Corridor type mobile corrugated paper integrated forming line

The design of the corridor-shaped moving corrugated paper integrated forming line realizes the mechanical linkage of various processes in the corrugated paperboard processing, solves the problems of large space requirements and high costs, and achieves the effect of saving space and reducing energy consumption.

CN116787864BActive Publication Date: 2026-03-17HUNAN YONGSHUN ENVIRONMENTAL PROTECTION MATERIALS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-08
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

In the current corrugated cardboard processing, the separate setup of each process leads to problems such as large space requirements, high costs, and labor and time consumption during transportation.

Method used

The corridor-shaped mobile corrugated paper forming line adopts an integrated setup that integrates gluing, feeding, replenishing and pre-pressing through conveyor belts and drive transverse blocks, achieving mechanical linkage of each process and eliminating intermediate transfer links.

Benefits of technology

It achieves integrated operation of gluing, feeding, and pre-pressing, reducing equipment and energy consumption, saving space and lowering costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of corridor mobile corrugated paper integrated forming line, it is related to corrugated paper production equipment technical field, including conveying belt, the top of conveying belt is provided with installation top frame, and the conveying belt is fixed with the basket for placing corrugated paper lower plate, and the bottom of conveying belt is fixed with drive rotation horizontal shift block;The bottom of installation top frame is equipped with glue brushing structure, and the bottom of installation top frame is fixed with glue frame on the side of basket, and there is running structure A for driving glue brushing structure to dip glue;The side of glue brushing structure is provided with corrugated paper upper plate blanking structure fixed with installation top frame, and there is running structure B for driving blanking structure to blank;The rear side of blanking structure is provided with material supplementing structure, and there is running structure C for driving material supplementing structure to supplement material;Each process is integrally arranged, and the link of intermediate transfer is omitted, and each component is linked by mechanical structure, without additional multiple motors, effectively save certain space, and reduce equipment and energy consumption cost.
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Description

Technical Field

[0001] This invention relates to the field of corrugated paper production equipment technology, specifically to a corridor-shaped mobile corrugated paper integrated forming line. Background Technology

[0002] Corrugated cardboard is a type of paper packaging container. Despite its light weight, corrugated cardboard has structural and mechanical properties that far exceed those of cardboard of similar weight. Its internal corrugated arch structure also plays a role in shock absorption and shockproofing, providing better protection for the packaged items.

[0003] Corrugated cardboard typically consists of a corrugated top plate and a corrugated bottom plate with an arched corrugated structure. After the corrugated cardboard is thermo-pressed into an arched shape, the top and bottom plates are glued together. The opposing arches form an elliptical stress-bearing buffer space, thus achieving better mechanical properties. During the corrugated cardboard processing, operations such as gluing, gluing, and pre-pressing are required. The common processing method is to divide the process into multiple processing areas, with the gluing, gluing, and pre-pressing processes set up separately to prevent interference between processes. However, this requires more space, and multiple sets of electrical equipment such as motors are also needed, resulting in relatively high costs. Transfer between processes also consumes manpower and time. Therefore, a corridor-shaped mobile corrugated cardboard integrated forming line is proposed. Summary of the Invention

[0004] To address the aforementioned problems, this invention proposes a corridor-shaped mobile corrugated paper integrated forming line, comprising a conveyor belt, a mounting frame above the conveyor belt, a storage basket for placing corrugated paper lower plates fixed on the conveyor belt, and a drive transverse block fixed at the bottom of the conveyor belt; a glue-applying structure is installed at the bottom of the mounting frame, and a glue-holding frame is fixed at the bottom of the mounting frame to one side of the storage basket; a driving structure A is provided to drive the glue-applying structure to apply glue, and the driving structure A drives the glue-applying structure to descend and apply glue via the drive transverse block; a corrugated paper upper plate unloading structure is provided on one side of the glue-applying structure and fixed to the mounting frame, and a driving structure B is provided to drive the unloading structure to unload the material, and the driving structure B drives the unloading structure to unload the material via the drive transverse block; a replenishing structure is provided on the rear side of the unloading structure, and a driving structure C is provided to drive the replenishing structure to replenish the material, and the driving structure C drives the replenishing structure to add new corrugated paper upper plates to the unloading structure via the drive transverse block.

[0005] Furthermore, the adhesive application structure includes two vertical plates A fixed to the bottom of the mounting bracket. A screw A is provided between the two vertical plates A and is rotatably connected to the mounting bracket. A sleeve A is threadedly connected to the outer side of the screw A. A horizontal plate is fixed to the bottom of the sleeve A. A brush head is fixed to the bottom of the horizontal plate. The two side walls of the horizontal plate are in contact with the side walls of the two vertical plates A, respectively.

[0006] Furthermore, the operating structure A includes a central rotating rod A located below the conveyor belt. An outer roller A is fixed to the outer side of the central rotating rod A. A swing block A that can contact the driving transverse block is fixed to the outer side of the outer roller A. A return torsion spring A is installed on the outer side of the central rotating rod A. A secondary rod A that is rotatably connected to the mounting top frame is provided on one side of the screw A. The secondary rod A is connected to the screw A through a sprocket and a chain A. Two meshing bevel gears A are fixed to the bottom of the secondary rod A and the outer side of the central rotating rod A, respectively.

[0007] Furthermore, the material feeding structure includes a storage frame fixed to the mounting top frame, and the bottom ends of the storage frame are provided with sealing plates, one end of which is fixed with a hinge rod.

[0008] Furthermore, the operating structure B includes a central rotating rod B located below the conveyor belt. An outer roller B is fixed to the outer side of the central rotating rod B. A swing block B capable of contacting the driving transverse block is fixed to the outer side of the outer roller B. A return torsion spring B is installed on the outer side of the central rotating rod B. A secondary rod B is provided above one of the hinge rods. Two meshing spur gears are fixed to the outer sides of the secondary rod B and the adjacent hinge rod, respectively. The central rotating rod B and the hinge rod are connected by a sprocket and a chain B. The secondary rod B is connected to another hinge rod by a sprocket and a chain C.

[0009] Furthermore, multiple mating rods are provided on one side between the feeding structure and the conveyor belt. The mating rods are adapted to the arch shape of the corrugated paper. The multiple mating rods are fixed together by a plywood. A linear actuator is provided on the side wall of the plywood. The telescopic end of the linear actuator is fixed to the side wall of the plywood. A sensor mounting bracket is fixed on the side wall of the storage frame. An inclined photoelectric sensor is installed on the sensor mounting bracket.

[0010] Furthermore, the storage frame includes a rear storage frame and a front discharge frame. The bottom of the front discharge frame is open, and the sealing plates are located at both ends of the bottom of the front discharge frame. The replenishment structure includes a traveling frame located below the rear storage frame. The outer wall of the traveling frame has an inner groove, and the upper and lower inner walls of the inner groove have gears. A connecting gear that meshes with the gears is provided in the inner groove. An extension plate extending towards the storage frame is fixed on the top of the traveling frame. A sliding groove for the extension plate to slide is provided at the bottom of the rear storage frame. The upper end of the extension plate passes through the sliding groove, and the top of the extension plate is higher than the bottom of the inner wall of the storage frame, and the height difference is equal to the height of the corrugated paper bottom plate.

[0011] Furthermore, the operating structure C includes a rotating roller that is fixed to and coaxial with the connecting gear. A secondary rod C is provided on one side of the rotating roller. Two meshing bevel gears C are fixed to the outer side of the secondary rod C and the rotating roller. A central rotating rod C is provided below the conveyor belt. An outer roller C is fixed to the outer side of the central rotating rod C. A swing block C that can contact the driving transverse block is fixed to the outer side of the outer roller C. A return torsion spring C is installed on the outer side of the central rotating rod C. The central rotating rod C and the secondary rod C are connected by a sprocket and a chain D.

[0012] Furthermore, a pre-pressing structure is provided on the side of the feeding structure away from the gluing structure. The pre-pressing structure includes two vertical plates B fixed to the bottom of the mounting frame. A screw B is provided between the two vertical plates B and is rotatably connected to the mounting frame. A sleeve B is threadedly connected to the outside of the screw B. A pressure plate is fixed to the bottom of the sleeve B. The two side walls of the pressure plate are in contact with the side walls of the two vertical plates B respectively. An operating structure D is provided to drive the pressure plate of the pre-pressing structure to press down. The operating structure D drives the pressure plate to press down by driving the transverse moving block.

[0013] Furthermore, the operating structure D includes a central rotating rod D located below the conveyor belt. An outer roller D is fixed to the outer side of the central rotating rod D. A swing block D that can contact the driving transverse block is fixed to the outer side of the outer roller D. A return torsion spring D is installed on the outer side of the central rotating rod D. A secondary rod D that is rotatably connected to the mounting top frame is provided on one side of the screw B. The secondary rod D is connected to the screw B through a sprocket and a chain E. Two meshing bevel gears D are fixed to the bottom of the secondary rod D and the outer side of the central rotating rod D, respectively.

[0014] The beneficial effects of this invention are as follows: The glue application, feeding, discharging, and pre-pressing processes are integrated, eliminating the need for multiple separate steps and removing intermediate transfer links. When the storage basket, carrying the corrugated cardboard bottom plate, moves to the area below the brush head, the brush head applies glue to the top arched surface of the bottom plate during the movement. As the brush head descends, it gradually extends into the glue-holding frame to apply glue. A matching rod is provided to adjust the arched position of the top plate, ensuring it aligns with the arched position of the bottom plate. During the movement of the extension plate, the bottom corrugated cardboard top plate in the rear storage frame is pushed to the front discharge frame. The sleeve B and pressure plate descend to pre-press the combined top and bottom plates, resulting in a stronger bond. Furthermore, the components are linked by a mechanical structure, eliminating the need for multiple additional motors. Each process proceeds sequentially without interference, effectively saving space and reducing equipment and energy consumption costs. Attached Figure Description

[0015] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0016] Figure 2 for Figure 1 A schematic diagram of the middle brush adhesive structure and the operating structure A;

[0017] Figure 3 for Figure 1 Schematic diagram of the feeding and operation structure B;

[0018] Figure 4 for Figure 1 A schematic diagram of the pre-pressing structure and the operating structure D;

[0019] Figure 5 for Figure 1 Schematic diagram of the connection structure of the plywood;

[0020] Figure 6 for Figure 1 A schematic diagram of the intermediate feeding structure;

[0021] Figure 7 for Figure 1 A partial structural diagram of the central operating structure A;

[0022] Figure 8 for Figure 3 Schematic diagram of the structure of the central storage frame;

[0023] Figure 9 for Figure 1 A partial structural diagram of the central operating structure D.

[0024] The reference numerals in the attached drawings are explained as follows: 1. Conveyor belt; 2. Glue application structure; 201. Vertical plate A; 202. Screw A; 203. Sleeve A; 204. Horizontal plate; 205. Brush head; 3. Operating structure A; 301. Central pivot rod A; 302. Outer roller A; 303. Swing block A; 304. Return torsion spring A; 305. Secondary rod A; 306. Chain A; 307. Bevel gear A; 4. Unloading structure; 01. Storage box; 4011. Rear storage box; 4012. Front discharge box; 402. Sealing plate; 403. Hinge rod; 5. Operating structure B; 501. Central pivot rod B; 502. Outer roller B; 503. Swing block B; 504. Return torsion spring B; 505. Sub-rod B; 506. Spur gear; 507. Chain B; 508. Chain C; 6. Feeding structure; 601. Traveling frame; 602. Inner... 603. Groove; 604. Connecting gear; 605. Extension plate; 7. Operating structure C; 701. Rotating roller; 702. Secondary rod C; 703. Bevel gear C; 704. Central rotating rod C; 705. Outer roller C; 706. Swing block C; 707. Return torsion spring C; 708. Chain D; 8. Pre-pressing structure; 801. Vertical plate B; 802. Screw B; 803. Sleeve B; 804. Pressure plate; 9. Transport 901. Rotating structure D; 902. Central rotating rod D; 903. Outer roller D; 904. Swing block D; 905. Return torsion spring D; 906. Secondary rod D; 907. Chain E; 908. Bevel gear D; 10. Mounting top frame; 11. Storage basket; 12. Drive transverse block; 13. Glue container; 14. Matching rod; 15. Composite plate; 16. Linear actuator; 17. Sensor mounting bracket; 18. Photoelectric sensor. Detailed Implementation

[0025] In the description of this invention, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing the invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance.

[0026] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0027] The present invention will be further described below with reference to the accompanying drawings: Example

[0028] A corridor-shaped mobile corrugated paper integrated forming line, such as Figure 1 As shown, it includes a conveyor belt 1, a mounting frame 10 is provided above the conveyor belt 1, a storage basket 11 for placing the corrugated paper lower plate is fixed on the conveyor belt 1, and a drive transverse block 12 is fixed at the bottom of the conveyor belt 1.

[0029] like Figure 1 and Figure 3 As shown, in this embodiment, a corrugated paper upper board unloading structure 4 is provided and fixed to the mounting top frame 10. A rotating structure B5 is provided to drive the unloading structure 4 to unload. The rotating structure B5 drives the unloading structure 4 to unload through the rotating transverse block 12. The unloading structure 4 includes a storage frame 401 fixed to the mounting top frame 10, and sealing plates 402 are provided at both ends of the bottom of the storage frame 401. A hinge rod 403 is fixed at one end of the sealing plate 402.

[0030] like Figure 1 and Figure 3As shown, in this embodiment, the operating structure B5 includes a central rotating rod B501 located below the conveyor belt 1. An outer roller B502 is fixed to the outer side of the central rotating rod B501. A swing block B503 capable of contacting the driving transverse block 12 is fixed to the outer side of the outer roller B502. A return torsion spring B504 is installed on the outer side of the central rotating rod B501. A secondary rod B505 is provided above one of the hinge rods 403. Two meshing spur gears 506 are fixed to the outer sides of the secondary rod B505 and the adjacent hinge rod 403, respectively. The central rotating rod B501 and the hinge rod 403 are connected by a sprocket and a chain B507. The secondary rod B505 is connected to the other hinge rod 403 by a sprocket and a chain C508.

[0031] like Figure 1 and Figure 5 As shown, in this embodiment, multiple mating rods 14 are provided on one side between the feeding structure 4 and the conveyor belt. The mating rods 14 are adapted to the arch shape of the corrugated paper. The multiple mating rods 14 are fixed together by the plywood 15. A linear actuator 16 is provided on the side wall of the plywood 15. The telescopic end of the linear actuator 16 is fixed to the side wall of the plywood 15. A sensor mounting bracket 17 is fixed on the side wall of the storage frame 401. An inclined photoelectric sensor 18 is installed on the sensor mounting bracket 17. Example

[0032] Based on the above embodiment 1, as follows Figure 1 and Figure 2 As shown, a glue-brushing structure 2 is installed at the bottom of the mounting frame 10. A glue-holding frame 13 is fixed to one side of the storage basket 11 at the bottom of the mounting frame 10. A rotating structure A3 is provided to drive the glue-brushing structure 2 to dip in glue. The rotating structure A3 drives the glue-brushing structure 2 to dip in glue by driving the horizontal moving block 12.

[0033] like Figure 1 and Figure 2 As shown, in this embodiment, the adhesive application structure 2 includes two vertical plates A201 fixed to the bottom of the mounting bracket 10. A screw A202 is provided between the two vertical plates A201 and is rotatably connected to the mounting bracket 10. A sleeve A203 is threadedly connected to the outer side of the screw A202. A horizontal plate 204 is fixed to the bottom of the sleeve A203. A brush head 205 is fixed to the bottom of the horizontal plate 204. The two side walls of the horizontal plate 204 are in contact with the side walls of the two vertical plates A201 respectively.

[0034] like Figure 1 , Figure 2 and Figure 7As shown, in this embodiment, the operating structure A3 includes a central rotating rod A301 located below the conveyor belt 1. An outer roller A302 is fixed to the outer side of the central rotating rod A301. A swing block A303 that can contact the driving transverse block 12 is fixed to the outer side of the outer roller A302. A reset torsion spring A304 is installed on the outer side of the central rotating rod A301. A secondary rod A305 that is rotatably connected to the mounting top frame 10 is provided on one side of the screw A202. The secondary rod A305 is connected to the screw A202 through a sprocket and a chain A306. Two meshing bevel gears A307 are fixed to the bottom of the secondary rod A305 and the outer side of the central rotating rod A301, respectively. Example

[0035] Based on the above embodiment 2, as Figure 1 and Figure 6 As shown, a feeding structure 6 is provided on the rear side of the feeding structure 4, and a running structure C7 is provided to drive the feeding structure 6 to feed the material. The running structure C7 drives the feeding structure 6 to add new corrugated paper plates to the feeding structure 4 by driving the transverse moving block 12.

[0036] like Figure 8 As shown, in this embodiment, the storage frame 401 includes a rear storage frame 4011 and a front discharge frame 4012. The bottom of the front discharge frame 4012 is open, and the sealing plates 402 are located at both ends of the bottom of the front discharge frame 4012. The feeding structure 6 includes a traveling frame 601 disposed below the rear storage frame 4011. The outer wall of the traveling frame 601 is provided with an inner groove 602, and the upper and lower inner walls of the inner groove 602 are provided with hobbing teeth. A connecting gear 603 that meshes with the hobbing teeth is disposed in the inner groove 602. An extension plate 604 extending toward the storage frame 401 is fixed to the top of the traveling frame 601. A sliding groove for the extension plate 604 to slide is provided at the bottom of the rear storage frame 4011. The upper end of the extension plate 604 passes through the sliding groove. The top of the extension plate 604 is higher than the bottom of the inner wall of the storage frame 401, and the height difference is equal to the height of the corrugated paper lower plate. A support plate (not shown in the figure) is provided at the bottom of the traveling frame 601. The support plate can be fixed to the mounting top frame 10.

[0037] like Figure 1 and Figure 6 As shown, in this embodiment, the operating structure C7 includes a rotating roller 701 that is fixed to and coaxial with the connecting gear 603. A secondary rod C702 is provided on one side of the rotating roller 701. Two meshing bevel gears C703 are fixed to the outer surfaces of the secondary rod C702 and the rotating roller 701. A central rotating rod C704 is provided below the conveyor belt 1. An outer roller C705 is fixed to the outer surface of the central rotating rod C704. A swing block C706 that can contact the driving transverse block 12 is fixed to the outer surface of the outer roller C705. A reset torsion spring C707 is installed on the outer side of the central rotating rod C704. The central rotating rod C704 and the secondary rod C702 are connected by a sprocket and a chain D708. Example

[0038] Based on the above embodiment 3, such as Figure 1 and Figure 4 As shown, a pre-pressing structure 8 is provided on the side of the feeding structure 4 away from the glue application structure 2. The pre-pressing structure 8 includes two vertical plates B801 fixed to the bottom of the mounting bracket 10. A screw B802 is provided between the two vertical plates B801 and is rotatably connected to the mounting bracket 10. A sleeve B803 is threadedly connected to the outside of the screw B802. A pressure plate 804 is fixed to the bottom of the sleeve B803. The two side walls of the pressure plate 804 are in contact with the side walls of the two vertical plates B801 respectively. A rotating structure D9 is provided to drive the pressure plate 804 of the pre-pressing structure 8 to press down. The rotating structure D9 drives the pressure plate 804 to press down by driving the transverse moving block 12.

[0039] like Figure 1 , Figure 4 and Figure 9 As shown, in this embodiment, the operating structure D9 includes a central rotating rod D901 located below the conveyor belt 1. An outer roller D902 is fixed to the outer side of the central rotating rod D901. A swing block D903 that can contact the driving transverse block 12 is fixed to the outer side of the outer roller D902. A reset torsion spring D904 is installed on the outer side of the central rotating rod D901. A secondary rod D905 that is rotatably connected to the mounting top frame 10 is provided on one side of the screw B802. The secondary rod D905 is connected to the screw B802 through a sprocket and a chain E906. Two meshing bevel gears D907 are fixed to the bottom of the secondary rod D905 and the outer side of the central rotating rod D901, respectively.

[0040] The working principle of this invention is as follows:

[0041] The lower corrugated paper is placed individually in the storage basket 11, and the upper corrugated paper is stacked in the rear storage frame 4011. The production line operation process includes gluing, feeding, replenishing and pre-pressing operations. The specific operating principle of each step is as follows.

[0042] Glue application steps: During the operation of conveyor belt 1, when the storage basket 11 moves with the corrugated cardboard lower plate to below the brush head 205, the brush head 205 applies glue to the top arched surface of the corrugated cardboard lower plate during the movement. After the glue application is completed, the drive transverse block 12 gradually contacts the swing block A303. During the movement of the drive transverse block 12, it drives the swing block A303 to rotate around the axis of the central rotating rod A301, thereby driving the central rotating rod A301 and the outer roller A302 to rotate, through two bevel teeth. The wheel A307 drives the auxiliary rod A305 to rotate, which in turn drives the screw A202 to rotate via the chain A306. This causes the sleeve A203, which is threadedly connected to the screw A202, to drive the brush head 205 downward. As the brush head 205 moves downward, it gradually extends into the glue container 13 to apply glue. After the drive transverse block 12 passes the swing block A303, the reset torsion spring A304 drives the outer roller A302 and the central rotating rod A301 to reset. The components of the glue application structure 2 also reset accordingly.

[0043] Unloading Steps: When the conveyor belt 1 drives the transverse block 12 to gradually move until it contacts the oscillating block B503, and when the photoelectric sensor 18 senses that the corrugated paper lower plate has moved directly below the corrugated paper upper plate in the front discharge frame 4012, the conveyor belt 1 stops operating. The transverse block 12 drives the oscillating block B503 to rotate around the axis of the central rotating rod B501, thereby driving the central rotating rod B501 and the outer roller B502 to rotate, which is then transmitted through the chain B507. One of the hinge rods 403 is driven to rotate, which in turn drives the auxiliary rod B505 to rotate through the cooperation of two spur gears 506. This, in turn, drives the other hinge rod 403 to rotate through the chain C508. The two hinge rods 403 rotate in opposite directions, which in turn drives the sealing plate 402 to rotate. This causes the sealing plate 402 to gradually stop blocking the bottom of the corrugated paper upper plate in the front discharge frame 4012. The corrugated paper upper plate in the front discharge frame 4012 falls down and lands on the matching rod 14 on the corrugated paper lower plate to adjust the arched position of the corrugated paper upper plate so that the arched position of the corrugated paper upper plate is opposite to that of the corrugated paper lower plate. The linear drive 16 starts and retracts rapidly, causing the corrugated paper upper plate, which has been adjusted, to fall onto the corrugated paper lower plate, completing the initial integration. Then the conveyor belt 1 starts running again. After the drive transverse block 12 passes over the swing block B503, the reset torsion spring B504 drives the outer roller B502 and the central rotating rod B501 to reset.

[0044] Material replenishment steps: When the conveyor belt 1 drives the lateral moving block 12 to gradually move until it contacts the swing block C706, the lateral moving block 12 drives the swing block C706 to rotate around the axis of the central rotating rod C704, which in turn drives the central rotating rod C704 and the outer roller C705 to rotate. Through the chain C508, the auxiliary rod C702 is driven to rotate, which in turn drives the rotating roller 701 to rotate through the cooperation of the two bevel gears C703. The rotating roller 701 drives the connecting gear 603 to rotate. 3 During the rotation, the traveling frame 601 is driven to move forward towards the front discharge frame 4012 by the hobbing gear, and the extension plate 604 moves along the slide groove of the rear storage frame 4011, thereby pushing the corrugated paper upper plate of the bottom layer in the rear storage frame 4011 to the front discharge frame 4012. After the driving transverse block 12 passes the swing block C706, the reset torsion spring C707 drives the outer roller C705 and the central rotating rod C704 to reset, and the traveling frame 601 and the extension plate 604 also return to their original positions.

[0045] Pre-pressing step: When the conveyor belt 1 drives the drive transverse block 12 to gradually move until it contacts the swing block D903, the drive transverse block 12 drives the swing block D903 to rotate around the axis of the central rotating rod D901, which in turn drives the central rotating rod D901 and the outer roller D902 to rotate. Through the cooperation of the two bevel gears D907, the auxiliary rod D905 is driven to rotate, which in turn drives the screw B802 to rotate through the chain E906. This drives the sleeve B803 and the pressure plate 804 to move downward to pre-press the combined corrugated upper and lower corrugated paper, making the two more firmly bonded. After the drive transverse block 12 passes the swing block D903, the reset torsion spring D904 drives the outer roller D902 and the central rotating rod D901 to reset, and the sleeve B803 and the pressure plate 804 also return to their original positions.

[0046] The foregoing has shown and described the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to the invention without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed invention.

Claims

1. A corridor-shaped mobile corrugated paper integrated forming line, comprising a conveying belt (1), a mounting top frame (10) is arranged above the conveying belt (1), and a storage basket (11) for placing a corrugated paper lower plate is fixed on the conveying belt (1), characterized in that: The bottom of the conveying belt (1) is fixed with a driving rotating transverse block (12); The bottom of the mounting top frame (10) is provided with a glue brushing structure (2), the bottom of the mounting top frame (10) is fixed with a glue containing frame (13) on one side of the storage basket (11), a running structure A (3) for driving the glue brushing structure (2) to dip glue is arranged, and the running structure A (3) drives the glue brushing structure (2) to dip glue downward through the driving rotating transverse block (12); One side of the glue brushing structure (2) is provided with a corrugated paper upper plate discharging structure (4) fixed with the mounting top frame (10), a running structure B (5) for driving the discharging structure (4) to discharge is arranged, and the running structure B (5) drives the discharging structure (4) to discharge through the driving rotating transverse block (12); The rear side of the discharging structure (4) is provided with a material supplementing structure (6), a running structure C (7) for driving the material supplementing structure (6) to supplement material is arranged, and the running structure C (7) drives the material supplementing structure (6) to supplement new corrugated paper upper plates to the discharging structure (4) through the driving rotating transverse block (12).

2. A gallery type mobile corrugator as claimed in claim 1, wherein: The glue brushing structure (2) comprises two vertical plates A (201) fixed to the bottom of the mounting top frame (10), a screw rod A (202) rotatably connected with the mounting top frame (10) is arranged between the two vertical plates A (201), a sleeve A (203) is threadedly connected to the outer side of the screw rod A (202), a horizontal plate (204) is fixed to the bottom of the sleeve A (203), a brush head (205) is fixed to the bottom of the horizontal plate (204), and the two side walls of the horizontal plate (204) are respectively in contact with the side walls of the two vertical plates A (201).

3. A gallery type mobile corrugator as claimed in claim 2, wherein: The running structure A (3) comprises a central pivot rod A (301) below the conveying belt (1), an outer roller A (302) is fixed to the outer side of the central pivot rod A (301), a swing block A (303) capable of contacting the driving rotating transverse block (12) is fixed to the outer side of the outer roller A (302), a reset torsion spring A (304) is mounted to the outer side of the central pivot rod A (301), a sub rod A (305) rotatably connected with the mounting top frame (10) is arranged on one side of the screw rod A (202), the sub rod A (305) and the screw rod A (202) are connected through a sprocket and a chain A (306), and two bevel gears A (307) meshing with each other are respectively fixed to the bottom of the sub rod A (305) and the outer side of the central pivot rod A (301).

4. A gallery type mobile corrugator as claimed in claim 1 wherein: The discharging structure (4) comprises a storage frame (401) fixed with the mounting top frame (10), and end plates (402) are arranged at the two ends of the bottom of the storage frame (401), and one end of each of the end plates (402) is fixed with a hinged rod (403).

5. A gallery type mobile corrugator as claimed in claim 4, wherein: The operation structure B (5) includes a pivot lever B (501) below the conveying belt (1), the outer side of the pivot lever B (501) is fixed with an outer roller B (502), the outer side of the outer roller B (502) is fixed with a swing block B (503) capable of contacting the driving transverse block (12), the outer side of the pivot lever B (501) is provided with a reset torsion spring B (504), the upper side of one of the articulated levers (403) is provided with a sub lever B (505), the outer side of the sub lever B (505) and the articulated lever (403) adjacent to the sub lever B (505) are respectively fixed with two intermeshing spur gears (506), the pivot lever B (501) and the articulated lever (403) are connected through a chain wheel and a chain B (507), and the sub lever B (505) and the other articulated lever (403) are connected through a chain wheel and a chain C (508).

6. A gallery type mobile corrugator as claimed in claim 4 wherein: A plurality of matching rods (14) are arranged on one side between the blanking structure (4) and the conveying belt, the matching rods (14) are matched with the arch shape of the corrugated paper, the matching rods (14) are fixed into an integrated whole through a joint plate (15), the side wall of the joint plate (15) is provided with a linear driver (16), and the telescopic end of the linear driver (16) is fixed to the side wall of the joint plate (15); the side wall of the storage frame (401) is fixed with a sensor mounting rack (17), and an inclined photoelectric sensor (18) is mounted on the sensor mounting rack (17).

7. A gallery type mobile corrugator as claimed in claim 4 wherein: The storage frame (401) includes a rear storage frame (4011) and a front discharge frame (4012), the bottom of the front discharge frame (4012) is open, the sealing plates (402) are arranged at the two ends of the bottom of the front discharge frame (4012), and the material supplementing structure (6) includes a traveling frame (601) arranged below the rear storage frame (4011), the outer wall of the traveling frame (601) is provided with an inner groove (602), the upper and lower inner walls of the inner groove (602) are provided with rack gears, the inner groove (602) is provided with an engaging gear (603) engaged with the rack gears, the top of the traveling frame (601) is fixed with an extension plate (604) extending towards the storage frame (401), the bottom of the rear storage frame (4011) is provided with a sliding groove for the extension plate (604) to slide, the upper end of the extension plate (604) penetrates through the sliding groove, the top of the extension plate (604) is higher than the bottom of the inner wall of the storage frame (401), and the height of the extension plate (604) is higher than the height of the lower plate of the corrugated paper.

8. A gallery type mobile corrugator integrated forming line as claimed in claim 7, wherein: The operation structure C (7) includes a rotating roller (701) fixed and coaxial with the engaging gear (603), one side of the rotating roller (701) is provided with a sub-shaft C (702), the outer side of the sub-shaft C (702) and the rotating roller (701) is fixed with two meshing bevel gears C (703), a central rotating shaft C (704) is arranged below the conveying belt (1), the outer side of the central rotating shaft C (704) is fixed with an outer roller C (705), the outer side of the outer roller C (705) is fixed with a swing block C (706) capable of contacting the driving transverse block (12), the outer side of the central rotating shaft C (704) is provided with a reset torsion spring C (707), and the central rotating shaft C (704) and the sub-shaft C (702) are connected through a chain wheel and a chain D (708).

9. A gallery type mobile corrugator as claimed in claim 1, wherein: The pre-pressing structure (8) is arranged on the side away from the glue brushing structure (2) of the discharging structure (4), the pre-pressing structure (8) comprises two vertical plates B (801) fixed on the bottom of the mounting top frame (10), a screw rod B (802) rotatably connected with the mounting top frame (10) is arranged between the two vertical plates B (801), a sleeve B (803) is threadedly connected with the outer side of the screw rod B (802), a pressing plate (804) is fixed on the bottom of the sleeve B (803), the two side walls of the pressing plate (804) are in contact with the side walls of the two vertical plates B (801), respectively, an operation structure D (9) for driving the pressing plate (804) to press down is arranged, and the operation structure D (9) drives the pressing plate (804) to press down through the driving transverse block (12).

10. A gallery type mobile corrugator integrated line as claimed in claim 9, wherein: The operation structure D (9) comprises a central rotating shaft D (901) below the conveying belt (1), the outer side of the central rotating shaft D (901) is fixed with an outer roller D (902), the outer side of the outer roller D (902) is fixed with a swing block D (903) capable of contacting the driving transverse block (12), the outer side of the central rotating shaft D (901) is provided with a reset torsion spring D (904), one side of the screw rod B (802) is provided with a sub-shaft D (905) rotatably connected with the mounting top frame (10), the sub-shaft D (905) and the screw rod B (802) are connected through a chain wheel and a chain E (906), and the bottom of the sub-shaft D (905) and the outer side of the central rotating shaft D (901) are respectively fixed with two meshing bevel gears D (907).

Citation Information

Patent Citations

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