30 and afterbody connector 31.
For the ease of connecting, battery head configuration parts and battery afterbody profile parts form frame body 5 by brace, above-mentioned union piece and afterbody connector are made by metal material, and union piece and afterbody connector are I-shaped support body, and support body thickness and cell thickness are roughly the same.When encapsulation connects, can adopt earlier and mould Baogang's form and make battery head configuration parts be connected, be connected in the frame body battery head configuration parts by the safety protective circuit integrated circuit board then with union piece.Can also adopt and mould the low indirect connected mode of Baogang's cost relatively, just earlier union piece and safety protective circuit plate be welded together, then the safety protective circuit integrated circuit board is contained in the battery head configuration parts.
Equally, battery afterbody profile parts adopt and to mould Baogang's mode metal matter afterbody connector is linked together.
Safety protective circuit plate in the present embodiment is L shaped plates; just the battery protecting plate of two routines is connected by a switching piece and forms a L shaped safety protective circuit plate; can be transferred to the positive and negative lug of the electric core head of routine on the electric core side length direction by L shaped safety protective circuit plate; make the battery output terminal after the encapsulation draw at last, can satisfy the demand of different batteries of mobile phone from the battery side.
Include metal union piece and afterbody connector in the present embodiment in battery head piece and the battery caudal components, when electric core protective unit is connected with it, can adopt metal fusion joining process welding manner that both are connected as one.

Claims (10)

1, a kind of encapsulating structure of polymer battery, include electric core unit, electricity core protective unit, battery head piece and battery caudal components, the electricity core unit is fixed in the electric core protective unit, it is characterized in that: described electric core protective unit is by sheet metal, or sheet metal and plastic sheet connect the box-like body that opening is left at the two ends of making, the battery head assembly carries out circuit turn-on with electric core unit and is connected, the battery head assembly, the battery rail unit carries out part with electric core protective unit respectively and is connected and fixed, electric core protective unit and battery head assembly, the battery rail unit forms the battery profile.
2, the encapsulating structure of polymer battery according to claim 1 is characterized in that:
Described battery head piece includes battery head configuration parts and safety protective circuit plate, and the safety protective circuit plate is lengthy motion picture shape or L shaped plates, and the safety protective circuit plate is connected with battery head configuration parts by clamping or bonding mode,
Described battery caudal components is made up of battery afterbody profile parts.
3, the encapsulating structure of polymer battery according to claim 2, it is characterized in that: described battery head configuration parts, battery afterbody profile parts are made by plastic resin, or constitute by the assembly of plastic resin and metal material, battery head configuration parts and battery afterbody profile component surface are respectively equipped with to the location hole inside battery encapsulating or that be used for the production and assembly frock clamp.
4, the encapsulating structure of polymer battery according to claim 3, it is characterized in that: to be 0.02MM connect the two ends of making to the sheet metal of 0.30MM or sheet metal and plastic sheet to described electric core protective unit leaves the box-like body of opening and constitute by thickness, between the upper end open of box-like body and the battery head configuration parts and the lower ending opening of box-like body be connected by plastic deformation mode or strain mode respectively with battery afterbody profile parts.
5, the encapsulating structure of polymer battery according to claim 1 is characterized in that:
Described battery head piece includes battery head configuration parts, union piece and safety protective circuit plate; the safety protective circuit plate is lengthy motion picture shape or L shaped plates; the safety protective circuit plate is arranged in the middle of battery head configuration parts and the union piece by clamping or bonding mode
Described battery caudal components is made up of the coupled afterbody connector of battery afterbody profile parts.
6, the encapsulating structure of polymer battery according to claim 5 is characterized in that: union piece that described metal material is made and afterbody connector are I-shaped support body, and support body thickness and cell thickness are roughly the same.
7, the encapsulating structure of polymer battery according to claim 6, it is characterized in that: between described union piece and the battery head configuration parts, and adopt respectively between afterbody connector and the battery afterbody profile parts and mould Baogang or welding or snap fit and be connected.
8, the encapsulating structure of polymer battery according to claim 7, it is characterized in that: described electric core protective unit is made of the thickness box-like body that to be 0.02MM leave opening to the matched made two ends of the sheet metal of 0.30MM or sheet metal and plastic sheet
Between the upper end open of box-like body and the battery head piece, and be connected by metal welding or flow of metal mode between the lower ending opening of box-like body and the battery caudal components.
9, the encapsulating structure of polymer battery according to claim 1, it is characterized in that: described battery head piece and battery caudal components are formed the square shape frame body by brace, the electricity core unit is arranged within the frame body, and to be 0.02MM connect the two ends of making to the sheet metal of 0.30MM or sheet metal and plastic sheet leaves the electric core protective unit of box-like body of opening and be connected outside the frame body by thickness.
10, according to the encapsulating structure of each described polymer battery of claim 1~9, it is characterized in that: be equipped with the support of the stressed parts of conduct that match with battery head configuration parts or battery afterbody profile parts between described electric core and the electric core protective unit, or between electric core and electric core protective unit, fill the electric core shaping parts that form by encapsulating.
CNU200820047076XU 2008-04-27 2008-04-27 Polymer battery packaging structure Expired - Fee Related CN201262970Y (en)

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Application Number Priority Date Filing Date Title
CNU200820047076XU CN201262970Y (en) 2008-04-27 2008-04-27 Polymer battery packaging structure

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101783417A (en) * 2010-03-05 2010-07-21 深圳市睿德电子实业有限公司 Low-pressure injection molding encapsulation method of polymer battery and low-pressure injection molding polymer battery
CN104550507A (en) * 2015-01-20 2015-04-29 东莞市广正模具塑胶有限公司 Method for connecting steel sheet and die casting

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101783417A (en) * 2010-03-05 2010-07-21 深圳市睿德电子实业有限公司 Low-pressure injection molding encapsulation method of polymer battery and low-pressure injection molding polymer battery
CN104550507A (en) * 2015-01-20 2015-04-29 东莞市广正模具塑胶有限公司 Method for connecting steel sheet and die casting

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GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20090624

Termination date: 20160427