Battery rubberizing device
By designing a battery adhesive applicator, automated adhesive tape application was achieved, solving the problems of low accuracy and efficiency in manual adhesive application in existing technologies, and realizing a highly efficient and accurate adhesive tape application process.
Patent Information
- Application Number
- CN202520371303.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-03
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-03-03
AI Technical Summary
Current technologies for applying adhesive to batteries have low accuracy and efficiency, relying mainly on manual operation.
A battery adhesive applicator was designed, comprising a feeding mechanism, a cutting mechanism, an adsorption mechanism, and a battery placement seat. The device automates the feeding, cutting, and pasting of the adhesive tape through mechanization, ensuring that the tape is accurately pasted onto the battery.
It improved the accuracy and efficiency of adhesive tape application, simplified the operation process, and enhanced the automation level of battery production.
Smart Images

Figure CN223737355U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a rubberizing device technical field especially relates to a battery rubberizing device. BACKGROUND
[0002] During the production and processing of batteries or after the production is completed, the batteries need to be rubberized. For example, after the production of the battery is completed, the battery shell needs to be pasted with rubber paper. The rubber paper pasted on the battery shell is an important component of the battery, and the relevant information of the battery is marked on the rubber paper, which helps the correct use, detection and maintenance of the battery.
[0003] Currently, the rubber paper is usually pasted on the battery shell by using manual operation. First, a rubberizing needle is used to perform a rubberizing operation on the rubber paper to complete the preparation of the rubber paper. Then, the rubber paper is manually pasted on the specified area of the battery shell to complete the pasting of the rubber paper. However, the manual rubberizing method cannot guarantee the accuracy of the position of the pasted rubber paper, and the work efficiency is low.
[0004] In the process of realizing the utility model, the inventor found that at least the following problems exist in the prior art:
[0005] The existing rubberizing of the battery is manually pasted, which has low accuracy and work efficiency. CONTENT OF THE UTILITY MODEL
[0006] The utility model aims to provide a battery rubberizing device to solve the technical problem of low accuracy and work efficiency of the manual pasting of the battery in the prior art. The preferred technical solution in the many technical solutions provided by the utility model can produce many technical effects, which are described below.
[0007] To achieve the above-mentioned purpose, the utility model provides the following technical solutions:
[0008] The battery rubberizing device provided by the utility model comprises a feeding mechanism, a shearing mechanism, a suction mechanism, an auxiliary mechanism and a battery placing seat arranged on a bearing table.
[0009] The feeding mechanism is used to convey the rubber roll.
[0010] The shearing mechanism is arranged at the end of the feeding mechanism and is used to shear the rubber roll into rubber paper.
[0011] The suction mechanism is arranged at the end of the shearing mechanism and is used to suction the rubber paper. The suction mechanism is movably connected with the bearing table and can move in the first direction of the bearing table.
[0012] The auxiliary mechanism is arranged above the adsorption mechanism and can move in a second direction, cooperates with the feeding mechanism to pull the end of the film roll, and cuts the film roll after the film is pulled to a set length by the cutting mechanism.
[0013] The battery placing seat is arranged in the first direction and corresponds to the adsorption surface of the adsorption mechanism, and the battery placing seat is used for placing a battery.
[0014] Optionally, the adsorption mechanism comprises a driving assembly, a sliding assembly and an adsorption assembly; the driving assembly and the sliding assembly are arranged in the first direction of the bearing table; the sliding assembly is connected with the driving assembly, and the adsorption assembly is connected with the sliding assembly; and the adsorption assembly moves in the first direction under the action of the driving assembly and the sliding assembly.
[0015] Optionally, the sliding assembly comprises a sliding rail, a sliding block and a connecting plate; the sliding rail is arranged on the bearing table; the sliding block is slidably connected with the sliding rail; the connecting plate is fixedly connected with the sliding block; and the connecting plate is connected with the adsorption assembly and the driving assembly, respectively.
[0016] Optionally, the adsorption assembly comprises a first mounting plate, a second mounting plate and an adsorption plate; the adsorption plate is arranged above the sliding assembly through the first mounting plate and the second mounting plate, and is used for adsorbing the film.
[0017] Optionally, the adsorption plate is provided with an adsorption surface, and a plurality of adsorption holes are arranged on the adsorption surface; and the adsorption surface corresponds to the battery placing seat.
[0018] Optionally, the auxiliary mechanism comprises an auxiliary motor, an auxiliary moving assembly and an auxiliary assembly; the auxiliary motor and the auxiliary moving assembly are arranged in the first direction on the top of the adsorption assembly; the auxiliary assembly is fixedly connected with the auxiliary moving assembly, and one side of the auxiliary assembly corresponds to the adsorption surface.
[0019] Optionally, the feeding mechanism comprises a feeding disc and a plurality of feeding shafts; the feeding disc is used for placing the film roll; and the plurality of feeding shafts are arranged in sequence at the rear end of the feeding disc; and the feeding disc and the plurality of feeding shafts cooperate to pull and convey the film roll.
[0020] Optionally, the battery film pasting device further comprises a control mechanism, and the feeding mechanism, the cutting mechanism, the adsorption mechanism and the auxiliary mechanism are connected with the control mechanism.
[0021] Optionally, the first direction is a Y-axis direction, and the second direction is an X-axis direction.
[0022] Optionally, the feeding mechanism, the shearing mechanism, the adsorbing mechanism, the auxiliary mechanism and the battery placing seat are located at the same horizontal height.
[0023] The technical scheme in the above technical scheme of the utility model has the following advantages or beneficial effects:
[0024] The feeding mechanism, the shearing mechanism and the auxiliary mechanism can cooperate with each other to shear the film roll into film paper of a set length, the film paper of the set length is adsorbed by the adsorbing mechanism, and the film paper can move to the position of the battery placing seat in the first direction under the action of the adsorbing mechanism, and finally be pasted on the battery. The utility model has simple structure and high accuracy in the process of pasting, and improves the pasting efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0025] In order to more clearly illustrate the technical scheme of the embodiments of the utility model, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the utility model, and for those skilled in the art, other drawings can also be obtained according to the drawings without creative labor, and the drawings are as follows:
[0026] Figure 1 It is the first view schematic diagram of the overall structure of the embodiment of the utility model;
[0027] Figure 2 It is the second view schematic diagram of the overall structure of the embodiment of the utility model;
[0028] Figure 3 It is the connection schematic diagram of the adsorbing mechanism and the auxiliary mechanism in the embodiment of the utility model.
[0029] In the drawing: 1, bearing table; 2, feeding mechanism; 21, feeding disc; 22, feeding shaft; 3, shearing mechanism; 4, auxiliary mechanism; 41, auxiliary motor; 411, motor rod; 42, auxiliary moving assembly; 421, guide rail; 422, guide block; 423, guide plate; 43, auxiliary assembly; 5, adsorbing mechanism; 51, driving assembly; 511, motor; 512, driving rod; 513, connecting block; 52, sliding assembly; 521, sliding rail; 522, sliding block; 523, connecting plate; 53, adsorbing assembly; 531, first mounting plate; 532, second mounting plate; 533, adsorbing plate; 534, adsorbing surface; 535, adsorbing hole; 6, battery placing seat. DETAILED DESCRIPTION
[0030] In order to make the purpose, technical scheme and advantages of the utility model clearer and more apparent, the various exemplary embodiments to be described below will be referred to the corresponding drawings, which constitute a part of the exemplary embodiments, wherein the various exemplary embodiments possibly adopted to realize the utility model are described. Unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. The embodiments described in the following exemplary embodiments do not represent all the embodiments consistent with the present disclosure. It should be understood that they are only examples of processes, methods and devices, etc. consistent with some aspects of the utility model disclosed as detailed in the appended claims, other embodiments can also be used, or structural and functional modifications can be made to the embodiments listed herein, without departing from the scope and essence of the utility model.
[0031] In the description of the utility model, it is understood that the terms "center", "longitudinal", "transverse" and the like indicate the orientation or positional relationship shown in the drawings, only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the elements referred to must have a specific orientation, structure and operation. The terms "first", "second" and the like are only for the purpose of description, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of technical features indicated. The term "a plurality of" means two or more. The terms "connected", "connected" should be broadly understood, for example, it can be fixed connection, detachable connection, integral connection, mechanical connection, electrical connection, communication connection, direct connection, indirect connection through intermediate medium, it can be the internal communication of two elements or the interaction relationship of two elements. The term "and / or" includes any and all combinations of one or more related listed items. For ordinary skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.
[0032] In order to illustrate the technical scheme of the utility model, the following specific embodiments are described, only the part related to the embodiment of the utility model is shown.
[0033] Embodiment:
[0034] As Figures 1-3The utility model provides a battery gumming device, including setting on the feeding mechanism 2, shearing mechanism 3, auxiliary mechanism 4, adsorption mechanism 5 and battery seat 6 of bearing platform 1, the feeding mechanism 2 is used for conveying the rubber roll, shearing mechanism 3 sets up at the end of feeding mechanism 2, is used for cutting rubber roll into adhesive tape, adsorption mechanism 5 sets up at the end of shearing mechanism 3, is used for adsorbing adhesive tape, wherein, adsorption mechanism 5 is movably connected with bearing platform 1, and can be moved in the position of bearing platform 1's first direction, auxiliary mechanism 4 sets up above adsorption mechanism 5, and can be moved in the position of second direction, and cooperate with feeding mechanism 2 and pull the rubber head end of rubber roll, and the adhesive tape is pulled to the shearing mechanism 3 and is cut into the rubber roll of shearing mechanism 3, battery seat 6 sets up in the first direction, and corresponds with the adsorption surface 534 of adsorption mechanism 5, battery seat 6 is used for placing battery, and adsorption mechanism 5 drives adhesive tape and moves in the position in the first direction, and the adhesive tape of adsorption is pasted on battery.
[0035] Specifically, the bearing platform 1 in the embodiment is used to provide a plane for the feeding mechanism 2, the shearing mechanism 3, the auxiliary mechanism 4, the adsorption mechanism 5 and the battery seat 6, so that they are arranged on the same plane, and the feeding mechanism 2, the shearing mechanism 3, the auxiliary mechanism 4, the adsorption mechanism 5 and the battery seat 6 are supported.
[0036] In the embodiment, as shown in the drawings, Figures 1-2 the feeding mechanism 2 and the shearing mechanism 3 are sequentially arranged on the bearing platform 1, the feeding mechanism 2 is arranged in front and used to convey the rubber roll, the shearing mechanism 3 is arranged behind and used to cut the rubber roll into adhesive tape, the adsorption mechanism 5 is arranged at the end of the shearing mechanism 3 and movably connected with the bearing platform 1, and can move in the position of the first direction of the bearing platform 1, and the auxiliary mechanism 4 is arranged above the adsorption mechanism 5. The auxiliary mechanism 4 can move in the position of the second direction on the adsorption mechanism 5, can move to the end of the shearing mechanism 3, pull the rubber head end of the rubber roll in the second direction, cut the rubber roll into adhesive tape by the shearing mechanism 3 after the rubber roll is pulled to a set length, and the adhesive tape is adsorbed by the adsorption mechanism 5 and moved in the first direction to the position where the battery seat 6 is arranged, and finally the adhesive tape is pasted on the battery. It should be noted that the first direction in the embodiment is the Y-axis direction, and the second direction is the X-axis direction.
[0037] It should be noted that, as shown in the drawings, Figure 2 the shearing mechanism 3 is a toothed blade. The rubber roll in the embodiment is a one-side adhesive rubber roll, when the adhesive tape is adsorbed by the adsorption structure, the smooth surface of the adhesive tape contacts the adsorption surface 534 of the adsorption structure, and the adhesive surface of the adhesive tape faces the battery seat.
[0038] The feeding mechanism 2, the shearing mechanism 3 and the auxiliary mechanism 4 described in the embodiment can cooperate with each other to shear the film into film paper of a set length. The film paper of the set length is adsorbed by the adsorption mechanism 5 and can move in the first direction to the position of the battery placing seat 6 under the action of the adsorption mechanism 5, and finally is pasted on the battery. The battery film pasting mechanism described in the embodiment has a simple structure and high accuracy in the film pasting process, and improves the pasting efficiency.
[0039] As an optional implementation, as shown in Figures 2-3 The adsorption mechanism 5 includes a driving assembly 51, a sliding assembly 52 and an adsorption assembly 53. The driving assembly 51 and the sliding assembly 52 are arranged in the first direction of the bearing table 1. The sliding assembly 52 is connected with the driving assembly 51, and the adsorption assembly 53 is connected with the sliding assembly 52 and moves in position in the first direction under the action of the driving assembly 51 and the sliding assembly 52.
[0040] The driving assembly 51 and the sliding assembly 52 are arranged in the first direction of the bearing table 1. The driving assembly 51 is arranged at the side of the sliding assembly 52 and is connected with the sliding assembly 52. The adsorption assembly 53 is fixedly arranged above the sliding assembly 52 and moves in position in the first direction under the action of the driving assembly 51 and the sliding assembly 52.
[0041] As shown in Figure 3 The driving assembly 51 includes a motor 511, a driving rod 512 and a connecting block 513. The motor 511 is arranged in the first direction and away from one end of the battery placing seat 6. One end of the driving rod 512 is connected with the motor 511 and is arranged above the bearing table 1 through a mounting frame. The other end of the driving rod 512 is fixedly connected with the connecting block 513, and the connecting block 513 is connected with the sliding assembly 52. When the motor 511 acts, the driving rod 512 will stretch and retract, and the connecting block 513 will move synchronously with the driving rod 512, and the connecting block 513 is connected with the sliding assembly 52. Therefore, when the motor 511 drives the driving rod 512 to stretch and retract, the sliding assembly 52 will also stretch and retract synchronously with the driving rod 512, and finally drives the adsorption assembly 53 to move in position in the first direction. It should be noted that the battery placing seat 6 is arranged in the first direction, and the driving assembly 51 can move in position in the first direction. It can be known that the driving assembly 51, the sliding assembly 52 and the adsorption assembly 53 move based on the position of the battery placing seat 6.
[0042] As an optional implementation, as shown in Figure 3As shown, the sliding assembly 52 comprises a sliding rail 521, a sliding block 522 and a connecting plate 523, the sliding rail 521 is arranged on the bearing table 1, the sliding block 522 is in sliding connection with the sliding rail 521, the connecting plate 523 is in fixed connection with the sliding block 522, and the connecting plate 523 is connected with the adsorption assembly 53 and the driving assembly 51 respectively. Specifically, the sliding rail 521 is arranged on the bearing table 1, the sliding block 522 is in sliding connection with the sliding rail 521, the connecting plate 523 is fixedly arranged on the connecting plate 523, and the connecting block 513 in the driving assembly 51 is in fixed connection with the connecting plate 523. When the driving assembly 51 is in extension and contraction, the connecting block 513 will drive the connecting plate 523 to move in position under the action of the sliding block 522 and the sliding rail 521, so as to drive the adsorption assembly 53 to move in position in the first direction, thereby ensuring the stability during movement. It should be noted that the sliding rail 521 and the sliding block 522 play a role in assisting movement in this embodiment, and can accurately drive the adsorption assembly 53 to move in position according to the extension and contraction of the driving assembly 51.
[0043] As an optional embodiment, as Figures 2-3 As shown, the adsorption assembly 53 comprises a first mounting plate 531, a second mounting plate 532 and an adsorption plate 533; the adsorption plate 533 is arranged above the sliding assembly 52 through the first mounting plate 531 and the second mounting plate 532, and is used for adsorbing the adhesive tape. Specifically, the first mounting plate 531 is arranged at one end of the connecting plate 523 and is arranged perpendicularly to the connecting plate 523, the second mounting plate 532 is connected with the first mounting plate 531 and is arranged in a position parallel to the connecting plate 523, the adsorption plate 533 is in fixed connection with the second mounting plate 532, and the adsorption surface 534 of the adsorption plate 533 corresponds to the battery placing seat 6. In addition to being able to move in position in the first direction under the action of the driving assembly 51 and the sliding assembly 52, the adsorption assembly 53 can also adsorb the adhesive tape.
[0044] The adsorption assembly 53 has two different position states under the action of the driving assembly 51 and the sliding assembly 52, one position state is at the end of the shearing mechanism 3, used for receiving and adsorbing the sheared adhesive tape, and the other position state is to move in position in the first direction and abut against the battery placing seat 6, so as to paste the adsorbed adhesive tape on the battery. It should be noted that the moving position of the adsorption assembly 53 is limited by the length of the sliding rail 521 in the sliding assembly 52 and the length of the driving rod 512 in the driving assembly 51.
[0045] As Figure 3As shown, the adsorption plate 533 is provided with an adsorption surface 534, and the adsorption surface 534 is provided with a plurality of adsorption holes 535; the adsorption surface 534 corresponds to the battery placing seat 6. The plurality of adsorption holes 535 provided on the adsorption plate 533 can adsorb the adhesive tape. The adsorption holes 535 on the adsorption plate 533 can be connected to an external air cylinder, and the suction force of the adsorption holes 535 is provided by the negative pressure generated by the air cylinder to realize the adsorption of the adhesive tape. When the adhesive tape needs to be adsorbed, the air cylinder is started; when the adsorbed adhesive tape needs to be pasted, the air cylinder stops working, and the adsorption holes 535 will release the adsorbed adhesive tape to paste the adhesive tape.
[0046] It should be noted that the adsorption surface 534 on the adsorption plate 533 is a plane, and is correspondingly arranged with the battery placing seat 6. When the adsorption plate 533 is moved to the front of the battery placing seat 6 and abuts against the battery placing seat 6 under the action of the driving assembly 51 and the sliding assembly 52, it can abut against the battery placed above the battery placing seat 6, and can directly paste the adhesive tape on the battery.
[0047] In this embodiment, the adsorption mechanism 5 can adsorb the adhesive tape cut by the cutting structure, and can move to the position of the battery placing seat 6, finally paste the adhesive tape on the battery, which can ensure the stability and accuracy of the adhesive tape pasting and improve the work efficiency.
[0048] As an optional implementation, as shown in Figures 2-3 As shown, the auxiliary mechanism 4 includes an auxiliary motor 41, an auxiliary moving assembly 42 and an auxiliary assembly 43; the auxiliary motor 41 and the auxiliary moving assembly 42 are arranged in the first direction on the top of the adsorption assembly 53, the auxiliary assembly 43 is fixedly connected with the auxiliary moving assembly 42, and one side of the auxiliary assembly 43 corresponds to the adsorption surface 534. Specifically, the auxiliary mechanism 4 is arranged on the second mounting plate 532 of the adsorption mechanism 5 and can move in position in the second direction. The auxiliary mechanism 4 includes the auxiliary motor 41, the auxiliary moving assembly 42 and the auxiliary assembly 43, the auxiliary moving assembly 42 is arranged on the second mounting plate 532, the auxiliary motor 41 is arranged at one end of the auxiliary moving assembly 42, the auxiliary assembly 43 is fixedly connected with the auxiliary moving assembly 42, and one side of the auxiliary assembly 43 corresponds to the adsorption surface 534. The auxiliary motor 41 is arranged to move the auxiliary assembly 43 in position on the auxiliary moving assembly 42.
[0049] As shown in Figure 3As shown, the auxiliary moving assembly 42 comprises a guide rail 421 arranged on the second mounting plate 532, a guide block 422 arranged on the guide rail 421 and in sliding connection with the guide rail 421, and a guide plate 423 arranged on the guide block 422 and in fixed connection with the guide block 422, the motor rod 411 arranged on the auxiliary motor 41 and the auxiliary assembly 43 are both connected with the guide plate 423. When the auxiliary motor 41 is in action, the motor rod 411 will be extended and retracted, so that the guide plate 423 moves in position on the guide rail 421, and drives the auxiliary assembly 43 to move in position.
[0050] In the embodiment, the auxiliary assembly 43 can move in position in the second direction under the action of the auxiliary motor 41 and the auxiliary moving assembly 42, so that the auxiliary assembly 43 has multiple position states. For example, the first position state is that the auxiliary assembly 43 moves to the end of the shearing mechanism 3, cooperates with the feeding mechanism 2, and pulls the end of the film head of the film transported by the feeding mechanism 2. After the pulling, the auxiliary assembly 43 moves in position in the second direction under the action of the auxiliary motor 41 and the auxiliary moving assembly 42, and pulls the film to a set length. After the film is pulled to the set length, the auxiliary assembly 43 stops moving. At this time, the position of the auxiliary assembly 43 is the second position state of the auxiliary assembly 43. When the auxiliary assembly 43 is in the second position state, the shearing mechanism 3 can act to shear the film pulled by the auxiliary assembly 43, and the paper will be adsorbed by the adsorption mechanism 5. After the paper is adsorbed by the adsorption mechanism 5, the adsorption mechanism 5 moves in position towards the first direction to paste the paper on the battery placed on the battery placing seat 6. However, if the set length of the sheared paper is short, the auxiliary assembly 43 will block the paper during the pasting process, which will affect the pasting of the paper. Therefore, when the length of the paper is short, the auxiliary assembly 43 needs to continue to move in position in the second direction to move the auxiliary assembly 43 away from the shearing mechanism 3, so as to ensure the accuracy of the adsorption mechanism 5 in pasting the paper. If the set length of the paper is long, the auxiliary assembly 43 can not continue to move in position in the second direction. The specific selection can be made according to the actual situation.
[0051] It should be noted that the side of the auxiliary assembly 43 corresponding to the adsorption surface 534 can be in contact with the pasting surface of the paper to realize the traction of the film.
[0052] As an optional embodiment, as Figure 1As shown, the feeding mechanism 2 comprises a feeding disc 21 and a plurality of feeding shafts 22; the feeding disc 21 is used for placing the film, and the plurality of feeding shafts 22 are sequentially arranged at the rear end of the feeding disc 21, and the feeding disc 21 and the plurality of feeding shafts 22 cooperate to pull and transport the film. Specifically, the feeding disc 21 is used for placing the film, and the plurality of feeding shafts 22 are used for transporting the film, and the plurality of feeding shafts are used for maintaining the tension of the film during the transportation of the film.
[0053] It should be noted that the battery gluing device further comprises a control mechanism, and the feeding mechanism 2, the shearing mechanism 3, the adsorption mechanism 5 and the auxiliary mechanism 4 are connected with the control mechanism. The control mechanism can control the transportation speed of the film of the feeding mechanism 2, control the shearing of the shearing mechanism 3, control the moving distance of the adsorption mechanism 5 in the first direction and the adsorption hole 535 on the adsorption mechanism 5, and control the moving distance of the auxiliary mechanism 4 in the second direction.
[0054] As an optional embodiment, the feeding mechanism 2, the shearing mechanism 3, the adsorption mechanism 5, the auxiliary mechanism 4 and the battery placing seat 6 are located at the same horizontal height. Specifically, in order to ensure the normal transportation, shearing, correct adsorption and pasting of the film, the feeding mechanism 2, the shearing mechanism 3, the adsorption assembly 53 in the adsorption mechanism 5, the auxiliary assembly 43 in the auxiliary mechanism 4 and the battery placing seat 6 need to be arranged at the same horizontal height.
[0055] The working principle of the battery gluing device described in the embodiment is as follows: the feeding mechanism 2 transports the film to the shearing mechanism 3, the auxiliary mechanism 4 arranged above the adsorption mechanism 5 moves in the second direction, moves to the end of the shearing mechanism 3, pulls the film head end in the second direction to a set length, and then is sheared into a film paper by the shearing mechanism 3, the film paper after shearing is adsorbed by the adsorption mechanism 5, the adsorption mechanism 5 moves in the first direction after adsorbing the film paper, moves the film paper to the battery placing seat 6, and aligns with the battery placed on the battery placing seat 6, and finally abuts against the battery placed on the battery placing seat 6, and pastes the film paper on the battery.
[0056] The embodiment is only a specific example, and does not mean that the utility model is only in this implementation manner.
[0057] The above merely describes preferred embodiments of the present application, and those skilled in the art know that various changes or equivalent replacements can be made to the features and embodiments without departing from the spirit and scope of the present application. In addition, the features and embodiments can be modified to adapt to specific conditions and materials under the guidance of the present application without departing from the spirit and scope of the present application. Therefore, the present application is not limited to the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of the present application belong to the protection scope of the present application.
Claims
1. A battery adhesive applicator, characterized in that, The utility model provides a battery pasting device, including setting on the carrying table (1) feeding mechanism (2), shearing mechanism (3), adsorption mechanism (5), auxiliary mechanism (4) and battery placing seat (6), The feeding mechanism (2) is used for conveying the film roll; The shearing mechanism (3) is arranged at the end of the feeding mechanism (2) and is used for shearing the film roll into film paper; The adsorption mechanism (5) is arranged at the end of the shearing mechanism (3) and is used for adsorbing the film paper; wherein the adsorption mechanism (5) is movably connected with the carrying table (1) and can move in the first direction of the carrying table (1); The auxiliary mechanism (4) is arranged above the adsorption mechanism (5) and can move in the second direction, cooperates with the feeding mechanism (2) to pull the film head end of the film roll, and pulls the film paper to a set length, and then the film roll is sheared by the shearing mechanism (3); The battery placing seat (6) is arranged in the first direction and corresponds to the adsorption surface (534) of the adsorption mechanism (5), the battery placing seat (6) is used for placing a battery, and the adsorption mechanism (5) drives the film paper to move in position in the first direction, and the adsorbed film paper is pasted on the battery.
2. The battery taping device of claim 1, wherein, The adsorption mechanism (5) includes a driving assembly (51), a sliding assembly (52), and an adsorption assembly (53); the driving assembly (51) and the sliding assembly (52) are arranged in the first direction of the carrying table (1); the sliding assembly (52) is connected with the driving assembly (51), the adsorption assembly (53) is connected with the sliding assembly (52), and the adsorption assembly (53) moves in position in the first direction under the action of the driving assembly (51) and the sliding assembly (52).
3. The battery taping device of claim 2, wherein, The sliding assembly (52) includes a sliding rail (521), a sliding block (522), and a connecting plate (523); the sliding rail (521) is arranged on the carrying table (1); the sliding block (522) is slidably connected with the sliding rail (521); the connecting plate (523) is fixedly connected with the sliding block (522); and the connecting plate (523) is connected with the adsorption assembly (53) and the driving assembly (51) respectively.
4. The battery taping device of claim 2, wherein, The adsorption assembly (53) includes a first mounting plate (531), a second mounting plate (532), and an adsorption plate (533); the adsorption plate (533) is arranged above the sliding assembly (52) through the first mounting plate (531) and the second mounting plate (532) and is used for adsorbing the film paper.
5. The battery taping device of claim 4, wherein, An adsorption surface (534) is arranged on the adsorption plate (533), a plurality of adsorption holes are arranged on the adsorption surface (534), and the adsorption surface (534) corresponds to the battery placing seat (6).
6. The battery taping device of claim 2, wherein, The auxiliary mechanism (4) comprises an auxiliary motor (41), an auxiliary moving assembly (42) and an auxiliary assembly (43); the auxiliary motor (41) and the auxiliary moving assembly (42) are arranged in a first direction on the top of the adsorption assembly (53), the auxiliary assembly (43) is fixedly connected with the auxiliary moving assembly (42), and one side of the auxiliary assembly (43) corresponds to the adsorption surface (534).
7. The battery taping device of claim 1, wherein, The feeding mechanism (2) comprises a feeding disc (21) and a plurality of feeding shafts (22); the feeding disc (21) is used for placing the film roll, and the plurality of feeding shafts (22) are sequentially arranged at the rear end of the feeding disc (21); the feeding disc (21) and the plurality of feeding shafts (22) are cooperated to pull and spread the film roll and convey the film roll.
8. The battery taping device of claim 1, wherein, The battery gluing device further comprises a control mechanism, and the feeding mechanism (2), the shearing mechanism (3), the adsorption mechanism (5) and the auxiliary mechanism (4) are connected with the control mechanism.
9. The battery taping device of claim 1, wherein, The first direction is the Y-axis direction, and the second direction is the X-axis direction.
10. The battery taping device of any one of claims 1-9, wherein, The feeding mechanism (2), the shearing mechanism (3), the adsorption mechanism (5), the auxiliary mechanism (4) and the battery placing seat (6) are located at the same horizontal height.