Film laminating printing machine
Through the combined structure of knobs, gears, bidirectional threaded rods and sliding blocks, the limit and conveying slip problems of the laminate printing press during printing are solved, and convenient maintenance methods are provided, which improves the efficiency and maintenance of the equipment.
Patent Information
- Application Number
- CN202422569178.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-24
- Publication Date
- 2025-08-26
- Estimated Expiration
- 2034-10-24
AI Technical Summary
The existing film coating printing presses are difficult to limit when the product width is inconsistent during printing, and the product is easily slipped during conveying, and the main body is inconvenient to repair and maintenance after it is damaged.
Through the combined structure of knobs, gears, bidirectional threaded rods and sliding blocks, the product positioning and limiting is achieved; the pulley and rotary block structure are used to avoid slippage; the maintenance groove and bolt structure are designed for quick inspection.
It realizes accurate positioning and stable conveying of the product under different sizes, avoids slippage, and facilitates rapid maintenance of the equipment.
Smart Images

Figure CN223266487U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of text printing, in particular to a laminating printing machine. Background Art
[0002] A printing press is a machine that prints text and images. Modern printing presses generally consist of mechanisms such as plate loading, inking, embossing, and paper feeding. Its working principle is: the text and image to be printed are first made into a printing plate, which is then mounted on the printing press. Then, ink is applied to the areas of the printing plate where the text and image are located, either manually or by the printing press. The ink is then directly or indirectly transferred to paper or other printing materials, thereby reproducing a printed product identical to the printing plate. Existing laminating printing presses still have certain defects when in use, such as;
[0003] For example, a label laminating printer with publication number CN208714682U, the utility model discloses a label laminating printer, comprising a printer body, a mounting plate, a first fixed plate, and a second fixed plate. A mounting groove is provided inside the upper end of the printer body, and a slide groove is provided inside the bottom end of the mounting groove. A slider is fitted inside the slide groove. The first fixed plate is fixedly welded to the end of a first hydraulic rod. The output end flange of the second hydraulic cylinder is connected to the second hydraulic rod. The second fixed plate is fixedly welded to the end of the second hydraulic rod. A drive motor is installed on the outer side of the fixed frame, and the output end shaft of the drive motor is connected to a second rotating rod. The movable plate and the mounting groove of the label laminating printer are in a sliding connection. Under external thrust or tension, the movable plate slides left and right in the slide groove through the slider, which can change the spacing between the movable plates. The cross-section of the movable plate is a concave structure, which can facilitate the user to place labels of different widths and specifications, so as to facilitate the feeding of label labels.
[0004] This prior art solution also has the following problems when used:
[0005] 1. The width of the products is not the same when they are printed, and it is not convenient to limit the position according to the size of the products when they are transported;
[0006] 2. Since the product is transported by a conveyor belt, it will cause slippage between the product and the conveyor belt, making it inconvenient to transport the product;
[0007] 3. It is inconvenient to repair and maintain the main body after it is damaged;
[0008] Therefore, improvements need to be made to the above problems. Utility Model Content
[0009] The present invention provides the following technical solutions: The purpose of the present invention is to provide a laminating printing machine to solve the many defects of the laminating printing machines currently on the market proposed in the above background technology. The width of the products is not the same when printing, and it is inconvenient to limit the products according to the size of the products when transporting. Since the products are transported by a conveyor belt, it will cause slippage between the products and the conveyor belt, which is inconvenient for transporting the products. It is also inconvenient to repair and maintain the main body after damage.
[0010] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: a laminating printing machine, comprising: a main body and a feeder;
[0011] A feeder is installed on the side of the main body, a control panel is installed on the feeder, a guide plate is connected to the other side of the main body, and an inspection panel is provided on the side of the feeder;
[0012] An operating slot is provided on the feeder, a knob is connected through the inner wall of the operating slot, one end of the knob is connected to a first gear, a bidirectional threaded rod is connected inside the knob, and one end of the knob close to the first gear is connected to a second gear;
[0013] A guide rod is connected to the inside of the operating groove, a sliding block is connected between the guide rod and the bidirectional threaded rod, a connecting frame is connected to the side of the sliding block, and an extrusion plate is provided on the side of the connecting frame.
[0014] Preferably, a rotating structure is formed between the operating slot and the knob, and the knob and the first gear are an integral structure, and a meshing structure is formed between the first gear and the second gear. The knob can be rotated through the operating slot, and when the knob is rotated, the first gear can be driven to rotate, and when the first gear is rotated, the second gear can be driven to rotate.
[0015] Preferably, the second gear and the bidirectional threaded rod are an integral structure, and the bidirectional threaded rod and the operating slot form a rotating structure, and the bidirectional threaded rod and the sliding block are threadedly connected, and the sliding block and the guide rod are slidingly connected. When the second gear rotates, it can drive the bidirectional threaded rod to rotate, and the rotation of the bidirectional threaded rod can drive the two groups of sliding blocks to slide toward each other in threads, and the sliding blocks can slide through the guide rod when they slide toward each other in threads.
[0016] Preferably, the connecting frame is further provided with a guide block, a guide groove, an internal threaded cylinder, a threaded rod, a rotating groove, a rotating block and a pulley;
[0017] A guide groove is provided on the side of the connecting frame, a guide block is embedded in the guide groove, the guide block is connected to the side of the extrusion plate, and a threaded rod is connected through the top of the connecting frame;
[0018] The internal threaded cylinder is respectively connected between the threaded rod and the extrusion plate. A rotating groove is provided at the bottom of the extrusion plate, and a rotating block is connected inside. A pulley is connected to the side of the rotating block. When the product moves, the pulley can be driven to rotate. When the pulley rotates, the rotating block can be driven to rotate. When the rotating block rotates, the pulley and the rotating groove can be rotated.
[0019] Preferably, the guide block and the extrusion plate are an integral structure, and the guide block and the guide groove are in sliding connection. When the extrusion plate moves, the guide block can be driven to move, and when the guide block moves, it can be guided and slid through the guide groove.
[0020] Preferably, a rotating structure is formed between the connecting frame and the threaded rod, and the threaded rod and the internal threaded barrel are threadedly connected. The threaded rod can be rotated through the connecting frame. When the threaded rod rotates, it can drive the internal threaded barrel to slide threadedly, and when the internal threaded barrel slides threadedly, it can drive the extrusion plate to move.
[0021] Preferably, an inspection groove is provided on the side of the main body, a threaded groove is provided inside the inspection groove, an inspection plate is embedded inside the inspection groove, and a docking groove is provided on the back of the inspection plate;
[0022] A rotating groove is provided inside the docking groove, a bolt is connected between the threaded groove and the docking groove, and a twisting block is connected to one end of the bolt near the rotating groove. The rotating twisting block can be rotated through the rotating groove, and the bolt can be driven to rotate when the twisting block rotates. When the bolt rotates, the thread can slide through the threaded groove.
[0023] Preferably, the bolt and the twisting block are an integral structure, and the bolt, the twisting block and the docking groove are slidably connected. When the inspection plate is pulled, the docking groove, the bolt and the twisting block can be driven to slide.
[0024] Compared with the prior art, the beneficial effects of the utility model are as follows: in the laminating printing machine, the sliding block can slide through the guide rod when the sliding block slides toward the opposite thread, and can drive the two sets of connecting frames and the extrusion plate to move when the sliding block slides, so that the product can be positioned according to the size when loading, and the pulley and the rotating groove can be rotated when the rotating block rotates, so that the product can avoid slipping with the conveyor belt during transportation, and the inspection plate can be pulled when the twisting block is docked with the docking groove, and the inspection plate can be driven to slide when the inspection plate is pulled, and when the inspection plate slides out of the inspection groove, the inside of the main body can be inspected and maintained, so that the main body can be quickly inspected and maintained.
[0025] 1. The knob can be rotated through the operating slot. When the knob is rotated, it can drive the first gear to rotate. When the first gear rotates, it can drive the second gear to rotate. When the second gear rotates, it can drive the bidirectional threaded rod to rotate. The rotation of the bidirectional threaded rod can drive the two sets of sliding blocks to slide toward each other. When the sliding blocks slide toward each other, they can slide through the guide rod. When the sliding blocks slide, they can drive the two sets of connecting frames and the extrusion plate to move, so that the product can be adjusted and positioned according to size when loading;
[0026] 2. The rotating threaded rod can be rotated through the connecting frame. When the threaded rod rotates, it can drive the internal threaded barrel to slide. When the internal threaded barrel slides, it can drive the extrusion plate to move. When the extrusion plate moves, it can drive the guide block to move. When the guide block moves, it can slide through the guide groove. When the extrusion plate moves, it can drive the pulley to move. When the pulley moves to the surface of the product, the product can be positioned on the conveyor belt. When the feeder is working, the conveyor belt can drive the product to move. When the product moves, it can drive the pulley to rotate. When the pulley rotates, it can drive the rotating block to rotate. When the rotating block rotates, the pulley and the rotating groove can be rotated, which is convenient for avoiding slipping of the product with the conveyor belt during transportation.
[0027] 3. The twisting block can be rotated through the rotating groove. When the twisting block rotates, it can drive the bolt to rotate. When the bolt rotates, the thread can slide through the thread groove. While the bolt thread slides, it can push the twisting block to move. When the twisting block moves, it can be loosened from the rotating groove. When the twisting block is rotated 90°, it can dock with the docking groove. When the twisting block docks with the docking groove, the inspection plate can be pulled. When the inspection plate is pulled, the docking groove, the bolt and the twisting block can be driven to slide. When the inspection plate slides out of the inspection groove, the inside of the main body can be inspected and maintained, which facilitates quick inspection and maintenance of the main body. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 This is a front structural diagram of the utility model;
[0029] Figure 2 This is a schematic diagram of the side cross-sectional structure of the utility model;
[0030] Figure 3 This is an enlarged structural diagram of the connecting frame and the extrusion plate of the utility model;
[0031] Figure 4 This is an enlarged structural diagram of part A of the utility model;
[0032] Figure 5 This is an enlarged structural diagram of part B of the utility model;
[0033] Figure 6This is a schematic diagram of the enlarged structure of part C of the utility model.
[0034] In the figure: 1. Main body; 2. Feeder; 3. Control panel; 4. Guide plate; 5. Operation slot; 6. Knob; 7. First gear; 8. Bidirectional threaded rod; 9. Second gear; 10. Guide rod; 11. Sliding block; 12. Connecting frame; 13. Extrusion plate; 14. Guide block; 15. Guide slot; 16. Internally threaded cylinder; 17. Threaded rod; 18. Rotation slot; 19. Rotation block; 20. Pulley; 21. Inspection slot; 22. Threaded slot; 23. Docking slot; 24. Rotation slot; 25. Bolt; 26. Twisting block; 27. Inspection plate. DETAILED DESCRIPTION
[0035] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0036] See also Figure 1-6 , the utility model provides a technical solution: a laminating printing machine, comprising: a main body 1 and a feeder 2;
[0037] A feeder 2 is installed on the side of the main body 1, and a control panel 3 is installed on the feeder 2. A material guide plate 4 is connected to the other side of the main body 1, and an inspection plate 27 is provided on the side of the feeder 2. An operation slot 5 is opened on the feeder 2, and a knob 6 is connected through the inner wall of the operation slot 5. One end of the knob 6 is connected to the first gear 7, and a two-way threaded rod 8 is connected inside the knob 6. The end of the knob 6 close to the first gear 7 is connected to the second gear 9, and a guide rod 10 is connected to the inside of the operation slot 5. A sliding block 11 is connected between the guide rod 10 and the two-way threaded rod 8. A connecting frame 12 is connected to the side of the sliding block 11, and an extrusion plate 13 is provided on the side of the connecting frame 12.
[0038] A rotating structure is formed between the operating slot 5 and the knob 6 , and the knob 6 and the first gear 7 are an integral structure, and a meshing structure is formed between the first gear 7 and the second gear 9 .
[0039] The second gear 9 and the bidirectional threaded rod 8 are an integral structure, and the bidirectional threaded rod 8 and the operating slot 5 form a rotating structure. The bidirectional threaded rod 8 and the sliding block 11 are threadedly connected, and the sliding block 11 and the guide rod 10 are slidingly connected.
[0040] See Figure 1, 2 can be seen, the rotating knob 6 can be rotated through the operating slot 5, when the knob 6 is rotated, the first meshing gear 7 can be driven to rotate, when the first meshing gear 7 is rotated, the second meshing gear 9 can be driven to rotate, when the second meshing gear 9 is rotated, the bidirectional threaded rod 8 can be driven to rotate, and the rotation of the bidirectional threaded rod 8 can drive the two sets of sliding blocks 11 to slide toward each other, when the sliding blocks 11 slide toward each other, they can slide through the guide rod 10, and when the sliding block 11 slides, it can drive the two sets of connecting frames 12 and the extrusion plate 13 to move.
[0041] The connecting frame 12 is also provided with a guide block 14, a guide groove 15, an internal threaded tube 16, a threaded rod 17, a rotating groove 18, a rotating block 19 and a pulley 20. The guide groove 15 is opened on the side of the connecting frame 12, and the guide block 14 is embedded in the guide groove 15. The guide block 14 is connected to the side of the extrusion plate 13. The threaded rod 17 and the internal threaded tube 16 are respectively connected between the threaded rod 17 and the extrusion plate 13. The bottom of the extrusion plate 13 is provided with a rotating groove 18 with a rotating block 19 connected thereto, and the side of the rotating block 19 is connected to the pulley 20.
[0042] The guide block 14 and the extrusion plate 13 are integrally formed, and the guide block 14 and the guide groove 15 are slidably connected.
[0043] The connecting frame 12 and the threaded rod 17 form a rotating structure, and the threaded rod 17 and the internal threaded barrel 16 are threadedly connected.
[0044] See Figure 2 , 3, 4 can be seen that the rotating threaded rod 17 can be rotated through the connecting frame 12, and the threaded rod 17 can drive the internal threaded cylinder 16 to slide threadedly when it rotates. When the internal threaded cylinder 16 slides threadedly, it can drive the extrusion plate 13 to move. When the extrusion plate 13 moves, it can drive the guide block 14 to move. When the guide block 14 moves, it can slide guidedly through the guide groove 15. When the extrusion plate 13 moves, it can drive the pulley 20 to move. When the pulley 20 moves to the product surface, the product can be positioned on the conveyor belt. When the feeder 2 is working, the conveyor belt can drive the product to move. When the product moves, it can drive the pulley 20 to rotate. When the pulley 20 rotates, it can drive the rotating block 19 to rotate. When the rotating block 19 rotates, the pulley 20 and the rotating groove 18 can be rotated.
[0045] An inspection groove 21 is provided on the side of the main body 1, a threaded groove 22 is provided inside the inspection groove 21, an inspection plate 27 is embedded inside the inspection groove 21, a docking groove 23 is provided on the back of the inspection plate 27, a rotation groove 24 is provided through the docking groove 23, a bolt 25 is connected between the threaded groove 22 and the docking groove 23, and a twisting block 26 is connected to one end of the bolt 25 close to the rotation groove 24.
[0046] The bolt 25 and the twisting block 26 are an integral structure, and the bolt 25, the twisting block 26 and the docking groove 23 are in sliding connection.
[0047] See Figure 2 , 5, 6 can be seen that the rotating twisting block 26 can be rotated through the rotating groove 24, and the twisting block 26 can drive the bolt 25 to rotate when it rotates. When the bolt 25 rotates, it can slide through the thread groove 22. While the bolt 25 slides, it can push the twisting block 26 to move. When the twisting block 26 moves, it can be loosened from the rotating groove 24. When the twisting block 26 is rotated 90°, it can dock with the docking groove 23. When the twisting block 26 docks with the docking groove 23, the inspection plate 27 can be pulled. When the inspection plate 27 is pulled, the docking groove 23, the bolt 25, and the twisting block 26 can be driven to slide. When the inspection plate 27 slides out of the inspection groove 21, the interior of the main body 1 can be inspected and maintained.
[0048] Working principle: When using the laminating printing machine, first turn the knob 6 to rotate through the operating slot 5. When the knob 6 is rotated, it can drive the first meshing gear 7 to rotate. When the first meshing gear 7 is rotated, it can drive the second meshing gear 9 to rotate. When the second meshing gear 9 is rotated, it can drive the bidirectional threaded rod 8 to rotate. The rotation of the bidirectional threaded rod 8 can drive the two sets of sliding blocks 11 to slide in opposite threads. When the sliding blocks 11 slide in opposite threads, they can slide through the guide rod 10. When the sliding blocks 11 slide, they can drive the two sets of connecting frames 12 and the extrusion plate 13 to move. After the position adjustment of the connecting frame 12 and the extrusion plate 13 is completed, the threaded rod 17 can be rotated through the connecting frame 12. When the threaded rod 17 rotates, it can drive the internal threaded cylinder 16 to slide in threads. When the thread of the groove cylinder 16 slides, it can drive the extrusion plate 13 to move, and when the extrusion plate 13 moves, it can drive the guide block 14 to move. When the guide block 14 moves, it can guide and slide through the guide groove 15. When the extrusion plate 13 moves, it can drive the pulley 20 to move. When the pulley 20 moves to the surface of the product, the product can be positioned on the conveyor belt. When the feeder 2 is working, the conveyor belt can drive the product to move. When the product moves, it can drive the pulley 20 to rotate. When the pulley 20 rotates, it can drive the rotating block 19 to rotate. When the rotating block 19 rotates, the pulley 20 and the rotating groove 18 can be rotated, so that the product can avoid slipping with the conveyor belt during transportation. The content not described in detail in this description belongs to the existing technology known to professional and technical personnel in this field.
[0049] Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments, or make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. A laminating printing machine, comprising: The main body (1) and the feeder (2) are characterized by: A feeder (2) is installed on the side of the main body (1), a control panel (3) is installed on the feeder (2), a guide plate (4) is connected to the other side of the main body (1), and an inspection plate (27) is provided on the side of the feeder (2); An operating slot (5) is provided on the feeder (2), a knob (6) is connected through the inner wall of the operating slot (5), one end of the knob (6) is connected to a first meshing gear (7), a bidirectional threaded rod (8) is connected inside the knob (6), and one end of the knob (6) close to the first meshing gear (7) is connected to a second meshing gear (9); A guide rod (10) is connected to the inside of the operating groove (5); a sliding block (11) is connected between the guide rod (10) and the bidirectional threaded rod (8); a connecting frame (12) is connected to the side of the sliding block (11); and an extrusion plate (13) is provided on the side of the connecting frame (12).
2. The laminating printing machine according to claim 1, characterized in that: The operating slot (5) and the knob (6) form a rotating structure, the knob (6) and the first meshing gear (7) are an integral structure, and the first meshing gear (7) and the second meshing gear (9) form a toothed structure.
3. The laminating printing machine according to claim 1, characterized in that: The second gear (9) and the bidirectional threaded rod (8) are an integral structure, and a rotating structure is formed between the bidirectional threaded rod (8) and the operating slot (5), and a threaded connection is formed between the bidirectional threaded rod (8) and the sliding block (11), and a sliding connection is formed between the sliding block (11) and the guide rod (10).
4. The laminating printing machine according to claim 1, characterized in that: The connecting frame (12) is further provided with a guide block (14), a guide groove (15), an internal threaded cylinder (16), a threaded rod (17), a rotating groove (18), a rotating block (19) and a pulley (20); A guide groove (15) is provided on the side of the connecting frame (12), a guide block (14) is embedded in the guide groove (15), the guide block (14) is connected to the side of the extrusion plate (13), and a threaded rod (17) is connected through the top of the connecting frame (12); The internal threaded cylinder (16) is connected between the threaded rod (17) and the extrusion plate (13). The bottom of the extrusion plate (13) is provided with a rotation groove (18) which is internally connected to a rotation block (19). The side of the rotation block (19) is connected to a pulley (20).
5. The laminating printing machine according to claim 4, characterized in that: The guide block (14) and the extrusion plate (13) are an integral structure, and the guide block (14) and the guide groove (15) are in sliding connection.
6. The laminating printing machine according to claim 4, characterized in that: A rotating structure is formed between the connecting frame (12) and the threaded rod (17), and the threaded rod (17) and the internal threaded cylinder (16) are threadedly connected.
7. The laminating printing machine according to claim 1, characterized in that: The side of the main body (1) is provided with an inspection groove (21), the interior of the inspection groove (21) is provided with a threaded groove (22), the interior of the inspection groove (21) is embedded with an inspection plate (27), and the back of the inspection plate (27) is provided with a docking groove (23); A rotation groove (24) is provided inside the docking groove (23), a bolt (25) is connected between the thread groove (22) and the docking groove (23), and a twisting block (26) is connected to one end of the bolt (25) close to the rotation groove (24).
8. The laminating printing machine according to claim 7, characterized in that: The bolt (25) and the twisting block (26) are an integrated structure, and the bolt (25), the twisting block (26) and the docking groove (23) are in sliding connection.
Citation Information
Patent Citations
Label tectorial membrane printing machine
CN208714682U