Paper box anti-adhesion device

By designing an anti-sticking device for paper boxes, the problem of adhesion between the outer paper and the feeding equipment was solved by using an anti-sticking mechanism and an air supply mechanism. This achieved stability and accuracy in feeding, ensured a tight fit between the outer paper and the inner box, improved the stability of the production line, and reduced the risk of equipment failure.

CN223618347UActive Publication Date: 2025-12-02DONGGUAN SENFUTONG PAPER CO LTD
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Patent Information

Application Number
CN202423088253.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-14
Publication Date
2025-12-02
Estimated Expiration
2034-12-14

AI Technical Summary

Technical Problem

The existing feeding equipment and automatic carton attaching machine are not well connected. After the outer paper is coated with glue, it is easy to stick to the belt of the feeding equipment, which leads to jamming and errors during the feeding process, affecting the stability of the production line and product quality.

Method used

A paper box anti-sticking device was designed, including an anti-sticking mechanism, an air supply mechanism, an adjustment robotic arm, and a control panel. The paper box position is adjusted by a drive motor, and the position of the paper box is confirmed by scanning with an inner box drive component and a detection bracket. Combined with air supply and ventilation holes, the risk of sticking is reduced, ensuring a smooth transition.

Benefits of technology

It improves the stability and accuracy of feeding, ensures a tight fit between the outer paper and the inner box, enhances the overall stability and reliability of the production line, and reduces downtime and production costs caused by equipment failure.

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Abstract

The utility model discloses a paper box anti-adhesion device, and belongs to the technical field of paper box production, the paper box anti-adhesion device comprises a mounting rack, a conveyor belt is arranged in the mounting rack, an anti-adhesion mechanism and a detection support are respectively mounted at the top of the mounting rack, the anti-adhesion mechanism comprises two groups of supports, a transverse rack is mounted between the two groups of supports, and a driving motor is arranged on one side of the transverse rack; a moving groove is formed in the transverse frame, a driving rod is rotationally connected into the moving groove, and one end of the driving rod penetrates through the transverse frame and is fixedly connected with the output end of a driving motor; when the feeding device is used, the risk that outer paper adheres to the conveying belt due to the viscidity of glue is reduced, the problem that the outer paper adheres to the conveying belt in the feeding process is effectively solved, the feeding stability and accuracy are improved, it is guaranteed that the outer paper and the inner box are tightly matched in the attaching process, and the service life of the outer paper is prolonged. And the overall stability and reliability of the production line are enhanced, and the downtime and the production cost caused by equipment faults are reduced.
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Description

Technical Field

[0001] This application relates to the field of paper box manufacturing technology, and in particular to a paper box anti-sticking device. Background Technology

[0002] In the production of cardboard boxes, the lamination of the inner box and the outer paper is a crucial step. The outer surface of the inner box is usually plain, while the outer surface of the outer paper is printed with intricate designs. To enhance the box's aesthetics, the outer paper needs to be precisely laminated to the outer surface of the inner box. In this process, the outer paper first undergoes surface adhesive application using a gluing device, and then is conveyed by a feeding device to an automatic laminating machine for final lamination.

[0003] There are shortcomings in the connection between the existing feeding equipment and the automatic boxer. In particular, after the outer paper is coated with glue, its stickiness increases and it is easy to stick to the belt of the feeding equipment. This may not only cause jamming and errors in the feeding process, but also cause the outer paper and inner box to separate, thus affecting the stability of the entire production line and product quality. Utility Model Content

[0004] To address the shortcomings of existing technologies, this application provides a paper box anti-sticking device, which overcomes the deficiencies of existing technologies and aims to solve the problem of insufficient connection between existing feeding equipment and automatic box attaching machines. In particular, after the outer paper is coated with glue, its adhesiveness increases, making it easy to stick to the belt of the feeding equipment. This may not only cause jamming and errors in the feeding process, but also cause the outer paper and inner box to separate, thereby affecting the stability of the entire production line and product quality.

[0005] To achieve the above objectives, this application provides the following technical solution: a paper box anti-sticking device, comprising a mounting frame, a conveyor belt disposed inside the mounting frame, an anti-sticking mechanism and a detection bracket respectively mounted on the top of the mounting frame, the anti-sticking mechanism comprising two sets of brackets, a horizontal frame mounted between the two sets of brackets, a drive motor disposed on one side of the horizontal frame, a moving groove opened inside the horizontal frame, a drive rod rotatably connected inside the moving groove, one end of the drive rod passing through the horizontal frame and fixedly connected to the output end of the drive motor, a two-axis adjusting component disposed on one side of the horizontal frame, an adjusting groove opened inside the two-axis adjusting component, an adjusting block slidably connected inside the adjusting groove, one side of the adjusting block being threadedly connected to the drive rod, the other side of the adjusting block being located inside the adjusting groove, an inner box driving component disposed below the two-axis adjusting component, and a detector disposed between the two sets of detection brackets.

[0006] By adopting the above technical solution and setting an anti-adhesion mechanism, the position of the two-axis adjusting components can be changed by the set drive motor during use. Then, the inner box driving component at the bottom can move the position of the cardboard box. When the conveyor belt transports the cardboard box covered with glue, it can be scanned by the detection bracket to confirm the position of the cardboard box. Then, the set drive motor drives the position of the two-axis adjusting components to change. When the cardboard box reaches one side of the anti-adhesion mechanism, it will first come into contact with the inner box driving component. At this time, the inner box driving component will push against one side of the cardboard box, causing the cardboard box to move in a direction perpendicular to the conveying direction. This movement helps to form a smoother transition between the feeding equipment and the automatic box attaching machine, reducing the risk of the outer paper sticking to the conveyor belt due to the stickiness of the glue. It effectively solves the problem of the outer paper sticking to the conveyor belt during the feeding process. It not only improves the stability and accuracy of feeding, but also ensures the tight fit between the outer paper and the inner box during the attaching process. It also enhances the overall stability and reliability of the production line and reduces downtime and production costs caused by equipment failure.

[0007] As a preferred technical solution of this application, an air supply mechanism is installed at one end of the mounting frame near the conveyor belt. The air supply mechanism includes two sets of connecting frames (701). A rotating shaft is provided inside each of the two sets of connecting frames (701). A rotating groove is opened inside the connecting frame (701). A rotating component is installed inside the rotating groove. Two sets of clamping plates are installed at one end of the rotating component. A fan frame is installed between the two sets of clamping plates. Multiple fans are installed inside the fan frame.

[0008] By adopting the above technical solution, the air supply mechanism can blow air onto the cardboard box as it enters the next conveyor belt, further reducing the possibility of the cardboard box adhering to the surface of the conveyor belt. This makes the conveying process of the cardboard box into the next process smoother. In addition, the rotating shaft and rotating groove can be easily adjusted by the staff, improving the practicality of the device.

[0009] As a preferred technical solution of this application, an adjusting robotic arm is installed between the conveyor belt and the detection bracket, a positioning mechanism is installed at one end of the adjusting robotic arm, and multiple sets of positioning suction cups are provided at the bottom of the positioning mechanism.

[0010] By adopting the above technical solution and setting up an adjusting robotic arm, the cardboard box can be positioned and the cardboard box with a skewed angle can be corrected. This facilitates further operation of the cardboard box by the subsequent anti-sticking mechanism and improves accuracy.

[0011] As a preferred technical solution of this application, a control panel is provided on one side of the mounting bracket, and the control panel is electrically connected to the anti-adhesion mechanism, the detection bracket and the adjusting robotic arm.

[0012] By adopting the above technical solution and setting up a control panel, staff can better control various parts of the device from the outside, improving ease of use.

[0013] As a preferred technical solution of this application, a speed sensor is installed on one side of the detection bracket, and a roller is provided on one side of the speed sensor, with the roller abutting against the conveyor belt.

[0014] By adopting the above technical solution and setting rollers, the transmission speed of the conveyor belt can be better detected, the anti-sticking mechanism can more easily move the paper box according to the transmission speed of the conveyor belt, and the adjustment of the robotic arm can also better position the paper box, improving the accuracy of positioning and anti-sticking.

[0015] As a preferred technical solution of this application, the conveyor belt has multiple sets of ventilation holes inside.

[0016] By adopting the above technical solution and setting multiple sets of ventilation holes, the contact area between the cardboard box and the conveyor belt can be reduced, and the ventilation effect of the cardboard box above the conveyor belt can also be enhanced through the ventilation holes.

[0017] As a preferred technical solution of this application, the top of the conveyor belt is provided with an anti-sticking coating.

[0018] By adopting the above technical solution, the anti-adhesion coating can further reduce the probability of adhesion and improve practicality.

[0019] The beneficial effects of this application are:

[0020] 1. By setting up an anti-adhesion mechanism, during operation, the position of the two-axis adjusting components can be changed by the set drive motor. Then, the inner box driving component at the bottom can move the position of the cardboard box. When the conveyor belt transports the cardboard box covered with glue, it can be scanned by the detection bracket to confirm the position of the cardboard box. Then, the set drive motor drives the position of the two-axis adjusting components to change. When the cardboard box reaches one side of the anti-adhesion mechanism, it will first come into contact with the inner box driving component. At this time, the inner box driving component will press against one side of the cardboard box, causing the cardboard box to move in a direction perpendicular to the conveying direction. This movement helps to form a smoother transition between the feeding equipment and the automatic box attaching machine, reducing the risk of the outer paper sticking to the conveyor belt due to the stickiness of the glue. It effectively solves the problem of the outer paper sticking to the conveyor belt during the feeding process. It not only improves the stability and accuracy of feeding, but also ensures the tight fit between the outer paper and the inner box during the attaching process. It also enhances the overall stability and reliability of the production line and reduces downtime and production costs caused by equipment failure.

[0021] 2. The air supply mechanism can blow air onto the cardboard boxes as they enter the next conveyor belt, further reducing the possibility of the boxes adhering to the conveyor belt surface. This makes the conveying process of the boxes into the next process smoother. In addition, the rotating shaft and rotating groove can be easily adjusted by the staff, improving the practicality of the device. Attached Figure Description

[0022] Figure 1 This is a schematic diagram of the overall structure of this application;

[0023] Figure 2 This is a schematic diagram of the air supply mechanism structure in this application;

[0024] Figure 3 This is a front structural diagram of the anti-adhesion mechanism of this application;

[0025] Figure 4 This is a side view of the anti-adhesion mechanism of this application.

[0026] In the diagram: 1. Mounting frame; 2. Conveyor belt; 201. Ventilation hole; 3. Anti-adhesion mechanism; 301. Bracket; 302. Horizontal frame; 303. Drive motor; 304. Moving groove; 305. Drive rod; 306. Two-axis adjustment component; 307. Adjustment groove; 308. Adjustment block; 309. Inner box drive component; 4. Detection bracket; 401. Detector; 402. Speed ​​sensor; 403. Roller; 5. Adjustment robotic arm; 501. Positioning mechanism; 502. Positioning suction cup; 6. Control panel; 7. Air supply mechanism; 701. Connecting frame; 702. Rotating shaft; 703. Rotating groove; 704. Rotating assembly; 705. Clamping plate; 706. Fan frame; 707. Fan. Detailed Implementation

[0027] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0028] Reference Figure 1-4 A paper box anti-sticking device includes a mounting frame 1, with a conveyor belt 2 inside the mounting frame 1. An anti-sticking mechanism 3 and a detection bracket 4 are respectively mounted on the top of the mounting frame 1. The anti-sticking mechanism 3 includes two sets of brackets 301, with a horizontal frame 302 installed between the two sets of brackets 301. A drive motor 303 is installed on one side of the horizontal frame 302. A moving groove 304 is formed inside the horizontal frame 302, and a drive rod 305 is rotatably connected inside the moving groove 304. One end of the drive rod 305 passes through the horizontal frame 302. 2. The output end of the drive motor 303 is fixedly connected. A two-axis adjusting component 306 is provided on one side of the horizontal frame 302. An adjusting groove 307 is opened inside the two-axis adjusting component 306. An adjusting block 308 is slidably connected inside the adjusting groove 307. One side of the adjusting block 308 is threadedly connected to the drive rod 305. The other side of the adjusting block 308 is located inside the adjusting groove 307. An inner box drive component 309 is provided below the two-axis adjusting component 306. A detector 401 is provided between the two sets of detection brackets 4. An adjusting robotic arm 5 is installed between the conveyor belt 2 and the detection bracket 4. A positioning mechanism 501 is installed at one end of the adjusting robotic arm 5. Multiple positioning suction cups 502 are provided at the bottom of the positioning mechanism 501.

[0029] By setting up the anti-adhesion mechanism 3, during use, the position of the two-axis adjusting member 306 can be changed by the set drive motor 303, and then the inner box driving member 309 set at the bottom can move the position of the cardboard box. When the conveyor belt 2 transports the cardboard box covered with glue, it can be scanned by the detection bracket 4 to confirm the position of the cardboard box. Then, the set drive motor 303 drives the position of the two-axis adjusting member 306 to change. When the cardboard box reaches one side of the anti-adhesion mechanism 3, it will first come into contact with the inner box driving member 309. At this time, The inner box drive component 309 presses against one side of the cardboard box, causing it to move in a direction perpendicular to the conveying direction. This movement facilitates a smoother transition between the feeding equipment and the automatic box attacher, reducing the risk of the outer paper sticking to the conveyor belt 2 due to adhesive residue. This effectively solves the problem of outer paper sticking to the conveyor belt 2 during feeding, improving not only the stability and accuracy of feeding but also ensuring a tight fit between the outer paper and the inner box during the attaching process. Furthermore, it enhances the overall stability and reliability of the production line, reducing downtime and production costs caused by equipment failure. By setting up the adjusting robotic arm 5, the cardboard box can be positioned, and tilted boxes can be corrected, facilitating further operation of the cardboard box by the subsequent anti-sticking mechanism 3 and improving accuracy.

[0030] Reference Figure 1 An air supply mechanism 7 is installed at one end of the mounting frame 1 near the conveyor belt 2. The air supply mechanism 7 includes two sets of connecting frames 701. Each set of connecting frames 701 has a rotating shaft 702 inside. The connecting frame 701 has a rotating groove 703 inside. A rotating component 704 is installed inside the rotating groove 703. Two sets of clamping plates 705 are installed at one end of the rotating component 704. A fan frame 706 is installed between the two sets of clamping plates 705. Multiple fans 707 are installed inside the fan frame 706. A control panel 6 is provided on one side of the mounting frame 1. The control panel 6 is electrically connected to the anti-adhesion mechanism 3, the detection bracket 4, and the adjusting robotic arm 5. Multiple sets of ventilation holes 201 are opened inside the conveyor belt 2. The air supply mechanism 7 includes two sets of connecting frames 701. Structure 7, during use, can blow air onto the cardboard box as it enters the next conveyor belt, further reducing the possibility of the cardboard box adhering to the surface of the conveyor belt 2, making the conveying process of the cardboard box into the next process smoother. The rotating shaft 702 and rotating groove 703 set up can facilitate the operator to adjust the angle, improving the practicality of the device. By setting up control panel 6, the operator can better control the device from the outside during use, improving the convenience of use. The multiple sets of ventilation holes 201 can reduce the contact area between the cardboard box and the conveyor belt 2, and at the same time, the ventilation holes 201 can also enhance the ventilation effect of the cardboard box above the conveyor belt 2.

[0031] Reference Figure 1A speed sensor 402 is installed on one side of the detection bracket 4, and a roller 403 is provided on one side of the speed sensor 402. The roller 403 abuts against the conveyor belt 2. By setting the roller 403, the transmission speed of the conveyor belt 2 can be detected more effectively, making it easier for the anti-sticking mechanism 3 to move the cardboard box according to the transmission speed of the conveyor belt 2. The adjusting robotic arm 5 can also better position the cardboard box, improving the accuracy of positioning and anti-sticking. An anti-sticking coating is provided on the top of the conveyor belt 2. The anti-sticking coating can further reduce the probability of sticking and improve practicality.

[0032] Working Principle: By setting up the anti-sticking mechanism 3, during use, the position of the two-axis adjusting component 306 can be changed by the drive motor 303. Then, the inner box driving component 309 at the bottom can move the position of the cardboard box. When the conveyor belt 2 transports the cardboard box covered with glue, it can be scanned by the detection bracket 4 to confirm the position of the cardboard box. Then, the drive motor 303 drives the position of the two-axis adjusting component 306 to change. When the cardboard box reaches one side of the anti-sticking mechanism 3, it will first come into contact with the inner box driving component 309. At this time, the inner box driving component 309 will push against one side of the cardboard box, causing the cardboard box to move in a direction perpendicular to the conveying direction. This movement helps to form a smoother connection between the feeding equipment and the automatic box attaching machine. The smooth transition reduces the risk of the outer paper sticking to the conveyor belt 2 due to the adhesive, effectively solving the problem of the outer paper sticking to the conveyor belt 2 during the feeding process. It not only improves the stability and accuracy of feeding, but also ensures the tight fit between the outer paper and the inner box during the bonding process. It also enhances the overall stability and reliability of the production line, reduces downtime and production costs caused by equipment failure. The air blowing mechanism 7 can blow air on the paper box as it enters the next conveyor belt, which can further reduce the possibility of the paper box adhering to the surface of the conveyor belt 2, making the paper box transfer process to the next process smoother. The rotating shaft 702 and rotating groove 703 can be easily adjusted by the operator, improving the practicality of the device.

[0033] Among them, by setting the adjusting robotic arm 5, the paper box can be positioned and the paper box with a skewed angle can be corrected, which can facilitate the subsequent operation of the anti-sticking mechanism 3 on the paper box and improve accuracy. By setting the control panel 6, the staff can better control the device from the outside during use, which improves the convenience of use.

[0034] Meanwhile, by setting roller 403, the transmission speed of conveyor belt 2 can be better detected, and the anti-sticking mechanism 3 can more easily move the paper box according to the transmission speed of conveyor belt 2. The adjustment robot arm 5 can also better position the paper box, improving the accuracy of positioning and anti-sticking.

[0035] In addition, the multiple sets of ventilation holes 201 can reduce the contact area between the cardboard box and the conveyor belt 2, and at the same time, the ventilation holes 201 can enhance the ventilation effect of the cardboard box above the conveyor belt 2; the anti-sticking coating can further reduce the probability of sticking and improve practicality.

[0036] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A paper box anti-sticking device, comprising a mounting frame (1), characterized in that, The mounting frame (1) is equipped with a conveyor belt (2) inside. An anti-adhesion mechanism (3) and a detection bracket (4) are respectively installed on the top of the mounting frame (1). The anti-adhesion mechanism (3) includes two sets of brackets (301). A horizontal frame (302) is installed between the two sets of brackets (301). A drive motor (303) is provided on one side of the horizontal frame (302). A moving groove (304) is opened inside the horizontal frame (302). A drive rod (305) is rotatably connected inside the moving groove (304). One end of the drive rod (305) passes through the horizontal frame (302) and the drive motor. The output end of (303) is fixedly connected. A two-axis adjusting component (306) is provided on one side of the horizontal frame (302). An adjusting groove (307) is opened inside the two-axis adjusting component (306). An adjusting block (308) is slidably connected inside the adjusting groove (307). One side of the adjusting block (308) is threadedly connected to the drive rod (305). The other side of the adjusting block (308) is located inside the adjusting groove (307). An inner box driving component (309) is provided below the two-axis adjusting component (306). A detector (401) is provided between the two sets of detection brackets (4).

2. The anti-sticking device for paper boxes according to claim 1, characterized in that, An air supply mechanism (7) is installed at one end of the mounting frame (1) near the conveyor belt (2). The air supply mechanism (7) includes two sets of connecting frames (701). A rotating shaft (702) is provided inside each of the two sets of connecting frames (701). A rotating groove (703) is opened inside the connecting frame (701). A rotating component (704) is installed inside the rotating groove (703). Two sets of clamping plates (705) are installed at one end of the rotating component (704). A fan frame (706) is installed between the two sets of clamping plates (705). Multiple fans (707) are installed inside the fan frame (706).

3. The anti-sticking device for paper boxes according to claim 1, characterized in that, An adjusting robotic arm (5) is installed between the conveyor belt (2) and the detection bracket (4). A positioning mechanism (501) is installed at one end of the adjusting robotic arm (5). Multiple positioning suction cups (502) are provided at the bottom of the positioning mechanism (501).

4. The anti-sticking device for paper boxes according to claim 1, characterized in that, A control panel (6) is provided on one side of the mounting bracket (1), and the control panel (6) is electrically connected to the anti-adhesion mechanism (3), the detection bracket (4) and the adjusting robotic arm (5).

5. The anti-sticking device for paper boxes according to claim 1, characterized in that, A speed sensor (402) is installed on one side of the detection bracket (4), and a roller (403) is provided on one side of the speed sensor (402). The roller (403) abuts against the conveyor belt (2).

6. The anti-sticking device for paper boxes according to claim 1, characterized in that, The conveyor belt (2) has multiple sets of ventilation holes (201) inside.

7. The anti-sticking device for paper boxes according to claim 1, characterized in that, The top of the conveyor belt (2) is provided with an anti-sticking coating.