The present application claims priority to Chinese Patent Application No. 201610399363.6, filed on Jun. 7, 2016, the content of which is incorporated herein by reference in its entirety.
The present application relates to the field of energy storage devices and, particularly, relates to a top cover of a power battery and a power battery.
In order to solve the overcharging problem of EV batteries, the generally adopted solution in the art is to cut off a main circuit of the battery before the battery exploded or catch fire, so as to prevent the battery from being charged continuously and guarantee safety of the battery.
At present, as for the square shell battery, a current interrupt device (Current Interrupt Device, CID) is generally adopted, i.e., a deformable plate and a conductive plate having integrated a CID are provided in the main circuit of the positive electrode. The conductive plate is coupled to the electrode tab of the bare cell and the deformable plate, and the deformable plate is welded with the positive terminal or the top cover plate. When the battery is overcharged, the deformable plate is inversely deformed due to excessive internal pressure, so as to disconnect the deformable plate from the conductive plate.
As there are increasing demands on the energy density of the power battery, demands on utilization rate of the internal space of the battery are increasing accordingly.
In view of the above, it is necessary to provide a structure which occupies as little internal space of the battery as possible.
The present application provides a power batter top cover and a power battery, so as to solve the above problem.
A first aspect of the present application provides a top cover for a power battery, including a top cover plate, a first electrode unit and a second electrode unit,
wherein the first electrode unit includes a connecting plate, a deformable plate, an insulating piece and a current interrupt plate,
an assembling hole is formed in the top cover plate, the current interrupt plate is in direct contact with the top cover plate,
the connecting plate is insulated from the top cover plate through the insulating piece and is formed with an accommodating chamber, the accommodating chamber faces to the assembling hole,
the deformable plate is attached to the connecting plate and covers the accommodating chamber, and the deformable plate is electrically connected with the current interrupt plate,
the second electrode unit is electrically insulated from the top cover plate, and the deformable plate is configured to uncouple from the current interrupt plate when an internal pressure of the power battery goes beyond a reference pressure.
Preferably, the current interrupt plate seals the assembling hole; or
the current interrupt plate and the deformable plate seal the assembling hole.
Preferably, the deformable plate is in direct contact with a bottom edge of the accommodating chamber.
Preferably, a portion of the accommodating chamber away from the assembling hole is closed, and the deformable plate seals the accommodating chamber.
Preferably, a portion of the accommodating chamber away from the assembling hole is formed with an opening.
Preferably, a groove is formed at a bottom edge of the accommodating chamber, and an edge of the deformable plate is inserted into the groove.
Preferably, the deformable plate includes a connecting head, a deformable portion and an annular connecting portion,
the deformable portion is shaped into a circular sheet, the connecting head protrudes from a bottom surface of the deformable portion, the annular connecting portion surrounds an outer edge of the deformable portion,
the connecting head is connected to the current interrupt plate, and the annular connecting portion is inserted into the groove.
Preferably, the deformable plate and the connecting plate are integrated as a whole.
Preferably, the opening is covered by a protection member.
Preferably, the current interrupt plate and the top cover plate are integrated as a whole.
Preferably, the insulating piece is riveted with the top cover plate.
A second aspect of the present application provides a power battery including the power battery top cover.
The technical solutions provided by the present application can achieve the following beneficial effects:
In the power battery provided by the present application, the current interrupt plate is arranged on the top cover plate and the deformable plate is arranged on the connecting plate, so that the internal space of the battery occupied by the protection structure (e.g., the current interrupt plate and the deformable plate) is significantly reduced.
It should be understood that, the general description above and the detailed description below are merely exemplary, which shall not limit the present application.
10-top cover plate;
100-assembling hole;
102-riveting piece;
20-first electrode unit;
200-insulating piece
201-current interrupt plate;
202-deformable plate;
202
a-connecting head;
202
b-deformable portion;
202
c-annular connecting portion
203-connecting plate;
204-accommodating chamber;
205-protection member;
206-groove;
30-second electrode unit.
The drawings herein are incorporated into the description and constitute a part of the description, which show the embodiments of the present application and are used to explain principles of the present application together with the description.
The present application is described in further details as follows with reference to embodiments and drawings. The expressions “front”, “rear”, “left”, “right”, “top” and “bottom” all refer to the placement states of the power battery top cover and the power battery in the drawings.
The present application provides a power battery, and the power battery includes a power battery top cover and a cell, etc. As shown in
As the current interrupt plate 201 is arranged in the assembling hole 100 of the top cover plate 10, the current interrupt plate 201 will not occupy the internal space of the power battery. The cell has two electrodes, and the two electrodes are connected with the top cover plate 10 and the second electrode unit 30, respectively.
In order to guarantee normal working of the protection structure (e.g., the current interrupt plate 201 and the deformable plate 202), in the present embodiment, the connecting plate 203 is insulated from the top cover plate 10 through the insulating piece 200.
In the present embodiment, the insulating piece 200 can be fixed with the riveting piece 102 by various manners, for example, adhering, clamping, riveting, etc. The adhering manner refers to that an adhesive is used to adhere a surface of the insulating piece 200 with a surface of the riveting piece 102, however, such fixing manner may be not secure. The clamping manner needs to provide corresponding clamping pieces on the insulating piece 200 and the top cover plate 10, the structure of which is complicated. As compared with the above two connecting manners, the riveting manner is simpler and more secure. As shown in
In some embodiments of the present embodiment, in order to improve the connecting strength between the connecting plate 203 and the insulating piece 200, a clamping structure, e.g., clamping slot, clamping block, clamping hole, or buckle, etc., may be provided on the connecting plate 203 and the insulating piece 200, so that the connecting plate 203 can be connected with the insulating piece 200 by a clamping manner with higher connecting strength.
Air leakage influences the normal breaking of the current interrupt plate 201. In order to prevent from air leakage, in the present embodiment, it is better to seal the assembling hole 100 by the current interrupt plate 201, so that the air pressure can be sufficiently applied on the current interrupt plate 201. In some embodiments, in order to guarantee more secure connection between the current interrupt plate 201 and the deformable plate 202, an opening is defined in the current interrupt plate 201, a part of the deformable plate 202 is embedded in the opening, and in this case, the current interrupt plate 201 and the deformable plate 202 cooperatively seal the assembling hole 102.
Further, both the connecting plate 203 and the insulating piece 200 may be sealedly connected with the top cover plate 10, so that the air pressure will be applied on the current interrupt plate 201 and the deformable plate 202.
The current interrupt plate 201 includes a weak area, e.g., a notch, the deformable plate 202 will pull the current interrupt plate when the deformable plate 202 deforms, and then the weak area will break as it cannot bear the pulling force. In order to provide enough space for deformation of the deformable plate 202, the connecting plate 203 in the present embodiment is formed with an accommodating chamber 204. The accommodating chamber 204 faces to the assembling hole 100, that is to say, the deformable plate 202 is attached to the connecting plate 203 and covers the accommodating chamber 204, and the deformable plate 202 is electrically connected with and fixed on the connecting plate 203 and is electrically connected with the current interrupt plate 201. In the present embodiment, the deformable plate 202 is configured to uncouple from the current interrupt plate 201 when the internal pressure of the power battery goes beyond a reference pressure, i.e., the deformable plate 202 can deform and enter into the accommodating chamber 204 to be electrically disconnected with the current interrupt plate 201, and the accommodating chamber 204 can provide enough space to accommodate the deformable plate 202 after deforming.
Under such configuration, the protection structure constituted by the current interrupt plate 201 and the deformable plate 202 is basically located outside the power battery and does not occupy the internal space of the power battery, so that the internal space of the power battery occupied by the protection structure is significantly reduced and the energy density of the battery is effectively improved.
As shown in
In the present embodiment, the accommodating chamber 204 can be structured in various forms, for example, as shown in
In the present application, in order to facilitate manufacturing and assembling, the deformable plate 202 can be sealedly connected with the accommodating chamber 204 through various manners, two manners of which are illustrated in detail as follows.
As shown in
As shown in
The present application further provides a power battery, and the power battery adopts the power battery top cover of the present application, which can improve the energy density of the power battery.
The above are merely preferred embodiments of the present application, which are not used to limit the present application, and those skilled in the art may make various changes and modifications to the present application. All modifications, equivalent substitutions and improvements made within the spirit and principles of the present application shall fall into the protection scope of the present application.
Number | Date | Country | Kind |
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201610399363.6 | Jun 2016 | CN | national |