Rapid cooling and conveying device for sealing strip production

By designing a sealed cooling box and circulating coolant, the problem of coolant waste in the prior art is solved, and the rapid cooling of the sealing strip is achieved through the design of the cooling roller, saving the amount of coolant.

CN222959006UActive Publication Date: 2025-06-10YANCHENG HAILANG DECORATION MATERIALS CO LTD
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Patent Information

Application Number
CN202421921953.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-09
Publication Date
2025-06-10
Estimated Expiration
2034-08-09

AI Technical Summary

Technical Problem

The existing sealing strip quick cooling conveyor has a high demand for coolant, resulting in a large amount of waste and inability to reuse.

Method used

A sealed cooling box is designed to realize the circulation of coolant through the water inlet and outlet pipes, and a cooling roller is installed in the cooling box to make the sealing strip fully contact the coolant, achieving the effect of rapid cooling.

Benefits of technology

The use of coolant is greatly saved, and the waste is reduced by recycling the coolant, and the design of the cooling roller is achieved to achieve rapid cooling of the sealing strips.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a quick cooling and conveying device for sealing strip production, which belongs to the technical field of sealing strip manufacture, and comprises a cooling box, a traction device, a sealing strip and a cover plate, the left side surface of the cooling box is fixedly connected with a water inlet pipe in a penetrating manner, and the water inlet pipe is fixedly connected with a water inlet valve; a water outlet pipe is fixedly connected to the right side face of the cooling box in a penetrating mode, a water outlet valve is fixedly connected to the water outlet pipe, a plurality of bearings are symmetrically and evenly fixed to the front side face and the rear side face of the cooling box in a penetrating mode, rotating shafts are fixedly connected into the bearings, and cooling rollers are fixedly connected to the rotating shafts. By arranging the sealed cooling box, the sealing strip can directly penetrate through the cooling box and is cooled through cooling liquid in the cooling box, the traditional mode that cooling liquid is used for pouring and cooling is changed, the using amount of the cooling liquid is greatly saved, and by arranging the cooling rollers, the sealing strip is fully in contact with the cooling liquid, and the rapid cooling effect is achieved.
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Description

Technical Field

[0001] The utility model relates to the technical field of sealing strip production, in particular to a rapid cooling and conveying device for sealing strip production. Background Art

[0002] The rapid cooling and conveying device for sealing strips is a device designed specifically to improve the production efficiency of sealing strips. By means of rapid cooling and effective conveying, it ensures that the sealing strips can quickly reach the required temperature state during the manufacturing process, thereby improving the overall production efficiency and product quality.

[0003] Generally, the rapid cooling and conveying device for sealing strips sprays and irrigates with coolant during the transmission process to achieve rapid cooling. However, this design has a large demand for coolant, resulting in a large amount of waste and it cannot be reused. Summary of the Utility Model

[0004] The purpose of the utility model is to solve the problems existing in the prior art, and to propose a rapid cooling and conveying device for sealing strip production.

[0005] In order to achieve the above purpose, the utility model adopts the following technical scheme:

[0006] A rapid cooling and conveying device for sealing strip production includes a cooling box, a traction device, a sealing strip and a cover plate. A water inlet pipe is fixedly connected through the left side surface of the cooling box, and a water inlet valve is fixedly connected to the water inlet pipe. A water outlet pipe is fixedly connected through the right side surface of the cooling box, and a water outlet valve is fixedly connected to the water outlet pipe. A plurality of bearings are symmetrically and evenly fixedly penetrated through the front and rear side surfaces of the cooling box. A rotating shaft is fixedly connected in the plurality of bearings, and a cooling roller is fixedly connected to the rotating shaft. Cooling grooves are formed on the annular surface of the cooling roller, and the sealing strip is slidably connected in the cooling grooves. Threaded holes are formed around the bearings on the front and rear side surfaces of the cooling box.

[0007] In order to better achieve the above purpose, the utility model adopts a further technical scheme: Sealing grooves are formed on the front and rear side surfaces of the cooling box, and sealing rings are slidably connected in the sealing grooves. The inner diameter of the sealing grooves is concentric with the bearings.

[0008] In order to better achieve the above purpose, the utility model adopts a further technical scheme: Hexagonal screws are evenly and rotatably connected through the side surface of the cover plate, and the hexagonal screws are threadedly connected in the threaded holes formed on the front and rear side surfaces of the cooling box.

[0009] In order to better achieve the above purpose, the utility model adopts a further technical scheme: Guide grooves are penetrated through the left and right side surfaces of the cooling box, and the lower surface of the guide grooves is higher than the lower generatrix of the cooling roller.

[0010] To better achieve the above object, the present utility model adopts the following further technical solution: A plurality of the cooling rollers are located on the same horizontal plane.

[0011] To better achieve the above object, the present utility model adopts the following further technical solution: The traction device is located at one end of the cooling box, and one end of the sealing strip is fixedly connected to the output end of the traction device.

[0012] The advantages of the present utility model are as follows: By providing a sealed cooling box, the sealing strip can be directly passed through the inside of the cooling box and cooled by the internal coolant, which changes the traditional method of using coolant for irrigation cooling, greatly saving the amount of coolant used. By providing cooling rollers, the sealing strip can fully contact the coolant, achieving the effect of rapid cooling. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 FIG. is a schematic structural view of a rapid cooling conveyor device for sealing strip production proposed by the present utility model;

[0014] Figure 2 FIG. is a schematic cross-sectional structural view of a rapid cooling conveyor device for sealing strip production proposed by the present utility model;

[0015] Figure 3 FIG. is a schematic structural view of a cooling roller of a rapid cooling conveyor device for sealing strip production proposed by the present utility model.

[0016] In the figure: 1 cooling box, 2 water inlet pipe, 3 water outlet pipe, 4 water inlet valve, 5 water outlet valve, 6 traction device, 7 bearing, 8 threaded hole, 9 rotating shaft, 10 cooling roller, 11 cooling groove, 12 sealing strip, 13 cover plate, 14 sealing groove, 15 sealing ring, 16 hexagon screw, 17 guiding groove. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0017] The following further explains the technical solutions in the present utility model in conjunction with the drawings and embodiments.

[0018] Refer to Figures 1-3, A rapid cooling conveyor device for the production of sealing strips, including a cooling box 1, a traction device 6, a sealing strip 12, and a cover plate 13. A water inlet pipe 2 is fixedly connected through the left side surface of the cooling box 1. An inlet water valve 4 is fixedly connected to the water inlet pipe 2. The inlet water valve 4 is a valve for controlling the coolant to enter the cooling box 1. A water outlet pipe 3 is fixedly connected through the right side surface of the cooling box 1. An outlet water valve 5 is fixedly connected to the water outlet pipe 3. The outlet water valve 5 is a valve for controlling the coolant to discharge from the cooling box 1. Under the action of the inlet water valve 4 and the outlet water valve 5, the coolant in the cooling box 1 can be reused until the cooling effect of the coolant is relatively low and then the coolant is replaced again. Sealing grooves 14 are opened on the front and rear side surfaces of the cooling box 1. Sealing rings 15 are slidably connected in the sealing grooves 14. The inner diameter of the sealing grooves 14 is concentric with the bearing 7. The sealing rings 15 cooperate with the cover plate 13 to seal the bearing installation part 7 on the side to prevent the coolant from flowing out. By setting a sealed cooling box, the sealing strip can be directly passed through the cooling box and cooled by the internal coolant, changing the traditional way of using coolant for watering and cooling, and greatly saving the amount of coolant used.

[0019] A plurality of bearings 7 are symmetrically and uniformly fixedly penetrated through the front and rear side surfaces of the cooling box 1. A rotating shaft 9 is fixedly connected in the plurality of bearings 7. A cooling roller 10 is fixedly connected to the rotating shaft 9. The plurality of cooling rollers 10 are located on the same horizontal plane. Cooling grooves 11 are opened on the annular surface of the cooling roller 10. The sealing strip 12 is slidably connected in the cooling grooves 11. Threaded holes 8 are opened on the front and rear side surfaces of the cooling box 1 around the bearings 7 as the center. Hexagonal screws 16 are rotatably and fixedly penetrated through the side surface of the cover plate 13. The hexagonal screws 16 are threadedly connected to the threaded holes 8 opened on the front and rear side surfaces of the cooling box 1. The sealing strip 12 will slide in the cooling grooves 11 below the cooling roller 10 to ensure that the sealing strip is completely located in the coolant. By setting the cooling roller, the sealing strip can fully contact the coolant to achieve the effect of rapid cooling.

[0020] Guide grooves 17 are penetrated through the left and right side surfaces of the cooling box 1. The lower surface of the guide grooves 17 is higher than the lower generatrix of the cooling roller 10. The guide grooves 17 are used to guide the sealing strip 12 to prevent the sealing strip 12 from swinging left and right during movement. The traction device 6 is located at one end of the cooling box 1. One end of the sealing strip 12 is fixedly connected to the output end of the traction device 6. The traction device 6 will drive the sealing strip 12 to move, so that the sealing strip 12 passes through the cooling box 1 during movement.

[0021] When the utility model is in use, the traction device 6 will drive the sealing strip 12 to move. Thus, during the movement of the sealing strip 12, it passes through the cooling box 1. The sealing strip 12 slides in the cooling groove 11 under the cooling roller 10. Since the cooling groove 11 under the cooling roller 10 is completely located in the coolant, the sealing strip will move completely within the coolant. When the cooling effect of the coolant is not good, the water outlet valve 5 can be opened to drain the coolant in the cooling box 1, and then the water inlet valve 4 can be opened to inject new coolant. By setting up a sealed cooling box, the sealing strip can directly pass through the cooling box and be cooled by the internal coolant, changing the traditional way of using coolant for irrigation cooling, greatly saving the amount of coolant used. By setting up the cooling roller, the sealing strip can fully contact with the coolant, achieving the effect of rapid cooling.

Claims

1. A rapid cooling and conveying device for producing sealing strips, comprising a cooling box (1), a traction device (6), a sealing strip (12) and a cover plate (13), characterized in that: A water inlet pipe (2) is fixedly connected to the left side of the cooling box (1), and a water inlet valve (4) is fixedly connected to the water inlet pipe (2). A water outlet pipe (3) is fixedly connected to the right side of the cooling box (1), and a water outlet valve (5) is fixedly connected to the water outlet pipe (3). A plurality of bearings (7) are symmetrically and evenly fixedly connected to the front and rear sides of the cooling box (1). A rotating shaft (9) is fixedly connected to the plurality of bearings (7). A cooling roller (10) is fixedly connected to the rotating shaft (9). A cooling groove (11) is provided on the annular surface of the cooling roller (10). The sealing strip (12) is slidably connected to the cooling groove (11). A plurality of threaded holes (8) are provided on the front and rear sides of the cooling box (1) around the bearing (7).

2. A rapid cooling conveying device for sealing strip production according to claim 1, characterized in that: The front and rear sides of the cooling box (1) are both provided with sealing grooves (14), a sealing ring (15) is slidably connected in the sealing groove (14), and the inner diameter of the sealing groove (14) is concentric with the bearing (7).

3. A rapid cooling conveying device for sealing strip production according to claim 1, characterized in that: Hexagonal screws (16) are evenly penetrated and rotatably connected to the side surface of the cover plate (13), and the hexagonal screws (16) are threadedly connected to threaded holes (8) opened on the front and rear side surfaces of the cooling box (1).

4. A rapid cooling conveying device for sealing strip production according to claim 1, characterized in that: Guide grooves (17) are provided through both left and right side surfaces of the cooling box (1), and the lower surface of the guide grooves (17) is higher than the lower generatrix of the cooling roller (10).

5. The rapid cooling conveying device for sealing strip production according to claim 1, characterized in that: The plurality of cooling rollers (10) are located on the same horizontal plane.

6. A rapid cooling conveying device for sealing strip production according to claim 1, characterized in that: The traction device (6) is located at one end of the cooling box (1), and one end of the sealing strip (12) is fixedly connected to the output end of the traction device (6).

Citation Information

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