Method of Manufacturing Pouch-Shaped Battery Case Having Venting Guide Portion Formed Therein and Pouch-Shaped Battery Case Manufactured by the Method
20220407171 ยท 2022-12-22
Assignee
Inventors
Cpc classification
H01M50/3425
ELECTRICITY
H01M10/0481
ELECTRICITY
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
H01M10/0436
ELECTRICITY
International classification
Abstract
The present invention relates to a pouch-shaped battery case manufacturing method including (a) locating a laminate sheet for pouch-shaped battery cases on a lower press die, (b) pressing the laminate sheet using an upper press die to form an electrode assembly receiving portion, (c) forming a venting guide portion in the bottom of the electrode assembly receiving portion, and (d) separating a pouch-shaped battery case having the electrode assembly receiving portion and the venting guide portion formed therein from the lower press die.
Claims
1. A method of manufacturing a pouch-shaped battery case, the method comprising: (a) locating a laminate sheet on a lower press die; (b) pressing the laminate sheet using an upper press die to form an electrode assembly receiving portion of the pouch-shaped battery case; (c) forming a venting guide portion in a bottom of the electrode assembly receiving portion; and (d) separating the pouch-shaped battery case having the electrode assembly receiving portion and the venting guide portion formed therein from the lower press die.
2. The method according to claim 1, wherein step (b) and step (c) are simultaneously performed, the upper press die is a first upper press die, a size of a lower surface of the first upper press die conforms to a size of the bottom of the electrode assembly receiving portion, a recess being formed in the lower surface of the first upper press die, and the lower press die is a first lower press die, a protrusion being formed on an upper surface of the first lower press die that is complementary in shape to the recess of the first upper press die.
3. The method according to claim 1, wherein step (b) and step (c) are sequentially performed, the upper press die is a first upper press die, and the lower press die is a first lower press die, during step (b), a second upper press die and a second lower press die are used, a size of a lower surface of each of the second upper press die and the second lower press die conforming to a size of the bottom of the electrode assembly receiving portion, and during step (c), the first upper press die is used, a size of a lower surface of the first upper press die conforms to the size of the bottom of the electrode assembly receiving portion, a recess being formed in the lower surface of the first upper press die, and the first lower press die is used, a protrusion being formed on an upper surface of the first lower press die that is complementary in shape to the recess of the first upper press die.
4. The method according to claim 2, wherein the recess is formed in a central portion of the first upper press die.
5. The method according to claim 2, wherein the protrusion is inserted into the recess, the recess and the protrusion are complimentary in size and shape to each other, and the shape of the protrusion is any one of a multilateral pyramid, a truncated multilateral pyramid, a cone, a truncated cone, or a hemisphere.
6. The method according to claim 5, wherein the protrusion comprises a plurality of protrusions concentrated on a central portion of the lower press die.
7. The method according to claim 1, wherein step (c) is performed a plurality of times, thereby reducing a thickness of a metal layer of the venting guide portion.
8. The method according to claim 7, wherein step (c) comprises contacting the laminate sheet with the upper press die a plurality of times.
9. A pouch-shaped battery case having an upper case and a lower case, each of the upper case and the lower case comprising an outer coating layer, a metal layer, and an inner adhesive layer, wherein at least one of the upper case and the lower case has an electrode assembly receiving portion formed therein, and the electrode assembly receiving portion has a venting guide portion formed therein.
10. The pouch-shaped battery case according to claim 9, wherein a first thickness of the metal layer within the venting guide portion is less than a second thickness of the metal layer at a bottom of the electrode assembly receiving portion where the venting guide portion is not formed.
11. The pouch-shaped battery case according to claim 9, wherein the venting guide portion is formed in a central portion of a bottom of the electrode assembly receiving portion.
12. The pouch-shaped battery case according to claim 9, wherein the venting guide portion is configured to rupture at a first venting pressure, and a case sealing portion at which the upper case and the lower case are sealed to one another by thermal fusion is configured to rupture at a second venting pressure, the first venting pressure being lower than the second venting pressure.
13. A pouch-shaped battery cell comprising the pouch-shaped battery case according to claim 9.
14. The method according to claim 3, wherein the recess is formed in a central portion of the first upper press die.
15. The method according to claim 3, wherein the protrusion is inserted into the recess, the recess and the protrusion are complimentary in size and shape to each other, and the shape of the protrusion is any one of a multilateral pyramid, a truncated multilateral pyramid, a cone, a truncated cone, or a hemisphere.
16. The method according to claim 15, wherein the protrusion comprises a plurality of protrusions concentrated on a central portion of the lower press die.
Description
DESCRIPTION OF DRAWINGS
[0028]
[0029]
[0030]
[0031]
BEST MODE
[0032] Now, preferred embodiments of the present invention will be described in detail with reference to the accompanying drawings such that the preferred embodiments of the present invention can be easily implemented by a person having ordinary skill in the art to which the present invention pertains. In describing the principle of operation of the preferred embodiments of the present invention in detail, however, a detailed description of known functions and configurations incorporated herein will be omitted when the same may obscure the subject matter of the present invention.
[0033] In addition, the same reference numbers will be used throughout the drawings to refer to parts that perform similar functions or operations. In the case in which one part is said to be connected to another part in the entire specification, not only may the one part be directly connected to the other part, but also, the one part may be indirectly connected to the other part via a further part. In addition, that a certain element is included does not mean that other elements are excluded, but means that such elements may be further included unless mentioned otherwise.
[0034] A description to embody elements through limitation or addition in this specification may be applied to all inventions, unless particularly restricted, and does not limit a specific invention.
[0035] Hereinafter, embodiments of the present invention will be described in detail with reference to the accompanying drawings.
[0036]
[0037] Referring to
[0038] The laminate sheet 110 for pouch-shaped battery cases is located on a first lower press die 121, and the laminate sheet 110 is pressed using a first upper press die 131 to form an electrode assembly receiving portion 112 and a venting guide portion 113.
[0039] The size of the lower surface of the first upper press die 131 corresponds to the size of the bottom of the electrode assembly receiving portion 112, and a recess 135 is formed in the lower surface of the first upper press die. A protrusion 125 is formed on the upper surface of the first lower press die 121 at the position corresponding to the recess 135 of the first upper press die 131.
[0040] The recess 135 of the first upper press die 131 is formed in a central portion of the lower surface of the first upper press die 131, and the protrusion 125 of the first lower press die 121 is formed on a central portion of the upper surface of the first lower press die 121.
[0041] In a pouch-shaped battery case 111 manufactured through the above process, therefore, the venting guide portion 113 is formed in a central portion of the bottom of the electrode assembly receiving portion 112.
[0042] In consideration of the fact that, when a battery case swells due to an increase in internal pressure of a lithium secondary battery, venting is generally performed at a portion on which pressure is concentrated, it is preferable that the venting guide portion be formed in the central portion of the electrode assembly receiving portion. Consequently, a plurality of protrusions 125 may be formed, and particularly the plurality of protrusions may be formed so as to be concentrated on the central portion of the lower press die.
[0043] In the present invention, the protrusions 125 of the lower press die are inserted into the recesses 135 of the upper press die, and the recesses 135 and the protrusions 125 correspond in size and shape to each other.
[0044] For example, each of the protrusions 125 may be formed in the shape of any one of a multilateral pyramid, a truncated multilateral pyramid, a cone, a truncated cone, and a hemisphere, and specifically may be formed in the shape of a hemisphere.
[0045] In the above process, (c) the step of forming the venting guide portion may be performed through a process of punching the laminate sheet 110 using the first upper press die 131, and the punching process may be repeatedly performed a plurality of times in order to reduce the thickness of the metal layer 102 of the laminate sheet 110 at the venting guide portion.
[0046] The pouch-shaped battery case 111 having the electrode assembly receiving portion and the venting guide portion formed therein as described above is separated from the first lower press die 121.
[0047] In the pouch-shaped battery case according to the present invention, as described above, the thickness of the metal layer at the venting guide portion is formed so as to be less than the thickness of the bottom of the electrode assembly receiving portion excluding the venting guide portion. When the internal pressure of the lithium secondary battery increases, therefore, the pressure may be concentrated on the venting guide portion, whereby the venting guide portion is rapidly ruptured to discharge gas.
[0048] Before explosion occurs due to an increase in the internal pressure of the lithium secondary battery, therefore, the venting guide portion is ruptured, whereby it is possible to secure safety of the lithium secondary battery.
[0049] Also, in the case in which the electrode assembly receiving portion and the venting guide portion are simultaneously formed, as in the pouch-shaped battery case manufacturing method shown in
[0050]
[0051] In the pouch-shaped battery case manufacturing method of
[0052] Specifically, referring to
[0053] Subsequently, a pouch-shaped battery case having the electrode assembly receiving portion 212 formed therein is located on a first lower press die 221, and the pouch-shaped battery case 211 is pressed using a first upper press die 231 having recesses 235 formed therein to form a venting guide portion 213.
[0054] The venting guide portion forming method is identical to what was described with reference to
[0055] In addition, the first lower press die 221 and the first upper press die 231 are identical in structure, position, and shape of recesses and protrusions to the first lower press die 121 and the first upper press die 131 described with reference to
[0056] In the case in which the electrode assembly receiving portion and the venting guide portion are sequentially formed, as in the pouch-shaped battery case manufacturing method shown in
[0057]
[0058] Referring to
[0059] Consequently, a first lower press die 321 shown in
[0060] In addition, a pouch-shaped battery case 311 has a structure in which a venting guide portion 315 and a venting guide portion 314 are formed in an upper case 311a and a lower case 311b, respectively. The protrusions 325 are formed on the parts of the first lower press die 321 at which a preliminary upper case portion and a preliminary lower case portion of a laminate sheet are disposed, and two first upper press dies 331 are moved downwards to positions corresponding to the protrusions to punch the laminate sheet.
[0061]
[0062] Referring to
[0063] The thickness of a metal layer of a laminate sheet at the venting guide portion is formed so as to be less than the thickness of the portion of the bottom of the electrode assembly receiving portion excluding the venting guide portion. When the battery case swells, therefore, the venting guide portion, the physical strength of which is low, is ruptured first.
[0064] In addition, the venting pressure of the venting guide portion 113 is lower than the venting pressure of an upper case and lower case sealing portion, which is sealed by thermal fusion. When the internal pressure of the pouch-shaped battery cell increases, therefore, the venting guide portion is ruptured first before the upper case and lower case sealing portion is vented.
[0065] In the pouch-shaped battery case manufacturing method according to the present invention, as described above, the venting guide portion is formed as a structure for securing safety of a pouch-shaped battery cell, and the process of forming the venting guide portion is included in the process of forming the pouch-shaped battery case. Consequently, it is possible to improve safety of the pouch-shaped battery cell without increasing the steps of manufacturing the pouch-shaped battery case.
[0066] Those skilled in the art to which the present invention pertains will appreciate that various applications and modifications are possible within the category of the present invention based on the above description.
DESCRIPTION OF REFERENCE SYMBOLS
[0067] 100: Pouch-shaped battery cell [0068] 101: Outer coating layer [0069] 102: Metal layer [0070] 103: Inner adhesive layer [0071] 110, 210, 310: Laminate sheets [0072] 111, 211, 311: Pouch-shaped battery cases [0073] 112, 212: Electrode assembly receiving portions [0074] 112a: Bottom of electrode assembly receiving portion [0075] 113, 213, 314, 315: Venting guide portions [0076] 121, 221, 321: First lower press dies [0077] 125, 225, 325: Protrusions [0078] 131, 231, 331: First upper press dies [0079] 135, 235, 335: Recesses [0080] 222: Second lower press die [0081] 232: Second upper press die [0082] 311a: Upper case [0083] 311b: Lower case
INDUSTRIAL APPLICABILITY
[0084] As is apparent from the above description, in a pouch-shaped battery case manufacturing method according to the present invention, a venting guide portion is formed while a battery case is formed, whereby it is possible to simplify a manufacturing process.
[0085] Also, a pouch-shaped battery case according to the present invention is configured such that, when the pouch-shaped battery case swells due to an increase in internal pressure thereof, a venting guide portion is ruptured, whereby it is possible to prevent explosion of a pouch-shaped secondary battery.