Cooling system suitable for sealing element machining

By using a combined cooling system of a water reservoir, adsorption components and blowing components in seal processing, the problems of slow cooling efficiency and residual water stains on rubber sheets are solved, and rapid drying and efficient cooling are achieved.

CN223339852UActive Publication Date: 2025-09-16XIAMEN MAIHUA RUBBER PROD CO LTD
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Patent Information

Application Number
CN202422071071.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-26
Publication Date
2025-09-16
Estimated Expiration
2034-08-26

AI Technical Summary

Technical Problem

The existing cooling method for sealing rubber sheets has the problems of slow cooling efficiency and residual water stains on the sheet surface after water cooling.

Method used

A cooling system is adopted, including a water reservoir, an adsorption component, a blowing component and a winding component. Multi-step cooling and drying is achieved through preliminary cooling of cooling water in the water reservoir, adsorption of water stains by the adsorption component, air drying by the blowing component and winding by the winding component.

Benefits of technology

The cooling rate of the rubber sheet is accelerated, and residual water stains on the sheet surface after water cooling are avoided, thereby improving the cooling efficiency and drying effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a cooling system suitable for sealing element machining. The cooling system comprises an operation table, a water storage tank, an adsorption assembly, a blowing assembly and a winding assembly. According to the cooling system suitable for sealing element machining, cooling water is injected into a second water storage tank, a rubber sheet is made to be tightly attached to a first rear guide roller, one side of the rubber sheet penetrates through the lower portions of two second guide rollers, part of the rubber sheet is located in the water storage tank, the rubber sheet makes contact with the cooling water in the water storage tank, and then the rubber sheet is cooled preliminarily; one side of the rubber sheet extends into the adsorption assembly, water stains on the outer surface of the rubber sheet are adsorbed through the adsorption assembly, then the rubber sheet extends into the blowing assembly, the outer surface of the rubber sheet is treated through the blowing assembly, the rubber sheet is further cooled, and the drying rate of the outer surface is increased; and the rubber sheet is connected to the winding assembly, and the rubber sheet is wound through the winding assembly.
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Description

Technical Field

[0001] The utility model relates to the technical field of sealing component processing, in particular to a cooling system suitable for sealing component processing. Background Art

[0002] Currently, the production of seals includes uniformly mixing rubber raw materials with fillers, additives, etc., usually using a rubber internal mixer. The purpose of mixing is to make the rubber raw materials have good fluidity and plasticity, and to ensure that the additives are evenly dispersed in the rubber. The mixed rubber material is passed through a calender or rubber calender to form a thin sheet of a certain thickness and width. The produced rubber sheet needs to be cooled.

[0003] Currently, cooling devices for rubber sheets usually only use air cooling or water cooling. However, air cooling has a slow cooling speed, while water cooling, although relatively fast, will cause water stains to remain on the surface of the sheet after cooling, affecting subsequent slicing processing. Utility Model Content

[0004] In view of the deficiencies in the prior art, the utility model provides a cooling system suitable for sealing component processing, which solves the problem of slow cooling efficiency.

[0005] To achieve the above-mentioned object, the present invention provides the following technical solutions: a cooling system suitable for seal processing, comprising an operating table, a water reservoir, an adsorption component, a blowing component and a winding component;

[0006] First guide rollers are installed on both left and right sides of the upper surface of the water reservoir, and second guide rollers are rotatably connected between the front and rear sides of the inner wall of the water reservoir, and the first guide rollers and the second guide rollers are arranged in parallel;

[0007] The adsorption assembly is arranged on the operating table, and the adsorption assembly includes two support frames, which are arranged on the operating table at a left and right interval, and two sponge rollers are rotatably connected between opposite sides of the two support frames;

[0008] The blowing assembly is arranged above the operating table and located in front of the adsorption assembly. The blowing assembly includes a bellows, a blower, an air supply pipe, two connecting pipes and at least two exhaust pipes.

[0009] The bellows is mounted on the operating table, the fan is disposed on the bellows, the air supply pipe is connected to the output end of the fan, the two connecting pipes are respectively connected to the two ends of the air supply pipe, at least two exhaust pipes are disposed on the front and rear sides of the inner wall of the bellows at an interval, and at least two exhaust pipes are respectively connected to the two connecting pipes;

[0010] The winding assembly is installed on the operating table and is located at the front side of the blowing assembly to be used for winding the rubber sheet.

[0011] Furthermore, the two sponge rollers are arranged in a vertically aligned manner.

[0012] Furthermore, the upper side of the outer surface of the first guide roller on the front side is flush with the upper side of the outer surface of the sponge roller on the lower side.

[0013] Furthermore, two squeezing rollers are connected through the interior of the two support frames, and the two squeezing rollers are respectively in contact with the outer surfaces of the two sponge rollers;

[0014] The shape of the squeezing roller is a cylinder with a hollow interior and missing two ends, and a plurality of water seepage holes are opened on the outer circumference of the squeezing roller.

[0015] Furthermore, the opposite sides of the upper and lower exhaust pipes are connected to a plurality of exhaust nozzles.

[0016] Furthermore, the exhaust nozzle is arranged at an angle away from one end of the exhaust pipe toward the sponge roller.

[0017] Furthermore, a gap is reserved between the opposite sides of the upper and lower exhaust nozzles for the rubber sheet to pass through.

[0018] Furthermore, the winding assembly includes two bearing seats, which are arranged on the operating table with a left and right interval. A winding roller is rotatably connected between the opposite sides of the two bearing seats, and a motor is provided on the operating table that is transmission-connected to the output end and the winding roller.

[0019] Furthermore, a square opening for inserting the rubber sheet is opened laterally inside the winding roller.

[0020] Compared with the existing technology, the technical solution of this application has the following beneficial effects:

[0021] This cooling system, which is suitable for seal processing, injects cooling water into the second water reservoir so that the rubber sheet is tightly attached to the first rear guide roller, and one side of the rubber sheet passes through the lower parts of the two second guide rollers and is partially located in the water reservoir. The rubber sheet is initially cooled by contact with the cooling water in the water reservoir. Subsequently, one side of the rubber sheet extends into the interior of the adsorption component, and the adsorption component is used to adsorb water stains on the outer surface of the rubber sheet. Secondly, the rubber sheet extends into the interior of the blowing component, and the outer surface of the rubber sheet is treated by the blowing component to further cool the rubber sheet and accelerate the drying rate of the outer surface. Finally, the rubber sheet is connected to the winding component and the rubber sheet is wound up by the winding component. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 This is a schematic diagram of the structure of the utility model;

[0023] Figure 2This is a rear view structural diagram of the utility model;

[0024] Figure 3 This is a schematic diagram of the structure of the extrusion roller of the utility model;

[0025] Figure 4 This is a schematic diagram of the structure of the extrusion and winding assembly of the utility model.

[0026] In the figure: 1. Operating table; 2. Water reservoir; 201. First guide roller; 202. Second guide roller; 3. Adsorption assembly; 301. Support frame; 302. Sponge roller; 303. Squeeze roller; 4. Blowing assembly; 401. Fan; 402. Air supply pipe; 403. Connecting pipe; 404. Exhaust pipe; 405. Bellows; 406. Exhaust nozzle; 5. Winding assembly; 501. Bearing seat; 502. Winding roller; 503. Motor. DETAILED DESCRIPTION

[0027] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0028] See also Figure 1-4 In this embodiment, a cooling system suitable for seal processing is used to cool the rubber seal sheet to accelerate the cooling rate of the rubber sheet.

[0029] Specifically, it includes an operating table 1, a water reservoir 2, an adsorption component 3, a blowing component 4 and a winding component 5, wherein first guide rollers 201 are installed on the left and right sides of the upper surface of the water reservoir 2, and a second guide roller 202 is rotatably connected between the front and back sides of the inner wall of the water reservoir 2. The first guide roller 201 and the second guide roller 202 are arranged in parallel, and the adsorption component 3, the blowing component 4 and the winding component 5 are assembled on the operating table 1 in sequence from back to front, and the adsorption component 3, the blowing component 4 and the winding component 5 are all located on the same horizontal line.

[0030] During actual use, cooling water is injected into the water reservoir 2, the rubber sheet is attached to the first guide roller 201 on the rear side, and one side of the rubber sheet passes through the lower side of the two second guide rollers 202. At this time, a part of the rubber sheet is located inside the water reservoir 2, and is in contact with the cooling water inside the water reservoir 2, thereby achieving a preliminary cooling effect on the rubber sheet.

[0031] Secondly, one side of the rubber sheet is extended to the inside of the adsorption component 3 and attached to the outside of the first guide roller 201 on the front side. The water stains on the outer surface of the rubber sheet are adsorbed by the adsorption component 3. Then, the rubber sheet is extended to the inside of the blowing component 4. The outer surface of the rubber sheet is blown by the blowing component 4 to further cool the rubber sheet and accelerate the drying rate of the outer surface of the rubber sheet. Finally, the rubber sheet is connected to the winding component 5 and the rubber sheet is wound by the winding component 5.

[0032] In detail, in order to facilitate the adsorption of water stains on the outer surface of the rubber sheet, the adsorption component 3 in this embodiment includes two support frames 301, which are arranged on the operating table 1 at a left and right interval, and two sponge rollers 302 are rotatably connected between the opposite sides of the two support frames 301.

[0033] During actual use, the rubber sheet is passed between the two sponge rollers 302 so that the two sponge rollers 302 are respectively attached to the upper and lower sides of the rubber sheet. That is, when the rubber sheet is rolled up, the movement of the rubber sheet drives the two sponge rollers 302 to rotate, thereby absorbing water stains on the outer surface of the rubber sheet.

[0034] It should be noted that the two sponge rollers 302 are arranged in a vertically contact manner, and the upper side of the outer surface of the front first guide roller 201 is flush with the upper side of the outer surface of the lower sponge roller 302 .

[0035] Furthermore, in order to facilitate the discharge of water stains absorbed inside the sponge roller 302, in this embodiment, two squeezing rollers 303 are connected through the interior of the two support frames 301, and the two squeezing rollers 303 are respectively in contact with the outer surfaces of the two sponge rollers 302; the squeezing roller 303 is in the shape of a cylinder with a hollow interior and missing both ends, and a number of water seepage holes are opened on the outer circumference of the squeezing roller 303.

[0036] During actual use, the squeezing roller 303 inserted into the two support frames 301 abuts against the sponge roller 302, that is, when the sponge roller 302 rotates, the water adsorbed inside it is squeezed out by the squeezing roller 303, and transported to the inside of the squeezing roller 303 through the seepage holes, and discharged from the front left and right ends of the squeezing roller 303.

[0037] See Figure 3 In actual setting, the squeezing roller 303 is embedded in the inside of the sponge roller 302, and the squeezing roller 303 is fixed inside the two support frames 301. The water seepage holes on the outside of the squeezing roller 303 are distributed in a circular array, and the number of water seepage holes on the same circular surface is three, that is, the water stains squeezed out of the sponge roller 302 seep into the inside of the squeezing roller 303 from the water seepage holes on the side of the squeezing roller 303.

[0038] Furthermore, in order to ensure that the water inside the squeezing roller 303 can only be discharged from the front and rear ends thereof, in this embodiment, the side of the squeezing roller 303 that contacts the sponge roller 302 is preferably flat.

[0039] In order to further cool and dry the rubber sheet, the blowing assembly 4 in this embodiment includes a bellows 405, a fan 401, an air supply pipe 402, two connecting pipes 403 and at least two rows of air ducts 404; the bellows 405 is installed on the operating table 1, the fan 401 is arranged on the bellows 405, the air supply pipe 402 is connected to the output end of the fan 401, the two connecting pipes 403 are respectively connected to the two ends of the air supply pipe 402, and at least two rows of air ducts 404 are arranged at an upper and lower interval on the front and rear sides of the inner wall of the bellows 405, and at least two rows of air ducts 404 are respectively connected to the two connecting pipes 403.

[0040] During actual use, the air from the outside is extracted by the fan 401, and the generated wind energy is transmitted to the inside of the connecting pipe 403 and the exhaust pipe 404 through the air supply pipe 402, and is discharged from the inside of the exhaust pipe 404, so as to dry and cool the upper and lower sides of the rubber sheet.

[0041] Furthermore, in order to improve the drying process of the rubber sheet, in this embodiment, a plurality of exhaust nozzles 406 are connected to the opposite sides of the upper and lower exhaust pipes 404, and the exhaust nozzles 406 are tilted toward the sponge roller 302 at one end away from the exhaust pipe 404, and a gap is reserved between the opposite sides of the upper and lower exhaust nozzles 406 for the rubber sheet to pass through.

[0042] In actual settings, the exhaust nozzle 406 is set at an angle so that the direction of the wind blown out is always facing the sponge roller 302. That is, when there are water stains on the rubber sheet, the wind blown out through the exhaust nozzle 406 can blow the water stains toward the sponge roller 302 until the outer surface of the rubber sheet is completely dry.

[0043] Specifically, in order to facilitate the winding of the rubber sheet and drive the rubber sheet to move at the same time, the winding assembly 5 in this embodiment includes two bearing seats 501, and the two bearing seats 501 are arranged on the operating table 1 with a left and right interval. A winding roller 502 is rotatably connected between the opposite sides of the two bearing seats 501, and a motor 503 is provided on the operating table 1 that is transmission-connected to the output end and the winding roller 502, and a square opening for inserting the rubber sheet is horizontally opened inside the winding roller 502.

[0044] During actual use, the rubber sheet is inserted into the square opening inside the winding roller 502. The rubber sheet is wound by the rotation of the winding roller 502, and at the same time, the rubber sheet is driven to move inside the water tank 2, the adsorption component 3 and the blowing component 4, thereby achieving cooling treatment of the rubber sheet.

[0045] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A cooling system suitable for seal processing, characterized by: It comprises an operating table (1), a water reservoir (2), an adsorption component (3), a blowing component (4) and a winding component (5); First guide rollers (201) are installed on both left and right sides of the upper surface of the water reservoir (2); second guide rollers (202) are rotatably connected between the front and rear sides of the inner wall of the water reservoir (2); the first guide rollers (201) and the second guide rollers (202) are arranged in parallel; The adsorption component (3) is arranged on the operating table (1), and the adsorption component (3) comprises two support frames (301), the two support frames (301) are arranged on the operating table (1) at intervals on the left and right, and two sponge rollers (302) are rotatably connected between opposite sides of the two support frames (301); The blowing assembly (4) is arranged above the operating table (1) and located in front of the adsorption assembly (3), and the blowing assembly (4) comprises a bellows (405), a fan (401), an air supply pipe (402), two connecting pipes (403) and at least two exhaust pipes (404); The wind box (405) is installed on the operating table (1), the fan (401) is arranged on the wind box (405), the air supply pipe (402) is connected to the output end of the fan (401), the two connecting pipes (403) are respectively connected to the two ends of the air supply pipe (402), at least two exhaust pipes (404) are arranged at the front and rear sides of the inner wall of the wind box (405) at an upper and lower interval, and at least two exhaust pipes (404) are respectively connected to the two connecting pipes (403); The winding assembly (5) is installed on the operating table (1) and is located in front of the blowing assembly (4) for winding the rubber sheet.

2. A cooling system suitable for seal processing according to claim 1, characterized in that: The two sponge rollers (302) are arranged in a vertically aligned manner.

3. A cooling system suitable for seal processing according to claim 2, characterized in that: The upper side of the outer surface of the first guide roller (201) on the front side is flush with the upper side of the outer surface of the sponge roller (302) on the lower side.

4. The cooling system suitable for seal processing according to claim 1, characterized in that: Two squeezing rollers (303) are connected through the interior of the two support frames (301), and the two squeezing rollers (303) are respectively in contact with the outer surfaces of the two sponge rollers (302); The squeezing roller (303) is in the shape of a cylinder with a hollow interior and missing ends, and a plurality of water seepage holes are provided on the outer circumference of the squeezing roller (303).

5. The cooling system suitable for seal processing according to claim 1, characterized in that: The opposite sides of the exhaust pipes (404) on the upper and lower sides are both connected to a plurality of exhaust nozzles (406).

6. The cooling system suitable for seal processing according to claim 5, characterized in that: The exhaust nozzle (406) is arranged at an angle toward the sponge roller (302) at one end away from the exhaust pipe (404).

7. The cooling system suitable for seal processing according to claim 5, characterized in that: A gap is reserved between the opposite sides of the air exhaust nozzles (406) on the upper and lower sides for the rubber sheet to pass through.

8. The cooling system suitable for seal processing according to claim 1, characterized in that: The winding assembly (5) comprises two bearing seats (501), the two bearing seats (501) being arranged on the operating table (1) at a left-right interval, a winding roller (502) being rotatably connected between opposite sides of the two bearing seats (501), and a motor (503) being transmission-connected to the output end and the winding roller (502) being arranged on the operating table (1).

9. The cooling system suitable for seal processing according to claim 8, characterized in that: The interior of the winding roller (502) is provided with a square opening for inserting the rubber sheet.