Recovery equipment for foaming insulation board
By designing a recycling equipment for foam insulation boards, using electric telescopic rods, cutters, crushing rods and cleaning systems, the problem of environmental pollution of waste foam insulation boards is solved, efficient recycling and reuse is achieved, and the requirements of sustainable development are met.
Patent Information
- Application Number
- CN202421914705.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-08
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2034-08-08
AI Technical Summary
Waste foam insulation boards cause pollution to the environment and lack the technology for efficient recycling and reuse.
A recycling equipment including recycling box and loading frame is designed. The initial chopping is performed through an electric telescopic rod and a cutter, the crushing rod is performed, and the filter plate and cleaning system are performed, ultimately achieving efficient recycling of the waste foam insulation board.
Through automated crushing and cleaning, efficient recycling of waste foam insulation boards is achieved, reducing environmental pollution and meeting the requirements of sustainable development.
Smart Images

Figure CN222920916U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of foamed insulation boards, in particular to a recycling device for foamed insulation boards. Background Technique
[0002] The basic principle of the cement foamed board is to utilize the incombustibility of cement and a large number of closed pores in the concrete to achieve the effects of fire prevention, light weight, and heat insulation. It is a cement-based lightweight porous inorganic fireproof insulation board formed by mixing the foam prepared by a foaming agent with cement, stirring and pouring, and then curing. Its combustion performance is A1 level, and it is currently the best product used in fireproof isolation belts.
[0003] The foamed insulation board is a material widely used in the field of building insulation. However, with the increase in its usage, the number of discarded foamed insulation boards is also increasing, causing certain pollution to the environment. To solve this problem, we propose a recycling device for foamed insulation boards, aiming to achieve the efficient recycling and reuse of discarded foamed insulation boards. Content of the Utility Model
[0004] The technical problem to be solved by the utility model is that the discarded foamed insulation boards cause certain pollution to the environment, and a recycling device for foamed insulation boards is provided.
[0005] To solve the above technical problems, the technical solution provided by the utility model is: a recycling device for foamed insulation boards, including a recycling box body and a feeding frame. The feeding frame is located at the top surface of the recycling box body and is connected in communication. A feeding port is connected and provided on the feeding frame. The feeding port is located at the top end of the outer wall of one side of the recycling box body. A guiding frame matching the feeding port is provided on the outer wall of the feeding frame. A pretreatment mechanism is provided in the feeding frame at the position of the feeding port. The pretreatment mechanism includes an electric telescopic rod on the top wall body of the feeding port. The output end of the electric telescopic rod is connected with a cutting knife located in the feeding port. A plurality of guillotine knives are evenly arranged on the cutting knife. A plurality of crushing rods are horizontally rotatably arranged in the feeding frame. A driving unit for driving the crushing rods is arranged on the feeding frame. A filter screen plate is horizontally arranged in the recycling box body. A water inlet pipe is connected and provided at the top end of the outer wall of the other side of the recycling box body. A drain pipe is connected and provided at the bottom end of the filter screen plate on the recycling box body. A drain valve is provided on the drain pipe.
[0006] As an improvement, a dust removal net plate is embedded on the top surface of the feeding frame, and a cover plate matching the dust removal net plate is hinged on the top surface of the feeding frame, which can filter the dust generated during the crushing process.
[0007] As an improvement, a set of chutes are symmetrically arranged inside the recycling box. A pushing plate close to the top surface of the filter screen plate is slidably arranged between the chutes. A set of pull rods extending outside the recycling box are symmetrically arranged on the pushing plate. A material taking port matching the pull rods is communicated with the recycling box. The other ends of the pull rods are commonly connected with a sealing plate matching the material taking port. A handle is fixedly arranged on the outer wall of the sealing plate, which facilitates the full removal of the processed insulation board.
[0008] As an improvement, a vibrating plate located at the bottom end of the drain pipe is slidably arranged inside the recycling box. A plurality of ultrasonic transducers connected to the bottom surface of the vibrating plate are arranged on the inner wall of the bottom end of the recycling box. An ultrasonic generator matching the ultrasonic transducers is arranged on the outer wall of the recycling box, which improves the cleaning efficiency and cleaning quality.
[0009] As an improvement, a transparent surface window is arranged on the outer wall of the front side of the recycling box, and a control panel is arranged below the transparent surface window, which is convenient for the operator to operate.
[0010] The advantages of the present utility model compared with the prior art are as follows: Through automated crushing and cleaning, the efficient recycling of waste foam insulation boards is realized, reducing environmental pollution and meeting the requirements of sustainable development.
[0011] A cutting knife is arranged at the position of the feeding frame, which can preliminarily cut different-sized insulation boards to be recycled, thereby reducing the risk of blockage during feeding and improving efficiency. Description of the Drawings
[0012] Figure 1 is the first three-dimensional view of a recycling device for foam insulation boards of the present utility model.
[0013] Figure 2 is the second three-dimensional view of a recycling device for foam insulation boards of the present utility model.
[0014] Figure 3 is the third three-dimensional view of a recycling device for foam insulation boards of the present utility model.
[0015] Figure 4 is the sectional three-dimensional view of a recycling device for foam insulation boards of the present utility model.
[0016] Figure 5 is the sectional front view of a recycling device for foam insulation boards of the present utility model.
[0017] As shown in the figure: 1. Recycling box; 2. Feeding frame; 3. Feeding port; 4. Guide frame; 5. Pretreatment mechanism; 6. Electric telescopic rod; 7. Cutting knife; 8. Chopping knife; 9. Crushing rod; 10. Filter screen plate; 11. Water inlet pipe; 12. Drain pipe; 13. Drain valve; 14. Dust removal screen plate; 15. Cover plate; 16. Slide groove; 17. Pushing plate; 18. Pull rod; 19. Material taking port; 20. Sealing plate; 21. Handle; 22. Vibration plate; 23. Ultrasonic transducer; 24. Ultrasonic generator; 25. Transparent window; 26. Control panel. Detailed implementation mode
[0018] The following further elaborates on the present utility model in conjunction with the attached drawings.
[0019] Combined with the attached Figures 1-5 As shown, a recycling device for foamed insulation boards includes a recycling box 1 and a feeding frame 2. The feeding frame 2 is communicatively arranged on the top surface of the recycling box 1. A transparent window 25 is provided on the front outer wall of the recycling box 1, and a control panel 26 is provided below the transparent window 25. A feeding port 3 is communicatively arranged on the feeding frame 2, and the feeding port 3 is arranged at the top end of the outer wall of one side of the recycling box 1. A guide frame 4 matching the feeding port 3 is provided on the outer wall of the feeding frame 2. A pretreatment mechanism 5 is arranged at the position of the feeding port 3 inside the feeding frame 2. The pretreatment mechanism 5 includes an electric telescopic rod 6 on the top wall body of the feeding port 3. The output end of the electric telescopic rod 6 is connected with a cutting knife 7 located inside the feeding port 3. A plurality of chopping knives 8 are evenly arranged on the cutting knife 7. A plurality of crushing rods 9 are horizontally rotatably arranged inside the feeding frame 2. A driving unit for driving the crushing rods 9 is arranged on the feeding frame 2. A dust removal screen plate 14 is embedded on the top surface of the feeding frame 2. A cover plate 15 matching the dust removal screen plate 14 is hinged on the top surface of the feeding frame 2;
[0020] Through the above structure, first, the waste foamed insulation board to be recycled is put into the position of the feeding port 3 through the guide frame 4. During the feeding process, the electric telescopic rod 6 continuously pushes the cutting knife 7 downward, and the cutting knife 7 cooperates with the chopping knives 8 to reduce the volume of the foamed insulation board. Then, the foamed insulation board enters the feeding frame 2 through the feeding port 3. The operator controls and turns on the driving unit through the control panel 26, and the plurality of crushing rods 9 rotate. The crushing knives on the crushing rods 9 crush the foamed insulation board evenly. Part of the dust generated during the crushing process is discharged to the external dust collection equipment through the dust removal screen plate 14. When not in use, the equipment is sealed and protected by closing the cover plate 15;
[0021] A filter screen plate 10 is horizontally arranged inside the recycling box body 1. At the top end of the outer wall on the other side of the recycling box body 1, a water inlet pipe 11 is connected and communicated. A drain pipe 12 is connected and communicated on the recycling box body 1 at the bottom end of the filter screen plate 10. A drain valve 13 is arranged on the drain pipe 12. A vibrating plate 22 is slidably arranged inside the recycling box body 1 at the bottom end of the drain pipe 12. A plurality of ultrasonic transducers 23 connected to the bottom surface of the vibrating plate 22 are arranged on the inner wall of the bottom end of the recycling box body 1. An ultrasonic generator 24 cooperating with the ultrasonic transducers 23 is arranged on the outer wall of the recycling box body 1. A group of sliding grooves 16 are symmetrically arranged inside the recycling box body 1. A pushing plate 17 close to the top surface of the filter screen plate 10 is slidably arranged between the sliding grooves 16. A group of pull rods 18 extending to the outside of the recycling box body 1 are symmetrically arranged on the pushing plate 17. A material taking port 19 cooperating with the pull rods 18 is connected and communicated on the recycling box body 1. The other ends of the pull rods 18 are commonly connected with a sealing plate 20 cooperating with the material taking port 19. A handle 21 is fixedly arranged on the outer wall of the sealing plate 20;
[0022] With the above structure, the foamed heat-insulating board after crushing automatically falls onto the filter screen plate 10. Clean water is poured into the recycling box body 1 through the water inlet pipe 11. The clean water flushes and cleans the foamed heat-insulating board in the filter box body. The ultrasonic generator 24 cooperates with the ultrasonic transducers 23 to generate ultrasonic waves, promoting the cleaning efficiency. After cleaning, the sewage is discharged through the drain pipe 12 by opening the drain valve 13. After all the sewage is discharged, the sealing plate 20 is pulled by the handle 21, so that the pushing plate 17 slides under the cooperation of the sliding grooves 16, and the processed foamed heat-insulating board on the filter screen plate 10 is pulled to the position of the material taking port 19, and then the blanking operation can be carried out. When not taking materials, the sealing plate 20 is fixedly connected to the recycling box body 1 through bolts to prevent sliding.
[0023] When the utility model is specifically implemented, firstly, the waste foamed heat-insulating board to be recycled is put into the feeding port 3 through the guiding frame 4. During the feeding process, the electric telescopic rod 6 continuously pushes the cutting knife 7 downward, and the cutting and the guillotine 8 cooperate to reduce the volume of the foamed heat-insulating board. Then the foamed heat-insulating board enters the feeding frame 2 through the feeding port 3. The operator controls and turns on the driving unit through the control panel 26, and a plurality of crushing rods 9 rotate. The crushing knives on the crushing rods 9 crush the foamed heat-insulating board evenly. Part of the dust generated during the crushing process is discharged to the external dust collection equipment through the dust removal net plate 14. The foamed heat-insulating board after crushing automatically falls onto the filter screen plate 10. Clean water is poured into the recycling box body 1 through the water inlet pipe 11. The clean water flushes and cleans the foamed heat-insulating board in the filter box body. The ultrasonic generator 24 cooperates with the ultrasonic transducers 23 to generate ultrasonic waves, promoting the cleaning efficiency;
[0024] After cleaning, open the drain valve 13 to release the sewage through the drain pipe 12. After all the sewage is discharged, pull the sealing plate 20 through the handle 21, so that the pushing plate 17 slides under the cooperation of the chute 16, and pull the processed foamed insulation board on the filter screen plate 10 to the material taking port 19 position, then the blanking operation can be carried out. When not taking materials, the sealing plate 20 is fixedly connected to the recycling box body 1 through bolts to prevent sliding. When not in use, the equipment is sealed and protected by closing the cover plate 15 and the sealing plate 20.
[0025] The above describes the present utility model and its implementation manners. Such description is not restrictive. What is shown in the drawings is only one of the implementation manners of the present utility model, and the actual structure is not limited thereto. All in all, if those of ordinary skill in the art are inspired by it and without departing from the gist of the creation of the present utility model, without creative design, structures and embodiments similar to the technical solution are all within the protection scope of the present utility model.
Claims
1. A recycling device for foam insulation board, comprising a recycling box (1) and a loading frame (2), wherein the loading frame (2) is arranged in communication with the top surface of the recycling box (1), and a loading port (3) is arranged in communication with the loading frame (2), and the loading port (3) is arranged at the top of the outer wall of one side of the recycling box (1), characterized in that: The outer wall of the feeding frame (2) is provided with a material guide frame (4) cooperating with the feeding port (3); the feeding frame (2) is provided with a pre-treatment mechanism (5) located at the position of the feeding port (3); the pre-treatment mechanism (5) comprises an electric telescopic rod (6) located at the top wall of the feeding port (3); the output end of the electric telescopic rod (6) is connected with a cutter (7) located in the feeding port (3); a plurality of guillotines (8) are evenly arranged on the cutter (7); a plurality of crushing rods (9) are horizontally rotatably arranged in the feeding frame (2); a driving unit for driving the crushing rods (9) is arranged on the feeding frame (2); a filter screen (10) is horizontally arranged in the recovery box (1); a water inlet pipe (11) is connected to the top of the outer wall on the other side of the recovery box (1); a drainage pipe (12) located at the bottom end of the filter screen (10) is connected to the recovery box (1); a drainage valve (13) is provided on the drainage pipe (12).
2. A recycling device for foam insulation board according to claim 1, characterized in that: A dust removal mesh plate (14) is embedded in the top surface of the loading frame (2), and a cover plate (15) that matches the dust removal mesh plate (14) is hingedly provided on the top surface of the loading frame (2).
3. The recycling device for foam insulation board according to claim 1, characterized in that: A group of slide grooves (16) are symmetrically arranged in the recovery box (1), and a push plate (17) close to the top surface of the filter screen plate (10) is slidably arranged between the slide grooves (16). A group of pull rods (18) extending to the outside of the recovery box (1) are symmetrically arranged on the push plate (17). The recovery box (1) is connected to a material extraction port (19) that cooperates with the pull rod (18), and the other end of the pull rod (18) is commonly connected to a sealing plate (20) that cooperates with the material extraction port (19), and a handle (21) is fixedly arranged on the outer wall of the sealing plate (20).
4. The recycling device for foam insulation board according to claim 1, characterized in that: A vibration plate (22) located at the bottom end of the drain pipe (12) is slidably disposed inside the recovery box (1), a plurality of ultrasonic transducers (23) connected to the bottom surface of the vibration plate (22) are disposed on the inner wall of the bottom end of the recovery box (1), and an ultrasonic generator (24) cooperating with the ultrasonic transducers (23) is disposed on the outer wall of the recovery box (1).
5. The recycling device for foam insulation board according to claim 1, characterized in that: The front outer wall of the recovery box (1) is provided with a transparent window (25), and a control panel (26) is provided below the transparent window (25).