Automatic forming device for coated paper container
By designing an automatic forming device for coated paper containers, a photoelectric sensor and a pneumatic seal detection module are used to detect and automatically classify the paper containers. This solves the problem of failure to screen and classify paper containers in a timely manner after production in existing technologies, thereby improving product quality and production efficiency.
Patent Information
- Application Number
- CN202423146679.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-19
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2034-12-19
AI Technical Summary
Existing paper container production facilities lack effective testing methods after production, resulting in the failure to promptly screen and classify substandard products, which affects the uniformity of product quality.
Design an automatic forming device for coated paper containers, including a feeding section, a forming section, an inspection section and an unloading section. The paper containers are inspected using a photoelectric sensor and a pneumatic sealing detection module. Defective products are automatically classified through a waste top block and a waste pipe. A counter is used to stack and count qualified products.
This enables timely detection and classification of paper containers, improving product control and production efficiency, and ensuring the uniformity of product quality.
Smart Images

Figure CN223618330U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of paper container production technology, and in particular to an automatic forming device for coated paper containers. Background Technology
[0002] Paper containers are containers made from chemical wood pulp paper (white cardboard) through mechanical processing and bonding. They are characterized by safety, hygiene, lightness, and convenience.
[0003] Existing paper container production equipment performs limited testing on paper containers after production, and fails to promptly screen and classify substandard paper containers, resulting in uneven product quality and affecting the quality of products leaving the factory. Utility Model Content
[0004] The purpose of this invention is to provide an automatic forming device for coated paper containers, which solves the problem of insufficient testing of paper containers after production in existing paper container production equipment, and the failure to promptly screen and classify unqualified paper containers, resulting in uneven product quality.
[0005] This utility model provides an automatic forming device for coated paper containers, including a feeding section, a forming section, a detection section, and a discharging section. The feeding section is located at the front end of the forming section, the forming section is located at the front end of the detection section, the detection section is located at the front end of the discharging section, and the discharging section is located at the front end of the feeding trough. The feeding section includes a feeding trough, a paper suction module, and a paper feeding module. The paper suction module is located below the feeding trough. The feeding trough is used for feeding paper, the paper suction module is used for picking up coated paper, and the paper feeding module is located at the rear end of the paper suction module for feeding coated paper. The forming section includes... The system includes a forming track, a forming mold, a bending module, an ultrasonic bonding module, a feeding module, a steering module, a feeding turntable, a bottom sealing module, a bottom sealing feeding module, and a folding module. The forming track is located below the paper suction module and the paper feeding module. The bending module is located at the rear end of the paper feeding module and is used to press the coated paper onto the forming mold. The forming mold is located above the bending module. The ultrasonic bonding module is located above the forming mold and is used to bond the coated paper. The feeding module is located at the rear end of the bending module. For feeding, the steering module is located at the rear of the feeding module and is used to turn the semi-finished paper container. The feeding turntable is located above the steering module and is used to move the semi-finished paper container. The bottom sealing module is located at the rear of the steering module and is used to seal the bottom of the paper container. The bottom sealing feeding module is connected to the bottom sealing module and is used to feed the bottom coated paper. The folding module is located at the rear of the bottom sealing module and is used to fold the paper container. The detection unit includes a detection transfer module, a detection track, and a detection... The system includes a tray and a photoelectric sensor. The detection and transfer module is located at the rear end of the folding module and is used to transport paper containers. The detection track is located at the rear end of the detection and transfer module. The detection tray is installed on the detection and transfer module and is used to place paper containers. The photoelectric sensor is located above the detection and transfer module and is used to detect paper containers. The discharge section includes a discharge pipe and a discharge platform. The discharge pipe is located above the rear end of the detection and transfer module, and the discharge platform is connected to the outlet end of the discharge pipe. The discharge pipe is used for discharging material.
[0006] Preferably, a waste section is provided at the front end of the discharge section, the waste section includes a waste top block, the waste top block is installed inside the rear end of the detection and transfer module, and the waste top block is used to lift up paper containers that fail the detection.
[0007] Preferably, a knurling module is provided at the rear end of the folding module, the knurling module being used for knurling paper containers.
[0008] Preferably, a curling module is provided at the rear end of the knurling module, the curling module being used for curling the edges of the paper container.
[0009] Preferably, one detection photocell is installed on each of the left and right sides above the detection and transfer module.
[0010] Preferably, a pneumatic seal detection module is provided at the rear end of the photoelectric sensor, and the pneumatic seal detection module is used to detect whether the paper container is leaking.
[0011] Preferably, a waste pipe is provided above the waste top block, and the waste pipe is used for shipping non-conforming paper containers.
[0012] Preferably, a stacking rack is provided on the discharge platform for stacking paper containers.
[0013] Preferably, a counter is provided above the stacking rack for counting.
[0014] Preferably, the stacking rack has a rotating shaft at its lower end, driven by a rotating motor, and the stacking rack is used to stack paper containers.
[0015] As can be seen from the above scheme, the automatic forming device for coated paper containers of this utility model detects the paper containers by means of a photoelectric sensor after the paper containers are formed, and then detects the leakage of the paper containers by means of a pneumatic sealing detection module. After the detection is completed, the paper containers are automatically classified and the finished paper containers are counted and stacked, which improves the production quality control and production efficiency of paper containers. Attached Figure Description
[0016] To more clearly illustrate the technical solution of this utility model, the drawings used in the description of the embodiments 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.
[0017] Figure 1 This is a schematic diagram of the structure of an automatic forming device for coated paper containers according to the present invention;
[0018] Figure 2 This is a schematic diagram of the bottom sealing feeding module of an automatic forming device for coated paper containers according to this utility model;
[0019] Figure 3 This is a schematic diagram of the feeding turntable structure of an automatic forming device for coated paper containers according to this utility model;
[0020] Explanation of reference numerals in the attached figures:
[0021] 1. Feeding section, 2. Forming section, 3. Inspection section, 4. Discharge section, 5. Waste section, 6. Feeding trough, 7. Paper suction module, 8. Paper feeding module, 9. Forming track, 10. Forming mold, 11. Bending module, 12. Ultrasonic bonding module, 13. Feeding module, 14. Turning module, 15. Feeding turntable, 16. Bottom sealing module, 17. Bottom sealing feeding module, 18. Folding module, 19. Knurling module, 20. Edge rolling module, 21. Inspection and transfer module, 22. Inspection track, 23. Inspection bracket, 24. Inspection photocell, 25. Air pressure seal inspection module, 26. Waste top block, 27. Waste pipe, 28. Discharge pipe, 29. Stacking rack, 30. Counter, 31. Discharge platform. Detailed Implementation
[0022] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.
[0023] Example 1
[0024] Please see Figure 1 — Figure 3This invention discloses an automatic forming device for coated paper containers. The device includes a feeding section 1, a forming section 2, a detection section 3, and a discharging section 4. The feeding section 1 is located at the front end of the forming section 2, the forming section 2 is located at the front end of the detection section 3, the detection section 3 is located at the front end of the discharging section 4, and the discharging section 4 is located at the front end of the feeding trough 6. The feeding section 1 includes a feeding trough 6, a paper suction module 7, and a paper feeding module 8. The paper suction module 7 is located below the feeding trough 6 and is used for feeding paper. The paper suction module 7 is used for picking up coated paper. The paper feeding module 8 is located at the rear end of the paper suction module 7 and is used for feeding coated paper. The forming section 2... The system includes a forming track 9, a forming mold 10, a bending module 11, an ultrasonic bonding module 12, a feeding module 13, a steering module 14, a feeding turntable 15, a bottom sealing module 16, a bottom sealing feeding module 17, and a folding module 18. The forming track 9 is located below the paper suction module 7 and the paper feeding module 8. The bending module 11 is located at the rear end of the paper feeding module 8 and is used to press the coated paper onto the forming mold 10. The forming mold 10 is located above the bending module 11. The ultrasonic bonding module 12 is located above the forming mold 10 and is used to bond the coated paper. The feeding module 13 is located at the rear end of the bending module 11. The feeding module 13 is used for feeding materials. The steering module 14 is located at the rear end of the feeding module 13 and is used to turn the semi-finished paper container. The feeding turntable 15 is located above the steering module 14 and is used to move the semi-finished paper container. The bottom sealing module 16 is located at the rear end of the steering module 14 and is used to seal the bottom of the paper container. The bottom sealing feeding module 17 is connected to the bottom sealing module 16 and is used to feed the bottom coated paper. The folding module 18 is located at the rear end of the bottom sealing module 16 and is used to fold the paper container. The detection unit 3 includes a detection transfer module 21, a detection track 22, and a detection... The device includes a bracket 23, a photoelectric sensor 24, and a detection transfer module 21 located at the rear end of the folding module 18. The detection transfer module 21 is used to transport paper containers. The detection track 22 is located at the rear end of the detection transfer module 21. The detection bracket 23 is installed on the detection transfer module 21 and is used to place paper containers. The detection photoelectric sensor 24 is located above the detection transfer module 21 and is used to detect paper containers. The discharge section 4 includes a discharge pipe 28 and a discharge platform 31. The discharge pipe 28 is located above the rear end of the detection transfer module 21, and the discharge platform 31 is connected to the outlet end of the discharge pipe 28. The discharge pipe 28 is used for discharging materials.
[0025] A knurling module 19 is provided at the rear end of the folding module 18, and the knurling module 19 is used for knurling paper containers.
[0026] A curling edge module 20 is provided at the rear end of the knurling module 19, and the curling edge module 20 is used for curling the edges of paper containers.
[0027] The detection photocells 24 are respectively installed on the left and right sides above the detection and transfer module 21.
[0028] A pressure sealing detection module 25 is provided at the rear end of the detection photoelectric sensor 24. The pressure sealing detection module 25 is used to detect whether the paper container is leaking.
[0029] A stacking rack 29 is provided on the discharge table 31, and the stacking rack 29 is used to stack paper containers.
[0030] In Example 1, after the automatic forming device for coated paper containers is started, the coated paper is first placed into the feeding trough 6. The paper suction module 7 removes the coated paper, and the paper feeding module 8 picks up the removed coated paper and moves it along the forming track 9 to deliver the coated paper to the bottom of the forming mold 10. The bending module 11 presses the coated paper upward onto the forming mold 10. At this time, the ultrasonic bonding module 12 presses down to bond the coated paper. After bonding is completed, the ultrasonic bonding module 12 moves upward, and the feeding module 13 picks up the bonded coated paper. The tube moves, and the coated paper tube is inserted into the steering module 14. Then, the steering module 14 rotates upward to complete the turn. The gripping mechanism on the feeding turntable 15 picks up the coated paper tube on the steering module 14 and then rotates it to transport it below the bottom sealing module 16. The bottom coated paper is placed in the bottom sealing feeding module 17, which transports the bottom coated paper into the bottom sealing module 16. The bottom sealing module 16 installs the bottom coated paper into the coated paper tube, forming the shape of a paper container. After passing through the folding module 1... At 8 o'clock, the folding module 18 is used to fold the paper container and the bottom coated paper together. When passing through the knurling module 19, the knurling module 19 knurls the bottom of the paper container. When passing through the edge rolling module 20, the edge rolling module 20 rolls the edge of the cup mouth of the paper container. After passing above the detection and transfer module 21, the paper container is put down and transported by the detection and transfer module 21. The paper container enters the detection tray 23, and the detection tray 23 is moved by the motor driving the detection rail 22. When passing through the detection photoelectric eye 24, the detection photoelectric eye 24 judges whether the paper container is qualified by image recognition of the paper container. When passing through the air pressure sealing detection module 25, the upper and lower ends of the air pressure sealing detection module 25 are pressed together to cover the paper container. Then gas is injected. The air pressure sealing detection module 25 is equipped with an air pressure sensor. By comparing the air pressure inside and outside the paper container, it can detect whether the paper container is leaking. After the detection is completed, when the paper container passes below the discharge pipe 28, it is sucked into the discharge pipe 28 by the action of the air pump and enters the stacking rack 29 for stacking.
[0031] Example 2
[0032] Please see Figure 1 — Figure 3This invention discloses an automatic forming device for coated paper containers. The device includes a feeding section 1, a forming section 2, a detection section 3, and a discharging section 4. The feeding section 1 is located at the front end of the forming section 2, the forming section 2 is located at the front end of the detection section 3, the detection section 3 is located at the front end of the discharging section 4, and the discharging section 4 is located at the front end of the feeding trough 6. The feeding section 1 includes a feeding trough 6, a paper suction module 7, and a paper feeding module 8. The paper suction module 7 is located below the feeding trough 6 and is used for feeding paper. The paper suction module 7 is used for picking up coated paper. The paper feeding module 8 is located at the rear end of the paper suction module 7 and is used for feeding coated paper. The forming section 2... The system includes a forming track 9, a forming mold 10, a bending module 11, an ultrasonic bonding module 12, a feeding module 13, a steering module 14, a feeding turntable 15, a bottom sealing module 16, a bottom sealing feeding module 17, and a folding module 18. The forming track 9 is located below the paper suction module 7 and the paper feeding module 8. The bending module 11 is located at the rear end of the paper feeding module 8 and is used to press the coated paper onto the forming mold 10. The forming mold 10 is located above the bending module 11. The ultrasonic bonding module 12 is located above the forming mold 10 and is used to bond the coated paper. The feeding module 13 is located at the rear end of the bending module 11. The feeding module 13 is used for feeding materials. The steering module 14 is located at the rear end of the feeding module 13 and is used to turn the semi-finished paper container. The feeding turntable 15 is located above the steering module 14 and is used to move the semi-finished paper container. The bottom sealing module 16 is located at the rear end of the steering module 14 and is used to seal the bottom of the paper container. The bottom sealing feeding module 17 is connected to the bottom sealing module 16 and is used to feed the bottom coated paper. The folding module 18 is located at the rear end of the bottom sealing module 16 and is used to fold the paper container. The detection unit 3 includes a detection transfer module 21, a detection track 22, and a detection... The device includes a bracket 23, a photoelectric sensor 24, and a detection transfer module 21 located at the rear end of the folding module 18. The detection transfer module 21 is used to transport paper containers. The detection track 22 is located at the rear end of the detection transfer module 21. The detection bracket 23 is installed on the detection transfer module 21 and is used to place paper containers. The detection photoelectric sensor 24 is located above the detection transfer module 21 and is used to detect paper containers. The discharge section 4 includes a discharge pipe 28 and a discharge platform 31. The discharge pipe 28 is located above the rear end of the detection transfer module 21, and the discharge platform 31 is connected to the outlet end of the discharge pipe 28. The discharge pipe 28 is used for discharging materials.
[0033] A waste section 5 is provided at the front end of the discharge section 4. The waste section 5 includes a waste top block 26, which is installed inside the rear end of the detection and transfer module 21. The waste top block 26 is used to lift up paper containers that fail the inspection.
[0034] A knurling module 19 is provided at the rear end of the folding module 18, and the knurling module 19 is used for knurling paper containers.
[0035] A curling edge module 20 is provided at the rear end of the knurling module 19, and the curling edge module 20 is used for curling the edges of paper containers.
[0036] The detection photocells 24 are respectively installed on the left and right sides above the detection and transfer module 21.
[0037] A pressure sealing detection module 25 is provided at the rear end of the detection photoelectric sensor 24. The pressure sealing detection module 25 is used to detect whether the paper container is leaking.
[0038] A waste pipe 27 is provided above the waste top block 26, and the waste pipe 27 is used for the shipment of unqualified paper containers.
[0039] A stacking rack 29 is provided on the discharge table 31, and the stacking rack 29 is used to stack paper containers.
[0040] In Example 2, after the automatic forming device for coated paper containers is started, the coated paper is first placed into the feeding trough 6. The paper suction module 7 removes the coated paper, and the paper feeding module 8 picks up the removed coated paper and moves it along the forming track 9 to deliver the coated paper to the bottom of the forming mold 10. The bending module 11 presses the coated paper upward onto the forming mold 10. At this time, the ultrasonic bonding module 12 presses down to bond the coated paper. After bonding is completed, the ultrasonic bonding module 12 moves upward, and the feeding module 13 picks up the bonded coated paper tube and moves it. The coated paper tube is then inserted into the turning module 14. Afterwards, the turning module 14 rotates upwards to complete the turning. The gripping mechanism on the feeding turntable 15 picks up the coated paper tube on the turning module 14 and then rotates it to transport it below the bottom sealing module 16. The bottom coated paper is placed in the bottom sealing feeding module 17, which transports the bottom coated paper into the bottom sealing module 16. The bottom sealing module 16 installs the bottom coated paper into the coated paper tube, forming the shape of the paper container. When passing through the folding module 18, the folding module 18 is used to fold the paper container and the bottom coated paper together. When passing through the knurling module 19... The knurling module 19 knurls the bottom of the paper container. When it passes the edge-rolling module 20, the edge-rolling module 20 rolls the rim of the paper container. After passing over the detection and transfer module 21, the paper container is lowered and transported by the detection and transfer module 21. The paper container enters the detection tray 23, which is moved by the motor-driven detection rail 22. When it passes the detection photoelectric sensor 24, the sensor 24 uses image recognition to determine if the paper container is qualified. When it passes the pneumatic seal detection module 25, the pneumatic seal detection module 25... The lower end is pressed to cover the paper container, and then gas is injected. The air pressure sealing detection module 25 is equipped with an air pressure sensor. By comparing the air pressure inside and outside the paper container, it can detect whether the paper container is leaking. After the detection is completed, when the unqualified paper container passes under the waste section 5, the detection bracket 23 has a hollow structure in the middle. The waste top block 26 lifts the unqualified paper container through the hollow position and sucks it into the waste pipe 27 by the action of the air pump. When the paper container passes under the discharge pipe 28, it is sucked into the discharge pipe 28 by the action of the air pump and enters the stacking rack 29 for stacking.
[0041] Example 3
[0042] Please see Figure 1 — Figure 3This invention discloses an automatic forming device for coated paper containers. The device includes a feeding section 1, a forming section 2, a detection section 3, and a discharging section 4. The feeding section 1 is located at the front end of the forming section 2, the forming section 2 is located at the front end of the detection section 3, the detection section 3 is located at the front end of the discharging section 4, and the discharging section 4 is located at the front end of the feeding trough 6. The feeding section 1 includes a feeding trough 6, a paper suction module 7, and a paper feeding module 8. The paper suction module 7 is located below the feeding trough 6 and is used for feeding paper. The paper suction module 7 is used for picking up coated paper. The paper feeding module 8 is located at the rear end of the paper suction module 7 and is used for feeding coated paper. The forming section 2... The system includes a forming track 9, a forming mold 10, a bending module 11, an ultrasonic bonding module 12, a feeding module 13, a steering module 14, a feeding turntable 15, a bottom sealing module 16, a bottom sealing feeding module 17, and a folding module 18. The forming track 9 is located below the paper suction module 7 and the paper feeding module 8. The bending module 11 is located at the rear end of the paper feeding module 8 and is used to press the coated paper onto the forming mold 10. The forming mold 10 is located above the bending module 11. The ultrasonic bonding module 12 is located above the forming mold 10 and is used to bond the coated paper. The feeding module 13 is located at the rear end of the bending module 11. The feeding module 13 is used for feeding materials. The steering module 14 is located at the rear end of the feeding module 13 and is used to turn the semi-finished paper container. The feeding turntable 15 is located above the steering module 14 and is used to move the semi-finished paper container. The bottom sealing module 16 is located at the rear end of the steering module 14 and is used to seal the bottom of the paper container. The bottom sealing feeding module 17 is connected to the bottom sealing module 16 and is used to feed the bottom coated paper. The folding module 18 is located at the rear end of the bottom sealing module 16 and is used to fold the paper container. The detection unit 3 includes a detection transfer module 21, a detection track 22, and a detection... The device includes a bracket 23, a photoelectric sensor 24, and a detection transfer module 21 located at the rear end of the folding module 18. The detection transfer module 21 is used to transport paper containers. The detection track 22 is located at the rear end of the detection transfer module 21. The detection bracket 23 is installed on the detection transfer module 21 and is used to place paper containers. The detection photoelectric sensor 24 is located above the detection transfer module 21 and is used to detect paper containers. The discharge section 4 includes a discharge pipe 28 and a discharge platform 31. The discharge pipe 28 is located above the rear end of the detection transfer module 21, and the discharge platform 31 is connected to the outlet end of the discharge pipe 28. The discharge pipe 28 is used for discharging materials.
[0043] A waste section 5 is provided at the front end of the discharge section 4. The waste section 5 includes a waste top block 26, which is installed inside the rear end of the detection and transfer module 21. The waste top block 26 is used to lift up paper containers that fail the inspection.
[0044] A knurling module 19 is provided at the rear end of the folding module 18, and the knurling module 19 is used for knurling paper containers.
[0045] A curling edge module 20 is provided at the rear end of the knurling module 19, and the curling edge module 20 is used for curling the edges of paper containers.
[0046] The detection photocells 24 are respectively installed on the left and right sides above the detection and transfer module 21.
[0047] A pressure sealing detection module 25 is provided at the rear end of the detection photoelectric sensor 24. The pressure sealing detection module 25 is used to detect whether the paper container is leaking.
[0048] A waste pipe 27 is provided above the waste top block 26, and the waste pipe 27 is used for the shipment of unqualified paper containers.
[0049] A stacking rack 29 is provided on the discharge table 31, and the stacking rack 29 is used to stack paper containers.
[0050] A counter 30 is provided above the stacking rack 29 for counting.
[0051] The stacking rack 29 is provided with a rotating shaft at its lower end, which is driven by a rotating motor. The stacking rack 29 is used to stack paper containers.
[0052] In Example 3, after the automatic forming device for coated paper containers is started, the coated paper is first placed into the feeding trough 6. The paper suction module 7 removes the coated paper, and the paper feeding module 8 picks up the removed coated paper and moves it along the forming track 9 to deliver the coated paper to the bottom of the forming mold 10. The bending module 11 presses the coated paper upward onto the forming mold 10. At this time, the ultrasonic bonding module 12 presses down to bond the coated paper. After bonding, the ultrasonic bonding module 12 moves upward, and the feeding module 13 picks up the bonded coated paper tube and moves it. The coated paper tube is inserted into the steering module 14, and then the steering module 14 rotates upward to complete the steering. The feeding turntable 15 then... The gripping mechanism picks up the coated paper tube on the turning module 14 and rotates it to transport it below the bottom sealing module 16. The bottom coated paper is then placed on the bottom sealing feed module 17, which transports it into the bottom sealing module 16. The bottom sealing module 16 installs the bottom coated paper into the coated paper tube, forming the shape of a paper container. When passing through the folding module 18, the folding module 18 folds the paper container and the bottom coated paper together. When passing through the knurling module 19, the knurling module 19 knurls the bottom of the paper container. When passing through the edge-rolling module 20, the edge-rolling module 20 rolls the edge of the cup mouth of the paper container. Afterwards, it undergoes inspection and transfer. When the paper container is placed above module 21, it is lowered and transported by the detection and transfer module 21. The paper container enters the detection tray 23, and the detection tray 23 is moved by the motor driven by the detection track 22. When it passes the detection photoelectric eye 24, the detection photoelectric eye 24 determines whether the paper container is qualified by image recognition. When it passes the air pressure sealing detection module 25, the upper and lower ends of the air pressure sealing detection module 25 are pressed together to cover the paper container, and then gas is injected. The air pressure sealing detection module 25 is equipped with an air pressure sensor. By comparing the air pressure inside and outside the paper container, it can detect whether the paper container is leaking. After the detection is completed, the unqualified paper container passes through the waste section 5. At this time, the detection bracket 23 has a hollow structure in the middle. The waste top block 26 lifts the paper containers that fail the test through the hollow position and sucks them into the waste pipe 27 by the action of the air pump. When the paper containers pass under the discharge pipe 28, they are sucked into the discharge pipe 28 by the action of the air pump and enter the stacking rack 29 for stacking. A counter 30 is set on the top of the stacking rack 29 for counting. The lower end of the stacking rack 29 is equipped with a rotating shaft, which is driven by a rotating motor. Whenever the stacking rack 29 counts a certain number by the counter 30, the rotating motor drives the stacking rack 29 to fall down, and the paper containers will roll to the side onto the discharge platform 31.
[0053] The specific embodiments described above further illustrate the technical problems, technical solutions, and beneficial effects of this utility model. It should be understood that the above descriptions are merely specific embodiments of this utility model and are not intended to limit this utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. An automatic forming device for coated paper containers, characterized in that, It includes a feeding section (1), a forming section (2), a detection section (3), and a discharging section (4). The feeding section (1) is located at the front end of the forming section (2), the forming section (2) is located at the front end of the detection section (3), the detection section (3) is located at the front end of the discharging section (4), and the discharging section (4) is located at the front end of the feeding trough (6). The feeding section (1) includes a feeding trough (6), a paper suction module (7), and a paper feeding module (8). The paper suction module (7) is located below the feeding trough (6), and the paper feeding module (8) is located at the rear end of the paper suction module (7). The forming section (2) includes... The system includes a forming track (9), a forming mold (10), a bending module (11), an ultrasonic bonding module (12), a feeding module (13), a steering module (14), a feeding turntable (15), a bottom sealing module (16), a bottom sealing feeding module (17), and a folding module (18). The forming track (9) is located below the paper suction module (7) and the paper feeding module (8). The bending module (11) is located at the rear end of the paper feeding module (8). The forming mold (10) is located above the bending module (11). The ultrasonic bonding module (12) is located above the forming mold (9). 10) Above, the feeding module (13) is located at the rear end of the bending module (11), the steering module (14) is located at the rear end of the feeding module (13), the feeding turntable (15) is located above the steering module (14), the bottom sealing module (16) is located at the rear end of the steering module (14), the bottom sealing feeding module (17) is connected to the bottom sealing module (16), the folding module (18) is located at the rear end of the bottom sealing module (16), the detection unit (3) includes a detection transfer module (21), a detection track (22), a detection bracket (23), and a detection... The photoelectric sensor (24), the detection transfer module (21) is located at the rear end of the folding module (18), the detection track (22) is located at the rear end of the detection transfer module (21), the detection bracket (23) is installed on the detection transfer module (21), the detection photoelectric sensor (24) is located above the detection transfer module (21), the discharge section (4) includes a discharge pipe (28) and a discharge platform (31), the discharge pipe (28) is located above the rear end of the detection transfer module (21), and the discharge platform (31) is connected to the outlet end of the discharge pipe (28).
2. The automatic forming device for coated paper containers according to claim 1, characterized in that, A waste section (5) is provided at the front end of the discharge section (4). The waste section (5) includes a waste top block (26), which is installed inside the rear end of the detection and transfer module (21).
3. The automatic forming device for coated paper containers according to claim 1, characterized in that, A knurled module (19) is provided at the rear end of the folding module (18).
4. The automatic forming device for coated paper containers according to claim 3, characterized in that, A crimping module (20) is provided at the rear end of the knurling module (19).
5. The automatic forming device for coated paper containers according to claim 1, characterized in that, The detection photocells (24) are respectively installed on the left and right sides above the detection and transfer module (21).
6. The automatic forming device for coated paper containers according to claim 1, characterized in that, A pressure sealing detection module (25) is installed at the rear end of the detection photoelectric eye (24).
7. The automatic forming device for coated paper containers according to claim 2, characterized in that, Waste pipe (27) is provided above the waste top block (26).
8. The automatic forming device for coated paper containers according to claim 1, characterized in that, A stacking rack (29) is provided on the discharge platform (31).
9. The automatic forming device for coated paper containers according to claim 8, characterized in that, A counter (30) is placed above the stacking rack (29).
10. An automatic forming device for coated paper containers according to claim 8, characterized in that, The stacking rack (29) has a rotating shaft at its lower end, which is driven by a rotating motor.