Hollow lattice plate cooling system
By combining a fixed frame, support plate, clamping plate, slot, and electric push rod, the hollow panel can be quickly fixed and adjusted, solving the problem of low cooling efficiency of the hollow panel, improving the simplicity and efficiency of operation, and expanding the scope of application.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHONGKE XIANGRUI (YUNNAN) NEW PACKAGING MATERIALS CO LTD
- Filing Date
- 2025-06-19
- Publication Date
- 2026-07-31
AI Technical Summary
Existing cooling systems for lattice panels are inefficient and difficult to control during the cooling process.
The system employs a combination of a fixed frame, support plate, clamping plate, slot, and electric push rod. The distance between the clamping plate and the support plate is adjusted by the electric push rod, enabling rapid fixing and adjustment of the hollow panel. Combined with the mounting plate, main shaft, winding reel, wire rope, lead screw, and stepper motor, the fixed frame can be moved to facilitate cooling of hollow panels of different specifications.
It improves the simplicity and efficiency of cooling the hollow core plate, expands its application range, is suitable for hollow core plates of different specifications, and simplifies the operation process.
Smart Images

Figure CN224575997U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of cooling technology for hollow cell panels, and in particular to a cooling system for hollow cell panels. Background Technology
[0002] Hollow core panels, also known as corrugated boards, double-wall panels, or corrugated sheets, are made of plastic materials such as PP / PC / PE / PVC. Their products have a smooth, beautiful, and pressure-resistant surface and are widely used in many fields of the construction, packaging, and decoration industries. Hollow core panels require baking and shaping during processing, followed by cooling.
[0003] Extensive research revealed that existing air-panel cooling systems generally use water cooling. While this method is feasible, the air-panel boards are typically placed directly into the cooling tank during cooling. Although feasible, this method is inefficient and makes it difficult to control the air-panel boards.
[0004] Therefore, it is necessary to provide a cooling system for the hollow core plate to solve the above-mentioned technical problems. Utility Model Content
[0005] This invention provides a cooling system for a hollow cell plate, which solves the problems in the background art.
[0006] To solve the above-mentioned technical problems, this utility model provides a cooling system for a hollow cell panel, including a device body and a fixing frame. A support plate is fixedly installed inside the fixing frame, and a clamping plate is movably installed inside the fixing frame. An electric push rod is vertically installed on the top surface of the fixing frame. The output end of the electric push rod is fixed to two clamping plates via a main shaft. The surfaces of the clamping plates and the support plate have slots, the surface of the support plate has clearance holes, and the surfaces of the support plate and the clamping plates have through-holes for water inlet. By using the fixing frame, support plate, clamping plate, slots, and electric push rod in combination, the system facilitates the cooling of the hollow cell panel. The process allows for rapid placement of the lattice panels. During operation, the electric push rod is activated based on the height of the lattice panel. This push rod moves the clamping plate via the main shaft, adjusting the distance between the clamping plate and the support plate to match the height of the lattice panel. The operator then inserts the lattice panel into the two sets of slots. After insertion, the panel is moved into the device body for cooling using the fixing bracket. This method is simple to operate, facilitates the fixing of the lattice panels, and the electric push rod allows for compatibility with different specifications of lattice panels, expanding its application range.
[0007] Preferably, a mounting frame is installed on the top surface of the device body, a top plate is provided on the top surface of the mounting frame, a lead screw is movably mounted on the top surface of the top plate, one end of the lead screw is driven by a stepper motor, a movable plate is spirally connected to the surface of the lead screw, a threaded hole is opened on the end face of the movable plate, a mounting plate is provided at the bottom end of the movable plate, a drive shaft is movably mounted at the bottom end of the mounting plate, one end of the drive shaft is driven by a drive motor, a winding reel is provided on the periphery of the drive shaft, a steel wire rope is wound on the surface of the winding reel, and one end of the steel wire rope is fixed to the top surface of the fixed frame. By setting up the mounting plate, main shaft, winding reel, steel wire rope, lead screw and stepper motor in cooperation, it is easy to move the fixed frame, making it easy to move the fixed frame out and in from inside the device body, and facilitating the cooling of the hollow grid plates. This method is simple to operate and improves its working efficiency.
[0008] Preferably, multiple slots are provided, and the multiple slots are equally spaced on the surfaces of the support plate and the clamping plate. By providing multiple slots, it is convenient to fix multiple hollow sub-plates at one time, thereby improving the working efficiency.
[0009] Preferably, a slide rail is provided through the surface of the top plate, and the width of the slide rail is equal to the thickness of the moving plate. By providing the slide rail, it is convenient to allow the moving plate to move and be limited.
[0010] Preferably, a drain pipe is provided below the outer surface of the device body, and a valve is installed on the surface of the drain pipe. By providing a drain pipe, it is convenient to discharge the liquid inside the device body.
[0011] Preferably, a controller is installed on the outer surface of the device body, which facilitates the control of the electrical components inside the device body.
[0012] Compared with related technologies, the air-plate cooling system provided by this utility model has the following advantages: Compared with existing technologies, this hollow panel cooling system, through the coordinated use of a fixed frame, support plate, clamping plate, slots, and electric push rod, facilitates the rapid placement of the hollow panel during cooling. During operation, the height of the hollow panel is first determined, then the electric push rod is activated. The electric push rod, via the main shaft, moves the clamping plate, thereby adjusting the distance between the clamping plate and the support plate to match the height of the hollow panel. The operator then inserts the hollow panel between the two sets of slots. After completion, the hollow grid plates are moved into the device body for cooling using the fixing frame. This method is simple to operate and facilitates the fixing of the hollow grid plates. Moreover, the operation of the electric push rod makes it suitable for hollow grid plates of different specifications, thus increasing its application range. The use of the mounting plate, main shaft, winding reel, wire rope, lead screw, and stepper motor facilitates the movement of the fixing frame, allowing it to be moved in and out of the device body, which is convenient for cooling the hollow grid plates. This method is simple to operate and improves its working efficiency.
[0013] The parts of the device not covered herein are the same as or can be implemented using existing technologies. Attached Figure Description
[0014] Figure 1 A schematic diagram of a cooling system for a hollow core plate provided by this utility model; Figure 2 A front view of a hollow core plate cooling system provided by this utility model; Figure 3 A schematic diagram of the mounting frame structure for a hollow core plate cooling system provided by this utility model; Figure 4 A schematic diagram of the fixing frame structure of a hollow panel cooling system provided by this utility model; Figure 5 A schematic diagram of the slot structure of a cooling system for a hollow core plate provided by this utility model.
[0015] Numbering on the map: 1. Device body; 2. Mounting frame; 3. Controller; 4. Fixing frame; 5. Top plate; 6. Moving plate; 7. Lead screw; 8. Drain pipe; 9. Stepper motor; 10. Support plate; 11. Clamping plate; 12. Slide rail; 13. Electric push rod; 14. Steel wire rope; 15. Drive motor; 16. Threaded hole; 17. Rewinding reel; 18. Drive shaft; 19. Slot; 20. Water inlet. Detailed Implementation
[0016] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0017] First Embodiment
[0018] Please refer to the following: Figure 1-5 A cooling system for a hollow cell panel includes a device body 1 and a fixing frame 4. A support plate 10 is fixedly installed inside the fixing frame 4, and a clamping plate 11 is movably installed inside the fixing frame 4. An electric push rod 13 is vertically installed on the top surface of the fixing frame 4. The output end of the electric push rod 13 is fixed to two clamping plates 11 via a main shaft. The surfaces of the clamping plates 11 and the support plate 10 have slots 19, the surface of the support plate 10 has clearance holes, and the surfaces of the support plate 10 and the clamping plates 11 have through-holes 20 for water inlet. The system facilitates the cooling of hollow cell panels through the coordinated use of the fixing frame 4, the support plate 10, the clamping plate 11, the slots 19, and the electric push rod 13. During cooling, the device is quickly placed. During operation, the height of the lattice panel is determined first, and then the electric push rod 13 is activated. The electric push rod 13 moves the clamping plate 11 via the main shaft, thereby adjusting the distance between the clamping plate 11 and the support plate 10 to be equal to the height of the lattice panel. Then, the operator inserts the lattice panel into the two sets of slots 19. After insertion, the lattice panel is moved into the device body 1 via the fixing frame 4 for cooling. This method is simple to operate, facilitates the fixing of the lattice panel, and the operation of the electric push rod 13 makes it suitable for different specifications of lattice panels, thus expanding its application range.
[0019] The working principle of the hollow cell plate cooling system provided by this utility model is as follows: In this type of hollow lattice cooling system, the electric push rod 13 is activated based on the height of the hollow lattice, causing the electric push rod 13 to move the clamping plate 11 via the main shaft. This adjusts the distance between the clamping plate 11 and the support plate 10 to be equal to the height of the hollow lattice. The operator then inserts the hollow lattice into the two sets of slots 19. After insertion, the hollow lattice is moved into the device body 1 via the fixing frame 4 for cooling. This method is simple to operate and facilitates the fixing of the hollow lattice. Furthermore, the operation of the electric push rod 13 allows for compatibility with hollow lattice of different specifications, increasing its applicability. The coordinated use of the mounting plate, main shaft, winding reel 17, wire rope 14, lead screw 7, and stepper motor 9 facilitates the movement of the fixing frame 4, allowing it to be moved in and out of the device body 1, thus facilitating the cooling of each hollow lattice. This simple operation improves work efficiency.
[0020] Compared with related technologies, the air-plate cooling system provided by this utility model has the following advantages: This type of hollow-panel cooling system, through the coordinated use of a fixed frame 4, a support plate 10, a clamping plate 11, slots 19, and an electric push rod 13, facilitates the rapid placement of the hollow-panel for cooling. During operation, the height of the hollow-panel is first determined, then the electric push rod 13 is activated. The electric push rod 13, via the main shaft, moves the clamping plate 11, thereby adjusting the distance between the clamping plate 11 and the support plate 10 until it is equal to the height of the hollow-panel. The operator then inserts the hollow-panel between the two sets of slots 19. After completion, the hollow grid plates are moved into the device body 1 via the fixing frame 4 for cooling. This method is simple to operate and facilitates the fixing of the hollow grid plates. Moreover, the operation of the electric push rod 13 makes it easy to use for hollow grid plates of different specifications, thus increasing its application range. The use of the mounting plate, main shaft, winding reel 17, wire rope 14, lead screw 7 and stepper motor 9 facilitates the movement of the fixing frame 4, making it easy to move the fixing frame 4 out and in from the device body 1, which facilitates the cooling of each hollow grid plate. This method is simple to operate and improves its working efficiency.
[0021] Second Embodiment
[0022] Please refer to the following: Figure 1-5 Based on the first embodiment of this application, which provides a cooling system for a hollow core plate, the second embodiment of this application proposes another cooling system for a hollow core plate. The second embodiment is merely a preferred embodiment of the first embodiment, and the implementation of the second embodiment will not affect the separate implementation of the first embodiment.
[0023] Based on Example 1, see [link / reference] Figure 1-5 The device body 1 has a mounting frame 2 installed on its top surface. The mounting frame 2 has a top plate 5 on its top surface. A lead screw 7 is movably mounted on the top surface of the top plate 5. One end of the lead screw 7 is driven by a stepper motor 9. A movable plate 6 is spirally connected to the surface of the lead screw 7. The end face of the movable plate 6 has a threaded hole 16. A mounting plate is provided at the bottom end of the movable plate 6. A drive shaft 18 is movably mounted at the bottom end of the mounting plate. One end of the drive shaft 18 is driven by a drive motor 15. A winding reel 17 is provided on the periphery of the drive shaft 18. A steel wire rope 14 is wound on the surface of the winding reel 17. One end of the steel wire rope 14 is fixed to the top surface of the fixed frame 4. By using the mounting plate, main shaft, winding reel 17, steel wire rope 14, lead screw 7 and stepper motor 9 in cooperation, the fixed frame 4 can be moved easily, allowing it to be moved in and out of the device body 1. This facilitates the cooling of the hollow grid plates. This method is simple to operate and improves its working efficiency.
[0024] Based on Example 1, see [link / reference] Figure 1-5The card slots 19 are provided in multiple ways, and the multiple card slots 19 are equally spaced on the surface of the support plate 10 and the clamping plate 11. By providing multiple card slots 19, it is convenient to fix multiple hollow sub-plates at one time, thereby improving its working efficiency.
[0025] Based on Example 1, see [link / reference] Figure 1-5 The top plate 5 has a through-cut slide 12. The width of the slide 12 is equal to the thickness of the moving plate 6. By setting the slide 12, it is convenient to allow the moving plate 6 to move and be limited.
[0026] Based on Example 1, see [link / reference] Figure 1-5 A drain pipe 8 is provided below the outer surface of the device body 1, and a valve is installed on the surface of the drain pipe 8. By providing the drain pipe 8, it is convenient to drain the liquid inside the device body 1.
[0027] Based on Example 1, see [link / reference] Figure 1-5 The outer surface of the device body 1 is equipped with a controller 3. By setting the controller 3, it is convenient to control the electrical components inside the device body 1. The control circuit of the control panel can be implemented by simple programming by those skilled in the art. It is common knowledge in the art. It is only used and not modified. Therefore, the control method and circuit connection will not be described in detail.
[0028] It should be noted that all components used in this application are standard parts that can be purchased from the market. The specific connection methods of each part adopt conventional methods such as bolts, rivets and welding that are mature in the prior art. The mechanical parts and electrical equipment adopt conventional models in the prior art. The circuit connection adopts conventional connection methods in the prior art. The electrical equipment is connected to an external safe power source. These will not be described in detail here.
[0029] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.
Claims
1. A hollow lattice plate cooling system comprising a device body (1) and a fixing frame (4), characterized in that, The fixed frame (4) has a support plate (10) fixedly installed inside, and a clamping plate (11) is movably installed inside the fixed frame (4). An electric push rod (13) is vertically installed on the top surface of the fixed frame (4). The output end of the electric push rod (13) is fixed to the two clamping plates (11) respectively through the main shaft. The clamping plate (11) and the support plate (10) have slots (19) on their surfaces. The support plate (10) has clearance holes on its surface. The support plate (10) and the clamping plate (11) have water inlet holes (20) through their surfaces.
2. A hollow lattice panel cooling system according to claim 1, wherein, The device body (1) has a mounting bracket (2) installed on its top surface. The mounting bracket (2) has a top plate (5) installed on its top surface. A lead screw (7) is movably installed on the top surface of the top plate (5). One end of the lead screw (7) is driven by a stepper motor (9). A movable plate (6) is spirally connected to the surface of the lead screw (7). A threaded hole (16) is opened on the end face of the movable plate (6). A mounting plate is provided at the bottom end of the movable plate (6).
3. A hollow lattice panel cooling system according to claim 2, wherein, A drive shaft (18) is movably mounted on the bottom of the mounting plate. One end of the drive shaft (18) is driven by a drive motor (15). A winding reel (17) is provided on the periphery of the drive shaft (18). A steel wire rope (14) is wound on the surface of the winding reel (17). One end of the steel wire rope (14) is fixed to the top surface of the fixing frame (4).
4. The hollow lattice panel cooling system of claim 1, wherein, The card slots (19) are provided in multiple ways, and the multiple card slots (19) are equally spaced on the surfaces of the support plate (10) and the clamping plate (11).
5. The hollow lattice panel cooling system of claim 2, wherein, The top plate (5) has a through-cut slide (12) on its surface, and the width of the slide (12) is equal to the thickness of the moving plate (6).
6. The hollow lattice panel cooling system of claim 1, wherein, A drain pipe (8) is provided below the outer surface of the device body (1), and a valve is installed on the surface of the drain pipe (8).
7. The hollow lattice panel cooling system of claim 1, wherein, A controller (3) is mounted on the outer surface of the device body (1).