Automatic screen glue device and method of using same

By designing an automatic screen gluing device, automatic glue feeding, release paper peeling and tape sticking are realized, which solves the high cost and inaccurate positioning problems caused by manual sticking, and improves the sticking efficiency and quality of solar screens.

CN115611064BActive Publication Date: 2025-10-21SHANGHAI XIN ZHUO ZHUANG PRINTING TECH
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Patent Information

Application Number
CN202211353097.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-11-01
Publication Date
2025-10-21
Estimated Expiration
2042-11-01

AI Technical Summary

Technical Problem

The existing solar screen tape pasting mainly relies on manual operation, resulting in high labor costs and inaccurate pasting positions, making it difficult to meet efficient production requirements.

Method used

An automatic screen gluing device is designed, including a glue feeding structure, a sliding adjustment structure, a waste stripping structure and a gluing structure, to realize the mechanized operations of automatic glue feeding, release paper stripping and tape sticking. Coordinate system positioning and symmetrical structure are used to ensure sticking accuracy.

Benefits of technology

Reduce labor costs, improve the position certainty and speed balance of tape application, enhance the quality and efficiency of application, and ensure that the tapes on the parallel sides of the screen are neatly applied.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to an automatic screen gluing device and a use method thereof, which comprises a workbench, a glue feeding structure, a sliding adjustment structure, a waste stripping structure and a gluing structure. An operation plate is installed on the workbench, and the operation plate is formed with an operation position matched with a screen to be glued. The glue feeding structure is installed on the workbench and is used for feeding adhesive tape to the operation position. The sliding adjustment structure comprises an X-axis screen conveying assembly, which is installed on the workbench and is used for reciprocating the screen along the X-axis direction. The waste stripping structure is installed on the workbench and is used for separating release paper from the adhesive tape body. The gluing structure is installed on the workbench and is located above the operation position. The application can realize a series of operations such as automatic glue feeding, release paper stripping and gluing, and uses mechanical structures to replace manual operation. Not only can the application reduce the labor cost, but also can balance the speed of the adhesive tape and improve the quality and efficiency of the solar screen adhesive tape.
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Description

Technical Field

[0001] The present application relates to the field of solar screens, and in particular to an automatic screen gluing device and a method for using the same. Background Art

[0002] Currently, a solar screen is a template used for printing solar cells, typically consisting of a screen frame and a mesh area. With the development of composite screen technology, the mesh area typically consists of two components: a polyester mesh and a metal mesh, connected by a hot-melt adhesive film. The metal mesh is woven using a high-precision process, consisting of metal threads with a diameter of 10-50 μm interwoven in both the warp and weft directions.

[0003] In order to ensure that the product will not be damaged during transportation, it is usually necessary to use tape to stick the polyester mesh together to achieve the purpose of protection. At present, the sticking of tape is done manually, and the tape used is not the transparent tape used in daily life, but a tape including a tape body and a release paper. Among them, the tape body is formed with a sticky sticking surface and a non-sticky exposed surface, and the release paper is stuck to the sticking surface of the tape body as an anti-sticking lining. When in use, the user needs to manually peel off the release paper from the tape body so that the sticking surface of the tape body is exposed, and then stick it on the screen. And in order to make the sticking position appropriate, the user needs to align the sticking position for sticking. Therefore, the method of manually sticking tape not only increases labor costs, but also leads to inaccurate sticking positions, which does not meet the requirements of efficient production.

[0004] In view of the above situation, the present application proposes an automatic screen gluing device and a method of using the same, so as to improve the gluing efficiency and quality of solar screens while reducing labor costs. Summary of the Invention

[0005] In order to improve the gluing efficiency and quality of solar screens while reducing labor costs, the present application provides an automatic screen gluing device and a method for using the same.

[0006] In the first aspect, the present application provides an automatic screen gluing device, which adopts the following technical solution:

[0007] An automatic screen gluing device comprises a workbench, a glue feeding structure, a sliding adjustment structure, a waste material stripping structure and a gluing structure;

[0008] An operating panel is mounted on the workbench, and an operating position matching the screen to be glued is formed on the operating panel. A coordinate system is established with the geometric center of the operating position as the origin, two straight lines parallel to the mutually perpendicular sides of the operating position as the X-axis and the Y-axis, and a straight line perpendicular to the top surface of the operating position as the Z-axis.

[0009] The adhesive delivery structure is installed on the workbench and is used to deliver the adhesive tape to the operating position;

[0010] The sliding adjustment structure includes an X-axis screen transfer assembly, which is installed on the workbench and is used to move the screen back and forth along the X-axis direction;

[0011] The waste stripping structure is installed on the workbench and is used to separate the release paper from the tape body;

[0012] The adhesive structure is installed on the workbench and is located above the operating position. The adhesive structure is used to stick adhesive tape on the screen to be glued.

[0013] By adopting the above technical solution, during use, the adhesive tape can be delivered to the operating position by the adhesive feeding mechanism and applied to the screen to be glued by the gluing mechanism. Specifically, before the tape is delivered to the operating position, the waste stripping mechanism automatically separates the tape body from the release paper, so that the tape delivered to the operating position is the tape body. The X-axis screen transfer assembly can cause the operating plate to reciprocate along the X-axis, thereby causing the screen to be glued in the operating position to reciprocate along the X-axis. During this movement, the adhesive tape is applied to the screen to be glued along this movement path.

[0014] In summary, the above technical solution can automate the entire process of adhesive feeding, release paper peeling, and adhesive application, replacing manual operations with a mechanical structure. Due to the high positional certainty of the operating positions and the stable positional relationship of the mechanical structure, the use of this technical solution not only reduces labor costs but also ensures consistent placement of the adhesive tape and improves the speed of adhesive tape application, thereby improving the quality and efficiency of solar screen adhesive tape application.

[0015] Optionally, the workbench also includes a workbench body, a mounting frame and a mounting plate, the operating plate is mounted on the workbench body, the mounting frame is fixedly connected to the workbench body above the operating position, the mounting plate is fixedly connected to the mounting frame on a side surface above and close to the operating position, the two axes of the mounting plate parallel to the plate surface and perpendicular to each other are both located on the OXZ plane of the coordinate system, the glue feeding structure, the sliding adjustment structure, the waste stripping structure and the glue structure are each provided in two groups, and are all symmetrical with the OXZ plane of the coordinate system as the symmetry plane, and are all mounted on the mounting plate.

[0016] By adopting the above technical solution, the use of a mounting bracket facilitates the placement of the mechanical structure for applying the tape above the operating position. Specifically, since the solar screen is a rectangular plate, there are four sides that require adhesive tape, and each side is parallel to each other. Therefore, in this solution, the mounting plate is placed on the symmetrical planes of the adhesive feeding structure, the sliding adjustment structure, the waste stripping structure, and the adhesive structure, so that the symmetrical structures can be installed on both sides of the coordinate system OXZ plane. This allows the tape to be applied simultaneously to the two parallel sides of the screen, while also ensuring that the tape is applied neatly on the two parallel sides of the screen, further improving the efficiency and quality of the tape application.

[0017] Optionally, the waste stripping structure includes a tensioning roller, a winding roller and an elastic tensioning assembly, the tensioning roller and the winding roller are both fixedly connected to the mounting plate and their axes are perpendicular to the mounting plate, the elastic tensioning assembly is used to press the side surfaces of the tensioning roller and the winding roller against each other, and a waste stripping position is formed between the side surfaces of the tensioning roller and the winding roller;

[0018] And / or, the adhesive structure includes a positioning member, a pressing member, and a cutting member, wherein the positioning member is mounted on the mounting plate and reciprocates in a direction parallel to the Y axis to position the tape body, the pressing member is mounted on the mounting plate and reciprocates in a direction parallel to the Z axis to press the tape body against the screen to be glued, and the cutting member is mounted on the mounting plate and is used to cut the tape body;

[0019] And / or, the X-axis screen transfer assembly includes an X-axis slide rail and an X-axis slider, the X-axis slide rail is fixedly mounted on the top surface of the workbench body and is parallel to the X-axis, and the X-axis slider is fixedly mounted on the bottom surface of the operation panel and is slidably connected to the X-axis slide rail along the X-axis direction;

[0020] And / or, the glue feeding structure includes a tape roller and a transmission roller assembly, the axis of the tape roller is perpendicular to the OXZ plane of the coordinate system, the roller shaft of the tape roller is fixedly connected to the mounting plate and is used to release the tape, and the transmission roller assembly includes several transmission rollers whose axes are perpendicular to the OXZ plane of the coordinate system, and the roller shafts of several of the transmission rollers are fixedly connected to the mounting plate.

[0021] By adopting the above technical solution, when the waste stripping structure is in use, the sides of the tensioning roller and the winding roller press against each other, and the tensioning roller and the winding roller rotate in opposite directions about their respective axes. As a result, the release paper is compressed at the waste stripping position, allowing the release paper to be discharged through the waste stripping position.

[0022] For the adhesive structure, when in use, the user can use the positioning piece to adjust the position of the tape body, which not only supports sticking the tape at different positions on the same screen, but also supports sticking the tape on screens of different sizes, expanding the scope of use of the device. In addition, sticking at different positions on the same screen only requires adjusting the positioning piece, further improving the efficiency of screen sticking.

[0023] For the X-axis screen transfer component, when in use, the X-axis slider can automatically move from the initial position to the end position along the X-axis slide rail based on the user's instructions. The initial position is the position where the edge of the screen to be glued is not yet glued, and the end position is the position where the edge of the screen to be glued is already glued.

[0024] The adhesive feed mechanism, when in use, holds the unpeeled release paper reel, allowing the user to replace the tape roll when the tape is exhausted. The tape is released from the tape roll and passed through the drive roller assembly, where it is angled by several drive rollers before being fed into the waste stripping and adhesive bonding mechanisms for subsequent operations.

[0025] Optionally, the elastic tensioning assembly includes an elastic member and an anti-slip layer, the elastic member is fixedly connected to the mounting plate, and one end of the elastic member away from the mounting plate is fixedly connected to the tensioning roller, the elastic member is used to press the tensioning roller against the winding roller, and the anti-slip layer includes a first elastic layer wrapped on the side of the tensioning roller and a second elastic layer wrapped on the side of the winding roller, the first elastic layer and the second elastic layer are pressed against each other to form the waste stripping position.

[0026] By adopting the above technical solution, when the release paper separates from the tape body and enters the waste stripping position, the elastic force generated by the compression of the elastic part will provide pressure to the tensioning roller toward the winding roller, thereby making the trend of the tensioning roller and the winding roller pressing each other more stable.

[0027] At the same time, the anti-slip layer is made of a material with both large elasticity and static friction coefficient. It can produce elastic deformation when the side of the tensioning roller and the side of the winding roller are pressed against each other, so that the contact area between the release paper and the anti-slip layer is increased when the release paper is located at the waste stripping position, so as to ensure that even if the surface of the release paper is relatively smooth, it can still avoid relative sliding with the anti-slip layer at the waste stripping position.

[0028] Therefore, when the tensioning roller and the winding roller rotate in opposite directions around their own axes at the same time, the release paper on the waste stripping position can be smoothly removed as the above two rollers rotate, ensuring that the release paper waste can be removed at a predetermined speed without getting stuck at the waste stripping position and affecting the normal operation of the device.

[0029] Optionally, the operating panel includes an operating top plate and an operating bottom plate, the operating position is formed on the top surface of the operating top plate, the X-axis slider is fixedly connected to the bottom surface of the operating bottom plate, and the operating top plate is coaxially arranged and rotatably connected to the operating bottom plate.

[0030] By adopting the above technical solution, since the solar screen is a square plate, after the two parallel sides are glued together using the above structure, it is necessary to rotate it and place it in the operating position so that the other two sides to be glued can repeat the above operation.

[0031] The operating bottom plate is rotatably connected to the operating top plate. When the gluing of the first set of parallel edges of the screen is completed, the operating top plate can be rotated so that the second set of parallel edges are aligned with the gluing structure, and the gluing process of the first set of parallel edges can be repeated, automatically completing the gluing work of the entire screen.

[0032] In a second aspect, the present application provides a method for using an automatic screen gluing device, which adopts the following technical solution:

[0033] A method for using an automatic screen gluing device comprises the following steps:

[0034] Steps for first time installation of tape roller;

[0035] Automatic gluing steps for the first set of parallel edges of the screen;

[0036] Automatic gluing steps for the second set of parallel edges of the screen.

[0037] By adopting the above technical solution, the first installation refers to the situation where the tape roller needs to be replaced, which includes the first time the above device is used and the situation where the tape roller is replaced. The new tape roller needs to be pre-set to save labor costs for the subsequent gluing process.

[0038] In addition, since the screen is a rectangular plate, it has two sets of parallel opposite sides. Therefore, after the automatic gluing step of the first set of parallel sides of the screen, the automatic gluing step of the second set of parallel sides of the screen is required to switch to the gluing state of the second set and complete the gluing work.

[0039] It is worth noting that after all the steps for one screen are completed, the next screen will be placed in the operating position and the above-mentioned gluing steps will be repeated until the tape is exhausted or other situations occur where the tape roller needs to be replaced, at which point the above-mentioned steps for the first installation of the tape roller will be repeated.

[0040] Optionally, the first installation step of the tape roller includes the following steps:

[0041] Install the tape roller;

[0042] Separate the tape body and the release paper, insert the tape body into the transmission roller assembly, and pass the release paper through the waste stripping position;

[0043] Apply the tape to the positioning piece.

[0044] With this technical solution, after installing a new tape roll, the tape body and release paper must be separated. The tape body is then pre-attached to the positioning member via the drive roller assembly, and the release paper is pre-threaded through the waste stripping station. Once this is done, when the device is in operation, the adhesive mechanism carries the tape body to complete the relevant operations. Simultaneously, the waste stripping mechanism also carries the release paper to complete waste removal.

[0045] Optionally, the step of automatically gluing the first set of parallel edges of the screen includes:

[0046] Place the screen on the operating position;

[0047] The glue pressing part moves downward and sticks the sticky surface of the tape body to the screen to be glued;

[0048] The screen moves along the X-axis from the initial position to the end position to complete the tape application, wherein the initial position is the position where the edge of the screen to be glued is not glued yet, and the end position is the position where the edge of the screen to be glued is glued.

[0049] The pressed part moves upward;

[0050] Cut the pieces to cut through the tape.

[0051] By adopting the above technical solution, during use, the user can place the screen in the operating position, and the pressing member will move downward based on the user's instructions, thereby pressing the tape body against the screen. It is worth noting that the tape body here passes through the lower surface of the pressing member, and the adhesive surface of the tape body faces away from the pressing member and toward the screen to be adhered.

[0052] The operating panel then follows the instructions from the adhesive laminating unit, carrying the screen along the X-axis from its initial position to its final position, completing the tape application. Once the application is complete, the adhesive laminating unit returns to its initial position, and the cutting unit cuts the tape, completing the gluing process for this set of parallel edges.

[0053] Optionally, between the step of placing the screen on the operating position and the step of moving the glue pressing member downward, there is also a step of adjusting the position of the positioning member based on the size of the screen to be glued and the position to be glued;

[0054] and / or, between the step of moving the adhesive pressing member downward and the step of moving the screen along the X-axis direction to complete the tape application, a step of moving both the positioning member and the cutting member along the Y-axis direction away from the screen is also included;

[0055] The step of moving the pressing member upward and the step of cutting the tape with the cutting member also includes the step of moving both the positioning member and the cutting member along the Y-axis toward the screen.

[0056] By adopting the above technical solution, since the size of the screen to be glued may vary slightly, and the same screen to be glued may need to be taped at multiple locations, a positioning member is required to locate the starting point of gluing. It is important to note that the positioning member and the glue pressing member move synchronously during the positioning process. The positioning member is used to position the glue pressing member, thereby determining the starting point of gluing and, in turn, the path of the adhesive tape.

[0057] It's also worth noting that when the pressing element moves downward and presses the adhesive layer of the tape onto the screen being bonded, the pressing element is higher than the screen being bonded, and the distance between the pressing element and the positioning element is small. Therefore, the tape body on the positioning element will be free from the positioning element and suspended in the air. The end of the tape body is attached to the screen by the pressing element. At this point, the positioning element and the blade can be removed.

[0058] Furthermore, after the screen has moved along the X-axis from its initial position to its final position, completing the tape application process, the top surface of the drive roller in the drive roller assembly closest to the adhesive pressure element contacts the tape body, and the height of this drive roller is higher than its initial position, when the positioning element has not moved along the Y-axis. When the adhesive pressure element moves upward and rises above the positioning element, the tape body will assume an inclined surface, and the height of this inclined surface at the positioning element's initial position will match that of the positioning element. Therefore, both the positioning element and the cutting element move along the Y-axis toward the screen, returning to their initial positions. The adhesive surface of the tape body can then contact the positioning element, and its position can be readjusted by the positioning element.

[0059] Optionally, the step of automatically gluing the second set of parallel edges of the screen includes:

[0060] The screen moves from the end position to the initial position along the X-axis direction;

[0061] The operation panel rotates 90 degrees to switch the side of the screen to be glued;

[0062] Repeat the steps of automatically gluing the first set of parallel edges of the screen to complete the automatic gluing of the second set of parallel edges of the screen;

[0063] Move the screen from the end position to the initial position along the X-axis again;

[0064] Remove the glued screen and replace it with a new one.

[0065] By adopting the above technical solution,

[0066] Since the solar panel is in the shape of a square plate, after the first set of parallel edges are pasted using the above steps, it is necessary to rotate it and place it in the operating position so that the above operation can be repeated for the other set of parallel edges.

[0067] After all the steps for one screen are completed, the next screen will be placed in the operating position and the above-mentioned gluing steps will be repeated until the tape is exhausted or other situations require the tape roller to be replaced, and then the above-mentioned steps for the first installation of the tape roller will be repeated.

[0068] In summary, this application includes at least one of the following beneficial technical effects:

[0069] 1. It can realize a series of operations such as automatic glue feeding, peeling release paper and gluing, and uses mechanical structure to replace manual operation.

[0070] 2. Since the position of the operating position is highly deterministic and the positional relationship of the above-mentioned mechanical structure is stable, the use of the above-mentioned technical solution can not only reduce labor costs, but also ensure the position of the adhesive tape and improve the speed of adhesive tape, thereby improving the quality and efficiency of the adhesive tape for the solar screen.

[0071] 3. The symmetrical structure enables the tape to be pasted on both parallel sides of the screen at the same time, and at the same time ensures that the tape is pasted neatly on both parallel sides of the screen, further improving the efficiency and quality of tape pasting.

[0072] 4. The user can use the positioning piece to adjust the position of the tape body. This not only supports pasting tape at different positions on the same screen, but also supports pasting tape on screens of different sizes, expanding the use range of the device. In addition, pasting tape at different positions on the same screen only requires adjusting the positioning piece, further improving the efficiency of screen pasting.

[0073] 5. The anti-slip layer elastically deforms when the sides of the tension roller and the winding roller are pressed against each other, increasing the contact area between the release paper and the anti-slip layer when the release paper is at the waste stripping position. This prevents the release paper from sliding relative to the anti-slip layer at the waste stripping position, even if the release paper surface is relatively smooth. This ensures that the release paper waste can be removed at a predetermined speed without getting stuck at the waste stripping position and affecting the normal operation of the device. BRIEF DESCRIPTION OF THE DRAWINGS

[0074] Figure 1 It is an overall schematic diagram of an automatic screen gluing device in an embodiment of the present application.

[0075] Figure 2 It is a schematic diagram of the operating panel portion of an automatic screen gluing device in an embodiment of the present application.

[0076] Figure 3This is a schematic diagram of the hidden structure of a screen automatic gluing device in the embodiment of the present application. Figure 1 .

[0077] Figure 4 This is a schematic diagram of the hidden structure of a screen automatic gluing device in the embodiment of the present application. Figure 2 .

[0078] Figure 5 yes Figure 4 Enlarged view of part A.

[0079] Figure 6 yes Figure 4 Magnified view of part B.

[0080] Description of reference numerals:

[0081] 1. Workbench; 11. Operation panel; 111. Operation top plate; 112. Operation bottom plate; 113. Turntable; 12. Workbench body; 13. Mounting bracket; 14. Mounting plate; 15. Operation panel; 151. Panel body; 152. Display screen; 153. Pull ring; 154. Support rod; 155. Roller;

[0082] 2. Glue feeding structure; 21. Adhesive tape roller; 22. Transmission roller assembly; 221. Retractable rod; 23. Punching assembly; 231. Punching plate; 232. Punching column;

[0083] 3. Sliding adjustment structure; 31. X-axis screen transfer assembly; 311. X-axis slide rail; 312. X-axis slider; 32. Z-axis moving assembly;

[0084] 4. Waste stripping structure; 41. Tensioning roller; 42. Winding roller; 43. Elastic tensioning assembly; 431. Elastic member; 4311. Spring assembly; 432. Anti-slip layer; 44. Discharge tray;

[0085] 5. Adhesive structure; 51. Positioning piece; 511. Hook; 52. Glue pressing piece; 521. Pressing wheel; 53. Cutting piece; 531. Blade. DETAILED DESCRIPTION

[0086] The present application will be further described in detail below in conjunction with the accompanying drawings. It should be understood that the specific embodiments described herein are only used to explain the present application and are not intended to limit the present application.

[0087] In the following description, for the purpose of explanation, many specific details are set forth in order to provide a thorough understanding of the inventive concepts. Some of the figures in the drawings of the present disclosure, which are part of this specification, represent structures and devices in block diagram form to avoid making the disclosed principles complicated and obscure. For the sake of clarity, not all features of an actual implementation are necessarily described. References in this disclosure to "an implementation" or "an implementation" mean that the specific features, structures or characteristics described in conjunction with that implementation are included in at least one implementation, and multiple references to "an implementation" or "an implementation" should not be understood to necessarily all refer to the same implementation.

[0088] Unless expressly limited, the terms "a", "an" and "the" are not intended to refer to a singular entity, but rather to include a general class of which a specific example may be used for illustration. Thus, the use of the term "a" or "an" may mean any number of at least one, including "one", "one or more", "at least one", and "one or more than one". The term "or" means any of the alternatives and any combination of the alternatives, including all, unless the alternatives are expressly indicated to be mutually exclusive. The phrase "at least one of" when combined with a list of items refers to a single item in the list or any combination of the items in the list. The phrase does not require all of the listed items unless expressly limited to that.

[0089] The embodiment of the present application discloses an automatic screen gluing device. Figure 1 and Figure 2 An automatic screen gluing device includes a workbench 1, a glue feeding structure 2, a sliding adjustment structure 3, a waste stripping structure 4, and a gluing structure 5. The workbench 1 is used to place the screen to be glued, the glue feeding structure 2, the sliding adjustment structure 3, the waste stripping structure 4, and the gluing structure 5. The glue feeding structure 2 is mounted on the workbench 1 and is used to convey the adhesive tape. The sliding adjustment structure 3 is mounted on the workbench 1 and is used to adjust the position of the gluing structure 5 and the screen during the automatic gluing process to ensure smooth gluing. The waste stripping structure 4 is mounted on the workbench 1 and is used to separate the release paper from the tape body. The gluing structure 5 is mounted on the workbench 1 and is used to apply the tape to the screen to be glued.

[0090] An operating panel 11 is mounted on the workbench 1. Operating positions are formed on the operating panel 11 to match the screen to be glued. To facilitate understanding of the structural positional relationship of the automatic screen gluing device, and further understanding its usage and gluing steps, a coordinate system is established with the geometric center of the operating position as the origin, lines parallel to two mutually perpendicular edges of the operating position as the X-axis and Y-axis, and a line perpendicular to the top surface of the operating position as the Z-axis. Specifically, according to this coordinate system, the sliding adjustment structure 3 includes an X-axis screen transfer assembly 31, which is mounted on the workbench 1 and is used to move the screen back and forth along the X-axis.

[0091] Specifically, in different embodiments, the X-axis screen transfer assembly 31 can move the screen back and forth along the X-axis in different ways. As an example, the X-axis screen transfer assembly 31 can be driven by a servo motor to transfer the screen, and its transfer speed and distance can be determined by the operator's operation instructions.

[0092] During use, the adhesive tape is delivered to the operating position by the adhesive feeding mechanism 2 and applied to the screen to be glued by the gluing mechanism 5. Specifically, before the tape is delivered to the operating position, the waste stripping mechanism 4 automatically separates the tape body from the release paper, leaving the tape body delivered to the operating position as the adhesive tape body. The X-axis screen transfer assembly 31 reciprocates the operating panel 11 along the X-axis, thereby reciprocating the screen to be glued in the operating position along the X-axis. During this movement, the adhesive tape is applied to the screen to be glued along this movement path.

[0093] In summary, the above technical solution can automate the series of operations of adhesive feeding, release paper peeling, and adhesive application, replacing manual operations with a mechanical structure. Due to the strong positional certainty of the operating positions and the stable positional relationship of the above mechanical structure, the use of this technical solution not only reduces labor costs, but also ensures the positional certainty of the tape application and improves the uniform speed of the tape application, thereby improving the quality and efficiency of the solar screen tape application.

[0094] Specifically, in different embodiments, the workbench 1 can be of different structures, as long as it can form an operating position for placing the screen. The present application specifically but not restrictively provides a structure of a workbench 1: the workbench 1 also includes a workbench 1 body, a mounting frame 13 and a mounting plate 14, the operating panel 11 is installed on the workbench 1 body, the mounting frame 13 is used to suspend the mounting plate 14 above the operating position, and the mounting plate 14 is used to fix the glue feeding structure 2, the sliding adjustment structure 3, the waste stripping structure 4 and the adhesive structure 5.

[0095] The operating panel 11 can have various structures. For example, the operating panel 11 includes a top operating panel 111 and a bottom operating panel 112. The top operating panel 111 has an operating position formed on its top surface, and the bottom operating panel 112 is connected to the X-axis screen transfer assembly 31. The top operating panel 111 and the bottom operating panel 112 are coaxially arranged and rotatably connected.

[0096] Since the solar screen is in the shape of a square plate, after gluing two parallel sides, it needs to be rotated and placed in the operating position so that the other two sides to be glued can repeat the above operation.

[0097] The operating bottom plate 112 is rotatably connected to the operating top plate 111. When the gluing of the first set of parallel edges of the screen is completed, the operating top plate 111 can be rotated so that the second set of parallel edges are aligned with the gluing structure 5, and the gluing process of the first set of parallel edges can be repeated, automatically completing the gluing work of the entire screen.

[0098] Reference Figure 2 , more specifically, in different embodiments, the operation top plate 111 and the operation bottom plate 112 can be connected in different ways, as long as they can be rotatably connected. As an example, the operation top plate 111 and the operation bottom plate 112 can be connected by a rotating shaft and a turntable 113. The rotating shaft is coaxially connected to the operation top plate 111, the operation bottom plate 112 and the turntable 113. The turntable 113 is installed between the operation top plate 111 and the operation bottom plate 112 and is fixedly connected to the operation top plate 111 and the rotating shaft. The rotating shaft is driven by a servo motor to rotate around its own axis at a fixed angle and speed.

[0099] In addition, in different embodiments, the operating top plate 111 can have different shapes. For example, to facilitate the placement of the solar panel, the operating top plate 111 can be a rectangular plate. Similarly, the operating bottom plate 112 and the turntable 113 can also have different shapes. For example, the operating bottom plate 112 is a rectangular plate, and the turntable 113 is a circular disk. In order for the turntable 113 to support the operating top plate 111, the diameter of the disk should not be too small.

[0100] Continue to refer to Figure 1 and Figure 2 Regarding the workbench 1, the workbench 1 can be shaped in various ways, as long as it accommodates the aforementioned structure. For example, the workbench 1 can be in the form of a cabinet, with internal space for electronic components, drive units, and other work equipment. This arrangement allows for the integration of more complex work equipment into the cabinet as much as possible, ensuring a clean operating environment, minimizing the impact of a complex environment on the screen, and further improving the standardization and quality of screen gluing.

[0101] To be more specific, in different embodiments, the mounting plate 14, the mounting frame 13, the glue feeding structure 2, the sliding adjustment structure 3, the waste stripping structure 4 and the adhesive structure 5 can have different positional relationships. The present application specifically but not restrictively proposes a solution: the mounting frame 13 is fixedly connected to the workbench 1 body above the operating position, the mounting plate 14 is fixedly connected to the surface of the mounting frame 13 located above the operating position and close to the side of the operating position, the two axes of the mounting plate 14 parallel to the plate surface and perpendicular to each other are both located on the OXZ plane of the coordinate system, the glue feeding structure 2, the sliding adjustment structure 3, the waste stripping structure 4 and the adhesive structure 5 are each provided in two groups, and are all symmetrical with the OXZ plane of the coordinate system as the symmetry plane, and are all installed on the mounting plate 14.

[0102] Because the solar panel is rectangular, it has four parallel sides requiring adhesive tape. Therefore, in this solution, mounting plate 14 is positioned symmetrically between adhesive feed structure 2, slide adjustment structure 3, waste stripping structure 4, and adhesive bonding structure 5. This allows for symmetrical mounting of these structures on both sides of the OXZ coordinate plane. This allows for simultaneous tape application on both parallel sides of the panel, ensuring uniform tape application on both sides, further improving both efficiency and quality.

[0103] More specifically, the workbench 1 structure may further include an operation panel 15 and a roller 155. The operation panel 15 is used to provide an operation terminal for the user, through which the user can issue instructions to start gluing, adjust the screen and other structural positions, etc. The roller 155 is installed at the bottom of the workbench 1 body to facilitate the movement of the workbench 1.

[0104] Regarding the operation panel 15, more specifically, in different embodiments, the operation panel 15 can be composed of different structures. As an example, the operation panel 15 includes a panel body 151, a display screen 152, a pull ring 153, a support rod 154, and several data transmission lines. Among them, the display screen 152 is used to display the command name to indicate the user's operation, the pull ring 153 is fixedly installed on the left and right sides of the panel body 151 for the user to hold, the support rod 154 connects the panel body 151 and the workbench 1 body and provides support, and the several data transmission lines are used to transmit the user's commands to the various drive devices.

[0105] The axis of the support rod 154 is arranged along the Z-axis direction and can be extended and retracted along the Z-axis direction, so that operators of different heights can use the device. Optionally, the support rod 154 can also rotate around its own axis. Combined with the setting of the pull ring 153, the user can rotate the panel body 151 by holding the pull ring 153 to meet the requirements of more usage scenarios. Optionally, the support rod 154 has a hollow structure, and several data transmission lines are arranged inside the support rod 154, and the data transmission lines extend from the panel body 151 through the inside of the support rod 154 to the inside of the workbench 1 body, so that the working environment can be made neater.

[0106] Reference Figure 1 and Figure 3 Specifically, in different embodiments, the adhesive feeding structure 2 can be composed of different structures. The present application specifically but not restrictively provides a solution: the adhesive feeding structure 2 includes a tape roller 21 and a transmission roller assembly 22. The axis of the tape roller 21 is perpendicular to the OXZ plane of the coordinate system. The roller shaft of the tape roller 21 is fixedly connected to the mounting plate 14 and is used to release the tape. The transmission roller assembly 22 includes a plurality of transmission rollers whose axes are perpendicular to the OXZ plane of the coordinate system, and the roller shafts of the plurality of transmission rollers are all fixedly connected to the mounting plate 14. When in use, the tape roller 21 can hold a tape reel from which the release paper has not been peeled off. The user can replace the tape roller 21 when the tape is exhausted. The tape is released by the tape roller 21 and passes into the transmission roller assembly 22. After the angle is adjusted by the plurality of transmission rollers, the tape is transported into the waste stripping structure 4 and the adhesive structure 5 for subsequent operations.

[0107] Specifically, the drive roller assembly 22 can be composed of a varying number of drive rollers, each positioned in a different relationship to the other, allowing the tape to be adjusted to different angles during transmission to suit different work requirements. For example, the assembly includes four rotating rollers. The tape is released from the tape roller 21 through the following drive rollers: below the axis of the tape roller 21, above the axis of the tape roller 21, below the axis of the tape roller 21, and below the axis of the tape roller 21 and above the adhesive structure 5.

[0108] Specifically, for a single transmission roller, in different embodiments, the roller shaft of the transmission roller can have different structures. For example, the roller shaft of the transmission roller can be configured as a telescopic rod 221, and the telescopic process can be driven by a servo motor, and the length of the telescopic rod can be determined by an operator's operating instructions. In different embodiments, the transmission roller can be made of different materials. For example, the roller shaft of the transmission roller can be made of a plastic material or a metal material to obtain greater hardness and strength, while the peripheral surface of the transmission roller can be made of a rubber material to facilitate stable transmission of the tape body.

[0109] As a supplement, after the solar grid is transported to the user, the user needs to locate the holes to determine the installation position when using it. In order to avoid the positioning holes being covered by the gluing action and affecting the user's positioning, the glue feeding structure 2 can also include a punching assembly 23 for punching positioning holes on the tape. Specifically, the punching assembly 23 is installed on the mounting plate 14 and is located on the conveying path where the tape is conveyed from the tape roller 21 to the gluing structure 5. It includes a punching plate 231 and a punching column 232. Among them, the punching plate 231 is fixedly connected to the mounting plate 14, and the punching column 232 is connected to the servo motor fixed to the mounting plate 14. The punching plate 231 is formed with a hole that matches the required positioning hole. The diameter of the punching column 232 is slightly smaller than the hole on the punching plate 231. The axis of the punching column 232 is perpendicular to the punching plate 231 and is aligned with the hole on the punching plate 231.

[0110] Reference Figure 1 and Figure 4 Specifically, in different embodiments, the X-axis screen transfer assembly 31 included in the sliding adjustment structure 3 can be composed of different structures. The present application specifically but not limitingly provides a solution: the X-axis screen transfer assembly 31 includes an X-axis slide rail 311 and an X-axis slider 312. The X-axis slide rail 311 is fixedly mounted on the top surface of the workbench 1 body and is parallel to the X-axis. The X-axis slider 312 is fixedly mounted on the bottom surface of the operation panel 11 and is slidably connected to the X-axis slide rail 311 along the X-axis direction. When in use, the X-axis slider 312 can automatically move from an initial position to an end position along the X-axis slide rail 311 based on the user's instructions. The initial position is the position where the edge of the screen to be glued is in a state where it has not yet been glued, and the end position is the position where the edge of the screen to be glued is in a state where it has been glued.

[0111] More specifically, the sliding adjustment structure 3 further includes a Z-axis movement assembly 32, which is used to move the mounting plate 14 along the Z-axis direction, thereby facilitating the device's adjustment according to varying screen sizes. Specifically, but not exclusively, the Z-axis movement assembly 32 includes a Z-axis rail, a Z-axis slider, and a servo motor. The Z-axis rail is fixedly mounted on the mounting frame 13, the Z-axis slider is fixedly mounted on the mounting plate 14 and is slidably connected to the Z-axis rail, and the servo motor is capable of driving the Z-axis slider to reciprocate along the Z-axis direction along the Z-axis in response to operator commands.

[0112] Reference Figure 4 and Figure 5Specifically, in different embodiments, the waste stripping structure 4 can be composed of different structures. The present application specifically but not restrictively provides a solution: the waste stripping structure 4 includes a tensioning roller 41, a winding roller 42, and an elastic tensioning assembly 43. The tensioning roller 41 and the winding roller 42 are both fixedly connected to the mounting plate 14 and their axes are perpendicular to the mounting plate 14. The elastic tensioning assembly 43 is used to press the side surfaces of the tensioning roller 41 and the winding roller 42 against each other, forming a waste stripping position between the side surfaces of the tensioning roller 41 and the winding roller 42. During use, the side surfaces of the tensioning roller 41 and the winding roller 42 press against each other, and the tensioning roller 41 and the winding roller 42 rotate in opposite directions about their own axes. Therefore, the release paper will be squeezed at the waste stripping position, and the release paper can be discharged through the waste stripping position.

[0113] Regarding the above solution, more specifically, in different embodiments, the rotation of the tensioning roller 41 and the winding roller 42 can be achieved in different ways. As an example, the rotation of the tensioning roller 41 and the winding roller 42 can both be driven by a servo motor. It is worth noting that the speed of the servo motor driving the tensioning roller 41 and the winding roller 42 in this solution should match the operating speed of the glue feeding structure 2, the adhesive structure 5, and the slip adjustment structure 3.

[0114] Also for the above scheme, more specifically, the elastic tensioning component 43 can be composed of different structures, as long as it can play the role of pressing the side of the tensioning roller 41 and the side of the winding roller 42 against each other. The present application specifically but not restrictively provides a scheme: the elastic tensioning component 43 includes an elastic member 431 and an anti-slip layer 432, the elastic member 431 is fixedly connected to the mounting plate 14, and the end of the elastic member 431 away from the mounting plate 14 is fixedly connected to the tensioning roller 41, the elastic member 431 is used to press the tensioning roller 41 against the winding roller 42, and the anti-slip layer 432 includes a first elastic layer wrapped on the side of the tensioning roller 41 and a second elastic layer wrapped on the side of the winding roller 42, and the first elastic layer and the second elastic layer are pressed against each other to form a waste stripping position.

[0115] More specifically, the elastic member 431 can have different structural compositions and be connected to the tensioning roller 41 in different ways. As an example, the elastic member 431 can be a spring assembly 4311, which is composed of a plurality of spring assemblies 4311. This solution provides an installation solution using two springs as an example: a fixed plate is fixedly mounted on the mounting plate 14, and the ends of the two springs are fixedly connected to the fixed plate. The ends of the two springs that are compressed and away from the fixed plate are fixedly connected to the coupling plate. The two ends of the roller shaft of the tensioning roller 41 extend toward the fixed plate to form two extension columns. The coupling plate is fixedly connected to the two extension columns, so that the axis of the spring and the axis of the tensioning roller 41 are perpendicular to each other.

[0116] More specifically, with respect to the anti-slip layer 432 , in different embodiments, the anti-slip layer 432 may be made of different materials, as long as they have a relatively large elastic force and a static friction coefficient. For example, the anti-slip layer 432 may be made of a rubber material.

[0117] As a supplement, the waste stripping structure 4 may further include a discharge tray 44, which is fixedly mounted on the mounting plate 14 and is used to receive the discharged release paper. Specifically, the discharge tray 44 is arranged in a slide shape, which can enable the release paper to be discharged from the device in a predetermined direction, so that the workbench 1 remains tidy.

[0118] During use, when the release paper separates from the tape body and enters the waste stripping position, the elastic force generated by the compression of the elastic member 431 will provide pressure to the tensioning roller 41 toward the winding roller 42, thereby making the tendency of the tensioning roller 41 and the winding roller 42 to press each other more stable.

[0119] At the same time, the anti-slip layer 432 is made of a material with both large elasticity and static friction coefficient, and can produce elastic deformation when the side of the tensioning roller 41 and the side of the winding roller 42 are pressed against each other, so that the contact area between the release paper and the anti-slip layer 432 is increased when the release paper is located at the waste stripping position, so as to ensure that even if the surface of the release paper is relatively smooth, it can still avoid relative sliding with the anti-slip layer 432 at the waste stripping position.

[0120] Therefore, when the tensioning roller 41 and the winding roller 42 rotate in opposite directions around their own axes at the same time, the release paper on the waste stripping position can be smoothly removed as the above two rollers rotate, ensuring that the release paper waste can be removed at a predetermined speed without getting stuck at the waste stripping position and affecting the normal operation of the device.

[0121] Reference Figure 4 and Figure 6 Specifically, in different embodiments, the adhesive structure 5 can be composed of different structures. The present application specifically but not restrictively provides a solution: the adhesive structure 5 includes a positioning member 51, a pressing member 52, and a cutting member 53. The positioning member 51 is mounted on the mounting plate 14 and reciprocates in a direction parallel to the Y axis to position the tape body. The pressing member 52 is mounted on the mounting plate 14 and reciprocates in a direction parallel to the Z axis to press the tape body against the screen to be glued. The cutting member 53 is mounted on the mounting plate 14 and is used to cut the tape body. During use, the user can use the positioning member 51 to adjust the position of the tape body, which not only supports the pasting of tape at different positions on the same screen, but also supports the pasting of tape on screens of different sizes, thereby expanding the scope of use of the device. Moreover, gluing at different positions on the same screen only requires adjusting the positioning member 51, further improving the efficiency of screen gluing.

[0122] More specifically, with respect to the rubber pressing part 52, in different embodiments, the rubber pressing part 52 may have different structures. For example, the rubber pressing part 52 may be a pressure wheel 521, the axis of which is perpendicular to the mounting plate 14 and can be driven by a cylinder to move back and forth along the Z-axis direction.

[0123] Similarly, in different embodiments, the positioning member 51 may be composed of different structures and driven in different ways. For example, the positioning member 51 may be a hook 511. The hook 511 is L-shaped, with its long side fixedly connected to the output shaft of a cylinder fixed to the mounting plate 14 and capable of reciprocating along the Y-axis by the cylinder. The short side of the hook 511 is used for the adhesive layer of the tape body to adhere to.

[0124] Based on the above solutions proposed for the glue pressing part 52 and the positioning part 51, it is worth noting that in the process of using the hook 511 and the pressure wheel 521 to cooperate with each other to complete the tape pasting, in order to allow the tape body pasted on the hook 511 to fall off when the pressure wheel 521 moves downward, the initial position of the pressure wheel 521 should be higher than the hook 511.

[0125] Similarly, in different embodiments, the cutting member 53 may be composed of different structures and driven in different ways. For example, the cutting member 53 may be a blade 531, whose blade portion faces downward, and whose edge away from the blade portion is fixedly connected to the output shaft of a cylinder fixed to the mounting plate 14, and can be driven by the cylinder to reciprocate along the Y-axis.

[0126] Reference Figure 1 and Figure 4 With respect to the above-mentioned automatic screen gluing device, the present application provides a method for using the automatic screen gluing device, comprising the following steps:

[0127] S1. First installation step of the tape roller 21.

[0128] The first installation refers to the situation where the tape roller 21 needs to be replaced, which includes the situation where the above-mentioned device is used for the first time and the situation where the tape roller 21 is replaced. The new tape roller 21 needs to be pre-set to save labor costs for the subsequent gluing process.

[0129] Specifically, S1 includes the following steps:

[0130] S11. Install the tape roller 21.

[0131] S12. Separate the tape body from the release paper, insert the tape body into the transmission roller assembly 22, and pass the release paper through the waste stripping position.

[0132] S13. Stick the tape on the positioning member 51.

[0133] After installing the new tape roll 21, the tape body and release paper must be separated. The tape body is pre-attached to the positioning member 51 via the drive roller assembly 22, and the release paper is pre-threaded through the waste stripping station. Once this is done, when the device is in operation, the adhesive mechanism 5 carries the tape body to complete the relevant operations. Simultaneously, the waste stripping mechanism 4 also carries the release paper to complete waste removal.

[0134] S2. Automatic gluing step for the first set of parallel edges of the screen;

[0135] Since the screen is a rectangular plate, it has two sets of parallel opposite sides. Therefore, after the automatic gluing step of the first set of parallel sides of the screen, it is necessary to switch to the gluing state of the other set and complete the gluing work.

[0136] Specifically, S2 includes the following steps:

[0137] S21. Place the screen on the operating position.

[0138] Specifically but not limiting, step S21 may further include the following step S211:

[0139] S211. Adjust the position of the positioning member 51 based on the size of the screen to be glued and the position of the screen to be glued.

[0140] Because the dimensions of the screen to be glued can vary slightly, and the same screen may require tape application at multiple locations, for example, the tape may be shaped like multiple concentric rings extending outward from the center of the screen. Therefore, a positioning member 51 is required to locate the starting point for gluing. It is important to note that the positioning member 51 and the adhesive pressure member 52 move synchronously during the positioning process. The positioning member 51 positions the adhesive pressure member 52, thereby determining the starting point for gluing and, in turn, the path for applying the adhesive tape.

[0141] S22. The pressing member 52 moves downward, and the adhesive surface of the tape body is attached to the screen to be glued;

[0142] The user places the screen in the operating position, and the adhesive pressing member 52 moves downward based on the user's instructions, pressing the tape body against the screen. It is worth noting that the tape body passes through the lower surface of the adhesive pressing member 52, with the adhesive surface of the tape body facing away from the adhesive pressing member 52 and toward the screen to be bonded.

[0143] Specifically but not limiting, step S22 may further include the following step S221:

[0144] S221. The positioning member 51 and the cutting member 53 both move along the Y-axis in a direction away from the screen.

[0145] It's worth noting that when the pressing member 52 moves downward and presses the adhesive layer of the tape body against the screen to be bonded, the pressing member 52 is higher than the screen to be bonded, and the distance between the pressing member 52 and the positioning member 51 is relatively small. Therefore, the tape body on the positioning member 51 will be free from the positioning member 51 and suspended in the air. The end of the tape body is adhered to the screen by the pressing member 52. At this point, the positioning member 51 and the blade 531 can be removed.

[0146] S23. The screen is moved along the X-axis from the initial position to the end position to complete the tape application, wherein the initial position is the position where the edge of the screen to be glued is not glued yet, and the end position is the position where the edge of the screen to be glued is glued;

[0147] S24. The pressing member 52 moves upward;

[0148] Specifically but not limiting, in combination with the above S221, step S24 may further include the following step S241:

[0149] S241. The positioning member 51 and the cutting member 53 both move along the Y-axis toward the screen.

[0150] After the screen has moved along the X-axis from its initial position to its final position, completing the tape application process, the top surface of the drive roller in the drive roller assembly 22 closest to the adhesive pressing element 52 contacts the tape body, and the height of this drive roller is higher than the initial position, when the positioning element 51 is not moving along the Y-axis. When the adhesive pressing element 52 moves upward and rises above the positioning element 51, the tape body will assume an inclined surface, and the height of this inclined surface at the initial position of the positioning element 51 will match the height of the positioning element 51. Therefore, both the positioning element 51 and the cutting element 53 move along the Y-axis toward the screen, returning to their initial positions. The adhesive surface of the tape body can then contact the positioning element 51, and its position can be readjusted by the positioning element 51.

[0151] S25. The cutting member 53 cuts the tape.

[0152] Based on the instructions from the glue pressing element 52, the operation panel 11 moves the screen along the X-axis from the initial position to the final position to complete the tape application. When the application is complete, the glue pressing element 52 moves upward to its initial position, and the cutting element 53 cuts the tape, completing the gluing process for this set of parallel edges.

[0153] S3. Automatic gluing of the second set of parallel edges of the screen.

[0154] Specifically, S3 includes the following steps:

[0155] S31. The screen moves along the X-axis from the end position to the initial position;

[0156] S32. The operating panel 11 is rotated 90 degrees to switch the side of the screen to be glued.

[0157] Since the solar panel is in the shape of a square plate, after the first set of parallel edges are pasted using the above steps, it is necessary to rotate it and place it in the operating position so that the above operation can be repeated for the other set of parallel edges.

[0158] S33. Repeat the automatic gluing steps for the first set of parallel edges of the screen to complete the automatic gluing of the second set of parallel edges of the screen;

[0159] S34. Move the screen again along the X-axis direction from the end position to the initial position;

[0160] S35. Remove the screen that has been glued and replace it with a new screen to be glued.

[0161] After all the steps for one screen are completed, the next screen will be placed in the operating position and the above-mentioned gluing steps will be repeated until the tape is exhausted or other situations occur where the tape roller 21 needs to be replaced, and then the above-mentioned steps for the first installation of the tape roller 21 will be repeated.

[0162] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.

Claims

1. A screen automatic gluing device, characterized in that: include: A workbench (1), a glue feeding structure (2), a sliding adjustment structure (3), a waste stripping structure (4) and a glue sticking structure (5); An operating panel (11) is mounted on the workbench (1), and an operating position matching the screen to be glued is formed on the operating panel (11). A coordinate system is established with the geometric center of the operating position as the origin, two straight lines parallel to the mutually perpendicular sides of the operating position as the X axis and the Y axis, and a straight line perpendicular to the top surface of the operating position as the Z axis. The adhesive delivery structure (2) is installed on the workbench (1) and is used to deliver the adhesive tape to the operating position; The sliding adjustment structure (3) includes an X-axis screen transfer assembly (31), which is installed on the workbench (1) and is used to move the screen back and forth along the X-axis direction; The waste stripping structure (4) is installed on the workbench (1) and is used to separate the release paper from the tape body; The adhesive structure (5) is installed on the workbench (1) and is located above the operating position, and the adhesive structure (5) is used to stick the adhesive tape on the screen to be glued; The workbench (1) further comprises a workbench (1) body, a mounting frame (13) and a mounting plate (14); the operating plate (11) is mounted on the workbench (1) body; the mounting frame (13) is fixedly connected to the workbench (1) body above the operating position; the mounting plate (14) is fixedly connected to a side surface of the mounting frame (13) located above and close to the operating position; the two axes of the mounting plate (14) parallel to the plate surface and perpendicular to each other are both located on the OXZ plane of the coordinate system; the glue feeding structure (2), the sliding adjustment structure (3), the waste stripping structure (4) and the adhesive structure (5) are each provided with two groups, and are all symmetrical with the OXZ plane of the coordinate system as a symmetric plane, and are all mounted on the mounting plate (14); The waste stripping structure (4) includes a tensioning roller (41), a winding roller (42) and an elastic tensioning assembly (43), wherein the tensioning roller (41) and the winding roller (42) are both fixedly connected to the mounting plate (14) and their axes are perpendicular to the mounting plate (14), and the elastic tensioning assembly (43) is used to press the side surface of the tensioning roller (41) and the side surface of the winding roller (42) against each other, and a waste stripping position is formed between the side surface of the tensioning roller (41) and the side surface of the winding roller (42); The adhesive structure (5) comprises a positioning member (51), a pressing member (52) and a cutting member (53); the positioning member (51) is mounted on the mounting plate (14) and reciprocates in a direction parallel to the Y axis for positioning the adhesive tape body; the pressing member (52) is mounted on the mounting plate (14) and reciprocates in a direction parallel to the Z axis for pressing the adhesive tape body onto the screen to be glued; the cutting member (53) is mounted on the mounting plate (14) and is used to cut the adhesive tape body; The X-axis screen transfer assembly (31) includes an X-axis slide rail (311) and an X-axis slider (312), wherein the X-axis slide rail (311) is fixedly mounted on the top surface of the workbench (1) body and is parallel to the X-axis, and the X-axis slider (312) is fixedly mounted on the bottom surface of the operating panel (11) and is slidably connected to the X-axis slide rail (311) along the X-axis direction; The adhesive feeding structure (2) comprises an adhesive tape roller (21) and a transmission roller assembly (22), the axis of the adhesive tape roller (21) is perpendicular to the OXZ plane of the coordinate system, the roller shaft of the adhesive tape roller (21) is fixedly connected to the mounting plate (14) and is used to release the adhesive tape, and the transmission roller assembly (22) comprises a plurality of transmission rollers whose axes are perpendicular to the OXZ plane of the coordinate system, and the roller shafts of the plurality of transmission rollers are fixedly connected to the mounting plate (14); The elastic tensioning assembly (43) includes an elastic member (431) and an anti-slip layer (432), the elastic member (431) is fixedly connected to the mounting plate (14), one end of the elastic member (431) away from the mounting plate (14) is fixedly connected to the tensioning roller (41), the elastic member (431) is used to press the tensioning roller (41) onto the winding roller (42), the anti-slip layer (432) includes a first elastic layer wrapped on the side of the tensioning roller (41) and a second elastic layer wrapped on the side of the winding roller (42), the first elastic layer and the second elastic layer are pressed against each other to form the waste stripping position; The operating panel (11) comprises an operating top panel (111) and an operating bottom panel (112); the operating position is formed on the top surface of the operating top panel (111); the X-axis slider (312) is fixedly connected to the bottom surface of the operating bottom panel (112); the operating top panel (111) and the operating bottom panel (112) are coaxially arranged and rotatably connected.

2. A method for using the automatic screen gluing device according to claim 1, characterized in that: The following steps are involved: The first installation step of the tape roller (21); The first installation step of the tape roller (21) comprises the following steps: Installing the tape roller (21); Separating the adhesive tape body from the release paper, inserting the adhesive tape body into the transmission roller assembly (22), and passing the release paper through the waste stripping position; Paste the tape on the positioning piece (51); Automatic gluing steps for the first set of parallel edges of the screen; The automatic gluing step of the first set of parallel edges of the screen comprises: Place the screen on the operating position; The adhesive pressing member (52) moves downward to stick the adhesive surface of the adhesive tape body to the screen to be glued; The screen moves along the X-axis from the initial position to the end position to complete the tape application, wherein the initial position is the position where the edge of the screen to be glued is not glued yet, and the end position is the position where the edge of the screen to be glued is glued. The pressing member (52) moves upward; The cutting piece (53) cuts the tape; Between the step of placing the screen on the operating position and the step of moving the glue pressing member (52) downward, there is also a step of adjusting the position of the positioning member (51) based on the size of the screen to be glued and the position to be glued; Between the step of the pressing member (52) moving downward and the step of the screen moving along the X-axis direction to complete the tape pasting, there is also a step of the positioning member (51) and the cutting member (53) both moving along the Y-axis in a direction away from the screen; Between the step of the pressing member (52) moving upward and the step of the cutting member (53) cutting the tape, there is also a step of both the positioning member (51) and the cutting member (53) moving in a direction close to the screen along the Y axis; Automatic gluing steps for the second set of parallel edges of the screen; The automatic gluing step of the second set of parallel edges of the screen comprises: The screen moves from the end position to the initial position along the X-axis direction; The operation panel (11) is rotated 90 degrees to switch the side of the screen to be glued; Repeat the steps of automatically gluing the first set of parallel edges of the screen to complete the automatic gluing of the second set of parallel edges of the screen; Move the screen from the end position to the initial position along the X-axis again; Remove the glued screen and replace it with a new one.

Citation Information

Patent Citations

  • Half tone adhesive tape attaches device

    CN208789210U

  • Arc-shaped plate rubberizing mechanism and automatic rubberizing machine

    CN208955003U