Apparatus and Method for Shaping Pouch Film for Secondary Batteries
20220367945 · 2022-11-17
Assignee
Inventors
- Jeong Woo Hong (Daejeon, KR)
- Sang Wook Kim (Daejeon, KR)
- Sung Chul Park (Daejeon, KR)
- Dong Hyeuk Park (Daejeon, KR)
Cpc classification
B21D22/022
PERFORMING OPERATIONS; TRANSPORTING
B29C51/02
PERFORMING OPERATIONS; TRANSPORTING
B29C2035/0283
PERFORMING OPERATIONS; TRANSPORTING
B29L2031/3468
PERFORMING OPERATIONS; TRANSPORTING
B29L2031/712
PERFORMING OPERATIONS; TRANSPORTING
B29C51/082
PERFORMING OPERATIONS; TRANSPORTING
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
International classification
B21D22/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Disclosed are a pouch film shaping apparatus including a preheating lamp configured to preheat a metal barrier layer of a pouch film in order to increase stretching force of the pouch film and a pouch film shaping method.
Claims
1. A pouch film shaping apparatus comprising: a supply unit configured to supply a pouch film comprising a metal barrier layer; a preheating lamp configured to preheat the metal barrier layer of the pouch film; and a shaping unit configured to shape the pouch film.
2. The pouch film shaping apparatus according to claim 1, wherein the preheating lamp is configured to use mid-infrared light.
3. The pouch film shaping apparatus according to claim 2, wherein the mid-infrared light has a wavelength range of 2 μm to 4 μm.
4. The pouch film shaping apparatus according to claim 1, wherein the metal barrier layer is made of aluminum.
5. The pouch film shaping apparatus according to claim 1, wherein the preheating lamp is configured to preheat the pouch film to 40° C. to 70° C.
6. The pouch film shaping apparatus according to claim 1, wherein the preheating lamp is configured to preheat a pouch cup formation portion of the pouch film.
7. The pouch film shaping apparatus according to claim 1, wherein the preheating lamp is located before the shaping unit in an advancing direction of the pouch film shaping apparatus.
8. A pouch-shaped secondary battery comprising a pouch film shaped by the pouch film shaping apparatus according to claim 1.
9. A battery pack comprising the pouch-shaped secondary battery according to claim 8.
10. A pouch film shaping method comprising: supplying a pouch film to a pouch film shaping apparatus; preheating a pouch cup formation portion of the supplied pouch film; and shaping the preheated pouch cup formation portion.
11. The pouch film shaping method according to claim 10, wherein the preheating is performed by a mid-infrared lamp.
12. The pouch film shaping method according to claim 11, wherein, during the preheating, the mid-infrared lamp uses mid-infrared light having a wavelength range of 2 μm to 4 μm.
13. The pouch film shaping method according to claim 10, wherein, during the preheating, the pouch cup formation portion is preheated to 40° C. to 70° C.
14. The pouch film shaping method according to claim 10, wherein the pouch film comprises a metal barrier layer, and during the preheating, the metal barrier layer is preheated.
15. The pouch film shaping method according to claim 14, wherein the metal barrier layer is made of aluminum.
Description
DESCRIPTION OF DRAWINGS
[0036]
[0037]
[0038]
[0039]
[0040]
[0041]
BEST MODE
[0042] 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.
[0043] In the present application, it should be understood that the terms “comprises,” “has,” “includes,” etc. specify the presence of stated features, numbers, steps, operations, elements, components, or combinations thereof, but do not preclude the presence or addition of one or more other features, numbers, steps, operations, elements, components, or combinations thereof.
[0044] 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 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.
[0045] Hereinafter, a pouch film shaping apparatus and method according to the present invention will be described in detail with reference to the accompanying drawings.
[0046]
[0047] In the pouch film shaping apparatus, as shown in
[0048] In general, a pouch film includes an outer coating layer, which constitutes the outermost part thereof, a metal barrier layer configured to prevent penetration of matter, and an inner sealant layer for sealing.
[0049] The outer coating layer serves to protect a battery from the outside, and therefore high tensile strength compared to the thickness thereof and weather resistance are required. The outer coating layer is mainly made of a polymer, such as oriented nylon film or PET. However, the present invention is not limited thereto.
[0050] The metal barrier layer serves to prevent air or moisture from being introduced into the battery. The material for the metal barrier layer is not particularly restricted as long as the material exhibits high shapeability and ductility. For example, the metal barrier layer may be made of aluminum or an aluminum alloy.
[0051] The inner sealant layer serves to provide sealability as the result of being mutually thermally fused by heat and pressure that are applied in the state in which an electrode assembly is mounted therein, and is mainly made of cast polypropylene (CPP) film. An adhesive layer may be added between the outer coating layer and the metal barrier layer and/or between the metal barrier layer and the inner sealant layer. The adhesive layer serves to supplement low adhesive force between the layers located at opposite surfaces of the adhesive layer.
[0052] The supply unit 200 serves to supply a pouch film to the pouch film shaping apparatus. The supply unit 200 serves to supply the pouch film so as to be easily shaped, and needs not necessarily have the form shown in
[0053] The preheating lamp performs preheating in a mode in which light radiated from the lamp directly preheats the pouch film. The reason for this is that, in the case in which the pouch film is indirectly preheated, long time is required and efficiency is low.
[0054] The preheating lamp 500 rapidly and accurately preheats the metal barrier layer using mid-infrared light. The mid-infrared light may have a wavelength range of 2 μm to 4 μm, which is a wavelength range within which aluminum in the metal barrier layer is rapidly preheated while the outer coating layer of the pouch film is not damaged.
[0055] The pouch film is prepared so as to have a size of 200 mm×500 mm. Subsequently, the pouch film is preheated by the preheating lamp for 4 seconds until the temperature of the pouch film reaches 40° C. to 70° C. such that the preheated pouch film may be shaped by the shaping unit. In the case in which the pouch film is preheated to a temperature higher than 70° C., the outer coating layer of the pouch film may be damaged or the inner sealant layer of the pouch film may melt. In the case in which the preheating temperature is lower than 40° C., the metal barrier layer of the pouch film may not be heated, whereby desired stretching force may not be obtained. Also, in the case in which the pouch film is preheated for a time longer than 4 seconds using the preheating lamp, the pouch film may be damaged. In the case in which the pouch film is preheated for a time shorter than 1 second, the metal barrier layer of the pouch film may not be heated, whereby desired stretching force may not be obtained. The temperature of the pouch film is not limited to the temperature range defined above as long as the components of the pouch film are not deformed or damaged.
[0056] The preheating lamp may preheat only a portion of the pouch film, rather than the entirety of the pouch film.
[0057] The preheating lamp 500 may be located ahead of the shaping unit 600 in the advancing direction. The preheating lamp 500 may be located spaced apart from the shaping unit 600 by 20 mm to 40 cm. Since preheating is performed at a distance of 20 mm to 40 cm from the shaping unit in the advancing direction, the preheated pouch film may be directly provided to the shaping unit 600. In addition, since the pouch film is shaped in the state in which stretching force thereof is increased, breakage of the pouch film that may occur at the time of shaping may be prevented and a deeper reception unit may be formed.
[0058] This can be seen from the experimental results of Example 1, in which a metal barrier layer of a pouch film was preheated using mid-infrared light having a wavelength of 2 μm and then a reception unit was shaped, and Comparative Example 1, in which a reception unit was shaped without preheating a metal barrier layer of a pouch film.
EXPERIMENTAL EXAMPLE 1
[0059] In Example 1 and Comparative Example 1, pouch films, each including an outer coating layer made of PET having a thickness of 20 μm, a metal barrier layer made of aluminum having a thickness of 40 μm, and an inner sealant layer made of cast polypropylene film having a thickness of 20 μm, were tested.
[0060] Also, in Example 1 and Comparative Example 1, the shaping unit was constituted by a die and a punch, and pressing was performed using a weight of about 1.5 tons to shape two reception units.
[0061] The above process was performed 25 times to acquire crack occurrence probability, which is shown in Table 1.
TABLE-US-00001 TABLE 1 Shaping depth 5.775 7.0 8.0 (mm) Comparative 0 0 20% Example 1 Example 1 0 0 0
[0062] It can be seen from Table 1 above that, in the case in which the shaping depth is not large no crack occurs in both Example 1 and Comparative Example 1, but in the case in which shaping is performed up to 8.0 mm, cracks occur in Comparative Example 1.
[0063]
EXPERIMENTAL EXAMPLE 2
[0064] In Comparative Example 1 described above, Example 2, in which a pouch film was shaped after being heated up to 60° C. using mid-infrared light having a wavelength of 2 μm, and Example 3, in which a pouch film was shaped after being heated up to 80° C. using mid-infrared light having a wavelength of 2 μm, region-based aluminum residual thicknesses were measured.
[0065] In Example 2, Example 3, and Comparative Example 1, pouch films, each including an outer coating layer made of PET having a thickness of 20 μm, a metal barrier layer made of aluminum having a thickness of 40 μm, and an inner sealant layer made of cast polypropylene film having a thickness of 20 μm, were tested.
[0066] Also, in Example 2, Example 3, and Comparative Example 1, the shaping unit was constituted by a die and a punch, and pressing was performed using a weight of about 1.5 tons to shape two reception units.
[0067] In Example 2, Example 3, and Comparative Example 1, the thicknesses of a corner portion {circle around (1)} of the bottom surface of each reception unit, a side portion {circle around (2)} of the reception unit, and a contact point {circle around (3)} between a pouch wing and the reception unit, which are regions at which breakage mainly occurs, were measured.
[0068] It can be seen from
[0069] It can be seen from
[0070] Although the present invention has been described in detail, those skilled in the art will appreciate that the detailed description thereof discloses only preferred embodiments of the present invention and thus does not limit the scope of the present invention. Accordingly, those skilled in the art will appreciate that various changes and modifications are possible, without departing from the category and technical idea of the present invention, and it will be obvious that such changes and modifications fall within the scope of the appended claims.
DESCRIPTION OF REFERENCE NUMERALS
[0071] 100: Pouch film
[0072] 110: Pouch cup formation portion
[0073] 120: Local neck
[0074] 200: Supply unit
[0075] 300: Cutting unit
[0076] 400: Foreign matter removal unit
[0077] 500: Preheating lamp
[0078] 510: Preheating region
[0079] 600: Shaping unit
[0080] {circle around (1)}: Corner portion of bottom surface of reception unit
[0081] {circle around (2)}: Side portion of reception unit
[0082] {circle around (3)}: Contact point between pouch wing and reception unit
INDUSTRIAL APPLICABILITY
[0083] A pouch film shaping apparatus and method according to the present invention are capable of preheating a metal barrier layer in order to increase stretching force of a pouch film, whereby it is possible to reduce damage to and defects in the pouch film. Since the metal barrier layer is preheated to increase stretching force of the pouch film, it is possible to form a deeper reception unit than a conventional reception unit.
[0084] Since mid-infrared light is used, only a necessary region of the pouch film is rapidly and accurately preheated, whereby it is possible to increase stretching force of the pouch film and to reduce damage to the pouch film due to heat. In addition, since only the necessary region of the pouch film is rapidly and accurately preheated, processing time may not be lengthened, and energy consumption may also be reduced.
[0085] Furthermore, a mid-infrared light irradiation unit does not occupy a large space, whereby it is possible to prevent an increase in size of the pouch film shaping apparatus.
[0086] Since it is not necessary to use a thick pouch film in order to more deeply form a reception unit of the pouch film, it is possible to form a high-capacity, high-density pouch-shaped secondary battery.