Battery cell side surface rubberizing device

By designing the side adhesive device on the battery cell, the problem of unstable fixation on the side of the battery cell is solved, and efficient small-face adhesive is achieved, which improves the structural strength and sealing of the battery module and ensures battery safety.

CN120364239APending Publication Date: 2025-07-25江苏逸飞激光设备有限公司 +1
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Patent Information

Application Number
CN202510505392.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-22
Publication Date
2025-07-25

AI Technical Summary

Technical Problem

In the prior art, the combination bonding method of battery cells is mainly the bonding between large surfaces, and the lack of effective small surface glueing devices, resulting in unstable fixation of the side of the battery cell, affecting the structural strength and sealing of the battery module.

Method used

A side adhesive bonding device for battery cells is designed, including a feeding mechanism, a cutting mechanism, a transfer mechanism and a sticking mechanism. The foam tape is cut into strips through the cutting mechanism and transferred to the sticking mechanism from the transfer mechanism to achieve small-side adhesive bonding on the side of the battery cells.

Benefits of technology

It realizes efficient and convenient small-face adhesive on the side of the battery cell, improves the structural strength and sealing of the battery module, and ensures the safe and reliable operation of the battery.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a battery cell side surface rubberizing device which comprises a cabinet, two groups of processing stations are arranged on the cabinet, and each of the two groups of processing stations comprises a feeding mechanism, a cutting mechanism and a transfer mechanism which are sequentially arranged on the cabinet; the feeding mechanism is used for conveying a foam tape to the cutting mechanism and collecting upper and lower layers of release paper; the cutting mechanism is used for cutting the conveyed foam tape into strips; the transfer mechanism is used for transferring the foam tape cut into strips from the cutting mechanism to a subsequent station; and a pasting mechanism is also arranged on the cabinet and is used for alternately taking the foam adhesive tapes output by the two groups of transfer mechanisms and pasting the foam adhesive tapes on the battery cells. Small-surface rubberizing can be efficiently, conveniently and effectively performed on the side surface of the battery cell, so that actual use is facilitated.
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Description

Technical Field

[0001] The present invention relates to the technical field of cell taping, and particularly to a cell side taping device. Background Art

[0002] The statements herein only provide background art related to the present invention and do not necessarily constitute prior art.

[0003] During the battery assembly process, a specific tape is required to fix the cell to maintain its shape stability, prevent short circuits, and enhance the structural strength and sealing performance of the battery module. This process is achieved by pasting tapes at multiple parts of the cell, which is a key step to ensure the safe and reliable operation of the battery. When taping, it is necessary to perform a double-sided taping operation on the small surface of 1 - 5 cells on the tooling plate to enable the subsequent small surface fitting of multiple cells to achieve the production process. However, in the prior art, the cell grouping and fitting method is the fitting between large surfaces, so the taping station only allows the double-sided tape to be pasted on the large surface of the cell. Therefore, how to design a cell side taping device capable of performing small surface taping has become a problem that needs to be solved by those skilled in the art. Summary of the Invention

[0004] The purpose of the present invention is to address the above deficiencies and provide a cell side taping device that can effectively perform small surface taping on the cell side.

[0005] To solve the above technical problems, the present invention adopts the following technical solutions: A cell side taping device includes a cabinet, and two sets of processing stations are arranged on the cabinet. Each of the two sets of processing stations includes a feeding mechanism, a cutting mechanism, and a transfer mechanism arranged on the cabinet in sequence;

[0006] The feeding mechanism is used to convey the foam tape to the cutting mechanism and collect the upper and lower release papers;

[0007] The cutting mechanism is used to cut the conveyed foam tape into strips;

[0008] The transfer mechanism is used to transfer the foam tape cut into strips from the cutting mechanism to the subsequent station;

[0009] A pasting mechanism is further arranged on the cabinet. The pasting mechanism is used to alternately retrieve the foam tapes output by the two transfer mechanisms and paste them on the cell.

[0010] Further, the feeding mechanism includes a table body, and a first power unit, a tape feeding roll assembly, a first winding wheel, a second winding wheel, a traction assembly, and a tape guide wheel are arranged on the table body;

[0011] The tape feeding roll assembly is used to load the foam tape in a roll form;

[0012] The tape guide wheel is used to guide the conveyance of the foam tape and guide each release paper to transfer to the corresponding winding wheel.

[0013] The first winding wheel, the second winding wheel and the traction assembly can all be driven by the first power unit to move, so as to traction the foam tape and wind and collect the peeled upper release paper and lower release paper.

[0014] Further, the cutting mechanism includes a primary cutting assembly and a secondary cutting assembly.

[0015] The primary cutting assembly includes a first cylinder and a first cutter.

[0016] The first cylinder can drive the first cutter to move up and down, so that the first cutter cuts the foam tape moving to its bottom into strips.

[0017] The secondary cutting assembly includes a second cylinder, a second cutter, a first pressing plate, a second pressing plate and a ranging detection module.

[0018] The second cylinder can drive the second cutter, the first pressing plate, the second pressing plate and the ranging detection module to move up and down.

[0019] The second cutter can secondarily cut the foam tape after moving downward.

[0020] The second pressing plate is arranged at the bottom of the first pressing plate. When moving downward along with the first pressing plate, it can press the strip-shaped foam tape to the transfer mechanism, and the second pressing plate is a Teflon plate, which can not adhere to the foam tape.

[0021] The ranging detection module can measure the height of the foam tape when passing through its bottom and judge whether there is material at this station.

[0022] Further, the cutting mechanism further includes a dial indicator and an adjusting screw. The dial indicator is used to detect the levelness of both ends of the first cutter, and the adjusting screw is used to adjust the levelness of the first cutter.

[0023] Further, the transfer mechanism includes a servo sliding table and a glue receiving platform.

[0024] The servo sliding table can drive the glue receiving platform to successively pick up the cut foam tape, and after being full, reciprocate through the cutting mechanism and the pasting mechanism.

[0025] The glue receiving platform includes a second power unit, a push plate, a table board and at least two adsorption platforms.

[0026] The second power unit is arranged at the bottom of the first pressing plate and is used to drive the push plate to move up and down.

[0027] Each of the adsorption platforms is slidably arranged on the platen in the up and down direction, and the servo slide table can drive the corresponding adsorption platform to move between the first pressing plate and the second power unit;

[0028] When the push plate rises, it can push the corresponding adsorption platform to rise, so as to carry and adsorb the foam tape after the first cutting. It can also abut against the lower part of the foam tape when the second cutter performs the secondary cutting on the foam tape. The number of the adsorption platforms is configured to be multiple.

[0029] Furthermore, the pasting mechanism includes a first moving component, a second moving component, a third moving component, a first rotating component, a second rotating component, and a material taking component;

[0030] The first moving component is used to drive the material taking component to move along the X-axis direction;

[0031] The second moving component is used to drive the material taking component to move along the Y-axis direction;

[0032] The third moving component is used to drive the material taking component to move along the Z-axis direction;

[0033] The first rotating component is used to drive the material taking component to rotate along the R-axis direction;

[0034] The second rotating component is used to drive the material taking component to rotate along the θ-axis direction.

[0035] Furthermore, the material taking component includes a telescopic cylinder and an adsorption plate;

[0036] When the material taking component is displaced and rotated above the adsorption platform, the telescopic cylinder can drive the adsorption plate to approach the foam tape on the adsorption platform;

[0037] After approaching the foam tape, the adsorption plate can adsorb it.

[0038] Furthermore, the number of the adsorption plates is configured to be multiple, and the number of the adsorption plates is the same as that of the adsorption platforms.

[0039] Furthermore, it further includes a detection mechanism, which is used to detect the size of the cut foam.

[0040] Furthermore, the detection mechanism includes:

[0041] A light source module, which is used to supplement light when the foam tape passes by;

[0042] A vision camera, which is used to detect the size of the foam tape.

[0043] The beneficial effects of the present invention are embodied in:

[0044] In the present invention, a foam tape in a roll shape and having two layers of release paper on the upper and lower sides is disposed on a feeding mechanism. During use, the feeding mechanism conveys the foam tape to a cutting mechanism. During the conveying process, the release paper on the upper layer is separated from the tape, and when the foam tape passes through the cutting mechanism, it is cut into strips. At this time, the release paper on the lower layer is also separated from the foam tape. A transfer mechanism transports it to subsequent workstations. There are two sets of the above structures, which work in the above manner, and a pasting mechanism alternately retrieves the foam tapes output by the two sets of transfer mechanisms and pastes them on the battery cells. This method can efficiently, conveniently and effectively perform small-surface gluing on the side surfaces of the battery cells, thus facilitating actual use. BRIEF DESCRIPTION OF THE DRAWINGS

[0045] Figure 1 is a three-dimensional view of the present invention;

[0046] Figure 2 is a side view of the structure of the present invention;

[0047] Figure 3 is a schematic structural view of the feeding mechanism in the present invention;

[0048] Figure 4 is a partial view of the primary cutting assembly in the present invention;

[0049] Figure 5 is a partial view of the secondary cutting assembly in the present invention;

[0050] Figure 6 is a partial view of the detection mechanism in the present invention;

[0051] Figure 7 is a partial view of the transfer mechanism in the present invention;

[0052] Figure 8 is a partial view of the pasting mechanism in the present invention;

[0053] Figure 9 is a partial view of the material taking assembly in the present invention;

[0054] Figure 10 is a schematic view of the feeding of the feeding mechanism in the present invention.

[0055] In the figure:

[0056] 1. Cabinet; 2. Feeding mechanism; 21. Table body; 22. First power unit; 23. Tape feeding roll assembly; 24. First winding wheel; 25. Second winding wheel; 26. Traction assembly; 27. Tape guide wheel; 3. Cutting mechanism; 31. Primary cutting assembly; 311. First cylinder; 312. First cutter; 32. Secondary cutting assembly; 321. Second cylinder; 322. Second cutter; 323. First pressing plate; 324. Second pressing plate; 325. Distance measuring and detecting module; 4. Transfer mechanism; 41. Servo sliding table; 42. Glue receiving platform; 421. Second power unit; 422. Pushing plate; 423. Table board; 424. Adsorption table; 5. Pasting mechanism; 51. First moving assembly; 52. Second moving assembly; 53. Third moving assembly; 54. First rotating assembly; 55. Second rotating assembly; 56. Material taking assembly; 561. Telescopic cylinder; 562. Adsorption plate; 6. Detection mechanism; 61. Light source module; 62. Vision camera. Detailed implementation manner

[0057] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. Without conflict, the embodiments in the present application and the features in the embodiments can be combined with each other. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0058] Please refer to Figure 1-10 , the present invention discloses a side glue pasting device for electric cores, including a cabinet 1, on which two processing stations are arranged, and both of the two processing stations include a feeding mechanism 2, a cutting mechanism 3, and a transfer mechanism 4 that are sequentially arranged on the cabinet 1.

[0059] In an embodiment, the feeding mechanism 2 is used to convey the foam tape to the cutting mechanism 3 and collect the upper and lower release papers. The cutting mechanism 3 is used to cut the conveyed foam tape into strips. The transfer mechanism 4 is used to transfer the cut foam tape from the cutting mechanism 3 to the subsequent workstations. A pasting mechanism 5 is also arranged on the cabinet 1, and the pasting mechanism 5 is used to alternately retrieve the foam tapes output by the two transfer mechanisms 4 and paste them on the electric cores.

[0060] In specific implementation, a foam tape in a roll shape with two layers of release paper on the upper and lower sides is arranged on the feeding mechanism 2. During use, the feeding mechanism 2 conveys the foam tape to the cutting mechanism 3. During the conveying process, the release paper on the upper layer is separated from the tape, and when the foam tape passes through the cutting mechanism 3, it is cut into strips. At this time, the release paper on the lower layer is also separated from the foam tape. The transfer mechanism 4 transfers it to the subsequent workstations. There are two sets of the above structures, which work in the above manner, and the pasting mechanism 5 alternately retrieves the foam tapes output by the two sets of transfer mechanisms 4 and pastes them on the battery cells. This method can efficiently, conveniently and effectively perform small-area pasting on the side of the battery cells, thus facilitating actual use.

[0061] In one embodiment, the feeding mechanism 2 includes a table body 21 installed on the cabinet 1. The table body 21 is equipped with a first power unit 22. A material-releasing roll assembly 23 is installed on the table body 21. The material-releasing roll assembly 23 is located on the side of the table body 21 away from the cutting mechanism 3. The material-releasing roll assembly 23 includes an expansion shaft rotatably installed on the table body 21 and a driving device. The driving device can be a motor, which can drive the expansion shaft to rotate when it works. A first winding wheel 24 and a second winding wheel 25 are respectively rotatably installed on the lower side and the upper side of the table body 21. A traction assembly 26 is arranged on the table body 21. The traction assembly 26 includes a plurality of guide rollers rotatably installed on the table body 21. A tape guide wheel 27 is rotatably installed on the side of the table body 21 away from the material-releasing roll assembly 23.

[0062] In specific implementation, the expansion shaft on the material-releasing roll assembly 23 is used to load the foam tape in a roll shape. The tape guide wheel 27 is used to guide the conveyance of the foam tape and guide each release paper to the corresponding winding wheel. Each of the first winding wheel 24, the second winding wheel 25 and the guide rollers of the traction assembly 26 can be driven by the first power unit 22 to move, so as to traction the foam tape and wind and collect the peeled upper-layer release paper and lower-layer release paper. Specifically, the staff places the roll material on the expansion shaft, then controls the expansion of the expansion shaft and presses it against the inner wall of the roll material. Subsequently, the staff stretches the end of the roll-shaped foam tape and peels off the upper and lower release papers. As Figure 10 shown, each traction assembly 26 includes guide rollers marked as A, B, C, D, F, G, H, and the tape guide wheel 27 is a wheel body marked as E. After the upper-layer release paper is peeled off from the roll-shaped foam tape, it passes through A and B in sequence and is wound around the second winding wheel 25, while the lower-layer release paper passes through A, C, D, the cutting position of the cutting mechanism 3, E, F, G, H in sequence and is wound around the first winding wheel 24, so as to complete the feeding of the foam tape and the traction and collection of the release paper.

[0063] In one embodiment, the cutting mechanism 3 includes a base mounted on the cabinet 1. A primary cutting assembly 31 and a secondary cutting assembly 32 are mounted on the base. Among them, the primary cutting assembly 31 includes a first cylinder 311 mounted on the base. A first cutter 312 is mounted on the moving end of the first cylinder 311. During use, the first cylinder 311 can drive the first cutter 312 to move up and down, so that the first cutter 312 cuts the foam tape moving to its bottom into strips; and the secondary cutting assembly 32 includes a second cylinder 321 mounted on the base. A second cutter 322, a first pressing plate 323 and a ranging detection module 325 are respectively mounted on the moving end of the second cylinder 321. A second pressing plate 324 is mounted on the bottom of the first pressing plate 323.

[0064] The second cylinder 321 described above can drive the second cutter 322, the first pressing plate 323, the second pressing plate 324, and the ranging detection module 325 to move up and down. Among them, the second cutter 322 can secondarily cut the foam tape after moving downward. The second pressing plate 324 can press the strip-shaped foam tape to the transfer mechanism 4 when moving downward with the first pressing plate 323. And the second pressing plate 324 is a Teflon plate, which can not stick to the foam tape. The ranging detection module 325 can measure the height of the foam tape when passing through its bottom and judge whether there is material at this station.

[0065] In specific implementation, the foam tape and the lower release paper conveyed by the feeding mechanism 2 travel to the cutting mechanism 3. The first cutter 312 will cut them into strip-shaped foams of corresponding sizes one by one. After the primary cutting, the second cutter 322 will perform secondary cutting on them to prevent the situation that the primary cutting fails to cut through. Before the secondary cutting, the lower release paper is first transferred to the first winding wheel 24, and the strip-shaped foam tapes pass one by one under the second pressing plate 324. After the second pressing plate 324 descends, it presses them to the transfer mechanism 4 to wait for subsequent secondary cutting and transfer transportation.

[0066] In one embodiment, the cutting mechanism 3 further includes a dial indicator and an adjusting screw. The dial indicator is used to detect the levelness of both ends of the first cutter 312, and the adjusting screw is used to adjust the levelness of the first cutter 312.

[0067] With such a design, the levelness of the first cutter 312 is detected by the dial indicator to ensure good accuracy when the first cutter 312 cuts the foam tape. When the dial indicator detects that the levelness of the first cutter 312 is insufficient, it can be adjusted by the adjusting screw. The method of adjusting the levelness of the first cutter 312 by the adjusting screw belongs to the common knowledge in the art, so the specific structural composition and working principle are not described in detail in this text.

[0068] In one embodiment, the transfer mechanism 4 includes a servo slide 41 and a glue receiving platform 42. Among them, the servo slide 41 is installed on the cabinet 1, and the servo slide 41 can drive the glue receiving platform 42 to sequentially pick up the cut foam tape, and after being filled, it reciprocates past the cutting mechanism 3 and the pasting mechanism 5. The glue receiving platform 42 includes a second power unit 421, a push plate 422, a table plate 423, and at least two suction platforms 424. Among them, the second power unit 421 is arranged at the bottom of the first pressing plate 323, and it is used to drive the push plate 422 to move up and down. Each suction platform 424 is slidably installed on the table plate 423, and the table plate 423 is installed at the moving end of the servo slide 41. When the servo slide 41 works, it can drive each suction platform 424 to slide through the table plate 423, and make the corresponding suction platform 424 move between the first pressing plate 323 and the second power unit 421. The suction platform 424 has suction holes, and the suction platform 424 can cooperate with an air pump (not shown in the figure) to suck the foam tape under negative pressure. The number of suction platforms 424 is configured to be multiple.

[0069] In specific implementation, the servo slide 41 drives the corresponding suction platform 424 to displace to the blanking station of the cutting mechanism 3. When the foam tape is cut for the first time, the push plate 422 rises to push the corresponding suction platform 424 to rise to pick up the foam tape, and at this time, the second pressing plate 324 presses it onto the suction platform 424. During this process, the suction platform 424 cooperates with the air pump to suck the foam tape under negative pressure, and at the same time, the second cutting knife 322 cuts the foam tape for the second time. Through the above method, multiple suction platforms 424 can be loaded with foam tape, and finally, it can be transferred to the receiving place of the pasting mechanism 5 through the servo slide 41.

[0070] In one embodiment, the pasting mechanism 5 includes a second moving component 52 installed on the cabinet 1, a first moving component 51 installed at the moving end of the second moving component 52, a third moving component 53 installed at the moving end of the first moving component 51, a first rotating component 54 installed at the moving end of the third moving component 53, a second rotating component 55 installed at the moving end of the first rotating component 54, and a material taking component 56 installed at the moving end of the second rotating component 55. Among them, the first moving component 51 is used to drive the material taking component 56 to move along the X-axis direction, the second moving component 52 is used to drive the material taking component 56 to move along the Y-axis direction, the third moving component 53 is used to drive the material taking component 56 to move along the Z-axis direction, the first rotating component 54 is used to drive the material taking component 56 to rotate along the R-axis direction, and the second rotating component 55 is used to drive the material taking component 56 to rotate along the θ-axis direction.

[0071] In specific implementation, the first moving component 51, the second moving component 52, and the third moving component 53 can all be linear modules, which are used to move the material picking component 56 in the X, Y, and Z axis directions of the cabinet 1. The first rotating component 54 and the second rotating component 55 can be servo motors, which are used to rotate the material picking component 56 in the R and θ axis directions of the cabinet 1, so that the material picking component 56 can be adjusted in multiple directions and pick up the strip-shaped foam tapes on each adsorption table 424, and paste them on the battery cells to complete the tape pasting operation.

[0072] In one embodiment, the material picking component 56 includes a telescopic cylinder 561 installed at the moving end of the first rotating component 54 and an adsorption plate 562 installed at the moving end of the telescopic cylinder 561. Among them, when the material picking component 56 is displaced and rotated above the adsorption table 424, the telescopic cylinder 561 can drive the adsorption plate 562 to approach the foam tape on the adsorption table 424. The adsorption plate 562 has the same structure as the adsorption table 424 and can cooperate with the air pump to suck the foam tape. The adsorption plate 562 can adsorb the foam tape after approaching it.

[0073] In specific implementation, when the adsorption plate 562 is displaced and approaches the corresponding foam tape, the adsorption table 424 is controlled to stop sucking the tape. At this time, the adsorption plate 562 can work and suck the foam tape. After sucking is completed, through the above multi-directional adjustment, the foam tape can approach and contact the battery cell and paste with it.

[0074] In one embodiment, the number of adsorption plates 562 is configured to be multiple, and the number of adsorption plates 562 is the same as that of the adsorption tables 424.

[0075] With such a design, the pasting mechanism 5 can alternately retrieve the foam tapes output by the two transfer mechanisms 4, so that the pasting operation can be performed on a relatively large number of foam tapes, and thus has better working efficiency.

[0076] In one embodiment, the device further includes a detection mechanism 6.

[0077] With such a design, the detection mechanism 6 is used to detect the size of the cut foam to ensure that the size of the foam tape is appropriate and accurate.

[0078] In one embodiment, the detection mechanism 6 includes a frame installed at the corresponding cutting mechanism 3 of the cabinet 1. A light source module 61 and a vision camera 62 are installed on the frame. Among them, the light source module 61 is used to supplement light when the foam tape passes by, and the vision camera 62 is used to detect the size of the foam tape.

[0079] With such a design, the vision camera 62 can detect the cut foam tape to determine whether the foam tape meets the accuracy requirements; and the above detection mechanism 6 belongs to the common knowledge in the field, so the specific structural composition and working principle are not described in detail in this text.

[0080] It should be noted that if there are directional indications (such as up, down, left, right, front, back...) involved in the embodiments of the present invention, then such directional indications are only used to explain the relative positional relationship, movement conditions, etc. between components in a specific posture (as shown in the attached drawings). If the specific posture changes, then the directional indications will also change accordingly.

[0081] In addition, if there are descriptions involving "first", "second", etc. in the embodiments of the present invention, then such descriptions of "first", "second", etc. are only for descriptive purposes and should not be understood as indicating or implying their relative importance or implicitly specifying the quantity of the indicated technical features. Thus, features defined with "first" and "second" may explicitly or implicitly include at least one such feature. In addition, the technical solutions between various embodiments can be combined with each other, but it must be based on what can be achieved by those of ordinary skill in the art. When the combination of technical solutions results in contradictions or cannot be achieved, it should be considered that such a combination of technical solutions does not exist and is not within the scope of protection required by the present invention.

[0082] In addition, "a plurality of" means two or more.

[0083] The above are only the preferred embodiments of the present invention and are not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention shall be included within the protection scope of the present invention.

Claims

1. A side adhesive pasting device for an electric core, comprising a cabinet (1), characterized in that: Two sets of processing stations are provided on the cabinet (1), and both sets of the processing stations include a feeding mechanism (2), a cutting mechanism (3), and a transfer mechanism (4) that are sequentially arranged on the cabinet (1). The feeding mechanism (2) is used to convey the foam tape to the cutting mechanism (3) and collect the upper and lower release papers. The cutting mechanism (3) is used to cut the conveyed foam tape into strips. The transfer mechanism (4) is used to transfer the foam tape cut into strips from the cutting mechanism (3) to the subsequent workstations. A pasting mechanism (5) is further provided on the cabinet (1), and the pasting mechanism (5) is used to alternately retrieve the foam tapes output by the two transfer mechanisms (4) and paste them on the battery cells.

2. The side gluing device for an electric core according to claim 1, wherein: The feeding mechanism (2) includes a table body (21), and a first power unit (22), a material feeding roll assembly (23), a first winding wheel (24), a second winding wheel (25), a traction assembly (26), and a tape guide wheel (27) are arranged on the table body (21). The material feeding roll assembly (23) is used to load the foam tape in a roll shape. The tape guide wheel (27) is used to guide the conveyance of the foam tape and guide each release paper to the corresponding winding wheel. The first winding wheel (24), the second winding wheel (25), and the traction assembly (26) can all be driven by the first power unit (22) to move, so as to traction the foam tape and wind and collect the peeled upper release paper and lower release paper.

3. The side glue sticking device for an electric core according to claim 1, wherein: The cutting mechanism (3) includes a primary cutting assembly (31) and a secondary cutting assembly (32). The primary cutting assembly (31) includes a first air cylinder (311) and a first cutter (312). The first air cylinder (311) can drive the first cutter (312) to move up and down, so that the first cutter (312) cuts the foam tape moving to its bottom into strips. The secondary cutting assembly (32) includes a second air cylinder (321), a second cutter (322), a first pressing plate (323), a second pressing plate (324), and a ranging detection module (325). The second air cylinder (321) can drive the second cutter (322), the first pressing plate (323), the second pressing plate (324), and the ranging detection module (325) to move up and down. The second cutter (322) can perform secondary cutting on the foam tape after moving downward. The second pressing plate (324) is arranged at the bottom of the first pressing plate (323), and it can press the strip-shaped foam tape to the transfer mechanism (4) when moving downward with the first pressing plate (323), and the second pressing plate (324) is a Teflon plate and can not stick to the foam tape. The ranging detection module (325) can measure the height of the foam tape when passing through its bottom and judge whether there is material at this station.

4. The side glue pasting device for an electric core according to claim 3, wherein: The cutting mechanism (3) further includes a dial indicator and an adjusting screw. The dial indicator is used to detect the levelness of both ends of the first cutter (312), and the adjusting screw is used to adjust the levelness of the first cutter (312).

5. The side glue - sticking device for an electric core according to claim 1, characterized in that: The transfer mechanism (4) includes a servo sliding table (41) and a glue receiving platform (42). The servo slide table (41) can drive the glue receiving platform (42) to sequentially pick up the cut foam tape, and after being full, reciprocate through the cutting mechanism (3) and the pasting mechanism (5); The glue receiving platform (42) includes a second power unit (421), a push plate (422), a table board (423), and at least two adsorption platforms (424); The second power unit (421) is arranged at the bottom of the first pressing plate (323), and is used to drive the push plate (422) to move up and down; Each of the adsorption platforms (424) is slidably arranged on the table board (423), and the servo slide table (41) can drive the corresponding adsorption platform (424) to move between the first pressing plate (323) and the second power unit (421); When the push plate (422) rises, it can push the corresponding adsorption platform (424) to rise, so as to carry and adsorb the cut foam tape once, and can also abut against the lower part of the foam tape when the second cutter (322) performs secondary cutting on the foam tape. The number of the adsorption platforms (424) is configured to be multiple.

6. The side glue sticking device for an electric core according to claim 1, wherein: The pasting mechanism (5) includes a first moving component (51), a second moving component (52), a third moving component (53), a first rotating component (54), a second rotating component (55), and a material taking component (56); The first moving component (51) is used to drive the material taking component (56) to move along the X-axis direction; The second moving component (52) is used to drive the material taking component (56) to move along the Y-axis direction; The third moving component (53) is used to drive the material taking component (56) to move along the Z-axis direction; The first rotating component (54) is used to drive the material taking component (56) to rotate along the R-axis direction; The second rotating component (55) is used to drive the material taking component (56) to rotate along the θ-axis direction.

7. The side glue pasting device for an electric core according to claim 6, wherein: The material taking component (56) includes a telescopic cylinder (561) and an adsorption plate (562); When the material taking component (56) is displaced and rotated above the adsorption platform (424), the telescopic cylinder (561) can drive the adsorption plate (562) to approach the foam tape on the adsorption platform (424); The adsorption plate (562) can adsorb the foam tape after approaching it.

8. The side glue pasting device for an electric core according to claim 5, characterized in that: The number of the adsorption plates (562) is configured to be multiple, and the number of the adsorption plates (562) is the same as that of the adsorption platforms (424).

9. The side glue pasting device for an electric core according to claim 1, wherein: It further includes a detection mechanism (6), which is used to detect the size of the cut foam.

10. The side adhesive pasting device for an electric core according to claim 9, characterized in that: The detection mechanism (6) includes: A light source module (61), which is used to supplement light when the foam tape passes by; A vision camera (62), which is used to detect the size of the foam tape.