A plastic coating compounder with fit guiding
Patent Information
- Application Number
- CN202521645021.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-04
- Publication Date
- 2026-08-18
- Estimated Expiration
- 2035-08-04
AI Technical Summary
[0002]涂塑复合机是一种在工业生产中发挥着重要作用的设备,它可以将塑料涂层均匀地涂覆在各种不同的基材表面,然后再与其他材料进行复合,从而让材料具备更好的性能,但是在实际的工作中我们发现,复合机上没有对基材和材料进行贴合引导的结构,这使得基材在与其他材料复合容易出现偏差,也就是说,基材和材料贴合后边缘处会出现错开的部分,这直接拉低了复合机的复合精度,降低产品的复合质量,增加了次品率
1、本实用新型通过在基材两侧设置引导贴合的结构,能够从基材的两侧对其进行限位引导,使得基材和贴合材料上下一致,保证基材和贴合材料精准贴合在一起,提高产品复合的精准度,提高产品复合的质量,降低次品率,提高复合机的加工精度。
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Figure CN224646271U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of laminating machine technology, and in particular to a coating laminating machine with bonding guidance. Background Technology
[0002] Plastic coating laminating machines play a vital role in industrial production. They can uniformly coat various substrates with plastic coatings, which are then laminated with other materials to improve their performance. However, in practice, we have found that laminating machines often lack a structure to guide the bonding of substrates and materials. This makes it easy for deviations to occur when the substrate is laminated with other materials. In other words, misalignment can occur at the edges after the substrate and materials are bonded together. This directly reduces the lamination accuracy of the laminating machine, lowers the quality of the laminated product, and increases the defect rate.
[0003] To address the aforementioned problems, this utility model provides improvements. Summary of the Invention
[0004] This invention proposes a coating and laminating machine with bonding guidance, which solves the above-mentioned problems existing in the use of the prior art.
[0005] The technical solution of this utility model is implemented as follows: A coating laminating machine with bonding guidance includes a laminating machine body. Limiting plates are fixedly installed on the top and bottom of the inner side of the laminating machine body. Movable frames are slidably installed on both sides between the two limiting plates. An elongated opening is opened on one side of the movable frame. Two sliding blocks are slidably installed up and down on the inner side of the elongated opening. A sliding pin is fixedly connected to one side of the sliding block. A locking nut located outside the movable frame is threaded on the surface of the sliding pin. An installation frame located inside the movable frame is fixedly connected to one side of the sliding block. Four rotating rollers are rotatably installed inside the installation frame. A bidirectional threaded rod is threaded on the inner thread of one of the limiting plates. Sliding sleeves are fixedly connected to the top and bottom of the movable frame. The sliding sleeve at the bottom of the movable frame is threaded onto the bidirectional threaded rod.
[0006] The present invention, as described above, is used for a coating and laminating machine with bonding guidance. Further, the top of the limiting plate is provided with a limiting opening, and the sliding sleeve is slidably installed in the corresponding limiting opening.
[0007] The present invention, as described above, is used for a coating and laminating machine with bonding guidance. Further, an installation opening is provided on one side of the inner cavity of the limiting opening, and the installation opening is adapted to the sliding sleeve.
[0008] The present invention, as described above, is used for a coating laminating machine with bonding guidance. Further, both ends of the laminating machine body are fixedly connected to outer shell plates, and the corresponding outer shell plates are provided with notches that are adapted to the sliding pins and locking nuts.
[0009] The present invention, as described above, is used for a coating laminating machine with bonding guidance. Further, two laminating rollers are rotatably mounted on the inner side of the laminating machine body, and two mounting brackets are located on one side of the two laminating rollers.
[0010] The present invention, as described above, is used for a coating and laminating machine with bonding guidance. Further, a plurality of feeding guide rollers 2 and 1 located on one side of the laminating roller are rotatably installed between two outer shell plates on one side, and the plurality of feeding guide rollers 2 and 1 are arranged in an up-down position.
[0011] The present invention, as described above, is for a coating laminating machine with bonding guidance, further comprising: a plurality of discharge guide rollers located on one side of the laminating roller are rotatably mounted between two movable frames on one side.
[0012] In summary, the beneficial effects of this utility model are as follows: 1. This utility model provides a guiding bonding structure on both sides of the substrate, which can limit and guide the substrate from both sides, ensuring that the substrate and the bonding material are aligned vertically, guaranteeing that the substrate and the bonding material are accurately bonded together, improving the accuracy of product lamination, improving the quality of product lamination, reducing the defect rate, and improving the processing precision of the laminating machine.
[0013] 2. This utility model features a limiting opening for the sliding sleeve to slide. During operation, the movable frame will drive the sliding sleeve to slide within the limiting opening. In this way, the limiting plate and the limiting opening can limit the sliding sleeve and the movable frame, thereby ensuring the stability and accuracy of the movement and adjustment of the mounting frame and the rotating roller, and providing convenience for users.
[0014] 3. This utility model features an installation opening that facilitates the installation and disassembly of the sliding sleeve. During installation, the sliding sleeve is placed into the machine along with the movable frame, and simultaneously enters the corresponding installation opening. It then passes through the installation opening and enters the corresponding limiting opening. Finally, the bidirectional threaded rod is installed. During disassembly, the bidirectional threaded rod is first pulled out, and then the sliding sleeve is removed along the installation opening. This provides convenience for users to disassemble the movable frame, mounting frame, and rotating roller, and also provides assistance and convenience for users to maintain the mounting frame and rotating roller.
[0015] 4. By setting the outer shell plate and the notch, the two outer shell plates at the same end of this utility model have notches, which allows the sliding pin and locking nut to move adaptively within the notch, ensuring the normal operation of the mounting bracket adjustment, thereby meeting more usage needs and providing assistance and convenience for users' adjustment work.
[0016] 5. This utility model uses a composite roller, a first feeding guide roller, and a second feeding guide roller. Multiple first feeding guide rollers and multiple second feeding guide rollers are arranged vertically. Multiple first feeding guide rollers are used to transport the substrate, and multiple second feeding guide rollers are used to transport the bonding material, thereby realizing the simultaneous transport of the substrate and the bonding material, ensuring the normal progress of the lamination work. Finally, the two composite rollers are used to bond the materials together, and then the discharge guide rollers deliver the materials.
[0017] 6. This utility model, through the setting of discharge guide rollers, ensures that the product, which is combined by two composite rollers, is sent to the outside under the guidance of multiple discharge guide rollers, thus ensuring the smooth discharge of the product. Attached Figure Description
[0018] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0019] Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a partial three-dimensional structural schematic diagram of the present invention; Figure 3 This is a partial three-dimensional exploded view of the present invention; Figure 4 This is a schematic diagram of the three-dimensional structure assembly of the sliding block.
[0020] In the diagram: 1. Composite machine body, 2. Limiting plate, 3. Movable frame, 4. Long opening, 5. Sliding block, 6. Mounting frame, 7. Rotating roller, 8. Sliding pin, 9. Locking nut, 10. Bidirectional threaded rod, 11. Sliding sleeve, 12. Limiting opening, 13. Outer shell plate, 14. Composite roller, 15. Feed guide roller one, 16. Feed guide roller two, 17. Discharge guide roller, 18. Notch, 19. Mounting opening. Detailed Implementation
[0021] The following will refer to the appendix in the embodiments of this utility model. Figure 1-4The technical solutions in the embodiments of this utility model are clearly and completely described herein. Obviously, the described embodiments are only some embodiments of this utility model, and not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model. Example
[0022] A coating laminating machine with bonding guidance includes a laminating machine body 1. Limiting plates 2 are fixedly installed on the top and bottom of the inner side of the laminating machine body 1. Movable frames 3 are slidably installed on both sides between the two limiting plates 2. An elongated opening 4 is opened on one side of the movable frame 3. Two sliding blocks 5 are slidably installed up and down on the inner side of the elongated opening 4. A sliding pin 8 is fixedly connected to one side of the sliding block 5. A locking nut 9 located on the outer side of the movable frame 3 is threadedly installed on the surface of the sliding pin 8. An installation frame 6 located on the inner side of the movable frame 3 is fixedly connected to one side of the sliding block 5. Four rotating rollers 7 are rotatably installed inside the installation frame 6. A bidirectional threaded rod 10 is threadedly installed inside one of the limiting plates 2. Sliding sleeves 11 are fixedly connected to the top and bottom of the movable frame 3. The sliding sleeve 11 at the bottom of the movable frame 3 is threadedly installed on the bidirectional threaded rod 10.
[0023] Specifically, this utility model provides a guiding bonding structure on both sides of the substrate, which can limit and guide the substrate from both sides, ensuring that the substrate and the bonding material are aligned vertically, guaranteeing precise bonding between the substrate and the bonding material, improving the accuracy of product lamination, enhancing the quality of product lamination, reducing the defect rate, and improving the processing precision of the laminating machine.
[0024] The top of the limiting plate 2 has a limiting opening 12, and the sliding sleeve 11 is slidably installed in the corresponding limiting opening 12.
[0025] Specifically, the limiting opening 12 is designed to allow the sliding sleeve 11 to slide. During operation, the movable frame 3 will drive the sliding sleeve 11 to slide within the limiting opening 12. In this way, the limiting plate 2 and the limiting opening 12 can limit the sliding sleeve 11 and the movable frame 3, thereby ensuring the stability and accuracy of the movement adjustment of the mounting frame 6 and the rotating roller 7, and providing convenience for the user's work.
[0026] An installation opening 19 is provided on one side of the inner cavity of the limiting opening 12, and the installation opening 19 is adapted to the sliding sleeve 11.
[0027] Specifically, the installation opening 19 is designed to facilitate and assist in the installation and disassembly of the sliding sleeve 11. During installation, the sliding sleeve 11 is placed into the machine along with the movable frame 3. At the same time, the sliding sleeve 11 enters the corresponding installation opening 19 and passes through the installation opening 19 into the corresponding limiting opening 12. Finally, the bidirectional threaded rod 10 is installed. During disassembly, the bidirectional threaded rod 10 is first pulled out, and then the sliding sleeve 11 is taken out along the installation opening 19. This provides convenience for users to disassemble the movable frame 3, the mounting frame 6, and the rotating roller 7, and also provides assistance and convenience for users to maintain the mounting frame 6 and the rotating roller 7.
[0028] Both ends of the main body 1 of the composite machine are fixedly connected to the outer shell plate 13, and the outer shell plate 13 on the corresponding side has a notch 18 that matches the sliding pin 8 and the locking nut 9.
[0029] Specifically, regarding the housing plate 13 and the notch 18, notches 18 are provided on both housing plates 13 at the same end. This allows the sliding pin 8 and the locking nut 9 to move adaptively within the notch 18, ensuring the normal adjustment of the mounting bracket 6 and thus meeting more usage needs, providing assistance and convenience for the user's adjustment work.
[0030] The inner side of the composite machine body 1 is rotatably mounted with two composite rollers 14 distributed vertically. Two mounting brackets 6 are located on one side of the two composite rollers 14. Between the two outer shell plates 13 on one side, multiple feed guide rollers 2 16 and feed guide roller 15 located on one side of the composite rollers 14 are rotatably mounted. The multiple feed guide rollers 2 16 and feed guide roller 15 are arranged vertically.
[0031] Specifically, the composite roller 14, the first feeding guide roller 15, and the second feeding guide roller 16 are arranged in an up-down position. The first feeding guide roller 15 and the second feeding guide roller 16 are used to transport the substrate, and the second feeding guide roller 16 are used to transport the bonding material, thereby realizing the simultaneous transport of the substrate and the bonding material, ensuring the normal progress of the composite work. Finally, the substrate and the bonding material are composited together by the two composite rollers 14 and then sent out by the discharge guide roller 17.
[0032] Multiple discharge guide rollers 17 located on one side of the composite roller 14 are rotatably mounted between two movable frames 3 on one side.
[0033] Specifically, the discharge guide roller 17 is designed so that the product, which is combined by two composite rollers 14, is sent to the outside under the guidance of multiple discharge guide rollers 17, ensuring the smooth discharge of the product.
[0034] The specific working process is as follows: Multiple sets of rotating rollers 7 are installed on both sides inside the machine. These rollers can rotate flexibly during the conveying process as they come into contact with the substrate. The height and spacing of these rollers 7 can also be adjusted, meaning the spacing can be adjusted according to the width of the substrate. This allows the limiting and guiding action of the multiple sets of rotating rollers 7 to act on substrates and bonding materials of different sizes. During operation, the coated substrate and bonding material are fed into the machine from the outside. It should be noted that the substrate and bonding material are fed in from the top and bottom positions respectively, and then guided by the first feed guide roller 15 and the second feed guide roller 16, they are conveyed to the composite roller 14 and pass between the two composite rollers 14. Under the action of the two composite rollers 14… The materials are combined and then conveyed out under the guidance of the discharge guide roller 17. During this process, the substrate and the bonding material are limited by multiple sets of rotating rollers 7. As the rotating rollers 7 convey the materials, each roller 7 rotates flexibly within its corresponding mounting frame 6. It should be noted that the flexibility of the rotating rollers 7 within the mounting frame 6 should be set so that they can rotate smoothly even when passing over the side of the substrate. This requires a very low coefficient of friction between the rotating rollers 7 and the mounting frame 6. This is existing technology, and users can adjust it in actual production to meet specific work requirements. Furthermore, the positions of the mounting frame 6 and the rotating rollers 7 can be adjusted according to the conveying height of the substrate and the bonding material, which also involves adjusting the positions of the two mounting frames 6 on the same side. The installation method is as follows: the mounting bracket 6 slides on the movable bracket 3 via the sliding pin 8. Therefore, after loosening the locking nut 9, the mounting bracket 6 can be slid to adjust its position. At the same time, the sliding pin 8 will also slide within the movable bracket 3. Once the mounting bracket 6 and the rotating roller 7 are adjusted to the appropriate positions, the locking nut 9 can be tightened to fix them. This will fix the mounting bracket 6 and the rotating roller 7 in their current positions, allowing the rotating roller 7 to guide and adhere substrates of different heights, thus meeting more usage needs. The distance between the two rotating rollers 7 can also be adjusted according to the size of the substrate. Adjustment is achieved by rotating the bidirectional threaded rod 10 on one of the limiting plates 2. It should be noted that the threads on the surface of the bidirectional threaded rod 10 are divided into two parts and are... With the two sliding sleeves 11 arranged in opposite directions, each threaded onto a threaded portion in a different direction, the two movable frames 3 can move relative to each other or in opposite directions when the bidirectional threaded rod 10 rotates, thus adjusting the distance between the two rotating rollers 7. It should be noted that in this technical solution, the bidirectional threaded rod 10 is only installed on one of the limiting plates 2. This design achieves the technical effect proposed in this solution. In actual use, depending on the specific needs, the bidirectional threaded rod 10 can be installed on both limiting plates 2 simultaneously to meet more practical requirements and provide assistance and convenience for the user. If the width of the substrate is small, the corresponding two sliding sleeves 11 will move relative to each other when the bidirectional threaded rod 10 rotates.The sliding sleeve 11 also slides within the corresponding limiting opening 12, and simultaneously drives the corresponding movable frame 3 to move. Driven by the movable frame 3, the other sliding sleeve 11 also slides on the corresponding limiting plate 2, also within the corresponding limiting opening 12. Driven by the movable frame 3, the two corresponding mounting frames 6 also move, and the corresponding rotating rollers 7 mounted on the mounting frames 6 also move. When the rotating rollers 7 on both sides contact the substrate, the bidirectional threaded rod 10 stops rotating. It should be noted that during adjustment, care must be taken to ensure that the rotating rollers 7 do not deform the substrate, maintaining the flatness of the material. It should also be noted that the mounting frame 6 adopts an outwardly curved arc structure design; similarly, the installation distribution of the rotating rollers 7 is also arc-shaped. This ensures that the substrate is not restricted or obstructed during feeding, guaranteeing normal substrate feeding. Figure 3 As shown in the figure, in summary, this solution can satisfy the limiting guidance of materials of different heights and materials of different sizes, improve the accuracy of product lamination, improve the quality of product lamination, reduce the defect rate, and improve the processing accuracy of the laminating machine.
[0035] It should be noted that the functions to be achieved by each hardware component in this utility model are supported by a large number of mature technologies and belong to the prior art. The essence of this utility model is to optimize and combine existing hardware and its connection methods for specific application scenarios to meet the adaptation requirements of specific application scenarios and solve the problems raised in the background technology (without involving improvements to the internal software of the hardware).
[0036] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A coating laminating machine with bonding guidance, comprising a laminating machine body (1), characterized in that: Limiting plates (2) are fixedly installed on the top and bottom of the inner side of the composite machine body (1). Movable frames (3) are slidably installed on both sides between the two limiting plates (2). A long opening (4) is opened on one side of the movable frame (3). Two sliding blocks (5) are slidably installed on the inner side of the long opening (4). A sliding pin (8) is fixedly connected to one side of the sliding block (5). A locking nut (9) located outside the movable frame (3) is threaded on the surface of the sliding pin (8). An installation frame (6) located inside the movable frame (3) is fixedly connected to one side of the sliding block (5). Four rotating rollers (7) are rotatably installed inside the installation frame (6). A two-way threaded rod (10) is threaded on the inner side of one of the limiting plates (2). A sliding sleeve (11) is fixedly connected to the top and bottom of the movable frame (3). The sliding sleeve (11) at the bottom of the movable frame (3) is threaded on the two-way threaded rod (10).
2. The coating laminating machine with bonding guidance according to claim 1, characterized in that: The top of the limiting plate (2) has a limiting opening (12), and the sliding sleeve (11) is slidably installed in the corresponding limiting opening (12).
3. A coating laminating machine with bonding guidance according to claim 2, characterized in that: An installation opening (19) is provided on one side of the inner cavity of the limiting opening (12), and the installation opening (19) is adapted to the sliding sleeve (11).
4. A coating laminating machine with bonding guidance according to claim 3, characterized in that: Both ends of the main body (1) of the composite machine are fixedly connected to the outer shell plate (13), and the outer shell plate (13) on the corresponding side has a notch (18) that matches the sliding pin (8) and the locking nut (9).
5. A coating laminating machine with bonding guidance according to claim 4, characterized in that: The inner side of the composite machine body (1) is rotatably mounted with two composite rollers (14) distributed vertically, and two mounting brackets (6) are located on one side of the two composite rollers (14).
6. A coating laminating machine with bonding guidance according to claim 5, characterized in that: Multiple feed guide rollers 2 (16) and feed guide roller 1 (15) located on one side of the composite roller (14) are rotatably installed between the two outer shell plates (13) on one side. The multiple feed guide rollers 2 (16) and feed guide roller 1 (15) are arranged in an up-down position.
7. A coating laminating machine with bonding guidance according to claim 6, characterized in that: Multiple discharge guide rollers (17) located on one side of the composite roller (14) are rotatably mounted between two movable frames (3) on one side.