Forming processing equipment for composite insulation board
By introducing the design of moving strips and clamping plates into the composite insulation board molding processing equipment, the problems of time-consuming and labor-intensive application of rubber and sheet offset are solved, efficient and uniform coating of rubber and accurate plate stacking are achieved, and processing efficiency and molding quality are improved.
Patent Information
- Application Number
- CN202421852265.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-01
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2034-08-01
AI Technical Summary
In the molding of existing composite insulation boards, it is time-consuming and labor-intensive to apply glue manually, and the boards are prone to positional deviation when they are stacked, resulting in low processing efficiency and large errors.
The assembly frame is used to connect the moving strips and the nozzles, and the uniform coating of the glue is achieved through the movement of the moving strips. Combined with the design of the telescopic rod and clamping plate, it automatically clamps and limits the plate to prevent position deviation.
The processing efficiency of insulation boards is improved, ensuring the accurate position of the boards when they are stacked and fallen, and the paint is uniform, reducing manual operations and improving molding quality.
Smart Images

Figure CN223128371U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of thermal insulation board processing, in particular to a forming and processing device for a composite thermal insulation board. Background Art
[0002] The composite thermal insulation board is composed of polymer mortar, fiberglass mesh cloth, flame-retardant molded polystyrene foam board (EPS) or extruded board (XPS) and other materials. The composite thermal insulation board is the preferred material to meet the current energy-saving requirements of building construction and improve the external wall thermal insulation level of industrial and civil buildings. It is also the first choice for energy-saving renovation of existing buildings. It is used for high-rise external walls, indoor shopping malls, and industrial equipment. It has the advantages of low cost, good effect, and corrosion resistance. When processing the composite thermal insulation board, the board outside the thermal insulation layer is often prefabricated into a structural board and then bonded and pressed together with the thermal insulation layer to form a composite thermal insulation board.
[0003] The existing forming and processing equipment for composite thermal insulation boards often adopts multi-layer board compression molding. Before compression, it is necessary to apply adhesive on each layer of the board, and then manually carry the boards for stacking and alignment, and then press the boards into shape. However, manual application of adhesive is time-consuming and laborious, resulting in low processing efficiency of the composite thermal insulation board. At the same time, when manually stacking the boards, it is easy to cause the boards to shift in position, and the operation error is large.
[0004] Therefore, we have designed a forming and processing device for a composite thermal insulation board. Content of the Utility Model
[0005] The purpose of the utility model is to solve the problems of time-consuming and laborious manual application of adhesive and easy offset of the board during stacking in the prior art, and to provide a forming and processing device for a composite thermal insulation board.
[0006] In order to achieve the above purpose, the utility model adopts the following technical scheme:
[0007] A forming and processing device for a composite thermal insulation board, including a bottom plate and a bearing frame. An assembly frame is installed on the bearing frame. A moving bar is connected to the assembly frame. A plurality of nozzles are connected to the bottom end of the moving bar. A glue box is arranged on the assembly frame. The glue box is connected to the nozzles through a feeding pipe. A screw rod is installed on the assembly frame. The screw rod is connected to an installation rod. An electric telescopic rod is installed on the installation rod. One end of the electric telescopic rod is connected to a pressing plate, and the other end of the electric telescopic rod is connected to a rotating handle. A plurality of telescopic rods are connected to the installation rod. A plurality of clamping plates are connected to the telescopic rods. A traction rope is wound around the rotating handle.
[0008] Preferably, the assembly frame is provided with a "T"-shaped groove, the moving bar is movable in the "T"-shaped groove, the assembly frame is provided with a strip-shaped hole, and the feeding pipe passes through the strip-shaped hole.
[0009] Preferably, a wavy groove is formed in the clamping plate. The pressure plate is located at the bottom end of the mounting rod, and the rotating handle is located at the top end of the mounting rod. The pressure plate always remains parallel to the bottom plate.
[0010] Preferably, one end of the traction rope is connected to the clamping plate from the highest point of the traction rope winding, and the other end of the traction rope is connected to the clamping plate from the lowest point of the traction rope winding.
[0011] Preferably, a plurality of cross frames are installed on the carrier frame. Grooves are formed in the cross frames, and the cross frames are connected with the scraping plates. The scraping plates include wedge-shaped protruding ends.
[0012] Preferably, the bottom end of the screw rod is connected to the bottom plate. Rectangular grooves are formed on both sides of the bottom plate. One end of the scraping plate is movably located in the groove, and the other end of the scraping plate is movably located in the rectangular groove.
[0013] The beneficial effects of the present utility model are as follows:
[0014] 1. The present utility model adopts an assembly frame connected with a moving strip, and a plurality of nozzles are connected to the bottom end of the moving strip. The nozzles move synchronously through the movement of the moving strip, so as to uniformly coat the plate, replacing manual coating and improving the processing efficiency of the insulation board.
[0015] 2. The present utility model adopts a telescopic rod connected with a plurality of clamping plates. A traction rope is wound around the rotating handle. When the rotating handle rotates, the clamping plates are pulled through the traction rope to clamp and limit the plate, avoiding the deviation of the plate position.
[0016] In summary, the present utility model is reasonably designed, can not only improve the processing efficiency of the insulation board, but also prevent the deviation of the plate during stacking. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is a top view of the overall structure of a forming and processing device for a composite insulation board proposed by the present utility model;
[0018] Figure 2 is a bottom view of the overall structure of a forming and processing device for a composite insulation board proposed by the present utility model;
[0019] Figure 3 is a schematic diagram of the clamping structure of a forming and processing device for a composite insulation board proposed by the present utility model;
[0020] Figure 4 is a schematic diagram of the coating structure of a forming and processing device for a composite insulation board proposed by the present utility model;
[0021] Figure 5 is a structural relationship diagram of the scraping plate of a forming and processing device for a composite insulation board proposed by the present utility model.
[0022] In the figure: 1, bottom plate; 2, bearing frame; 3, assembly frame; 4, rubber material box; 5, moving bar; 6, feeding pipe; 7, nozzle; 8, screw; 9, mounting rod; 10, electric telescopic rod; 11, pressing plate; 12, telescopic rod; 13, clamping plate; 14, towing rope; 15, rotating handle; 16, cross frame; 17, scraper. Specific implementation mode
[0023] Refer to Figures 1 - 5 , a forming and processing device for composite insulation boards, including a bottom plate 1 and a bearing frame 2. An assembly frame 3 is installed on the bearing frame 2. The assembly frame 3 is connected with a moving bar 5. The bottom end of the moving bar 5 is connected with a plurality of nozzles 7. A rubber material box 4 is arranged on the assembly frame 3. The rubber material box 4 is connected with the nozzles 7 through a feeding pipe 6. The assembly frame 3 is provided with a "T"-shaped groove, and the moving bar 5 moves in the "T"-shaped groove. The assembly frame 3 is provided with a strip-shaped hole, and the feeding pipe 6 passes through the strip-shaped hole. Place the board on the bottom plate 1. By moving the moving bar 5, the moving bar 5 slides in the "T"-shaped groove on the assembly frame 3. During the sliding process of the moving bar 5, it drives the rubber material box 4, the feeding pipe 6 and the nozzles 7 installed at the bottom end of the moving bar 5 to move synchronously. While the moving bar 5 is moving, start the rubber material box 4, so that the rubber material enters the plurality of nozzles 7 through the feeding pipe 6. The nozzles 7 start to move from the side of the board and perform uniform material feeding during the moving process until it moves to the other side of the board, completing the coating work on the board, replacing the traditional manual coating, improving the work efficiency and making the coating effect more uniform.
[0024] A screw rod 8 is installed on the assembly rack 3. The screw rod 8 is connected to an installation rod 9. An electric telescopic rod 10 is installed on the installation rod 9. One end of the electric telescopic rod 10 is connected to a pressure plate 11, and the other end of the electric telescopic rod 10 is connected to a rotating handle 15. The installation rod 9 is connected to a plurality of telescopic rods 12, and the telescopic rods 12 are connected to a plurality of clamping plates 13. A traction rope 14 is wound around the rotating handle 15. Wave grooves are formed on the clamping plates 13. The pressure plate 11 is located at the bottom end of the installation rod 9, and the rotating handle 15 is located at the top end of the installation rod 9. The pressure plate 11 is always parallel to the bottom plate 1. One end of the traction rope 14 is connected to the clamping plate 13 from the highest point of the winding of the traction rope 14, and the other end of the traction rope 14 is connected to the clamping plate 13 from the lowest point of the winding of the traction rope 14. By manually rotating the rotating handle 15, when the rotating handle 15 moves clockwise, the traction rope 14 will pull the plurality of clamping plates 13 to move towards each other, so as to clamp and fix the plate. The wave grooves on the clamping plates 13 will effectively prevent the plate from slipping, improving the clamping effect on the plate. At the same time, the plurality of telescopic rods 12 play a supporting role for the clamping plates 13 while assisting the movement of the clamping plates 13. By clamping the plate with the clamping plates 13, it effectively prevents the plate from shifting in position during the stacking process, resulting in the inability to fit the stacked plates. After the clamping plates 13 clamp the plate, the installation rod 9 is moved to make the installation rod 9 move on the screw rod 8, driving the clamping plates 13 to clamp the plate and move to an appropriate position. The electric telescopic rod 10 is started, and the electric telescopic rod 10 pushes the pressure plate 11 to press the plate. After the pressing is completed, the installation rod 9 is moved to the initial position. By moving the assembly rack 3, the assembly rack 3 moves on the screw rod 8, and the lifting of the assembly rack 3 causes the spray head 7 to lift synchronously. When the spray head 7 rises to an appropriate position, the spray head 7 is used to coat the plate again by sliding the movement bar 5, so as to perform the second round of plate stacking. The cyclic steps complete the forming process of the plate.
[0025] A plurality of cross racks 16 are installed on the bearing rack 2. Grooves are formed on the cross racks 16. The cross racks 16 are connected to a scraping plate 17. The scraping plate 17 includes a wedge-shaped protruding end. The bottom end of the screw rod 8 is connected to the bottom plate 1. Rectangular grooves are formed on both sides of the bottom plate 1. One end of the scraping plate 17 is movably located in the groove, and the other end of the scraping plate 17 is movably located in the rectangular groove. After the stacking and coating operations are completed, the scraping plate 17 is slid to make the scraping plate 17 move on both sides of the plate to scrape off the glue overflowing from both sides of the plate.
[0026] The working principle of the present utility model is as follows: The carrier frame 2 is installed with an assembly frame 3. The assembly frame 3 is connected with a moving bar 5. The bottom end of the moving bar 5 is connected with a plurality of nozzles 7. A glue box 4 is arranged on the assembly frame 3. The glue box 4 is connected with the nozzles 7 through a feeding pipe 6. A screw rod 8 is installed on the assembly frame 3. The screw rod 8 is connected with a mounting rod 9. An electric telescopic rod 10 is installed on the mounting rod 9. One end of the electric telescopic rod 10 is connected with a pressing plate 11. The other end of the electric telescopic rod 10 is connected with a rotating handle 15. The mounting rod 9 is connected with a plurality of telescopic rods 12. The telescopic rods 12 are connected with a plurality of clamping plates 13. A traction rope 14 is wound around the rotating handle 15. The movement of the moving bar 5 drives the nozzles 7 to move synchronously, making the coating work more convenient. Rotating the rotating handle 15 pulls the clamping plates 13 through the traction rope 14 to clamp the plate, so that the plate remains stable when stacked.
[0027] The above is only a preferred specific embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present utility model, according to the technical solution and the inventive concept of the present utility model, makes equivalent substitutions or changes, and should be covered by the protection scope of the present utility model.
Claims
1. An equipment for forming and processing a composite insulation board, comprising a bottom plate (1) and a carrier frame (2), characterized in that, The carrier frame (2) is installed with an assembly frame (3). The assembly frame (3) is connected with a moving bar (5). The bottom end of the moving bar (5) is connected with a plurality of spray heads (7). A glue box (4) is arranged on the assembly frame (3). The glue box (4) is connected with the spray heads (7) through a feed pipe (6). A screw rod (8) is installed on the assembly frame (3). The screw rod (8) is connected with a mounting rod (9). An electric telescopic rod (10) is installed on the mounting rod (9). One end of the electric telescopic rod (10) is connected with a pressing plate (11). The other end of the electric telescopic rod (10) is connected with a rotating handle (15). The mounting rod (9) is connected with a plurality of telescopic rods (12). The telescopic rods (12) are connected with a plurality of clamping plates (13). A traction rope (14) is wound around the rotating handle (15).
2. The forming and processing equipment for a composite insulation board according to claim 1, characterized in that, The assembly frame (3) is provided with a "T"-shaped groove, and the moving bar (5) moves in the "T"-shaped groove. The assembly frame (3) is provided with a strip-shaped hole, and the feed pipe (6) passes through the strip-shaped hole.
3. The forming and processing equipment for a composite insulation board according to claim 1, characterized in that, The clamping plate (13) is provided with a wavy groove. The pressing plate (11) is located at the bottom end of the mounting rod (9). The rotating handle (15) is located at the top end of the mounting rod (9). The pressing plate (11) always remains parallel to the bottom plate (1).
4. The forming and processing equipment for a composite insulation board according to claim 1, characterized in that, One end of the traction rope (14) is connected with the clamping plate (13) from the highest point of the winding of the traction rope (14), and the other end of the traction rope (14) is connected with the clamping plate (13) from the lowest point of the winding of the traction rope (14).
5. The forming and processing equipment for a composite insulation board according to claim 1, characterized in that, A plurality of cross frames (16) are installed on the carrier frame (2). Grooves are provided in the cross frames (16). The cross frames (16) are connected with the scraper (17). The scraper (17) includes a wedge-shaped protruding end.
6. The forming and processing equipment for a composite insulation board according to claim 1, characterized in that, The bottom end of the screw rod (8) is connected with the bottom plate (1). Rectangular grooves are provided on both sides of the bottom plate (1). One end of the scraper (17) moves in the groove, and the other end of the scraper (17) moves in the rectangular groove.
Citation Information
Cited By
Light composite insulation board forming device
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