Honeycomb paperboard production stacking structure
By designing rectangular partitions and limiting slide grooves within the housing of the device in the production of honeycomb paperboard, the problems of honeycomb board stacking tipping and moisture absorption were solved, achieving stable stacking and moisture-proof effects, and improving the convenience of movement and observation.
Patent Information
- Application Number
- CN202520251884.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-18
- Publication Date
- 2025-12-02
- Estimated Expiration
- 2035-02-18
AI Technical Summary
Existing honeycomb panels have the problem of tipping over after being stacked to a certain height during the production process, and the bottom is affected by moisture. In addition, traditional equipment is not convenient to move and observe.
A stacking structure for honeycomb paperboard production was designed. The device housing has rectangular partitions and limiting grooves. By adjusting the position and number of partitions, combined with grid ventilation windows and desiccant, vertical stacking and moisture prevention of paperboard can be achieved.
It achieves stable stacking of cardboard, prevents moisture absorption, improves ease of movement and observation, and adapts to the storage needs of cardboard of different thicknesses.
Smart Images

Figure CN223619220U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of honeycomb board layer stacking technology, and specifically relates to a honeycomb cardboard production stacking structure. Background Technology
[0002] Packaging boxes are the most widely used packaging products. Depending on the materials used, there are corrugated cardboard boxes, single-layer cardboard boxes, etc., and they come in various specifications and models. The interior of the cardboard box is made of honeycomb board.
[0003] The honeycomb panels used in packaging boxes need to be stacked during the production process. However, most of the stacking in the existing technology is just layering, which will cause the panels to tip over after being stacked to a certain height. At the same time, the traditional stacking method will cause the bottom to be close to the ground, which will result in moisture damage and inconvenience in use.
[0004] A search revealed that Chinese Patent Publication No. CN220412357U, authorized on January 30, 2024, discloses a honeycomb panel stacking device for a packaging box production line. The device includes a production line, stacking plates, and a support base plate. One end of the production line has a support base plate, and stacking plates are supported on top of the support base plate. Support columns are fixedly connected to the four corners of the support base plate. Several grooves are correspondingly formed on the inner side of each support column, and limiting grooves are formed at the bottom of the inner ends of the grooves. These grooves are engaged with the stacking plates. With this structure, the honeycomb panels are conveyed in a streamlined manner via the surface conveyor belt of the packaging box production line. The honeycomb panels are stacked inside the baffles, and once a specified height is reached, they can be inserted into the fork holes of a forklift. Through the insertion of the grooves and stacking plates, and the engagement of the limiting blocks and limiting grooves, a secure connection is achieved, preventing detachment.
[0005] However, the device still has the following drawbacks: Although the above embodiment allows for sequential stacking through this structure, resulting in a neat and tidy arrangement, the device's height makes it unsuitable for handling, and it may obstruct the view during movement. Furthermore, cardboard is highly susceptible to moisture during storage and stacking; therefore, a moisture-absorbing structure is required. Utility Model Content
[0006] To address the aforementioned problems, this utility model provides a honeycomb cardboard production stacking structure, including a device housing, a movable vehicle body at the bottom of the device housing, a first movable plate embedded in the top of the device housing, a second movable plate embedded in one side wall of the device housing, and two sets of limiting grooves symmetrically opened on opposite inner walls of the device housing.
[0007] Two sets of positioning blocks are movably embedded in the opposite side walls of the device housing. Several sets of rectangular partitions are provided inside the device housing. Each set of limiting slide grooves is provided with a set of limiting slide rods. Several sets of movable sliders are provided inside each set of limiting slide grooves. A set of placement slots is opened on the top of each set of rectangular partitions.
[0008] Furthermore, the central axis of the mobile vehicle body coincides with the central axis of the device housing. Several sets of fixed support legs are provided below the device housing. The several sets of fixed support legs are located at the bottom corners of the mobile vehicle body, and each set of fixed support legs is provided with a set of moving rollers at its bottom end.
[0009] Furthermore, two sets of support rods are symmetrically arranged on one side of the device housing, and both sets of support rods are connected to one side wall of the mobile vehicle body. Two sets of movable handles are arranged on one side of the device housing, and the two sets of movable handles are respectively connected to the top of the two sets of support rods. Two sets of first hinges are symmetrically arranged on one end of the first movable plate, and the first movable plate is movably engaged with the top of the device housing.
[0010] Furthermore, the first movable plate is rotatably connected to the device housing via two sets of first hinges, and the bottom end of the second movable plate is symmetrically provided with two sets of second hinges. The second movable plate is movably engaged with the device housing via two sets of second hinges, and the connection between the first movable plate and the second movable plate is provided with two sets of fixing latches.
[0011] Furthermore, a transparent observation window is embedded in one side wall of the device housing, the transparent observation window is located at the bottom end of the side wall of the device housing, and the two sets of limiting grooves are located at the top of the inner wall of the device housing.
[0012] Furthermore, each set of rectangular partitions is provided with a set of connecting rods on both sides, and each set of connecting rods is slidably connected to the inside of a set of limiting grooves. A protective bottom pad is attached to the bottom of the inner side of the device housing.
[0013] Furthermore, each set of movable sliders is slidably attached to the surface of a set of limiting sliders, and one end of each set of movable sliders is connected to one end of a set of connecting rods. One end of each set of limiting sliders is provided with a set of locking rods, and each set of limiting sliders is movably locked to a set of positioning blocks through a set of locking rods.
[0014] Furthermore, the central axis of each set of placement slots coincides with the central axis of a set of rectangular partitions, and a number of sets of grid ventilation windows are embedded in one side wall of each set of rectangular partitions. The number of sets of grid ventilation windows are distributed at equal intervals with the central axis of a set of rectangular partitions as the center.
[0015] The beneficial effects of this utility model are:
[0016] 1. The device housing has several sets of rectangular partitions inside. By adjusting the position and distance of the rectangular partitions, cardboard of different thicknesses can be stacked and stored. Since the cardboard is placed vertically, it can prevent the top cardboard from squeezing the bottom cardboard. Furthermore, by separating the two sets of locking rods and the two sets of positioning blocks, the sliding sliders at both ends of the rectangular partitions are connected to the limiting sliding rods to increase the number of rectangular partitions. This allows for adjustment of the number of cardboards that can be assembled while improving the practicality of the equipment.
[0017] 2. By increasing or decreasing the number of rectangular partitions, it is easy to adjust them according to the number of stacked cardboard. Furthermore, each set of rectangular partitions has a placement groove at the top, where a desiccant is placed. Additionally, each set of rectangular partitions has several sets of mesh ventilation windows embedded in one side wall, which can keep the internal environment of the device housing dry while preventing the cardboard from getting damp.
[0018] Other features and advantages of this invention will be set forth in the description which follows, and will be apparent in part from the description, or may be learned by practicing the invention. The objects and other advantages of this invention can be realized and obtained by means of the structures pointed out in the description, claims, and drawings. Attached Figure Description
[0019] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0020] Figure 1 A schematic diagram of the structure according to an embodiment of the present utility model is shown;
[0021] Figure 2 A schematic diagram of the device housing structure according to an embodiment of the present invention is shown;
[0022] Figure 3 A schematic diagram of a rectangular partition structure according to an embodiment of the present invention is shown;
[0023] Figure 4 An enlarged schematic diagram of the structure at point A according to an embodiment of the present invention is shown.
[0024] In the diagram: 1. Device housing; 2. Moving vehicle body; 3. Fixed support leg; 4. Moving roller; 5. Support rod; 6. Moving handle; 7. First movable plate; 8. First hinge; 9. Second movable plate; 10. Second hinge; 11. Fixed latch; 12. Transparent observation window; 13. Limiting slide groove; 14. Positioning block; 15. Connecting rod; 16. Rectangular partition; 17. Protective base pad; 18. Limiting slide rod; 19. Moving slider; 20. Locking rod; 21. Placement slot; 22. Grid ventilation window. Detailed Implementation
[0025] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.
[0026] This utility model embodiment provides a stacking structure for honeycomb paperboard production, including a device housing 1; exemplarily, such as... Figure 1-4 As shown.
[0027] The device housing 1 has a mobile vehicle body 2 at its bottom. The central axis of the mobile vehicle body 2 coincides with the central axis of the device housing 1. Several sets of fixed support legs 3 are provided below the device housing 1. The sets of fixed support legs 3 are located at the bottom corners of the mobile vehicle body 2. Each set of fixed support legs 3 has a set of moving rollers 4 at its bottom end. Two sets of support rods 5 are symmetrically provided on one side of the device housing 1. Both sets of support rods 5 are connected to one side wall of the mobile vehicle body 2.
[0028] Specifically, a mobile vehicle 2 is provided at the bottom of the device housing 1, which enables the device housing 1 to be moved and transported. Since the height of the device housing 1 and the height of the two sets of moving handles 6 are on the same plane, the device housing 1 is prevented from obstructing the staff's view and the convenience of movement is improved.
[0029] Two sets of movable handles 6 are provided on one side of the device housing 1. The two sets of movable handles 6 are respectively connected to the top of two sets of support rods 5. A first movable plate 7 is embedded in the top of the device housing 1. Two sets of first hinges 8 are symmetrically provided at one end of the first movable plate 7. The first movable plate 7 is movably engaged with the top of the device housing 1. The first movable plate 7 and the device housing 1 are rotatably connected by the two sets of first hinges 8. A second movable plate 9 is embedded in one side wall of the device housing 1.
[0030] The bottom end of the second movable plate 9 is symmetrically provided with two sets of second hinges 10. The second movable plate 9 is movably engaged with the device housing 1, and the second movable plate 9 and the device housing 1 are rotatably connected by the two sets of second hinges. The connection between the first movable plate 7 and the second movable plate 9 is provided with two sets of fixing buckles 11. A transparent observation window 12 is embedded in one side wall of the device housing 1. The transparent observation window 12 is located at the bottom end of the side wall of the device housing 1.
[0031] Specifically, the first movable plate 7 is rotatably connected to the device housing 1 via two sets of first hinges 8, and the second movable plate 9 is rotatably connected to the device housing 1 via two sets of second hinges. This allows the top and one side wall of the device housing 1 to be fully opened, making it convenient for staff to take or place cardboard. A transparent observation window 12 is embedded in one side wall of the device housing 1, which facilitates observation of whether there is any squeezing or breakage during placement.
[0032] The inner walls of the device housing 1 are symmetrically provided with two sets of limiting grooves 13, and both sets of limiting grooves 13 are located at the top of the inner walls of the device housing 1. The side walls of the device housing 1 are movably embedded with two sets of positioning blocks 14. The inside of the device housing 1 is provided with several sets of rectangular partitions 16. Each set of rectangular partitions 16 has a set of connecting rods 15 on both sides. Each set of connecting rods 15 is slidably fitted and connected to the inside of a set of limiting grooves 13.
[0033] The device housing 1 has a protective bottom pad 17 attached to its inner bottom. Each set of limiting slide grooves 13 has a set of limiting slide rods 18 inside. Each set of limiting slide grooves 13 has several sets of movable sliders 19 inside. Each set of movable sliders 19 is slidably attached to the surface of a set of limiting slide rods 18. One end of each set of movable sliders 19 is connected to one end of a set of connecting rods 15. One end of each set of limiting slide rods 18 has a set of locking rods 20.
[0034] Each set of limiting slide rods 18 is movably engaged with a set of positioning blocks via a set of locking rods 20. Each set of rectangular partitions 16 has a set of placement slots 21 at its top. The central axis of each set of placement slots 21 coincides with the central axis of the set of rectangular partitions 16. Each set of rectangular partitions 16 has several sets of mesh ventilation windows 22 embedded in one side wall. The several sets of mesh ventilation windows 22 are evenly distributed with the central axis of the set of rectangular partitions 16 as the center.
[0035] Specifically, the device housing 1 has several sets of rectangular partitions 16 inside. By adjusting the position and distance of the rectangular partitions 16, cardboard of different thicknesses can be stacked and stored. Since the cardboard is placed vertically, it can prevent the top cardboard from squeezing the bottom cardboard. Furthermore, by separating the two sets of snap-fit rods 20 and the two sets of positioning blocks 14, the movable sliders 19 at both ends of the rectangular partitions 16 are connected to the limiting sliders 18 to increase the number of rectangular partitions 16.
[0036] Furthermore, by increasing or decreasing the number of rectangular partitions 16, it is easy to adjust them according to the number of stacked cardboard. Each set of rectangular partitions 16 has a placement groove 21 at the top, and a desiccant is placed inside the placement groove 21. Several sets of mesh ventilation windows 22 are embedded in one side wall of each set of rectangular partitions 16, which can keep the internal environment of the device housing 1 dry, thereby preventing the cardboard from getting damp.
[0037] The working principle of the honeycomb paperboard production stacking structure proposed in this embodiment of the invention is as follows:
[0038] First, fully open the first movable plate 7 and the second movable plate 9, adjust the position of several sets of rectangular partitions 16, and place the cardboard between the two sets of rectangular partitions 16.
[0039] The device housing 1 has several sets of rectangular partitions 16 inside. By adjusting the position and distance of the rectangular partitions 16, cardboard of different thicknesses can be stacked and stored. Furthermore, by placing the cardboard vertically, the top cardboard can be prevented from squeezing the bottom cardboard.
[0040] Then, by separating the two sets of snap-fit rods 20 from the two sets of positioning blocks 14, the movable sliders 19 at both ends of the rectangular partition 16 are connected to the limiting sliders 18 to increase the number of rectangular partitions 16.
[0041] By increasing or decreasing the number of rectangular partitions 16, it is easy to adjust them according to the number of stacked cardboard.
[0042] Furthermore, each set of rectangular partitions 16 has a placement groove 21 at the top, and the desiccant is placed inside the placement groove 21. Additionally, each set of rectangular partitions 16 has several sets of mesh ventilation windows 22 embedded in one side wall, which can keep the internal environment of the device housing 1 dry, thereby preventing the cardboard from getting damp.
[0043] After completing the above work, the device housing 1 is equipped with a mobile vehicle 2 at the bottom, which allows the device housing 1 to be moved and transported. Since the height of the device housing 1 and the height of the two sets of moving handles 6 are on the same plane, the device housing 1 is prevented from obstructing the staff's view and the convenience of movement is improved.
[0044] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A honeycomb paperboard production stacking structure, comprising a device housing (1), characterized in that: The bottom of the device housing (1) is provided with a mobile vehicle body (2), the top of the device housing (1) is embedded with a first movable plate (7), one side wall of the device housing (1) is embedded with a second movable plate (9), and two sets of limiting slide grooves (13) are symmetrically opened on the opposite inner walls of the device housing (1). Two sets of positioning blocks (14) are movably embedded in the opposite side walls of the device housing (1). Several sets of rectangular partitions (16) are provided inside the device housing (1). A set of limiting slide rods (18) is provided inside each set of limiting slide grooves (13). Several sets of movable sliders (19) are provided inside each set of limiting slide grooves (13). A set of placement slots (21) is opened on the top of each set of rectangular partitions (16).
2. The honeycomb paperboard production stacking structure according to claim 1, characterized in that: The central axis of the mobile vehicle body (2) coincides with the central axis of the device housing (1). Several sets of fixed support legs (3) are provided below the device housing (1). The several sets of fixed support legs (3) are located at the bottom corners of the mobile vehicle body (2), and each set of fixed support legs (3) has a set of moving rollers (4) at its bottom end.
3. The honeycomb paperboard production stacking structure according to claim 2, characterized in that: Two sets of support rods (5) are symmetrically arranged on one side of the device housing (1). Both sets of support rods (5) are connected to one side wall of the moving vehicle body (2). Two sets of moving handles (6) are arranged on one side of the device housing (1). The two sets of moving handles (6) are respectively connected to the top of the two sets of support rods (5). Two sets of first hinges (8) are symmetrically arranged at one end of the first movable plate (7). The first movable plate (7) is movably engaged with the top of the device housing (1).
4. The honeycomb paperboard production stacking structure according to claim 3, characterized in that: The first movable plate (7) is rotatably connected to the device housing (1) by two sets of first hinges (8). The bottom end of the second movable plate (9) is symmetrically provided with two sets of second hinges (10). The second movable plate (9) is movably engaged with the device housing (1), and the second movable plate (9) is rotatably connected to the device housing (1) by two sets of second hinges. The connection between the first movable plate (7) and the second movable plate (9) is provided with two sets of fixing buckles (11).
5. The honeycomb paperboard production stacking structure according to claim 4, characterized in that: A transparent observation window (12) is embedded in one side wall of the device housing (1). The transparent observation window (12) is located at the bottom of the side wall of the device housing (1). Both sets of limiting slides (13) are located at the top of the inner wall of the device housing (1).
6. The honeycomb paperboard production stacking structure according to claim 1, characterized in that: Each set of rectangular partitions (16) has a set of connecting rods (15) on both sides. Each set of connecting rods (15) is slidably connected to the inside of a set of limiting grooves (13). The bottom of the device housing (1) is fitted with a protective pad (17).
7. The honeycomb paperboard production stacking structure according to claim 2, characterized in that: Each set of movable sliders (19) is slidably attached to the surface of a set of limiting sliders (18), and one end of each set of movable sliders (19) is connected to one end of a set of connecting rods (15). One end of each set of limiting sliders (18) is provided with a set of locking rods (20). Each set of limiting sliders (18) is movably locked to a set of positioning blocks through a set of locking rods (20).
8. The honeycomb paperboard production stacking structure according to claim 6, characterized in that: The central axis of each set of placement slots (21) coincides with the central axis of a set of rectangular partitions (16). Each set of rectangular partitions (16) has several sets of mesh ventilation windows (22) embedded in one side wall. The several sets of mesh ventilation windows (22) are evenly distributed with the central axis of a set of rectangular partitions (16) as the center.
Citation Information
Patent Citations
Honeycomb plate layer stacking device for packaging box production line
CN220412357U