This application claims priority to and benefits of Chinese Patent Application Serial No. 201811376277.9, filed with China National Intellectual Property Administration on Nov. 19, 2018, the entire content of which is incorporated herein by reference.
The present application relates to a field of electrochemical devices, and more particularly to an electrode assembly and a battery having the same.
At present, a conventional battery structure generally uses an adhesive layer to connect a cell with a package casing to prevent the cell from sliding relative to the package casing during the drop so as to prevent head and tail portions of the cell from colliding, which may otherwise result in deformation and hence a short circuit. A pull force generated during the drop acts on a single-sided anode area or on an uncoated aluminum foil of an outer layer of the cell, which will probably tear the aluminum foil. Additionally, in order to prevent the separator from folding during the drop, tapes are applied around the head and tail portions of the cell. But the tapes around the head and tail portions will also pull the aluminum foil, and hence have a high probability of tearing the aluminum foil. Many particles and burrs are produced after the aluminum foil is torn, and these particles and burrs probably pierce the separator, thereby leading to a short circuit between the aluminum foil and a copper foil or between a cathode and the copper foil, and eventually causing the cell to heat up and fail.
The present application aims to propose an electrode assembly and a battery including the electrode assembly, and the battery has an advantage of excellent safety performance.
The electrode assembly according to embodiments of the present application includes a first electrode sheet and a second electrode sheet spaced apart from each other. A separator is provided between the first electrode sheet and the second electrode sheet. The first electrode sheet and the second electrode sheet are wound or stacked to form the electrode assembly. The electrode assembly includes: a first end portion provided with a tab, a second end portion arranged opposite to the first end portion, a first main plane, a second main plane arranged opposite to the first main plane, and a binding layer. The binding layer includes a first area arranged at the first end portion, and a second area arranged at the first main plane, in which the first area is connected to the second area.
For the battery according to the present application, by providing the first area and the second area and connecting the first area with the second area, the adhesion of the second area to the battery is transferred to the first area during the drop of the battery. Therefore, the tear of the electrode assembly due to the drop, which may cause the failure of the battery, is avoided.
In some embodiments, a part of the first area is arranged at the first electrode sheet.
In some embodiments, the first area extends from the first electrode sheet.
In some embodiments, a part of the first area is arranged at the separator.
In some embodiments, the first area extends from the separator.
In some embodiments, the first area is provided with a through hole, and the tab passes through the through hole.
In some embodiments, the first area and the second area partially overlap.
In some embodiments, the first area includes a first binding unit and a second binding unit, in which the first binding unit and the second binding unit are respectively connected to the second area.
In some embodiments, a first surface of the first area close to the electrode assembly is provided with a first adhesive layer.
In some embodiments, a first surface of the second area close to the electrode assembly is provided with a second adhesive layer.
In some embodiments, the binding layer further includes a third area arranged at the second end portion and connected to the second area.
In some embodiments, the binding layer further includes a fourth area arranged at the second main plane and connected to the first area.
In some embodiments, the fourth area is connected to the third area.
In some embodiments, a first surface of the fourth area is provided with a third adhesive layer; and a second surface of the fourth area is provided with a fourth adhesive layer, wherein the first surface of the fourth area faces the electrode assembly, and the second surface of the fourth area faces away from the electrode assembly.
In some embodiments, the third adhesive layer has an adhesion force different from an adhesion force of the fourth adhesive layer.
The present application further discloses a battery that includes an electrode assembly described above and a casing accommodating the electrode assembly.
These and/or additional aspects and advantages of embodiments of the present application will become apparent and more readily appreciated from the following descriptions made with reference to the drawings, in which:
Embodiments of the present application will be described in detail and examples of the embodiments will be illustrated in the drawings, where same or similar reference numerals are used to indicate same or similar elements or elements with same or similar functions. The embodiments described herein with reference to drawings are explanatory, and only used to generally understand the present application. The embodiments shall not be construed to limit the present application.
The electrode assemblies and batteries according to embodiments of the present application will be described with reference to
By providing the first area 131 and the second area 132 and connecting the first area 131 with the second area 132, adhesion of the second area 132 to the battery is transferred to the first area 131 during the drop of the battery, to avoid tearing the electrode assembly 100 due to the drop, which may otherwise cause failure of the battery.
According to another embodiment of the present application, a part of the first area 131 may also be arranged at the separator or the first electrode sheet. Therefore an external force received during the use of the electrode assembly can be partially transferred to an interior of the electrode assembly 100 through the first area 131 which is connected to the second area 132. Optionally, the first area 131 may extend from the separator or the first electrode sheet, such that an external force received by the first area 131 can also be partially transferred to the interior of the electrode assembly 100.
According to an embodiment of the present application, a first adhesive layer can be provided to a first surface of the first area 131 close to the electrode assembly 100, such that the first area 131 adheres to the electrode assembly 100. By providing a first surface of the second area 132 close to the electrode assembly 100 with a second adhesive layer, the second area 132 can adhere to the electrode assembly 100. The first area 131 and the second area 132 can be connected by means of the first adhesive layer or the second adhesive layer, as well. Certainly, according to another embodiment of the present application, the second area 132 may be an extension of the first area 131 on the first main plane 116 of the electrode assembly 100.
Referring to
In addition, the electrode assembly according to an embodiment of the present application can further include a tab 120 provided to the first end portion 114. The tab 120 can include a first tab 121 and a second tab 122, and the first tab 121 and the second tab 122 are both located at one side of the first end portion 114.
Referring to
According to another embodiment of the present application, in the a-a′ direction, the width of the first area 131 may be greater than the width of the second area 132, and the width of the third area 133 may be greater than the width of the second area 132.
According to an embodiment of the present application, a third adhesive layer can be provided to a first surface of the fourth area 134 close to the electrode assembly 100, such that the fourth area 134 adheres to the electrode assembly 100. A fourth adhesive layer can be provided to a second surface of the fourth area 134 away from the electrode assembly 100, and the fourth adhesive layer can be used to make the electrode assembly 100 adhere to a casing that accommodates the electrode assembly 100. Certainly, according to another embodiment of the present application, the fourth area 134 may be an extension of the first area 131 on the second main plane 117 of the electrode assembly 100; the fourth area 134 may be an extension of the third area 133 on the second main plane 117 of the electrode assembly 100.
Referring to
Referring to
Reference throughout this specification to “an embodiment,” “some embodiments,” “an exemplary embodiment,” “an example,” “a specific example,” or “some examples,” means that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the present application. Thus, the appearances of the above phrases throughout this specification do not necessarily refer to the same embodiment or example. Furthermore, the particular features, structures, materials, or characteristics may be combined in any suitable manner in one or more embodiments or examples.
Although embodiments of the present application have been shown and described, it would be appreciated by those skilled in the art that various changes, modifications, alternatives and variations can be made to the embodiments of the present application without departing from the principle and purpose of the present application. The scope of the present application is defined by the claims or the like.
Number | Date | Country | Kind |
---|---|---|---|
201811376277.9 | Nov 2018 | CN | national |