Roll-to-roll pasting equipment for pasting large sheet material
By moving the pressing roller upwards and controlling the pressure and distance of linear moving parts, the problem of bubble formation in roll-to-roll technology is solved, and the tight fit between materials and consistency of fit quality is achieved.
Patent Information
- Application Number
- CN202510496920.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-21
- Publication Date
- 2025-07-22
AI Technical Summary
In roll-to-roll technology, bubbles are easily trapped between materials during lamination or bonding processes, resulting in product appearance defects and degradation of performance. Especially in the production of large-area and thin flexible materials, the prior art is difficult to effectively solve.
The pressing roller is mounted in a way that the material belt to be mounted is moved toward the material to be mounted through upward pressure, and the pressure and distance are accurately controlled in combination with the first and second linear moving parts to ensure a close fit between the materials and reduce bubble formation.
A more uniform pressure distribution is achieved, bubble formation is reduced, and the tight fit between materials is ensured, which improves the consistency of fit quality and the scope of application of equipment.
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Figure CN120348785A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the field of automated production equipment, and particularly relates to a roll-to-roll-to-roll pasting device for large sheet material pasting. Background Art
[0002] Roll-to-Roll (R2R) technology refers to the process of feeding raw materials into a processing device in the form of a reel, and after a series of continuous processing steps, outputting the finished product in the form of a reel. This technology is particularly suitable for the production of large-area and thin flexible materials, as it can effectively solve the common operation problems of flexible materials in traditional manufacturing processes, such as challenges like difficult precise control and easy damage.
[0003] However, at the current stage of technological development, in practical applications of R2R technology, especially during the lamination or pasting process, air bubbles are easily trapped between the materials, and this phenomenon is particularly obvious when dealing with large-area and thin flexible materials. These air bubbles not only cause defects in the appearance of the product, but may also affect the performance and reliability of the final product, thus significantly reducing the product quality. The presence of air bubbles may weaken the bonding strength between the materials, increasing the risk of delamination, especially in applications that require high durability and stability. Summary of the Invention
[0004] In view of this, the purpose of the present invention is to provide a roll-to-roll-to-roll pasting device for large sheet material pasting to solve the problems existing in the above background art.
[0005] To solve the above technical problems, a technical solution of the present invention is a roll-to-roll-to-roll pasting device for large sheet material pasting, including a feeding component for conveying the to-be-pasted roll material; a material-taking component for sucking the to-be-pasted material and sending the to-be-pasted material above the tape of the to-be-pasted roll material conveyed by the feeding component; a pasting component located below the tape of the to-be-pasted roll material conveyed by the feeding component in the advancing direction of the tape of the feeding component; when the material-taking component sends the to-be-pasted material above the tape of the to-be-pasted roll material conveyed by the feeding component, the pasting component acts to move the tape of the to-be-pasted roll material towards the to-be-pasted material to complete the pasting operation.
[0006] Preferably, the pasting component consists of a first linear moving component and a pressure roller. The driving direction of the first linear moving component is the same as the conveying direction of the feeding component, and the pressure roller is rotatably arranged on the moving end of the first linear moving component; during the pasting operation, the pressure roller acts on the to-be-pasted roll material, and the first linear moving component drives the pressure roller to move, enabling the tape of the to-be-pasted roll material to gradually complete the pasting with the to-be-pasted material.
[0007] Furthermore, the mounting component further includes a second linear movement component, which is arranged between the moving end of the first linear movement component and the pressure roller. The second linear movement component is used to control the vertical distance among the pressure roller, the to-be-mounted coil material, and the to-be-mounted material. The second linear movement component acts to control the preliminary fitting of the to-be-mounted coil material and the to-be-mounted material, and then the first linear movement component acts to realize the opposed mounting of the to-be-mounted coil material tape and the to-be-mounted material.
[0008] Preferably, a feeding roller and a take-up roller are respectively arranged at the head and the tail of the feeding component. A film take-up roller used in cooperation with the feeding roller is arranged on one side of the feeding roller of the feeding component, and a film covering roller used in cooperation with the take-up roller is arranged on one side of the take-up roller of the feeding component. A vacuum adsorption roller is further arranged on one side of the take-up roller of the feeding component. The to-be-mounted coil material conveyed by the feeding component enters the take-up roller after passing through the vacuum adsorption roller, and the film covering roller completes the film covering operation of the mounted coil material after passing through the vacuum adsorption roller.
[0009] Preferably, it further includes a material taking position and a mounting position. The material taking component sucks the to-be-mounted material at the material taking position and sends the to-be-mounted material to the mounting position. A material conveying component is used to convey the coil of the to-be-mounted material, and the conveying coil of the material conveying component passes through the material taking position. The material conveying component is respectively a first material conveying component and a second material conveying component located on both sides of the feeding component. When the first material conveying component and the second material conveying component convey the same to-be-mounted material, the opposed and rapid mounting on both sides of the feeding component is realized. When the first material conveying component and the second material conveying component convey different to-be-mounted materials, the double-layer material mounting of the feeding component is realized.
[0010] Furthermore, it further includes a vision detection component, which is respectively a first detection component for positioning the to-be-mounted material and a second detection component for positioning the to-be-mounted coil material. The first detection component is located between the material taking position and the mounting position, and the vision detection direction of the first detection component is vertically upward. The second detection component is located above the mounting position and above the to-be-mounted coil material, and the vision detection direction of the second detection component is vertically downward.
[0011] Furthermore, the material taking component includes a material taking suction cup for sucking the to-be-mounted material. The bottom end of the material taking suction cup is arranged in a plane, and the bottom end specification of the material taking suction cup is greater than or equal to the specification of the to-be-mounted material.
[0012] Further, the component for picking up materials includes a third linear moving component for controlling the movement of the materials to be mounted between the picking position and the mounting position. A multi-axis transmission component is arranged on the moving end of the third linear moving component. The output end of the multi-axis transmission component is connected to the picking suction cup. The multi-axis transmission component is used to cooperate with the first detection component to adjust the position of the materials to be mounted.
[0013] To solve the above technical problems, the second technical solution of the present invention is a method for using the roll-to-roll and pair mounting equipment for large sheet materials described in the first technical solution. The method includes:
[0014] S1. Adjust the positions of the unwinding roller and the winding roller to ensure that the roll of materials to be mounted can be smoothly transported from the unwinding roller to the winding roller, and auxiliary positioning and stabilization are carried out through the vacuum adsorption roller.
[0015] S2. The feeding component transports the roll of materials to be mounted, and at the same time, the material conveying component provides the materials to be mounted to the picking position.
[0016] S3. The picking component uses the picking suction cup to pick up the materials to be mounted at the picking position and moves them to the mounting position; during this process, the first detection component monitors and adjusts the position of the materials to be mounted to ensure that they accurately reach the specified position.
[0017] S4. When the materials to be mounted are sent above the roll of materials to be mounted, the mounting component acts; first, the second linear moving component adjusts the vertical distance between the pressure roller and the materials to be mounted to achieve preliminary fitting; then the first linear moving component drives the pressure roller to move along the advancing direction of the tape to complete the final mounting.
[0018] S5. The roll of materials after mounting continues to move forward. After the film laminating operation is carried out in cooperation with the film laminating roller and the vacuum adsorption roller, it is collected by the winding roller.
[0019] The technical effects of the present invention are mainly reflected in the following aspects:
[0020] The present invention adopts the method that the pressure roller makes the tape of the roll of materials to be mounted move towards the materials to be mounted through upward pressure to complete the mounting operation, which can more effectively discharge the air between the roll of materials to be mounted and the materials, thereby reducing the formation of bubbles. Compared with the traditional method of the materials actively moving towards the roll, this method can provide a more uniform pressure distribution to ensure close fitting between the materials.
[0021] The first linear moving component drives the pressure roller to perform precise linear movement, ensuring a constant speed and pressure acting on the material surface, which helps maintain the consistency of the bonding quality throughout the bonding process. In the traditional method, the irregular pressure distribution caused by the movement of the material may lead to inconsistent bonding quality. At the same time, the second linear moving component adjusts the vertical distance among the pressure roller, the material roll to be bonded, and the material to be bonded, so as to achieve the bonding effect under different pressures. This enables the equipment to be flexibly adjusted according to different material characteristics and process requirements, enhancing the application range and production flexibility of the equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0022] Figure 1 It is a structural diagram of the present invention;
[0023] Figure 2 is Figure 1 the structural diagram of the feeding component in
[0024] Figure 3 is Figure 1 the structural diagram of the material taking component in
[0025] Figure 4 is Figure 1 the structural diagram of the bonding component in
[0026] Figure 5 is Figure 1 the structural diagram of the material conveying component and the visual inspection component in
[0027] In the figure: 1. Feeding component, 11. Unwinding roller, 12. Rewinding roller, 13. Film rewinding roller, 14. Film laminating roller, 15. Vacuum adsorption roller; 2. Material taking component, 21. Material taking suction cup, 22. Third linear moving component, 23. Multi-axis transmission component; 3. Bonding component, 31. First linear moving component, 32. Pressure roller, 33. Second linear moving component; 4. Material conveying component, 41. First material conveying component, 42. Second material conveying component; 5. Visual inspection component, 51. First inspection component, 52. Second inspection component. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0028] The following further details the specific embodiments of the present invention with reference to the drawings, so that the technical solutions of the present invention are easier to understand and master.
[0029] In this embodiment, it should be understood that the orientation or positional relationship indicated by terms such as "middle", "upper", "lower", "top", "right side", "left end", "above", "back", "middle", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present invention, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present invention.
[0030] In addition, in this specific embodiment, if the connection or fixing method between components is not specifically described, the connection or fixing method can be bolt fixing, pin fixing, or pin shaft connection, etc., which are commonly used in the prior art. Therefore, it will not be elaborated in this embodiment.
[0031] Embodiment 1
[0032] See Figure 1 , this embodiment discloses a roll-to-roll and face-to-face mounting device for large sheet materials, aiming to solve the bubble problem existing in the above-mentioned background technology. The device includes a feeding component 1 for conveying the to-be-mounted coil material; a material taking component 2 for sucking the to-be-mounted material and sending the to-be-mounted material above the tape of the to-be-mounted coil material conveyed by the feeding component 1; a mounting component 3 located below the tape of the to-be-mounted coil material conveyed by the feeding component 1 in the advancing direction of the tape; when the material taking component 2 sends the to-be-mounted material above the tape of the to-be-mounted coil material conveyed by the feeding component 1, the mounting component 3 acts, and through the upward pressure, the tape of the to-be-mounted coil material moves towards the to-be-mounted material to complete the mounting operation.
[0033] See Figure 3 , the mounting component 3 consists of a first linear moving component 31 and a pressure roller 32. The driving direction of the first linear moving component 31 is the same as the conveying direction of the feeding component 1. The first linear moving component 31 is responsible for driving the pressure roller 32 to perform precise linear movement along the advancing direction of the tape above the to-be-mounted coil material; ensuring that during the entire mounting process, the pressure roller 32 can act on the material surface at a constant speed and pressure, thereby ensuring the consistency of the bonding quality. The pressure roller 32 is rotatably arranged on the mobile end of the first linear moving component 31. The pressure roller 32 can not only move along the tape advancing direction under the drive of the first linear moving component 31, but also rotate freely by itself; in this way, during the mounting operation, as the first linear moving component 31 moves, the pressure roller 32 can continuously roll over the to-be-mounted coil material, promote the close bonding between the to-be-mounted coil material and the material by applying appropriate pressure, and effectively discharge the air that may exist between the two, reducing the possibility of bubble formation. During the mounting operation, the pressure roller 32 acts on the to-be-mounted coil material, and the first linear moving component 31 drives the pressure roller 32 to move, so that the tape of the to-be-mounted coil material gradually completes face-to-face mounting with the to-be-mounted material.
[0034] The mounting component 3 further includes a second linear movement component 33, which is arranged between the moving end of the first linear movement component 31 and the pressure roller 32. The second linear movement component 33 is used to control the vertical distance among the pressure roller 32, the to-be-mounted coil material, and the to-be-mounted material. By adjusting this vertical distance, the fitting effect under different pressures can be achieved to adapt to different material characteristics and process requirements. The second linear movement component 33 acts to control the initial fitting of the to-be-mounted coil material and the to-be-mounted material, and then the first linear movement component 31 acts to realize the counter-fitting of the to-be-mounted coil tape and the to-be-mounted material.
[0035] See Figure 2 , a feeding roller 11 and a take-up roller 12 are respectively arranged at the head and the tail of the feeding component 1. The feeding roller 11 is used to load the original coil material to be processed and is responsible for smoothly conveying the unprocessed coil material to the subsequent processes; the take-up roller 12 is used to collect the coil material finished products after the mounting operation, ensuring that the finished products can be neatly wound up for subsequent storage or transportation.
[0036] A film take-up roller 13 that cooperates with the feeding roller 11 is arranged on one side of the feeding roller 11 of the feeding component 1. Its main function is to receive and wind the protective film or other auxiliary materials released from the feeding roller 11 to facilitate the smooth progress of subsequent operations. A film laminating roller 14 that cooperates with the take-up roller 12 is arranged on one side of the take-up roller 12 of the feeding component 1. The function of the film laminating roller 14 is to cover a protective film on the surface of the already mounted coil material to prevent the finished product from being damaged or polluted during the winding process.
[0037] A vacuum adsorption roller 15 is also arranged on one side of the take-up roller 12 of the feeding component 1. Under the vacuum adsorption effect, it helps the to-be-mounted coil material to pass through the entire mounting process more smoothly and tightly, reducing the generation of wrinkles and bubbles. The to-be-mounted coil material conveyed by the feeding component 1 enters the take-up roller 12 after passing through the vacuum adsorption roller 15, and the film laminating roller 14 completes the film laminating operation of the already mounted coil material after passing through the vacuum adsorption roller 15.
[0038] See Figure 5, further comprising a picking position and a mounting position. The picking component 2 picks up the material to be mounted at the picking position and sends the material to be mounted to the mounting position; a material conveying component 4, which is used to convey the material roll of the material to be mounted. The material roll conveyed by the material conveying component 4 passes through the picking position, and the material conveying component 4 adopts a retractable feeder; the material conveying component 4 is respectively a first material conveying component 41 and a second material conveying component 42 located on both sides of the feeding component 1. When the first material conveying component 41 and the second material conveying component 42 convey the same material to be mounted, rapid repeated mounting on both sides of the feeding component 1 is realized; when the first material conveying component 41 and the second material conveying component 42 convey different materials to be mounted, double-layer material mounting of the feeding component 1 is realized. By configuring the first material conveying component 41 and the second material conveying component 42, rapid alternating mounting can be realized, greatly improving the production efficiency; it supports both rapid mounting of a single type of material and double-layer mounting of two different materials, adapting to a variety of application scenarios.
[0039] It further includes a vision detection component 5, and the vision detection component 5 is respectively a first detection component 51 for positioning the material to be mounted and a second detection component 52 for positioning the material roll to be mounted; through the double detection of the first detection component 51 and the second detection component 52, precise positioning of the material to be mounted and the material roll to be mounted is ensured, greatly improving the accuracy of mounting. The first detection component 51 is located between the picking position and the mounting position, and the vision detection direction of the first detection component 51 is vertically upward, which can monitor and adjust the position of the material to be mounted in real time to ensure precise placement; the second detection component 52 is located above the mounting position and above the material roll to be mounted, and the vision detection direction of the second detection component 52 is vertically downward, which can check and correct the position of the material roll to be mounted in real time to ensure perfect alignment with the material to be mounted.
[0040] See Figure 4, the material picking component 2 includes a material picking suction cup 21 for sucking the material to be mounted. The bottom end of the material picking suction cup 21 is arranged in a flat surface, and the bottom end specification of the material picking suction cup 21 is greater than or equal to the specification of the material to be mounted; it ensures that the suction cup can stably adsorb the material to be mounted and avoid deviation or dropping during the movement. The material picking component 2 includes a third linear movement component 22 for controlling the movement of the material to be mounted between the material picking position and the mounting position. A multi-axis transmission component 23 is arranged on the moving end of the third linear movement component 22. The multi-axis transmission component 23 can achieve complex movement modes to meet the precise position adjustment requirements in different directions and angles; it can fine-tune the material to be mounted on the material picking suction cup 21 according to the information fed back by the first detection component 51, ensure that the material can accurately move between the material picking position and the mounting position, and finally be accurately placed at the predetermined position. The output end of the multi-axis transmission component 23 is connected to the material picking suction cup 21, and the multi-axis transmission component 23 is used to cooperate with the first detection component 51 to adjust the position of the material to be mounted.
[0041] Embodiment 2
[0042] This embodiment discloses a use method of the roll-to-roll and pair mounting device for large sheet materials described in Embodiment 1. The use method includes:
[0043] S1. First, check and adjust the positions of the unwinding roller 11 and the rewinding roller 12 to ensure smooth transmission of the material roll to be mounted between them. At the same time, start the vacuum adsorption roller 15 and use the adsorption force it provides to help keep the material roll to be mounted flat and reduce wrinkles and bubbles; adjust the positions of the unwinding roller 11 and the rewinding roller 12 to ensure that the material roll to be mounted can be smoothly transmitted from the unwinding roller 11 to the rewinding roller 12 and is assisted in positioning and stabilizing by the vacuum adsorption roller 15.
[0044] S2. Start the feeding component 1 to make it start to smoothly convey the material roll to be mounted. At the same time, the material conveying component 4 (including the first material conveying component 41 and the second material conveying component 42) provides the materials to be mounted as needed and guides these materials to the material picking position; the feeding component 1 conveys the material roll to be mounted, and at the same time the material conveying component 4 provides the materials to be mounted to the material picking position.
[0045] S3. The material picking component 2 uses the material picking suction cup 21 to pick up the material to be mounted at the material picking position. During this process, the first detection component 51 monitors the position of the material to be mounted and fine-tunes the position of the material picking component 2 as needed to ensure that the material to be mounted can accurately reach the predetermined position. Subsequently, the material picking component 2 moves the material to be mounted above the material roll to be mounted at the mounting position.
[0046] S4. When the material to be mounted is sent above the material to be mounted on the coil, the mounting component 3 operates. First, the second linear movement component 33 adjusts the vertical distance between the pressure roller 32 and the material to be mounted to achieve preliminary fitting. Then, the first linear movement component 31 drives the pressure roller 32 to move along the advancing direction of the tape, applying appropriate pressure to promote seamless alignment between the material to be mounted on the coil and the material to be mounted, while effectively exhausting air and reducing bubble formation.
[0047] S5. The coil after mounting continues to move forward, passes through the vacuum adsorption roller 15 to maintain flatness, and then a protective film is covered through the film covering roller 14 to prevent the finished product from being damaged or contaminated during subsequent processing. Finally, the finished product coil is neatly wound by the winding roller 12, ready for subsequent storage or transportation.
[0048] In addition, as common knowledge in this industry, the first linear movement component 31, the second linear movement component 33, and the third linear movement component 22 mentioned above can all be slide tables, telescopic rods, and telescopic cylinders, and the multi-axis drive component 23 can have several linear movement components and motors. The above is common knowledge; therefore, the principles and structures are not elaborated in detail.
[0049] Of course, the above are only typical examples of the present invention. In addition, the present invention can also have many other specific implementation manners. Any technical solutions formed by equivalent replacement or equivalent transformation fall within the scope of protection required by the present invention.
Claims
1. A roll-to-roll and face-to-face mounting device for large sheet materials, characterized in that, Comprising: A feeding component for conveying the to-be-mounted coil stock; A picking component for sucking the to-be-mounted material and sending the to-be-mounted material above the tape of the to-be-mounted coil stock conveyed by the feeding component; A mounting component located in the advancing direction of the tape of the feeding component and below the tape of the to-be-mounted coil stock conveyed by the feeding component; When the picking component sends the to-be-mounted material above the tape of the to-be-mounted coil stock conveyed by the feeding component, the mounting component acts to move the tape of the to-be-mounted coil stock towards the to-be-mounted material to complete the mounting operation.
2. The roll-to-roll and pair-to-pair mounting device for large sheet materials according to claim 1, characterized in that: The mounting component consists of a first linear moving component and a pressure roller. The driving direction of the first linear moving component is the same as the conveying direction of the feeding component, and the pressure roller is rotatably arranged on the moving end of the first linear moving component; During the mounting operation, the pressure roller acts on the to-be-mounted coil stock, and the first linear moving component drives the pressure roller to move, so that the tape of the to-be-mounted coil stock gradually completes the pair-to-pair mounting with the to-be-mounted material.
3. The roll-to-roll and pair-to-pair mounting device for large sheet materials according to claim 2, characterized in that: The mounting component further includes a second linear moving component, which is arranged between the moving end of the first linear moving component and the pressure roller. The second linear moving component is used to control the vertical distance among the pressure roller, the to-be-mounted coil stock and the to-be-mounted material; The second linear moving component acts to control the initial fitting of the to-be-mounted coil stock and the to-be-mounted material, and then the first linear moving component acts to realize the pair-to-pair mounting of the tape of the to-be-mounted coil stock and the to-be-mounted material.
4. The roll-to-roll and pair-to-pair mounting device for large sheet materials according to claim 1, characterized in that: A feeding roller and a winding roller are respectively arranged at the head and the tail of the feeding component. A film winding roller for cooperating with the feeding roller is arranged on one side of the feeding component where the feeding roller is located, and a film covering roller for cooperating with the winding roller is arranged on one side of the feeding component where the winding roller is located; A vacuum adsorption roller is further arranged on one side of the feeding component where the winding roller is located. The to-be-mounted coil stock conveyed by the feeding component enters the winding roller after passing through the vacuum adsorption roller, and the film covering roller completes the film covering operation of the mounted coil stock after passing through the vacuum adsorption roller.
5. The roll-to-roll and face-to-face pasting device for large sheet materials according to any one of claims 1 to 4, characterized in that, Further comprising: A picking position and a mounting position. The picking component sucks the to-be-mounted material at the picking position and sends the to-be-mounted material to the mounting position; A material conveying component for conveying the material roll of the to-be-mounted material. The conveyed material roll of the material conveying component passes through the picking position; The material conveying component is respectively a first material conveying component and a second material conveying component located on both sides of the feeding component, When the first material conveying component and the second material conveying component convey the same to-be-mounted material, the repeated and rapid mounting on both sides of the feeding component is realized; when the first material conveying component and the second material conveying component convey different to-be-mounted materials, the double-layer material mounting of the feeding component is realized.
6. The roll-to-roll and face-to-face mounting device for large sheet materials according to claim 5, characterized in that, Further comprising: Vision detection components, including a first detection component for positioning the material to be mounted and a second detection component for positioning the roll material to be mounted; The first detection component is located between the material picking position and the mounting position, and the vision detection direction of the first detection component is vertically upward; the second detection component is located above the mounting position and above the roll material to be mounted, and the vision detection direction of the second detection component is vertically downward.
7. The roll-to-roll and pair-mounting device for large-piece material mounting according to claim 6, characterized in that: The material picking component includes a material picking suction cup for sucking the material to be mounted, the bottom end of the material picking suction cup is arranged in a plane, and the bottom end specification of the material picking suction cup is greater than or equal to the specification of the material to be mounted.
8. The roll-to-roll and pair-mounting device for large-piece material mounting according to claim 7, characterized in that: The material picking component includes a third linear moving component for controlling the movement of the material to be mounted between the material picking position and the mounting position. A multi-axis transmission component is arranged on the moving end of the third linear moving component, and the output end of the multi-axis transmission component is connected to the material picking suction cup. The multi-axis transmission component is used to cooperate with the first detection component to adjust the position of the material to be mounted.
9. A method for using a roll-to-roll and face-to-face mounting device for large sheet materials as described in any one of claims 1 to 8, characterized in that, The usage method includes: S1. Adjust the positions of the unwinding roller and the winding roller to ensure that the roll material to be mounted can be smoothly transported from the unwinding roller to the winding roller, and use the vacuum adsorption roller for auxiliary positioning and stabilization; S2. The feeding component transports the roll material to be mounted, and at the same time the material conveying component provides the material to be mounted to the material picking position; S3. The material picking component uses the material picking suction cup to suck the material to be mounted at the material picking position and moves it to the mounting position; during this process, the first detection component monitors and adjusts the position of the material to be mounted to ensure that it accurately reaches the specified position; S4. When the material to be mounted is sent above the roll material to be mounted, the mounting component acts; first, the second linear moving component adjusts the vertical distance between the pressure roller and the material to be mounted to achieve preliminary fitting; then the first linear moving component drives the pressure roller to move along the advancing direction of the tape to complete the final mounting; S5. The rolled material after mounting continues to move forward, and after the film laminating operation is carried out in cooperation with the film laminating roller and the vacuum adsorption roller, it is collected by the winding roller.