Battery cell extraction device

The battery cell extraction device addresses the issue of damage during removal by using a guide portion and elastic members to support the lower surface, ensuring safe and stable transfer of battery cells.

JP7835523B2Active Publication Date: 2026-03-25LG ENERGY SOLUTION LTD
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Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2023-09-08
Publication Date
2026-03-25

AI Technical Summary

Technical Problem

Existing battery cell extraction methods using vacuum suction pads risk damaging the upper separator membrane, electrode, or tab of heavy battery cells during removal from trays.

Method used

A battery cell extraction device with a guide portion and elastic members that support the lower surface of the battery cell, while a suction portion adsorbs the upper surface, using a control unit to manage the movement of these components to minimize damage.

Benefits of technology

The device stabilizes the battery cell during extraction by supporting both surfaces, preventing damage and ensuring safe transfer to subsequent processes.

✦ Generated by Eureka AI based on patent content.

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Abstract

A battery cell removal device according to one embodiment of the present invention includes an adsorption portion that is movable toward battery cells stored in a tray and is configured to adsorb a first surface of a battery cell, and a guide portion that is movable to support a second surface of the battery cell in the opposite direction to the first surface when the first surface of the battery cell is adsorbed by the adsorption portion, and includes a plurality of elastic members that are arranged to contact the second surface of the battery cell.
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Description

Technical Field

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[0001] The present invention relates to a battery cell extraction device for stably extracting a battery cell stored in a tray and transferring the extracted battery cell to a subsequent process, and a control method thereof.

[0002] This application claims the benefit of priority based on Korean Patent Application No. 10-2022-0115414 filed on September 14, 2022, and all the contents disclosed in the document of the Korean patent application are included as part of this specification.

Background Art

[0003] Secondary batteries can be classified into prismatic secondary batteries, cylindrical secondary batteries, pouch-type secondary batteries, etc.

[0004] In recent years, there has been a tendency to use many pouch-type secondary batteries, which have a simple structure and a large electrical capacity per unit volume.

[0005] A pouch-type secondary battery includes a battery cell, a pouch surrounding the battery cell, and an electrolyte accommodated in the pouch. The battery cell has a structure in which a plurality of electrodes (positive electrode, negative electrode) and a plurality of separator membranes are alternately laminated.

[0006] On the other hand, during the manufacturing process of a pouch-type secondary battery, when the manufacturing of the battery cell is completed, a pouch packaging process of inserting the battery cell into the pouch is performed.

[0007] At this time, the battery cell in which the separator membrane and the electrode are laminated is taken out from the tray by another extraction device while being stored in the tray, and then transferred to the pouch.

[0008] Conventionally, a battery cell stored in a tray is taken out by a vacuum suction pad. The battery cell is taken out of the tray with its upper surface adsorbed by the vacuum suction pad, and is transferred to an assembly process for pouch packaging while the first surface is continuously adsorbed by the vacuum suction pad.

[0009] On the other hand, if the battery cells being removed from the tray are heavy, a problem arises in which the weight of the battery cells can damage the upper separator membrane, upper electrode, or upper tab of the battery cell during the process of removing the battery cells using a vacuum suction pad.

[0010] Therefore, there is a real need to develop a battery cell removal device and control method that can minimize damage to battery cells when removing them from trays. [Overview of the Initiative] [Problems that the invention aims to solve]

[0011] The present invention aims to provide a battery cell removal device and a control method therefor that can minimize damage to battery cells when removing them from a tray. [Means for solving the problem]

[0012] To solve the above-mentioned problems, a battery cell removal device according to one embodiment of the present invention includes a guide portion which is movable toward a battery cell stored in a tray and is provided to adsorb a first surface of the battery cell, and a plurality of elastic members which are provided to be movable to support a second surface of the battery cell in the direction opposite to the first surface of the battery cell when the first surface of the battery cell is adsorbed by the adsorption portion, and which are arranged to contact the second surface of the battery cell.

[0013] Furthermore, the suction portion may be provided to adhere to at least two points on the first surface of the battery cell, and the guide portion may include a pair of elastic members arranged to support at least two points on the second surface of the battery cell.

[0014] Furthermore, the suction portion may include a pair of support frames that are movable toward or toward the tray, and suction pads provided at the lower ends of each support frame to adsorb the first surface of the battery cell.

[0015] Furthermore, the adsorption portion may be provided to adsorb an inner region located inside the edge region of the first surface of the battery cell, and the guide portion may be provided to support the edge region of the second surface of the battery cell.

[0016] Furthermore, the spacing between adjacent suction pads may be smaller than the spacing between a pair of elastic members.

[0017] The guide portion may further include a pair of guide frames provided to move toward the battery cell that has been attracted by the suction portion. Each guide frame may also have a bent portion formed thereon, which is bent at a predetermined angle so as to support the battery cell, and each bent portion may be provided with an elastic member.

[0018] Furthermore, the guide portion may be provided to move up and down toward the tray and to move toward the battery cell that has been attracted by the suction portion.

[0019] Furthermore, the guide portion may be configured so that the pair of guide frames move in a direction toward or away from each other.

[0020] Furthermore, the bent portion may be formed by bending it toward the battery cell so that it forms an angle of 90 degrees or less with respect to the guide frame.

[0021] As an example, the elastic member may include a spring.

[0022] Furthermore, the elastic member may include silicone or rubber.

[0023] In addition, the battery cell extraction device may further include a control unit for controlling the movement of the suction unit and the guide unit.

[0024] In addition, after moving the suction unit downward in a direction approaching the tray, the control unit may be configured to adsorb the first surface of the battery cell by the suction unit, and move the suction unit that has adsorbed the first surface of the battery cell upward in a direction away from the tray.

[0025] In addition, when the battery cell is detached from the tray by the suction unit, the control unit may be configured to move the guide unit in a direction approaching the battery cell and lower the suction unit that has adsorbed the first surface of the battery cell, so that the second surface of the battery cell contacts the elastic member of the guide unit.

[0026] In addition, the battery cell extraction device may further include a first driving unit provided to lower or raise the suction unit and the guide unit so as to approach or move away from the tray, a second driving unit for raising the suction unit in a direction away from the tray in a state where the first surface of the battery cell is adsorbed by the suction unit, and a third driving unit for moving the guide unit toward the battery cell when the battery cell is detached from the tray.

[0027] In addition, each driving unit may include a motor or a cylinder.

Advantages of the Invention

[0028] As described above, the battery cell extraction device and its control method according to an embodiment of the present invention have the following effects.

[0029] When removing the battery cell, it can be transferred while supporting the upper surface and the lower surface of the battery cell together.

[0030] [[ID=

[0031] Furthermore, by elastically supporting the lower surface of the battery cell, damage to the battery cell can be prevented. [Brief explanation of the drawing]

[0032] [Figure 1] This diagram schematically shows a battery cell extraction device according to one embodiment of the present invention. [Figure 2] This is a schematic diagram showing a battery cell extraction device according to one embodiment of the present invention. [Figure 3] This diagram illustrates the operating state of the battery cell extraction device shown in Figure 1. [Figure 4] This diagram illustrates the operating state of the battery cell extraction device shown in Figure 1. [Figure 5] This diagram illustrates the operating state of the battery cell extraction device shown in Figure 1. [Figure 6] This diagram illustrates the operating state of the battery cell extraction device shown in Figure 1. [Modes for carrying out the invention]

[0033] A battery cell extraction device according to one embodiment of the present invention will be described in detail below with reference to the attached drawings.

[0034] Furthermore, regardless of the drawing reference numerals, identical or corresponding components will be assigned the same or similar reference numerals, and redundant explanations will be omitted. For the sake of clarity, the size and shape of each component shown may be exaggerated or reduced.

[0035] Figure 1 is a schematic diagram showing a battery cell extraction device 100 according to one embodiment of the present invention, and Figure 2 is a schematic configuration diagram showing a battery cell extraction device according to one embodiment of the present invention.

[0036] Figures 3 to 6 are diagrams illustrating the operating state of the battery cell extraction device shown in Figure 1.

[0037] A battery cell extraction device 100 according to one embodiment of the present invention may be used in the pouch packaging process during the manufacturing process of a secondary battery.

[0038] As an example, the battery cell extraction device 100 is a device that extracts battery cells 104 from a tray 102 in which multiple battery cells 104 are stacked and then transfers them to a subsequent process.

[0039] Furthermore, as described above, the battery cell 104 can be manufactured by stacking multiple electrodes (positive electrode, negative electrode) and a separation membrane.

[0040] Furthermore, the battery cell removal device 100 transfers the battery cells 104 removed from the tray 102 to a subsequent process for housing them inside a pouch. In the subsequent process, the battery cells 104 are housed inside the pouch, and an electrolyte solution may be injected into the pouch.

[0041] Referring to Figures 1 and 2, a battery cell removal device 100 according to one embodiment of the present invention is provided to be movable toward a battery cell 104 stored in a tray 102 and includes a suction part 120 provided to adsorb the first surface 104a (also called the "upper surface") of the battery cell 104.

[0042] Furthermore, the battery cell removal device 100 includes a guide portion 130 that is movable to support the second surface 104b of the battery cell 104 in the opposite direction to the first surface 104a, while the first surface 104a of the battery cell 104 is held in place by the suction portion 120. The guide portion 130 includes a plurality of elastic members 134 arranged to contact the second surface 104b of the battery cell 104.

[0043] The X-axis direction shown in Figures 1 and 3 to 6 indicates the direction in which the guide portion 130 moves toward the battery cell 104, i.e., the forward and backward movement of the guide portion 130, while the Y-axis direction indicates the direction in which the suction portion 120 and the guide portion 130 move toward the tray 102.

[0044] Referring to Figures 1 and 2, a battery cell removal device 100 according to one embodiment of the present invention may include: a suction part 120 for adsorbing the first surface of the battery cell 104; a guide part 130 for supporting the second surface 104b of the battery cell 104 while the first surface 104a is adsorbed by the suction part 120; and a control unit 110 for controlling the movement and operation of the suction part 120 and the guide part 130.

[0045] Here, the first surface 104a of the battery cell 104 is the upper surface, and the second surface 104b may be the lower surface. The battery cell 104 is stored inside the tray 102 such that the first surface 104a, which is the upper surface, is exposed to the outside of the tray 102. The battery cell removal device 100 is provided to remove the battery cell 104 located at the uppermost end inside the tray 102 to the outside of the tray 102.

[0046] The tray 102 may be a case for storing battery cells 104, and may be sized to accommodate multiple battery cells 104.

[0047] The battery cell extraction device 100 may include a base portion 101 on which the suction portion 120 and the guide portion 130 are movably mounted. That is, the base portion 101 may be the main body of a device for driving the suction portion 120 and the guide portion 130.

[0048] Furthermore, the base portion 101 may be located above the tray 102 in which multiple battery cells 104 are stored.

[0049] As an example, the base portion 101 may be provided in the main mechanism for packaging the battery cell 104 and electrolyte in a pouch and for carrying out a packaging process that includes an activation process and a gas removal process.

[0050] The base portion 101 may be provided so as to be movable in one direction (for example, in the X-axis direction) relative to the main mechanism. This allows the base portion 101 to transfer the battery cell 104, whose first surface 104a and second surface 104b are supported by the suction portion 120 and guide portion 130, to a subsequent process.

[0051] On the other hand, a tray 102 containing multiple battery cells 104 is located below the base portion 101.

[0052] At this time, the battery cells 104 are stored in the tray 102 with their first surface 104a exposed to the outside of the tray 102. This allows the suction part 120 and the guide part 130 to easily remove the battery cells 104 from the tray 102, and the battery cell removal device 100 can sequentially remove the battery cells 104 located at the upper end inside the tray 102 and transfer them to the subsequent process.

[0053] Furthermore, the suction portion 120 is provided to adsorb the first surface 104a, which is the upper surface of the battery cell 104. The suction portion 120 is connected to the base portion 101, and the suction portion 120 moves (descends) from the base portion 101 toward the tray 102 in order to adsorb the uppermost battery cell 104 stored in the tray 102.

[0054] As an example, the suction unit 120 includes a pair of support frames 122 that are movable toward or toward the tray 102, and suction pads 124 provided at the lower ends of each support frame 122 to adsorb the first surface 104a of the battery cell 104.

[0055] Each support frame 122 is connected to the base portion 101 and is provided to be movable (downward) in the direction toward the tray 102 from the base portion 101.

[0056] The suction pad 124 is provided on the lower side of the support frame 122 and is configured to attract the first surface 104a of the battery cell 104 by vacuum.

[0057] In this case, the suction pad 124 can be formed so that one side on which suction is applied is flat, in order to easily adsorb the first surface 104a of the battery cell 104.

[0058] Furthermore, the suction pad 124 can hold the battery cell 104 using a vacuum suction method and can be connected to a vacuum generating unit.

[0059] Furthermore, the support frames 122 of the suction part 120 are provided in pairs at predetermined intervals from each other so as to stably suction and support the first surface 104a of the battery cell 104.

[0060] A pair of support frames 122 are connected to the base portion 101, arranged at predetermined intervals from each other, and are provided to attract at least two points (part A) on the first surface 104a of the battery cell 104.

[0061] In this way, by arranging the pair of suction parts 120 at a predetermined interval, the first surface 104a of the battery cell 104 can be stably suctioned and supported.

[0062] The suction portion 120 is lowered from the base portion 101 toward the tray 102 in order to adsorb the first surface 104a of the battery cell 104. After the suction pad 124 has adsorbed the first surface 104a of the battery cell 104, the suction portion 120 is raised toward the tray 102.

[0063] The guide portion 130 is provided so as to support the second surface 104b of the battery cell 104, which is in the opposite direction to the first surface 104a, when the first surface 104a is held in place by the suction portion 120.

[0064] Furthermore, the suction portion 120 is provided to attract at least two points A on the first surface 104a of the battery cell 104, and the guide portion 130 may include a pair of elastic members 134 arranged to support at least two points B on the second surface 104b of the battery cell 104.

[0065] Referring to Figures 3 and 4, the guide portion 130 is connected to the base portion 101 and is provided to be movable (downward) toward the tray 102 together with the suction portion 120. The guide portion 130 is also provided to be movable toward the battery cell 104.

[0066] The guide portion 130 may include a pair of guide frames 132 that are provided to move toward the battery cell 104 that has been attracted by the suction portion 120.

[0067] Each guide frame 132 has a bent portion 133 formed at a predetermined angle on which the battery cell 104 is placed, and each bent portion 133 may be provided with an elastic member 134.

[0068] Furthermore, the guide frame 132 and the elastic member 134 may be provided as a pair, arranged at a predetermined distance from each other relative to the base portion 101.

[0069] The guide portion 130 moves forward toward the battery cell 104 to support the second surface 104b of the battery cell 104, whose first surface 104a is adsorbed by the adsorption portion 120.

[0070] Furthermore, the guide portion 130 may be provided to move up and down toward the tray 102 and move toward the battery cell 104 that has been picked up by the suction portion 120.

[0071] Furthermore, the guide section 130 may be configured to move in a direction that brings the pair of guide frames 132 closer together or further apart. That is, the guide section 130 may be configured to adjust the distance between the pair of guide frames 132. Specifically, when the distance between the pair of guide frames 132 increases, the guide section 130 moves away from the battery cell 104 (also referred to as "reverse movement"), and when the distance between the pair of guide frames 132 decreases, the guide section 130 moves closer to the battery cell 104 (also referred to as "forward movement").

[0072] Also, referring to Figure 3, when the suction portion 120 is lowered from the base portion 101 toward the tray 102 in order to adsorb the first surface 104a of the battery cell 104, the distance between the pair of guide frames 132 may be greater than the width of the battery cell 104 (length in the X-axis direction) or the width of the tray 102 (length in the X-axis direction). In such a structure, the guide portion 130 does not enter the inside of the tray 102 but is located outside the tray 102, and only the suction portion 120 can enter the inside of the tray 102.

[0073] Furthermore, referring to Figure 4, when the battery cell 104 is detached from the tray 102 by the suction part 120, the distance between the pair of guide frames 132 decreases, and the guide part 130 moves closer to the battery cell 104. That is, when the guide part 130 moves toward the battery cell 104 and the bent part 133 is located on the underside of the battery cell 104, the guide part 130 is not in contact with the second surface 104b of the battery cell 104.

[0074] Each guide frame 132 is positioned at the edge of the second surface 104b of the battery cell 104 from which the bent portion 133 has been removed.

[0075] Referring to Figure 5, when the guide portion 130 is positioned below the battery cell 104, the suction portion 120, which has attracted the first surface 104a of the battery cell 104, descends again in a direction toward the tray 102. Specifically, the suction portion 120 descends toward the bending portion 133, and at this time, the guide portion 130 does not move up or down, and only the suction portion 120 is able to descend toward the bending portion 133.

[0076] As the suction portion 120 descends, the second surface 104b of the battery cell 104 comes into contact with the elastic member 134 of the guide portion 130, thereby supporting the second surface 104b of the battery cell 104 by the guide portion 130.

[0077] The guide frame 132 and elastic member 134 are also provided in pairs and can be arranged at a predetermined distance from each other. In this way, the guide portion 130, including the pair of guide frames 132 and elastic member 134, stably supports the second surface 104b of the battery cell 104.

[0078] The guide frame 132 may be configured to descend from the base portion 101 toward the tray 102, to rise toward the tray 102, and to be configured to move forward and backward toward the battery cell 104.

[0079] Furthermore, the bent portion 133 may be formed by bending it toward the battery cell 104 so as to form an angle of 90 degrees or less with respect to the guide frame 132.

[0080] Referring to Figure 5, each elastic member 134 prevents damage to the battery cell 104 when the second surface 104b of the battery cell 104 comes into contact with the guide portion 130.

[0081] The elastic members 134 can be provided in pairs, spaced apart at a predetermined interval. The pair of elastic members 134 can each support at least two points (part B) on the second surface 104b of the battery cell 104.

[0082] The elastic member 134 may include a spring, and the elastic member may be made of silicone or rubber.

[0083] The elastic member 134 may be provided in the form of an elastic suction pad, a spring, or the like, but is not necessarily limited to these forms.

[0084] Furthermore, the elastic member 134 may be made of a soft material such as silicone or rubber to prevent damage to the battery cell 104 during the contact process.

[0085] The suction portion 120 may be positioned between a pair of guide frames 132. Specifically, a pair of support frames 122 may be positioned between a pair of guide frames 132 so that the first surface 104a and the second surface 104b of the battery cell 104 are stably supported by the suction portion 120 and the guide portion 130.

[0086] Referring to Figure 5, the adsorption portion 120 is provided to adsorb the inner region (the two A regions on the first surface of the battery cell) located inside the edge region of the first surface 104a of the battery cell, and the guide portion 130 may be provided to support the edge region of the second surface 104b of the battery cell (the two B regions on the second surface of the battery cell).

[0087] For example, the distance between adjacent suction pads 124 may be smaller than the distance between a pair of elastic members 134.

[0088] The battery cell extraction device 100 may include a control unit 110 for controlling the movement of the suction unit 120 and the guide unit 130.

[0089] The control unit 110 is connected to the suction unit 120 and the guide unit 130, respectively, and can control the movement and operation of the suction unit 120 and the guide unit 130 relative to the base unit 101.

[0090] Referring to Figure 3, the control unit 110 may be configured to move the suction unit 120 downward in a direction toward the tray 102, so that the first surface 104a of the battery cell 104 is attracted by the suction unit 120, and then move the suction unit 120, which has attracted the first surface 104a of the battery cell 104, upward in a direction toward away from the tray 102.

[0091] Referring to Figure 4, when the battery cell 104 is detached from the tray 102 by the suction part 120, the control unit 110 can move the guide part in a direction that approaches the battery cell 104. That is, the control unit 110 can move each of the pair of guide frames 132 in a direction that approaches the battery cell 104 so that the distance between the two guide frames 132 becomes smaller.

[0092] Referring to Figure 5, the control unit 110 may be configured to bring the second surface 104b of the battery cell 104 into contact with the elastic member 134 of the guide unit 130 by lowering the suction unit 120 that has attracted the first surface 104a of the battery cell 104.

[0093] The control unit 110 can be connected to a plurality of drive units 112, 113, and 114 for driving the suction unit 120 and the guide unit 130. The control unit 110 is provided to control each of the drive units 112, 113, and 114.

[0094] The battery cell removal device 100 may include a first drive unit 112 that is provided to lower or raise the suction portion 120 and the guide portion 130 so as to move them closer to or further away from the tray 102.

[0095] Furthermore, the battery cell removal device 100 may include a second drive unit 113 for raising the suction unit 120 in a direction away from the tray 102 while the first surface of the battery cell is being held in place by the suction unit 120.

[0096] The first drive unit 112 may be provided to raise and lower the suction part 120 and the guide part 130 connected to the base part 101 as a single unit, while the second drive unit 113 may be provided to raise and lower the suction part 120 individually.

[0097] Furthermore, the battery cell removal device 100 may include a third drive unit 114 for moving the guide unit 130 toward the battery cell 104 when the battery cell 104 is detached from the tray 102.

[0098] In this case, each of the drive units 112, 113, and 114 may include a motor or a cylinder.

[0099] Specifically, the first drive unit 112, while connected to the base unit 101, can lower the suction unit 120 and the guide unit 130 from the base unit 101 towards the tray 102, or raise them in a direction away from the tray 102.

[0100] For example, the first drive unit 112 may be provided by a servo motor, but is not necessarily limited to this. Furthermore, the first drive unit 112 may be provided by an electric servo motor, an air servo motor, a hydraulic servo motor, or the like, depending on the power source supplied.

[0101] Furthermore, the second drive unit 113 may be provided as a multi-stage cylinder to adjust the height of the upward and downward movement of the suction unit 120 relative to the tray 102, and the third drive unit 114 may be provided as a chuck cylinder.

[0102] The control method of the battery cell extraction device 100 according to one embodiment of the present invention will be briefly described below with reference to Figures 3 to 6.

[0103] First, the first surface 104a of the battery cell 104 is adsorbed by the adsorption part 120.

[0104] At this time, the adsorption unit 120 is lowered from the base unit 101 toward the tray 102 in which the battery cell 104 is stored, and vacuum adsorbs the first surface 104a of the battery cell 104.

[0105] Subsequently, referring to Figure 3, the suction unit 120 is raised away from the tray 102 while holding the first surface 104a of the battery cell 104 in its grasp.

[0106] Referring to Figure 4, the guide portion 130 is moved in a direction that approaches the battery cell 104 whose first surface 104a is attached by the suction portion 120. At this time, the guide portion 130 is moved toward the battery cell 104, the bent portion 133 is located below the battery cell 104, and the guide portion 130 is not in contact with the second surface 104b of the battery cell 104.

[0107] Referring to Figure 5, the suction part 120 is lowered in a direction toward the tray 102 while adsorbing the first surface 104a of the battery cell 104. At this time, as the suction part 120 is lowered toward the tray 102 and the battery cell 104 is lowered to a position where it contacts the guide part 130, the second surface 104b of the battery cell 104 is supported by the guide part 130 while in contact with the elastic member 134 of the guide part 130.

[0108] At this time, since an elastic member 134 is provided at the bent portion 133 of the guide portion 130, the second surface 104b of the battery cell 104 is stably supported by the elastic member 134 without damage.

[0109] Finally, the battery cell 104 is transferred to the next step.

[0110] The preferred embodiments of the present invention described above are disclosed for illustrative purposes only, and a person skilled in the art with ordinary skill in the invention will know that various modifications, alterations, and additions are possible within the spirit and scope of the invention, and such modifications, alterations, and additions should be considered to fall within the scope of the claims below. [Industrial applicability]

[0111] According to a battery cell extraction device and its control method according to one embodiment of the present invention, when extracting a battery cell, it is possible to stably transport the battery cell while supporting both its upper and lower surfaces.

Claims

1. A suction part is provided so as to be movable toward the battery cells stored in the tray and is provided to adsorb the first surface of the battery cells, The guide portion includes a plurality of elastic members, which are movably provided to support a second surface of the battery cell opposite to the first surface of the battery cell, while the first surface of the battery cell is held in place by the adsorption portion, and which are arranged to contact the second surface of the battery cell. The guide portion further includes a pair of guide frames provided to move toward the battery cell that has been attracted by the adsorption portion, Each guide frame has a bent portion formed therein, which is bent at a predetermined angle so that the battery cell can be placed on it. The aforementioned suction portion is a battery cell extraction device that descends toward the aforementioned bending portion.

2. The adsorption portion is provided to adsorb at least two points on the first surface of the battery cell, The battery cell removal device according to claim 1, wherein the guide portion includes a pair of elastic members arranged to support at least two points on the second surface of the battery cell.

3. The suction portion comprises a pair of support frames that are movable toward or toward the tray, The battery cell removal device according to claim 2, further comprising: an adsorption pad provided at the lower end of each support frame and provided to adsorb the first surface of the battery cell.

4. The adsorption portion is provided to adsorb an inner region located inside the edge region of the first surface of the battery cell. The battery cell removal device according to claim 3, wherein the guide portion is provided to support the edge region of the second surface of the battery cell.

5. The battery cell extraction device according to claim 3, wherein the distance between adjacent suction pads is smaller than the distance between the pair of elastic members.

6. The battery cell extraction device according to claim 2, wherein each of the bent portions is provided with an elastic member.

7. The battery cell removal device according to claim 6, wherein the guide portion is provided to move up and down toward the tray and is provided to move toward the battery cell that has been picked up by the suction portion.

8. The battery cell extraction device according to claim 7, wherein the guide portion is provided so as to move in a direction that brings the pair of guide frames closer together or further away from each other.

9. The battery cell removal device according to claim 6, wherein the bent portion is formed by bending it toward the battery cell so as to form an angle of 90 degrees or less with respect to the guide frame.

10. The battery cell extraction device according to claim 1, wherein the elastic member includes a spring.

11. The battery cell removal device according to claim 1, wherein the elastic member includes silicone or rubber.

12. The system further includes a control unit for controlling the movement of the adsorption unit and the guide unit, The control unit moves the suction part downward in a direction toward the tray, and then causes the first surface of the battery cell to be adsorbed by the suction part. The battery cell removal device according to claim 1, wherein the suction portion that has adsorbed the first surface of the battery cell is provided to move upward in a direction away from the tray.

13. When the battery cell is detached from the tray by the suction part, the control unit moves the guide part in a direction toward the battery cell. The battery cell removal device according to claim 12, wherein the suction portion that has adsorbed the first surface of the battery cell is lowered so as to bring the second surface of the battery cell into contact with the elastic member of the guide portion.

14. A first drive unit is provided to lower or raise the suction portion and the guide portion so as to move them closer to or further away from the tray, With the first surface of the battery cell being held in place by the adsorption portion, a second drive unit is provided to raise the adsorption portion in a direction away from the tray, The battery cell removal device according to claim 12, further comprising a third drive unit for moving the guide unit toward the battery cell when the battery cell is detached from the tray.

15. The battery cell extraction device according to claim 14, wherein each drive unit includes a motor or a cylinder.

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