Blanking device for blister head of wine box cover
By introducing a cutter wheel and guide groove structure into the wine box lid production equipment, the automatic guided cut of the blister head is achieved, which solves the problems of high labor intensity and low precision caused by traditional manual placement, and improves the cutter efficiency and accuracy.
Patent Information
- Application Number
- CN202521094105.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-30
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2035-05-30
AI Technical Summary
Traditional wine box lid production equipment requires manual placement of blister heads, which is very labor-intensive and difficult to ensure accuracy.
The discharge wheel and guide groove structure are adopted to drive the discharge wheel to rotate by driving the motor to realize automatic guided discharge of the blister head, replacing manual operation.
It reduces the labor intensity of workers and improves the efficiency and accuracy of cutting.
Smart Images

Figure CN223100016U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a wine box cover forming machine, and particularly relates to a blister head feeding device for a wine box cover. Background Art
[0002] The wine box cover is a key component on the wine box, used to seal the opening of the wine box. For one type of wine box cover, a blister head is bonded to the wine box cover, and the blister head has a positioning groove for the top end of the wine bottle to extend into. When the wine box cover is closed, the positioning groove limits the position of the wine bottle to ensure that the wine bottle does not shake inside the wine box. In traditional wine box cover production equipment, a single conveyor belt is set to send the blister heads to the picking station, and then the manipulator sends the blister heads to the gluing station for gluing and finally presses and bonds the blister heads inside the wine box cover. The defect of this structure is that it is necessary to manually place the blister heads one by one on the conveyor belt, which increases the labor intensity of workers and it is difficult to ensure the accuracy of placement. Content of the Utility Model
[0003] In view of the deficiencies in the background art, the technical problem to be solved by the utility model is to provide a blister head feeding device for a wine box cover to solve the above problems.
[0004] To this end, the utility model is implemented as follows:
[0005] The blister head feeding device for a wine box cover is characterized in that it includes a stacking rack, and a surrounding blanking runner is arranged below the stacking rack. Each blanking runner is connected to a corresponding rotation driving component. The top of the blanking runner can hold the blister heads stacked in the stacking rack. The outer side wall of the blanking runner has a blanking guide groove spirally extending from its top to the bottom, and the outer edge of the blister head can extend into the blanking guide groove. An inlet ramp is arranged at the top of the blanking runner corresponding to the blanking guide groove.
[0006] The stacking rack includes surrounding rack bars.
[0007] Four blanking runners are provided, and the four blanking runners are evenly distributed around the stacking rack.
[0008] The rotation driving component includes a driving motor. The output end of the driving motor is connected to a first worm, the first worm meshes with a first worm gear, a first transmission shaft is connected to the first worm gear, a second worm is connected to the first transmission shaft, the second worm meshes with a second worm gear, and the second worm gear is coaxially arranged with the blanking runner.
[0009] The output end of the drive motor is connected to a power shaft. The first worm is sleeved on the power shaft and is key-connected to the power shaft. Both the first worm and the first worm gear are rotatably arranged on the first moving seat. The second worm is key-connected to the first transmission shaft, and the second worm and the second worm gear are rotatably arranged on the second moving seat.
[0010] The machine frame is provided with strip-shaped grooves corresponding to the first and second moving seats. The first and second moving seats are provided with threaded holes corresponding to the strip-shaped grooves. Fasteners pass through the strip-shaped grooves and are screwed into the threaded holes to lock the first and second moving seats.
[0011] For the blister head blanking device of the above technical solution, by setting a blanking runner and opening a blanking guide groove on the outer side wall of the blanking runner, it is possible to achieve the guiding blanking of the bottom of the stacked blister heads, replacing the traditional manual placement method, greatly reducing the labor intensity of workers, and improving the blanking efficiency and accuracy. Description of the Drawings
[0012] The present utility model has the following drawings:
[0013] Figure 1 is a schematic structural view of the present utility model;
[0014] Figure 2 is Figure 1 a view after removing part of the first moving seat and the second moving seat;
[0015] Figure 3 is Figure 1 a view from the bottom perspective;
[0016] Figure 4 is a structural diagram of the blanking runner of the present utility model;
[0017] Figure 5 is a structural diagram of the blister head of the present utility model. Detailed Description of the Preferred Embodiments
[0018] As shown in the figure, the blister head blanking device for the wine box cover disclosed by the present utility model includes a stacking rack. Specifically, the stacking rack includes a surrounding frame rod 6. Below the stacking rack, there is a surrounding blanking runner 12, and each blanking runner 12 is connected to a corresponding rotation driving assembly. Specifically, the rotation driving assembly includes a driving motor 1. The output end of the driving motor 1 is connected to a first worm 9. The first worm 9 meshes with a first worm gear 17. A first transmission shaft 4 is connected to the first worm gear 17. A second worm 11 is connected to the first transmission shaft 4. The second worm 11 meshes with a second worm gear 10. The second worm 11 is coaxially arranged with the blanking runner 12. By controlling the driving motor 1 to start, and then being transmitted by the first worm 9, the first worm gear 17, the first transmission shaft 4 and the second worm 11, the second worm gear 10 and the blanking runner 12 can be driven to rotate. Further, the output end of the driving motor 1 is connected to a power shaft 3. The first worm 9 is sleeved on the power shaft 3 and is key-connected to the power shaft 3. The first worm 9 and the first worm gear 17 are both rotatably arranged on a first moving seat 2. The second worm 11 is key-connected to the first transmission shaft 4. The middle part of the second worm 11 has a through hole. The first transmission shaft 4 passes through the through hole in the middle of the second worm 11 and is key-connected to the second worm 11. The second worm 11 and the second worm gear 10 are rotatably arranged on a second moving seat 5. The positions of the first and second moving seats can be controlled to move, thereby adjusting the position of the blanking runner 12 to make it adapt to the specifications of the blister head. In addition, the frame 8 is provided with a strip-shaped groove 7 at the positions corresponding to the first and second moving seats. The first and second moving seats are provided with threaded holes at the positions corresponding to the strip-shaped groove 7. The first and second moving seats are locked by passing fasteners through the strip-shaped groove 7 and screwing them into the threaded holes to ensure the locking of the positions of the first and second moving seats after adjustment. The top of the blanking runner 12 can hold the stacked blister heads 15 in the stacking rack. The outer side wall of the blanking runner 12 has a blanking guide groove 13 spirally extending from its top to the bottom. The blanking guide groove 13 can allow the outer edge 16 of the blister head 15 to extend into it. An inlet slope 14 is provided at the top of the blanking runner 12 corresponding to the blanking guide groove 13 to ensure that the outer edge 16 of the blister head 15 can smoothly enter the blanking guide groove 13. Further, four blanking runners 12 are provided, and the four blanking runners 12 are evenly distributed around the stacking rack, which can realize the synchronous guiding blanking of the four sides of the blister head and ensure the stable blanking of the blister head.
[0019] The working principle of the present utility model is as follows: The blister heads 15 are stacked in the stacking rack, and the bottom of the stacked blister heads abuts against the blanking runner 12. The driving motor 1 is started to drive the blanking runner 12 to rotate. As the blanking runner 12 rotates, its inlet slope 14 rotates to the position of the blister head, which will guide the outer edge 16 of the bottommost blister head to extend into the blanking guide groove 13 and drive it to descend along with the blanking guide groove 13. Finally, the blister head 15 will be separated from the blanking guide groove 13 and naturally fall onto the conveyor belt arranged below to complete the blanking operation of the blister head.
[0020] With this structure of the utility model, by setting a blanking runner and opening a blanking guide groove on the outer side wall of the blanking runner, the guiding blanking at the bottom of the stacked plastic suction heads can be realized, replacing the traditional manual placement method, greatly reducing the labor intensity of workers, and improving the blanking efficiency and accuracy.
Claims
1. Blister head blanking device for wine box lids, characterized in that: It includes a stacking rack, and a material discharging runner (12) is arranged around the lower part of the stacking rack. Each material discharging runner (12) is connected with a corresponding rotation driving assembly. The top of the material discharging runner (12) can hold the plastic suction heads (15) stacked in the stacking rack. A material discharging guide groove (13) spirally extending from the top to the bottom is arranged on the outer side wall of the material discharging runner (12). The outer edge (16) of the plastic suction head (15) can extend into the material discharging guide groove (13). An inlet slope (14) is arranged at the top of the material discharging runner (12) corresponding to the material discharging guide groove (13).
2. The blister head blanking device for the wine box lid according to claim 1, wherein The stacking rack includes surrounding rack bars (6).
3. The blister head blanking device for the wine box lid according to claim 1, wherein Four material discharging runners (12) are provided, and the four material discharging runners (12) are evenly arranged around the stacking rack.
4. The blister head blanking device for the wine box lid according to claim 1, wherein The rotation driving assembly includes a driving motor (1). The output end of the driving motor (1) is connected with a first worm (9). The first worm (9) meshes with a first worm gear (17). A first transmission shaft (4) is connected to the first worm gear (17). A second worm (11) is connected to the first transmission shaft (4). The second worm (11) meshes with a second worm gear (10). The second worm gear (10) is coaxially arranged with the material discharging runner (12).
5. The blister head blanking device for the wine box lid according to claim 4, characterized in that The output end of the driving motor (1) is connected with a power shaft (3). The first worm (9) is sleeved on the power shaft (3) and is key-connected with the power shaft (3). The first worm (9) and the first worm gear (17) are both rotatably arranged on a first moving seat (2). The second worm (11) is key-connected with the first transmission shaft (4). The second worm (11) and the second worm gear (10) are rotatably arranged on a second moving seat (5).
6. The blister head blanking device for wine box lids according to claim 5, characterized in that The frame (8) is provided with strip-shaped grooves (7) corresponding to the first and second moving seats. Threaded holes are arranged at the positions of the first and second moving seats corresponding to the strip-shaped grooves (7). The first and second moving seats are locked by fastening pieces passing through the strip-shaped grooves (7) and screwing with the threaded holes.