Full-automatic side wing plate line pressing machine

The fully automatic side wing plate pressing machine features an upper and lower pressing plate design, enabling simultaneous pressing of both sides of the side wing plate. This solves the problems of complexity and low efficiency of existing equipment, improves processing efficiency and aesthetics, and reduces the labor intensity of workers.

CN224130587UActive Publication Date: 2026-04-17WENZHOU GUORUN MASCH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WENZHOU GUORUN MASCH CO LTD
Filing Date
2025-04-03
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

Existing crimping machines have complex structures and low crimping efficiency, and cannot achieve synchronous crimping on both sides of the side wing plates, resulting in irregular bends and high labor intensity for workers.

Method used

The fully automatic side wing plate pressing machine is designed, which adopts a structure of horizontal pressing blade, vertical pressing blade and oblique pressing blade with the cooperation of upper and lower pressing plates to realize the synchronous pressing of horizontal pressing, vertical pressing and oblique pressing. Combined with the storage rack and feeding component, it realizes automated conveying.

Benefits of technology

Simplify the equipment structure, improve the pressing efficiency, ensure uniform pressing on both sides of the side wing plate, reduce the labor intensity of workers, and improve processing efficiency and aesthetics.

✦ Generated by Eureka AI based on patent content.

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    Figure CN224130587U_ABST
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Abstract

The utility model discloses a full-automatic side wing plate line pressing machine which is characterized in that the full-automatic side wing plate line pressing machine comprises a material storage frame, a feeding assembly is arranged corresponding to the material storage frame, the feeding assembly can feed side wing plates in the material storage frame to a line pressing assembly, and the line pressing assembly comprises an upper line pressing plate and a lower line pressing plate. The upper wire pressing plate is provided with an upper transverse pressing blade, an upper vertical pressing blade and an upper inclined pressing blade, the lower wire pressing plate is provided with a lower transverse pressing blade, a lower vertical pressing blade and a lower inclined pressing blade, the upper wire pressing plate and / or the wire pressing plate are / is connected with a lifting driving assembly, and the upper transverse pressing blade and the lower transverse pressing blade are matched to press transverse pressing wires on the two faces of the side wing plate. The upper and lower vertical pressing blades are matched to press vertical pressing lines on the two surfaces of the side wing plate, and the upper and lower inclined pressing blades are matched to press inclined pressing lines on the two surfaces of the side wing plate. According to the utility model, all the pressing lines can be simultaneously extruded and formed, and the pressing lines are formed on the two surfaces of the side wing plate, so that the side wing plate is bent more smoothly, and the bent edge is more attractive.
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Description

Technical Field

[0001] This utility model relates to packaging box production equipment, specifically to a fully automatic side wing plate pressing machine. Background Technology

[0002] Folding boxes are a new type of cardboard box structure. Because they have foldable side panels, they can be folded flat when not in use, significantly reducing the space required for stacking, storage, and transportation. To enable the side panels to bend, they need to be pre-stitched using a creasing machine. After the creasing lines are formed on the side panels, they can be bent along those lines. Currently, the defects of crimping machines on the market are: 1. They use a multi-stage crimping method, which sets up multiple different workstations to crimp horizontal, vertical, and diagonal lines on the side panels, resulting in a very complex equipment structure, numerous crimping processes, and low crimping efficiency; 2. They use a roller-type structure to crimp the side panels, which can only crimp one side of the side panel. In actual use, since the other side of the side panel is not crimped, when the side panel is bent, there will be some irregular bending marks on the un-crimped side, making the bend look uneven and affecting the product's aesthetics; 3. Side panels usually need to be manually picked up and placed on the crimping machine for crimping, which is very labor-intensive for workers and results in low crimping production efficiency. Utility Model Content

[0003] In view of the shortcomings of the prior art, the technical problem to be solved by this utility model is to provide a fully automatic side wing plate pressing machine for solving the above problems.

[0004] Therefore, this utility model is implemented using the following solution:

[0005] A fully automatic side wing plate pressing machine, characterized in that: it includes a storage rack, and a feeding component is provided corresponding to the storage rack. The feeding component can feed the side wing plates in the storage rack to the pressing component. The pressing component includes an upper pressing plate and a lower pressing plate. The upper pressing plate is provided with an upper horizontal pressing blade, an upper vertical pressing blade, and an upper oblique pressing blade. The lower pressing plate is provided with a lower horizontal pressing blade, a lower vertical pressing blade, and a lower oblique pressing blade. The upper pressing plate and / or the pressing plate are connected to a lifting drive component. The upper and lower horizontal pressing blades cooperate to press horizontal lines on both sides of the side wing plate. The upper and lower vertical pressing blades cooperate to press vertical lines on both sides of the side wing plate. The upper and lower oblique pressing blades cooperate to press oblique lines on both sides of the side wing plate.

[0006] The feeding assembly includes a feeding platform and a swing arm. The swing arm is connected to a first motor and is equipped with a first suction head. The first suction head can suck and deliver the side wing plates on the storage rack to the feeding platform. It also includes a movable frame. The movable frame is equipped with a lifting seat. The lifting seat is connected to a suction head frame. The suction head frame is equipped with a second suction head. The second suction head can suck and deliver the side wing plates of the feeding platform to the pressing station.

[0007] The feeding platform is equipped with a left push plate, a right push plate and a rear push plate, and each push plate is connected to a corresponding moving drive component.

[0008] The mobile frame has two sets of units installed at the front and rear.

[0009] The upper pressure plate includes a first upper pressure plate, a second upper pressure plate, and a third upper pressure plate. The first and second upper pressure plates are arranged side to side, and both the first and second upper pressure plates are provided with an upper vertical pressure blade and an upper oblique pressure blade. The third upper pressure plate is provided with an upper horizontal pressure blade. The lower pressure plate includes a first lower pressure plate, a second lower pressure plate, and a third lower pressure plate. The first and second lower pressure plates are arranged side to side, and both the first and second lower pressure plates are provided with a lower vertical pressure blade and a lower oblique pressure blade. The third lower pressure plate is provided with a lower horizontal pressure blade.

[0010] The first upper pressure plate and the second upper pressure plate are connected to the first moving adjustment component, and the first lower pressure plate and the second lower pressure plate are connected to the second moving adjustment component.

[0011] The first upper pressure plate, the second upper pressure plate, and the third upper pressure plate are mounted on the lifting frame, which is connected to the piston rod of the first cylinder, which is mounted on the movable frame.

[0012] A third suction head is provided for the corresponding crimping station, which can hold and position the side wing plate in the crimping station.

[0013] The fully automatic side panel pressing machine described above, by setting the horizontal, vertical, and diagonal pressing blades on the upper and lower pressing plates respectively, only requires controlling the upper and lower pressing plates to press the side panel once, thus achieving simultaneous pressing and forming of horizontal, vertical, and diagonal lines. This effectively simplifies the equipment structure and improves pressing efficiency. Furthermore, by setting the horizontal, vertical, and diagonal pressing blades as two working blades, each can press lines on both sides of the side panel, allowing the side panel to bend along the lines during bending. This avoids irregular creases on the unpressed side after bending, resulting in a smoother and more aesthetically pleasing bend. Simultaneously, by setting up a storage rack and feeding components, automated conveying of the side panels is achieved, replacing manual handling and placement on the pressing machine, effectively reducing worker labor intensity and improving overall equipment processing efficiency. Attached Figure Description

[0014] The present invention includes the following figures:

[0015] Figure 1 This is a schematic diagram of the structure of this utility model;

[0016] Figure 2 for Figure 1 A magnified view of the area pointed to by A in the middle;

[0017] Figure 3 This is a structural diagram of the upper pressure plate of this utility model;

[0018] Figure 4 for Figure 3 Another perspective;

[0019] Figure 5 This is a view of the present invention after the upper pressure plate has been removed;

[0020] Figure 6 for Figure 5 A magnified view of the area pointed to by B in the middle;

[0021] Figure 7 This is a structural diagram of both sides of the side wing plate after the pressure line processing of this utility model. Detailed Implementation

[0022] As shown in the figure, the fully automatic side wing plate pressing machine disclosed in this utility model includes an inclined storage rack 1 and a feeding component corresponding to the storage rack 1. The feeding component can feed the side wing plates in the storage rack 1 to the pressing component. Specifically, the feeding component includes a feeding platform 15 and a swing arm 10. The swing arm 10 is connected to a first motor 8 for transmission. A first suction head 11 is provided on the swing arm 10. The first suction head 11 can suck the side wing plates on the storage rack 1 to the feeding platform 15. It also includes a moving frame 3, which is connected to a linear motor 4. Of course, a cylinder, gear rack, sprocket chain, or other structure can also be used to drive the moving frame 3 to move. A lifting seat 16 is provided on the moving frame 3. The lifting seat 16 is connected to the piston rod of a fifth cylinder 2. The cylinder body of the fifth cylinder 2 is provided on the moving frame 3. A suction head frame 9 is connected to the lifting seat 16. A second suction head 12 is provided on the suction head frame 9. The second suction head 12 can suck the side wing plates of the feeding platform 15 to the pressing station. The pressure line assembly includes an upper pressure line plate and a lower pressure line plate. The upper pressure line plate is provided with an upper horizontal pressure blade 20, an upper vertical pressure blade 25, and an upper oblique pressure blade 24. The lower pressure line plate is provided with a lower horizontal pressure blade 30, a lower vertical pressure blade 28, and a lower oblique pressure blade 27. The upper pressure line plate and / or the pressure line plate are connected to the lifting drive assembly. The upper and lower horizontal pressure blades cooperate to press out horizontal pressure lines 36 on both sides of the side wing plate 33. The upper and lower vertical pressure blades cooperate to press out vertical pressure lines 35 on both sides of the side wing plate 33. The upper and lower oblique pressure blades cooperate to press out oblique pressure lines 34 on both sides of the side wing plate 33. Furthermore, the feeding platform is equipped with a left push plate 13, a right push plate, and a rear push plate 17. Each push plate is connected to a corresponding moving drive component. The left push plate 13 is connected to the piston rod of the second cylinder 14, the right push plate is connected to the piston rod of the third cylinder, and the rear push plate 17 is connected to the piston rod of the fourth cylinder 18. By controlling the corresponding cylinders to drive the movement of each push plate, the side wing plate fed onto the feeding platform 15 can be pushed to the required position so that it can be accurately pressed later. The moving frame 3 is provided with two sets at the front and rear. One set is used to send the side wing plate from the feeding platform to the pressing station, and the other set is used to suck up and send out the side wing plate after pressing. In this embodiment, the upper pressure plate includes a first upper pressure plate 19, a second upper pressure plate 22, and a third upper pressure plate 21. The first upper pressure plate 19 and the second upper pressure plate 22 are arranged side to side, and both the first and second upper pressure plates are provided with an upper vertical pressure blade 25 and an upper oblique pressure blade 24. The third upper pressure plate 21 is provided with an upper horizontal pressure blade 20. The lower pressure plate includes a first lower pressure plate 26, a second lower pressure plate 37, and a third lower pressure plate 29. The first lower pressure plate 26 and the second lower pressure plate 37 are arranged side to side, and both the first and second lower pressure plates are provided with a lower vertical pressure blade 28 and a lower oblique pressure blade 27. The third lower pressure plate 29 is provided with a lower horizontal pressure blade 30.The first upper pressure plate 19 and the second upper pressure plate 22 are connected to the first movable adjustment assembly. Guide components are provided corresponding to the first and second upper pressure plates. The first movable adjustment assembly includes a first adjusting screw 23, which has a first threaded section and a second threaded section with opposite spiral directions. The first threaded section is screwed to the first upper pressure plate 19, and the second threaded section is screwed to the second upper pressure plate 22. By controlling the rotation of the first adjusting screw 23, the first and second upper pressure plates can be moved closer or further apart to adapt to the specifications of the side wing plate. The first lower pressure plate 26 and the second lower pressure plate 37 are connected to the second movable adjustment assembly. First, the second lower pressure plate is equipped with a guide assembly. The second adjustment assembly includes a second adjustment screw 32. The first adjustment screw 32 has a third threaded section and a fourth threaded section with opposite spiral directions. The third threaded section is screwed to the first lower pressure plate 26, and the fourth threaded section is screwed to the second lower pressure plate 37. By controlling the rotation of the second adjustment screw 32, the first and second lower pressure plates can be moved closer or further apart to adapt to the specifications of the side wing plates. The first upper pressure plate 19, the second upper pressure plate 22, and the third upper pressure plate 21 are mounted on the lifting frame 7. The lifting frame 7 is connected to the piston rod of the first cylinder 5, and the first cylinder 5 is mounted on the moving frame 3. Furthermore, a third suction head 31 is provided corresponding to the pressure station. The third suction head 31 can suction and position the side wing plates in the pressure station.

[0023] The working principle of this utility model is as follows: Side wing plates are stacked inside the storage rack 1. The swing arm 10 is controlled to drive the first suction head 11 to swing to the storage rack 1, where the first suction head 11 picks up the side wing plate. Then, the swing arm 10 is controlled to swing back, sending the side wing plate onto the unloading platform 15. Afterwards, the left push plate 13, right push plate, and rear push plate 17 move, pushing the side wing plate to the desired position. Next, the lifting seat 16 drives the suction head frame 9 and the second suction head 12 to descend and pick up the side wing plate. Then, the lifting seat 16 drives the side wing plate to rise, and the moving frame 3 moves, sending the side wing plate to the pressing station. Afterwards, the lifting seat 16 again... The side wing plate is lowered, placing it on the lower pressure plate and being held in place by the second suction head 31. The second suction head releases the side wing plate, the lifting seat rises, and the moving frame 3 moves back to reset. Then, the lifting frame 7 is controlled to drive the upper pressure plate to descend, so that the upper and lower horizontal pressure blades cooperate to press out horizontal pressure lines 36 on both sides of the side wing plate 33, the upper and lower vertical pressure blades cooperate to press out vertical pressure lines 35 on both sides of the side wing plate 33, and the upper and lower oblique pressure blades cooperate to press out oblique pressure lines 34 on both sides of the side wing plate 33. After the pressure is completed, another set of moving frames 3 moves to the pressure station and picks up and sends out the side wing plate that has completed the pressure processing in the pressure station.

[0024] This invention's structure, by setting the horizontal, vertical, and oblique pressing blades on the upper and lower pressing plates respectively, allows for simultaneous pressing of the side wing plate with horizontal, vertical, and oblique lines by controlling the upper and lower pressing plates to perform a single pressing operation. This effectively simplifies the equipment's structure and improves pressing efficiency. Furthermore, by setting the horizontal, vertical, and oblique pressing blades as two working blades, each pressing line can be pressed onto both sides of the side wing plate. This ensures that when the side wing plate is bent, both sides can bend along the lines, avoiding irregular creases on the unpressed side and resulting in a smoother, more aesthetically pleasing bend. Simultaneously, the use of a storage rack and feeding components enables automated conveying of the side wing plate, replacing manual handling and placement on the pressing machine. This effectively reduces worker fatigue and improves the overall processing efficiency of the equipment.

Claims

1. A fully automatic side wing plate crimping machine, characterized in that: The material includes a storage rack (1), and a feeding assembly is provided corresponding to the storage rack (1). The feeding assembly can send the side wing plate in the storage rack (1) to the pressing assembly. The pressing assembly includes an upper pressing plate and a lower pressing plate. The upper pressing plate is provided with an upper horizontal pressing blade (20), an upper vertical pressing blade (25) and an upper oblique pressing blade (24). The lower pressing plate is provided with a lower horizontal pressing blade (30), a lower vertical pressing blade (28) and a lower oblique pressing blade (27). The upper pressing plate and / or the pressing plate are connected to the lifting drive assembly. The upper and lower horizontal pressing blades cooperate to press out horizontal pressing lines (36) on both sides of the side wing plate (33). The upper and lower vertical pressing blades cooperate to press out vertical pressing lines (35) on both sides of the side wing plate (33). The upper and lower oblique pressing blades cooperate to press out oblique pressing lines (34) on both sides of the side wing plate (33).

2. The fully automatic side wing plate creaser as claimed in claim 1, wherein: The feeding assembly includes a feeding platform (15) and a swing arm (10). The swing arm (10) is connected to a first motor (8) for transmission. A first suction head (11) is provided on the swing arm (10). The first suction head (11) can suck the side wing plate on the storage rack (1) to the feeding platform (15). It also includes a moving frame (3). A lifting seat (16) is provided on the moving frame (3). A suction head frame (9) is connected to the lifting seat (16). A second suction head (12) is provided on the suction head frame (9). The second suction head (12) can suck the side wing plate of the feeding platform (15) to the pressing station.

3. The fully automatic side wing plate creaser as claimed in claim 2, wherein: The feeding platform is provided with a left push plate (13), a right push plate and a rear push plate (17), and each push plate is connected to the corresponding moving drive component.

4. The fully automatic side wing plate creaser as claimed in claim 2, wherein: The mobile frame (3) has two sets of units installed at the front and back.

5. The fully automatic side wing plate creaser as claimed in claim 1, wherein: The upper pressure plate includes a first upper pressure plate (19), a second upper pressure plate (22), and a third upper pressure plate (21). The first upper pressure plate (19) and the second upper pressure plate (22) are arranged side to side, and the first and second upper pressure plates are provided with an upper vertical pressure blade (25) and an upper oblique pressure blade (24). The third upper pressure plate (21) is provided with an upper horizontal pressure blade (20). The lower pressure plate includes a first lower pressure plate (26), a second lower pressure plate (37), and a third lower pressure plate (29). The first lower pressure plate (26) and the second lower pressure plate (37) are arranged side to side, and the first and second lower pressure plates are provided with a lower vertical pressure blade (28) and a lower oblique pressure blade (27). The third lower pressure plate (29) is provided with a lower horizontal pressure blade (30).

6. The fully automatic side wing plate creaser as claimed in claim 5, wherein: The first upper pressure plate (19) and the second upper pressure plate (22) are connected to the first moving adjustment assembly, and the first lower pressure plate (26) and the second lower pressure plate (37) are connected to the second moving adjustment assembly.

7. The fully automatic side wing plate creaser as claimed in claim 5, wherein: The first upper pressure plate (19), the second upper pressure plate (22) and the third upper pressure plate (21) are mounted on the lifting frame (7), which is connected to the piston rod of the first cylinder (5), which is mounted on the moving frame (3).

8. The fully automatic side wing plate crimping machine according to claim 5, characterized in that: A third suction head (31) is provided for the corresponding pressing station. The third suction head (31) can hold and position the side wing plate in the pressing station.