Secondary battery and method for manufacturing the same
11245160 · 2022-02-08
Assignee
Inventors
Cpc classification
Y02E60/10
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
Y02P70/50
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
H01M10/0413
ELECTRICITY
H01M10/0463
ELECTRICITY
H01M10/0436
ELECTRICITY
H01M10/0468
ELECTRICITY
International classification
Abstract
A secondary battery and a method for manufacturing the same are provided. An electrode assembly accommodated in the secondary battery having various shapes is manufactured. In particular, a method for manufacturing a secondary battery includes an electrode stack preparation step of preparing an electrode stack which includes a first unit cell having a first area and a second unit cell having a second area that is less than the first area, and which has a structure in which the second unit cell is disposed on one surface of the first unit cell. The method further includes a curved surface formation step of pressing at least a part of an independent portion, which does not overlap the second unit cell, of the first unit cell to form a curved surface on the at least the part of the independent portion.
Claims
1. A method for manufacturing a secondary battery, the method comprising: an electrode stack preparation step of preparing an electrode stack which comprises a first unit cell having a first area and a second unit cell having a second area that is less than the first area, wherein the electrode stack has a structure in which the second unit cell is disposed on one surface of the first unit cell, and wherein the first unit cell and the second unit cell are flat; and after the electrode stack preparation step, a curved surface formation step of pressing at least a part of an independent portion, which does not overlap the second unit cell, of the first unit cell to manufacture an electrode assembly in which a curved surface is formed on the at least the part of the independent portion.
2. The method of claim 1, further comprising an accommodation step of accommodating the electrode assembly in a pouch-type exterior having an internal space that corresponds to a shape of the electrode assembly having the curved surface.
3. The method of claim 1, wherein the electrode stack preparation step comprises: manufacturing the first unit cell having the first area by stacking a plurality of first sub cells after manufacturing the plurality of first sub cells, each of which is manufactured by stacking an electrode and a separator; and manufacturing the second unit cell having the second area by stacking a plurality of second sub cells after manufacturing the plurality of second sub cells, each of which is manufactured by stacking the electrode and the separator.
4. The method of claim 1, wherein the electrode stack preparation step comprises: manufacturing the first unit cell comprising a first sub cell having a structure in which a first separation film is folded after an electrode and a separator are disposed on the first separation film; and manufacturing the second unit cell comprising a second sub cell having a structure in which a second separation film is folded after the electrode and the separator are disposed on the second separation film.
5. The method of claim 3, wherein each of the first sub cells and the second sub cells is a bi-cell.
6. The method of claim 4, wherein each of the first sub cell and the second sub cell is a bi-cell.
7. A method for manufacturing a secondary battery, the method comprising: an electrode stack preparation step of preparing an electrode stack which comprises a first unit cell having a first area and a second unit cell having a second area that is less than first area, wherein the electrode stack has a structure in which the second unit cell is disposed on one surface of the first unit cell; an accommodation step of accommodating the electrode stack in a pouch-type exterior having an internal space that corresponds to a shape of the electrode stack; and a curved surface formation step of pressing at least a part of an independent portion of the first unit cell, which does not overlap the second unit cell, on an outer surface of the pouch-type exterior within which the electrode stack is accommodated.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
MODE FOR CARRYING OUT THE INVENTION
(5) Hereinafter, a method for manufacturing an electrode assembly according to an embodiment of the present invention will be described with reference to the accompanying drawings.
(6) Method for Manufacturing Electrode Assembly
(7)
(8) A method for manufacturing an electrode assembly according to an embodiment of the present invention may include a step of manufacturing a first unit cell having a first area and having a structure in which an electrode and a separator are alternately disposed, and a step of manufacturing a second unit cell having a second area and having a structure in which an electrode and a separator are alternately disposed. In particular, the second area may be less than the first area, and each of the electrode and the separator may have a flat plate shape.
(9) In this specification, that the first cell has the first area may mean that the first unit cell has an area that correspond to the first area when viewed from an upper or lower side of the first unit cell while the electrode and the separator that constitute the first unit cell are vertically stacked.
(10) Additionally, the plate-shaped electrode and the plate-shaped separator, which constitute the second unit cell, may have areas different from each other. Thus, in this specification, that the second cell has the second area may mean that the second unit cell has an area that corresponds to the second area when viewed from an upper or lower side of the second unit cell while the electrode and the separator that constitute the second unit cell are vertically stacked.
(11) Further, as illustrated in
(12) As described above, since the stepped portion is formed on the electrode stack 100, a surface, which faces the second unit cell 120, among surfaces of the first unit cell 110 may be divided into a portion that overlaps the second unit cell 120 and a portion that does not overlap the second unit cell 120. In this specification, the portion that does not overlap the second unit cell 120, of the surface of the first unit cell 110 facing the second unit cell 120 is referred to as an ‘independent portion’. Although there are two independent portions in the electrode stack 100 of
(13) Thus, the method for manufacturing the electrode assembly according to an embodiment of the present invention may include a curved surface formation step of pressing at least a part of the independent portion R that does not overlap the second unit cell 120, of the first unit cell 110 to form a curved surface C (see
(14) As illustrated in
(15) As illustrated in
(16) The first unit cell and the second unit cell according to the present invention may have various structures. For example, a sub cell having a structure in which the electrode and the separator are alternately stacked may be manufactured first, and subsequently, the sub cells may be stacked to manufacture the first unit cell and the second unit cell.
(17)
(18) As illustrated in
(19) Based on the above description, in the method for manufacturing the electrode assembly according to an embodiment of the present invention, the electrode stack preparation step may include a process of manufacturing a first unit cell having a first area by stacking a plurality of first sub cells after manufacturing the plurality of first sub cells, each of which is manufactured by alternately stacking an electrode and a separator. Similarly, the electrode stack preparation step may include a process of manufacturing a second unit cell having a second area by stacking a plurality of second sub cells after manufacturing the plurality of second sub cells, each of which is manufactured by alternately stacking an electrode and a separator.
(20) As illustrated in
(21) Based on the above description, in the method for manufacturing the electrode assembly according to an embodiment of the present invention, the electrode stack preparation step may include a process of manufacturing a first unit cell including the first sub cell having the structure in which the first separation film is folded after the electrode and the separator are disposed on the first separation film. Similarly, the electrode stack preparation step may include a process of manufacturing a second unit cell including the second sub cell having the structure in which the second separation film is folded after the electrode and the separator are disposed on the second separation film.
(22) Hereinafter, the electrode assembly according to an embodiment of the present invention will be described based on the accompanying drawings and the above-described contents.
(23) Electrode Assembly
(24) As illustrated in
(25) As described above, each of the first unit cell and the second unit cell may include a plurality of sub cells 130a, each of which has a structure in which an electrode and a separator are alternately stacked, as illustrated in
(26) On the other hand, each of the first unit cell and the second unit cell may include a sub cell 130b having a structure in which a first separation film is folded after stacking an electrode and a separator on a first separation film and a second separation film as illustrated in
(27) Secondary Battery and Method for Manufacturing Secondary Battery
(28) According to an embodiment of the present invention, a step of accommodating the electrode assembly based on the above description into a pouch-type exterior may be further performed.
(29) In other words, a method for manufacturing a secondary battery according to an embodiment of the present invention may include an electrode stack preparation step of preparing an electrode stack which includes a first unit cell having a first area and a second unit cell having a second area that is less than the first area, and which has a structure in which the second unit cell is disposed on one surface of the first unit cell, a curved surface formation step of pressing at least a part of an independent portion, which does not overlap the second unit cell, of the first unit cell to manufacture an electrode assembly in which a curved surface is formed on at least a part of the independent portion, and an accommodation step of accommodating the electrode assembly in a pouch-type exterior having an internal space that corresponds to a shape of the electrode assembly having the curved surface.
(30) Thus, the secondary battery according to an embodiment of the present invention includes the first unit cell having the first area, the second unit cell having the second area that is less than the first area and disposed on the one surface of the first unit cell, and the pouch-type exterior that accommodates the first unit cell and the second unit cell and has the internal space corresponding to the shape of each of the first unit cell and the second unit cell. The curved surface may be formed on at least a part of the independent portion, which does not overlap the second unit cell, of the first unit cell.
(31) However, the chronological order of the curved surface formation step and the accommodation step may be changed. In other words, the step of accommodating the electrode assembly (or the electrode stack) in the pouch-type exterior may be performed first, and subsequently, the curved surface formation step may be performed.
(32) Accordingly, a method for manufacturing a secondary battery according to another embodiment of the present invention may include an electrode stack preparation step of preparing an electrode stack which includes a first unit cell having a first area and a second unit cell having a second area that is less than the first area, and which has a structure in which the second unit cell is disposed on one surface of the first unit cell, an accommodation step of accommodating the electrode stack in a pouch-type exterior having an internal space that corresponds to a shape of the electrode stack, and a curved surface formation step of pressing at least a part of an independent portion of the first unit cell, which does not overlap the second unit cell, on an outer surface of the pouch-type exterior in which the electrode stack is accommodated.
(33) While the embodiments of the present invention have been described with reference to the specific embodiments, it will be apparent to those skilled in the art that various changes and modifications may be made without departing from the spirit and scope of the invention as defined in the following claims.