Battery cell rubberizing device
By attaching adhesive tape to both sides of the battery cell using a cell adhesive applicator and protecting the welding area of the tabs using a shaping module, the problem of tabs being damaged during casing installation is solved, thus improving battery reliability.
Patent Information
- Application Number
- CN202520598053.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-01
- Publication Date
- 2026-01-30
- Estimated Expiration
- 2035-04-01
AI Technical Summary
In the process of installing existing prismatic batteries, the tabs and other components are prone to excessive friction, which leads to inadequate protection of the tab welding positions and affects battery reliability.
The battery cell adhesive application device uses a positioning platform, adhesive application mechanism and shaping mechanism to first apply adhesive tape to the first side wall of the battery cell. Then, the first shaping module presses it firmly, and the second shaping module bends and presses it firmly on the second side wall to ensure that the adhesive tape is completely adhered to both sides of the battery cell and protect the welding area of the electrode tab.
This effectively avoids excessive friction between the tabs and components such as the outer casing and separator during the insertion process, reducing the chance of tab damage and improving battery reliability.
Smart Images

Figure CN223851903U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to battery technology field especially relates to a kind of battery cell rubberizing device. BACKGROUND
[0002] In the process of entering shell, the existing square shell battery, tab and shell parts are prone to excessive friction, so that the protection of the welding position of the tab is not in place, and the phenomenon of tab damage is prone to occur, thereby affecting the reliability of the battery. SUMMARY
[0003] The utility model discloses a kind of battery cell rubberizing device, the battery cell rubberizing device can be glued to battery cell, so that the welding area of tab is preferably protected, avoid excessive friction of tab and shell, diaphragm and other components when entering shell, reduce the probability of tab damage, improve the reliability of battery.
[0004] To achieve this purpose, the utility model adopts the following technical scheme:
[0005] The utility model discloses a kind of battery cell rubberizing device, comprising: positioning platform, the positioning platform is used for positioning installation to be glued part;Rubberizing mechanism, the rubberizing mechanism is used to be glued with the adhesive tape on the first side wall of the part to be glued;Shaping mechanism, the shaping mechanism includes first shaping module and second shaping module, the first shaping module is installed to the at least one side of the positioning platform along first direction and is located above the positioning platform, the second shaping module is installed to the at least one side of the positioning platform along the first direction, and along second direction, the second shaping module is located outside the first shaping module;Wherein, after the first shaping module is pressed to the first side wall with the adhesive tape, the second shaping module can be bent and be pressed to the first side wall of the part to be glued with the adhesive tape, the first direction is vertically arranged with the second direction.
[0006] The utility model has the beneficial effect that: in actual working process, battery cell is placed to positioning platform under the action of external handling device, and make the first side wall of battery cell correspond to the position of setting, rubberizing mechanism is glued to the first side wall with adhesive tape, then first shaping module is pressed to the first side wall with adhesive tape, second shaping module is bent to be pressed to the second side wall with adhesive tape to complete rubberizing process, the battery cell rubberizing device of the embodiment can be glued with adhesive tape on the first side wall and the second side wall of battery cell, so that the welding area of tab is preferably protected, avoid excessive friction of tab and shell, diaphragm and other components when entering shell, reduce the probability of tab damage, improve the reliability of battery.
[0007] Additional aspects and advantages of the utility model will be partially given in the following description, some will become obvious from the following description, or be understood by the practice of the utility model. BRIEF DESCRIPTION OF DRAWINGS
[0008] Figure 1 is a structural schematic view of the battery cell rubberizing device of the embodiment of the present application;
[0009] Figure 2 is a structural schematic view of another direction of the embodiment of the present application;
[0010] Figure 3 is a partial structural schematic view of the embodiment of the present application.
[0011] Reference signs:
[0012] 100, positioning platform; 110, positioning seat; 120, first positioning member; 121, avoiding space; 130, second positioning member;
[0013] 200, adhesive tape unwinding mechanism; 210, conveying roller; 220, positioning module;
[0014] 300, cutting rubber carrying mechanism; 310, clamping module; 320, cutting rubber module; 330, carrying module;
[0015] 400, rubberizing mechanism; 410, fourth driving member; 420, fifth driving member; 430, rubberizing head; 431, rubberizing support; 432, rubberizing block;
[0016] 500, shaping mechanism; 510, first shaping module; 511, first driving member; 5111, horizontal movement air cylinder; 5112, finger air cylinder; 512, shaping roller; 520, second shaping module; 521, second driving member; 522, bending roller; 523, third driving member; 524, pressing roller;
[0017] 10, battery cell; 101, first side wall; 102, second side wall; 103, third side wall;
[0018] 20, adhesive tape. DETAILED DESCRIPTION
[0019] The present application will be further described in detail below in conjunction with the drawings and embodiments. It can be understood that the specific embodiments described herein are only used to explain the present application, and not to limit the present application. In addition, it should be noted that, in order to facilitate the description, only the parts related to the present application are shown in the drawings, rather than all the structures.
[0020] In the description of the utility model, unless another definite provision and limitation, the term "link", "connect", "fix" should do broad sense understanding, for example, can be fixed connection, also can be detachable connection, or be integrated;Can be mechanical connection, also can be electrical connection;Can be directly connected, also can be indirectly connected through intermediate medium, can be two elements internal communication or two element's mutual action relation.For ordinary skilled person in the art, the above-mentioned term can be understood in the specific meaning in the utility model according to specific circumstances.
[0021] In the description of the embodiment, the orientation or position relationship of the terms "upper", "lower", "left", "right", "front", "back" and the like is based on the orientation or position relationship shown in the drawings, which is only for the convenience of description and simplification of operation, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the utility model. In addition, the terms "first" and "second" are only used to distinguish in the description and have no special meaning.
[0022] The utility model discloses a kind of battery core rubberizing device, refer to Figures 1-2 As shown in FIG. 1, the battery core 10 has a first side wall 101 and a second side wall 102, the first side wall 101 is provided with a tab (not shown in the figure), and the second side wall 102 is disposed along a second direction and adjacent to the first side wall 101. Figure 1As shown, the battery cell taping device comprises a positioning platform 100, a taping mechanism 400 and a shaping mechanism 500. The positioning platform 100 is used to position the taping object (the taping object of the present application is the battery cell 10, and the specific type of the battery cell 10 here can be selected according to actual needs, which can be a laminated battery cell or a wound battery cell). The taping mechanism 400 is used to tape the adhesive tape 20 to the first side wall 101 of the battery cell 10. The shaping mechanism 500 comprises a first shaping module 510 and a second shaping module 520. The first shaping module 510 is installed on at least one side of the positioning platform 100 along a first direction and above the positioning platform 100. The second shaping module 520 is installed on at least one side of the positioning platform 100 along a first direction and along a second direction. The second shaping module 520 is located outside the first shaping module 510, and the first direction and the second direction are arranged vertically. It can be understood that, in the actual working process, the battery cell 10 is placed on the positioning platform 100 under the action of an external handling device, and the first side wall 101 of the battery cell 10 is correspondingly arranged at a position. The taping mechanism 400 tapes the adhesive tape 20 to the first side wall 101. Then, the first shaping module 510 tightly presses the adhesive tape 20 against the first side wall 101, and the second shaping module 520 can fold and tightly press the adhesive tape 20 against the second side wall 102 of the battery cell 10 to complete the taping process. The shaping mechanism 500 is divided into the first shaping module 510 and the second shaping module 520, which facilitates automatic control and can ensure that the adhesive tape 20 is tightly pressed against the first side wall 101 and then folded and tightly pressed again, which is beneficial to improving the taping precision. The battery cell taping device of the present embodiment can tape the adhesive tape 20 on the first side wall 101 and the second side wall 102 of the battery cell 10, thereby better protecting the welding area of the tab, avoiding excessive friction between the tab and the shell, diaphragm and other components when entering the shell, reducing the probability of tab damage and improving the reliability of the battery.
[0023] Reference Figure 1 As shown, the battery cell taping device further comprises an adhesive tape unwinding mechanism 200 and a cutting and handling mechanism 300. The adhesive tape unwinding mechanism 200 is used to install an adhesive tape roll and can output the adhesive tape 20. The cutting and handling mechanism 300 is used to cut the adhesive tape 20 and handle and position the adhesive tape 20 to the positioning platform 100 along the second direction. It can be understood that, in the actual working process, the adhesive tape unwinding mechanism 200 first unwinds the adhesive tape 20 to a taping length. The cutting and handling mechanism 300 cuts the adhesive tape 20 and then handles the cut adhesive tape 20 to the positioning platform 100 along the first direction. Then, the battery cell 10 is placed on the positioning platform 100 under the action of an external handling device to perform the taping process. In this way, the cutting and handling of the adhesive tape 20 are automated, thereby realizing the full-automatic taping process of the battery cell taping device.
[0024] Reference Figure 1As shown, the tape unwinding mechanism 200 further comprises a plurality of conveying rollers 210 along the conveying direction of the tape 20. In this way, the tape 20 can be conveyed stably. Optionally, the tape unwinding mechanism 200 further comprises a positioning module 220 along the conveying direction of the tape 20, the positioning module 220 being configured to position the tape 20 to be temporarily stationary during the tape cutting process. In this way, the tape cutting precision can be ensured, and the phenomenon of uneven cut can be avoided. Further optionally, the positioning module 220 comprises a positioning cylinder and a positioning block, the positioning cylinder being configured to drive the positioning block to move along the first direction to press the tape 20 against the conveying rollers 210.
[0025] It should be noted that, in actual work, the length of the tape 20 cut by the tape cutting and conveying mechanism 300 can be selected according to actual needs, and the length of the tape 20 coinciding with the first side wall 101 and the second side wall 102 can also be selected according to actual needs. The width of the tape 20 can also be selected according to actual needs. In this embodiment, the width of the tape 20 can be 8mm-80mm.
[0026] Reference Figures 1-3 As shown, the positioning platform 100 comprises a positioning seat 110, a first positioning member 120 and a second positioning member 130, the positioning seat 110 being configured to support the battery cell 10, the first positioning member 120 and the second positioning member 130 being connected to the positioning seat 110, and the first positioning member 120 and the second positioning member 130 abutting against the second side wall 102 and the third side wall 103 of the battery cell 10 respectively. The third side wall 103 is arranged along the second direction away from the second side wall 102. It can be understood that the positioning seat 110 can ensure that the battery cell 10 can be stably kept at the position to be taped, ensuring the taping precision and avoiding the phenomenon of taping skew. The first positioning member 120 and the second positioning member 130 abutting against the second side wall 102 and the third side wall 103 of the battery cell 10 respectively can improve the stability of the battery cell 10 on the positioning platform 100, thereby further improving the taping precision.
[0027] Optionally, the first positioning member 120 is arranged corresponding to the middle part of the second side wall 102, and the first positioning member 120 is provided with an avoiding space 121 along at least one side of the first direction, the avoiding space 121 being configured to accommodate the shaping mechanism 500. It can be understood that, according to the foregoing description, in actual work, the shaping mechanism 500 needs to fold and press the tape 20 taped on the first side wall 101, the first positioning member 120 is arranged corresponding to the middle part of the second side wall 102, and is provided with an avoiding space 121 along at least one side of the first direction, which can ensure that the first positioning member 120 can stably position the battery cell 10, and also give the shaping space enough activity space, avoiding the phenomenon that the shaping mechanism 500 rubs against the first positioning member 120 in the shaping process, thereby reducing the shaping effect.
[0028] It needs to be explained that in the embodiment, the first positioning member 120 and the second positioning member 130 can be fixed on the positioning seat 110 by bonding, welding, connecting member connection, buckle connection and the like, or can be directly integrated with the positioning seat 110, and the connection mode of the first positioning member 120 and the second positioning member 130 with the positioning seat 110 is not specifically shown here.
[0029] Reference Figures 1-3 As shown in FIG. 5, the shaping mechanism 500 includes a first shaping module 510 and a second shaping module 520, the first shaping module 510 is installed on at least one side of the positioning platform 100 along the first direction, and is used to press the adhesive tape 20 on the first side wall 101, the second shaping module 520 is installed on at least one side of the positioning platform 100 along the first direction, and is arranged corresponding to the second side wall 102, the second shaping module 520 is used to bend the adhesive tape 20 and press the adhesive tape 20 on the second side wall 102; the first direction is perpendicular to the second direction. It can be understood that in the actual working process, after the gluing mechanism 400 glues the adhesive tape 20 on the first side wall 101 of the battery cell 10, the first shaping module 510 is started to press the adhesive tape 20 on the first side wall 101, and then the second shaping module 520 moves along the first direction to make the part of the adhesive tape 20 beyond the first side wall 101 bend towards the direction close to the second side wall 102 and be pressed on the second side wall 102.
[0030] Reference Figure 2 and Figure 3 As shown in FIG. 5, the first shaping module 510 includes a first driving member 511 and at least one shaping roller 512, the first driving member 511 is used to drive the shaping roller 512 to move to press the adhesive tape 20 on the first side wall 101. It can be understood that in the actual working process, when the gluing mechanism 400 glues the adhesive tape 20 on the first side wall 101, the first driving member 511 drives the shaping roller 512 to move to the position of gluing to the first side wall 101, and then drives the shaping roller 512 to move along the third direction to realize shaping. Thus, the adhesive tape 20 is pressed on the first side wall 101 along the third direction, which is beneficial to improve the close type of the adhesive tape 20 and the battery cell 10, thereby facilitating the subsequent bending and secondary pressing work.
[0031] Further, the first driving member 511 comprises a horizontal moving cylinder 5111 and a finger cylinder 5112, the shaping roller 512 is two, the finger cylinder 5112 is installed on the horizontal moving cylinder 5111, the horizontal moving cylinder 5111 is used for driving the finger cylinder 5112 to move in the first direction, and the finger cylinder 5112 can drive the two shaping rollers 512 to move towards each other. In the actual shaping process, when the taping mechanism 400 is used for taping the adhesive tape 20 on the first side wall 101, the horizontal moving cylinder 5111 drives the finger cylinder 5112 to move in the first direction, so that the shaping roller 512 abuts on the adhesive tape 20, and then the finger cylinder 5112 can drive the two shaping rollers 512 to move towards each other to complete the shaping, thereby improving the shaping effect of the first shaping module 510. It should be noted that, in the actual working process, the taping mechanism 400 can keep the adhesive tape 20 in the state of being pressed during the working process of the first shaping module 510, thereby ensuring that the adhesive tape 20 does not skew or fall off or other phenomena during the shaping process.
[0032] Reference Figure 2 and Figure 3 As shown in FIG. 5, the second shaping module 520 comprises a second driving member 521, a bending roller 522, a third driving member 523 and a pressing roller 524, the second driving member 521 is used for driving the bending roller 522 to move in the first direction to bend the adhesive tape 20, and the third driving member 523 is used for driving the pressing roller 524 to move in the second direction to press the adhesive tape 20 on the second side wall 102. After the adhesive tape 20 is pressed on the first side wall 101 by the first shaping module 510, the second driving member 521 drives the bending roller 522 to move in the first direction to bend the adhesive tape 20 towards the second side wall 102, and after the bending is completed, the third driving member 523 drives the pressing roller 524 to move in the second direction to press the bent part of the adhesive tape 20 in the first direction. By bending the adhesive tape 20 by the bending roller 522 and pressing the adhesive tape 20 by the pressing roller 524, automatic control is facilitated, and the film pasting precision is improved. In the embodiment, the second driving member 521 and the third driving member 523 are both cylinders, and of course, other structures can be selected according to actual needs. In addition, in order to ensure the bending effect, the front end of the bending roller 522 is formed in a tapered shape, and in order to improve the pressing effect, the pressing roller 524 can be provided with two, three or more.
[0033] Reference Figures 1-3As shown, the cutting and carrying mechanism 300 comprises a clamping module 310, a cutting module 320 and a carrying module 330. The clamping module 310 is used to clamp the adhesive tape 20 output by the adhesive tape unwinding mechanism 200. The cutting module 320 is arranged side by side with the clamping module 310 and has a cutting knife capable of moving towards the clamping module 310 to cut the adhesive tape 20. The carrying module 330 is connected with the clamping module 310 and is used to drive the carrying module 330 to move in the second direction so as to transport the clamping module 310 to the position corresponding to the positioning platform 100. It can be understood that, in actual work process, when the adhesive tape 20 is output to a specified length, the clamping module 310 clamps the adhesive tape 20 so as to stop the output. At this time, the cutting knife of the cutting module 320 moves towards the adhesive tape 20 to cut the adhesive tape 20. After the cutting is completed, the carrying module 330 drives the clamping module 310 to move in the second direction so that the clamping module 310 moves to the position corresponding to the positioning platform 100 to wait for the adhesive tape 20 to be pasted. When the pasting mechanism 400 presses the adhesive tape 20 against the first side wall 101, the clamping module 310 releases the adhesive tape 20 and retreats to the original position under the driving of the carrying module 330 to wait for the next cutting and carrying. In the embodiment, the clamping module 310 is a finger air cylinder structure, the driving mechanism of the cutting knife is an air cylinder, and the carrying module 330 adopts a linear driving mechanism of a ball screw driven by a servo motor. Of course, in other embodiments of the utility model, the driving components of the above-mentioned mechanisms can be selected according to actual needs as long as the above-mentioned actions can be completed. The specific driving components and related control modes of the above-mentioned mechanisms are not described here and can be selected according to the prior art.
[0034] In order to improve the cutting safety, the cutting knife needs to be installed with a protective cover (not shown in the figure).
[0035] Optionally, the clamping module 310 and the cutting module 320 are both two. The two clamping modules 310 are distributed along the first direction at intervals. The two cutting modules 320 are distributed along the first direction at intervals. The carrying module 330 is connected with the two clamping modules 310. It can be understood that, in actual pasting process, it may be necessary to cut the adhesive tape on both ends of the first side wall 101 along the first direction. In the embodiment, the clamping module 310 and the cutting module 320 are both two. Correspondingly, the adhesive tape unwinding mechanism 200, the pasting mechanism 400 and the shaping mechanism 500 are also both two, which can realize the function of simultaneously pasting the adhesive tape on the two first side walls 101 and improve the pasting efficiency. The carrying module 330 is only one and simultaneously drives the two clamping modules 310 to move, which can ensure the synchronization of the two clamping modules 310 and the synchronous pasting of the two first side walls 101.
[0036] Reference Figure 3As shown, the adhesive attaching mechanism 400 comprises a fourth driving member 410, a fifth driving member 420 and an adhesive attaching head 430, the fourth driving member 410 is connected with the fifth driving member 420 and is used to drive the fifth driving member 420 to move along the second direction, the fifth driving member 420 is connected with the adhesive attaching head 430 and is used to drive the adhesive attaching head 430 to move along the first direction. It can be understood that, in actual working process, after the carrying module 330 drives the clamping module 310 to the position accurately positioned with the positioning platform 100, and after the battery cell 10 is placed on the positioning platform 100 under the action of the external carrying device, the fourth driving member 410 starts to drive the fifth driving member 420 and the adhesive attaching head 430 to move to the position corresponding to the first side wall 101 of the battery cell 10, and then the fifth driving member 420 drives the adhesive attaching head 430 to realize adhesive attaching. Splitting the adhesive attaching mechanism 400 into two-direction driving mechanisms can facilitate automatic control and can ensure that the adhesive tape 20 is stably attached to the first side wall 101.
[0037] It needs to be supplemented that the fourth driving member 410 and the fifth driving member 420 adopt a linear driving mechanism of a servo motor driving a ball screw. Of course, in other embodiments of the utility model, the driving components of the above mechanism can be selected according to actual needs, as long as the foregoing actions can be completed, and the specific driving components of the above mechanism and the related control modes are not described here, which can be selected according to the prior art.
[0038] Optionally, the adhesive attaching head 430 comprises an adhesive attaching support 431 and an adhesive attaching block 432, the adhesive attaching support 431 is connected with the fifth driving member 420 and is used to mount the adhesive attaching block 432, the first shaping module 510, the second driving member 521 and the bending roller 522. It can be understood that, in actual adhesive attaching process, after the adhesive attaching mechanism 400 firstly attaches the adhesive tape 20 to the first side wall 101, the first shaping module 510 shapes again, and then the second driving member 521 drives the bending roller 522 to bend the adhesive tape 20. If the first shaping module 510 and the second driving member 521 are independently arranged with the adhesive attaching head 430, then a separate structure for driving the first shaping module 510 to move to a specified position and a driving mechanism for driving the second driving member 521 to move to a position need to be arranged, which will cause mechanism redundancy and increase the manufacturing cost of the whole battery cell adhesive attaching device. In the embodiment, the adhesive attaching support 431 is arranged for the adhesive attaching block 432, the first shaping module 510, the second driving member 521 and the bending roller 522, in actual working process, the fourth driving member 410 and the fifth driving member 420 have driven the first shaping module 510, the second driving member 521 and the bending roller 522 to the specified positions, and it is not necessary to additionally arrange independent driving mechanisms for driving, which is beneficial to simplify the mechanism, facilitate automatic control and can also reduce the manufacturing cost of the battery cell adhesive attaching device.
[0039] Optionally, the battery cell adhesive taping device further comprises an adhesive taping detection device (not shown in the figure), which is used to detect the adhesive tape 20 and timely send an alarm when the adhesive taping is poor. The adhesive taping detection device can be a shooting detection device or other detection devices (for example, when the adhesive tape 20 is selected to be other colors (such as blue), the adhesive taping detection device can select a color sensor).
[0040] Optionally, the battery cell adhesive taping device further comprises a battery cell in-place detection device (not shown in the figure), which is used to detect whether the battery cell 10 is placed on the positioning platform 100. Only when the battery cell in-place detection device detects that the battery cell 10 is placed on the positioning platform 100, the adhesive taping mechanism 400 and the shaping mechanism 500 start to work, so that the phenomenon of empty adhesive taping can be avoided. The in-place detection device can be a shooting detection device or other detection devices.
[0041] In the description of the present application, the description of the terms "some embodiments", "other embodiments", and the like means that the specific features, structures, materials or characteristics described in connection with the embodiments or examples are included in at least one embodiment or example of the present application. In the present application, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.
[0042] Obviously, the above embodiments of the present application are only for clear illustration of the present application, and are not a limitation on the embodiments of the present application. For ordinary skilled in the art, various obvious changes, re-adjustments and substitutions can be made without departing from the scope of the present application. Here, it is not necessary and impossible to exhaust all the embodiments. Any modification, equivalent substitution and improvement within the spirit and principles of the present application shall be included in the protection scope of the claims of the present application.
Claims
1. A battery cell adhesive bonding device, characterized in that, The application relates to a tape sticking device. The device comprises: a positioning platform (100) for positioning a to-be-stuck part; a tape sticking mechanism (400) for sticking a tape (20) to a first side wall (101) of the to-be-stuck part; 2. The cell taping apparatus of claim 1, wherein, a shaping mechanism (500) comprising a first shaping module (510) and a second shaping module (520), wherein the first shaping module (510) is arranged on at least one side of the positioning platform (100) along a first direction and above the positioning platform (100), the second shaping module (520) is arranged on at least one side of the positioning platform (100) along the first direction and along a second direction, and the second shaping module (520) is arranged outside the first shaping module (510); after the first shaping module (510) is used to press the tape (20) against the first side wall (101), the second shaping module (520) is used to bend and press the tape (20) against a second side wall (102) of the to-be-stuck part, and the first direction is perpendicular to the second direction. The positioning platform (100) comprises: a positioning seat (110) for supporting the to-be-stuck part; 3. The cell taping apparatus of claim 2, wherein, a first positioning part (120) and a second positioning part (130) connected to the positioning seat (110), and the first positioning part (120) and the second positioning part (130) are respectively abutted against the second side wall (102) and a third side wall (103) of the to-be-stuck part, and the third side wall (103) is arranged along the second direction and is spaced apart from the second side wall (102).
4. The cell taping apparatus of claim 1, wherein, The first positioning part (120) is arranged at a middle part of the second side wall (102), and the first positioning part (120) is provided with an avoiding space (121) on at least one side along a first direction, and the avoiding space (121) is used for accommodating the shaping mechanism (500).
5. The cell taping apparatus of claim 4, wherein, The first shaping module (510) comprises a first driving part (511) and at least one shaping roller (512), and the first driving part (511) is used to drive the shaping roller (512) to move so as to press the tape (20) against the first side wall (101).
6. The cell taping apparatus of any of claims 1-5, wherein, The second shaping module (520) comprises a second driving part (521), a bending roller (522), a third driving part (523) and a pressing roller (524), the second driving part (521) is used to drive the bending roller (522) to move along the first direction so as to bend the tape (20), and the third driving part (523) is used to drive the pressing roller (524) to move along the second direction so as to press the tape (20) against the second side wall (102). The device further comprises: a tape unwinding mechanism (200) for mounting a tape roll and capable of outputting a tape (20). A cutting and conveying mechanism (300) is arranged to cut the adhesive tape (20) and convey the adhesive tape (20) to the positioning platform (100) along the second direction.
7. The cell taping apparatus of claim 6, wherein, The cutting and conveying mechanism (300) comprises: a clamping module (310) arranged to clamp the adhesive tape (20) output by the adhesive tape unwinding mechanism (200); a cutting module (320) arranged side by side with the clamping module (310) and having a cutting knife capable of moving towards the clamping module (310) to cut the adhesive tape (20); a conveying module (330) connected with the clamping module (310) and arranged to drive the conveying module (330) to move along the second direction to convey the clamping module (310) to a position corresponding to the positioning platform (100).
8. The cell taping apparatus of claim 7, wherein, The clamping module (310) and the cutting module (320) are both two, the two clamping modules (310) are arranged along the first direction, the two cutting modules (320) are arranged along the first direction, and the conveying module (330) is connected with the two clamping modules (310).
9. The cell taping apparatus of any of claims 1-5, wherein, The adhesive applying mechanism (400) comprises a fourth driving member (410), a fifth driving member (420) and an adhesive applying head (430), the fourth driving member (410) is connected with the fifth driving member (420) and arranged to drive the fifth driving member (420) to move along the second direction, the fifth driving member (420) is connected with the adhesive applying head (430) and arranged to drive the adhesive applying head (430) to move along the first direction.
10. The cell taping apparatus of claim 9, wherein, The adhesive applying head (430) comprises an adhesive applying support (431) and an adhesive applying block (432), the adhesive applying support (431) is connected with the fifth driving member (420) and arranged to mount the adhesive applying block (432) and at least part of the shaping mechanism (500). The adhesive applying head (430) comprises an adhesive applying support (431) and an adhesive applying block (432), the adhesive applying support (431) is connected with the fifth driving member (420) and arranged to mount the adhesive applying block (432) and at least part of the shaping mechanism (500).