Anti-sticking film cooling machine

By introducing enhanced cooling and anti-sticking mechanisms and anti-friction rolling mechanisms into the film cooling machine, the sticking problem caused by uneven film cooling is solved, achieving faster cooling and protection, and improving film quality.

CN223735303UActive Publication Date: 2025-12-30昆山钜鼎精密机械有限公司
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Patent Information

Application Number
CN202520098912.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-16
Publication Date
2025-12-30
Estimated Expiration
2035-01-16

AI Technical Summary

Technical Problem

Existing film cooling machines cannot achieve uniform airflow cooling during the cooling process, which causes the film surface to stick easily, affecting the cooling effect and film quality.

Method used

A reinforced cooling and anti-sticking mechanism was designed, including a uniform air blowing cooling component, a partitioned air blowing component, a water storage component, and a circulating cooling component. The uniform air blowing and water cooling are achieved through a cooling fan and a high-pressure water pump. Combined with an anti-friction rolling mechanism, the film is prevented from sticking and being damaged by friction.

Benefits of technology

It achieves uniform cooling of the film surface, improves cooling efficiency, prevents adhesion and friction damage, and enhances the cooling effect of film processing and production.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223735303U_ABST
    Figure CN223735303U_ABST
Patent Text Reader

Abstract

The utility model discloses an anti-sticking film cooling machine which comprises a film cooling machine main body, the film cooling machine main body comprises a cooling box, three conveying rollers are rotationally arranged in the cooling box through bearings, and a driving motor is installed at the end of each conveying roller and located on the side face of the cooling box. A film body is conveyed at the joint of the three conveying rollers; by designing a reinforced cooling anti-sticking mechanism, a film body can penetrate through the interior of an inlet and an outlet and is located on the surfaces of two cooling circulating pipes, and when water circularly enters the interior of the cooling circulating pipes, a cooling fan blows air vertically to the interior of a through groove through a vertical air inlet and blows air to the inner edge of the through groove through an inclined air inlet; and uniform air blowing water cooling is carried out on the upper surface of the film body, the cooling treatment is faster, the effect is more obvious, and the adhesion phenomenon is not likely to happen when the film body enters an inner conveying roller to be conveyed.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of film cooling machine, concretely relates to a film cooling machine of preventing sticking. BACKGROUND

[0002] Film cooling machine is the device that the plasticated rubber or mixing rubber is cooled to the rubber sheet that is pressed out by the sheet press, because the chemical reaction is produced when the rubber is made, and the rubber sheet that is handled has certain temperature, cannot be used directly, therefore needs to carry out the temperature reduction treatment to the rubber sheet, usually through the rubber sheet cooling machine to the rubber sheet cooling treatment, and the existing cooling machine is the equipment that is used for the cooling treatment to the rubber sheet when the rubber sheet is processed and produced, is convenient for effectively conveying cooling, and the rubber sheet is cooled and handled in the rubber sheet processing and production.

[0003] The existing cooling machine is cooled and handled to the rubber sheet after processing and production, directly through the conveying roller to convey the rubber sheet in the inside of the cooling box through the cooling fan blowing cooling, or the surface water cooling treatment of the rubber sheet, therefore reaches the expected cooling treatment effect when cooling treatment, and is not convenient for the even blowing cooling of the upper surface of the rubber sheet, reduces the cooling effect, easily causes the surface sticking of the rubber solution processing conveying cooling on the surface, reduces the quality of the rubber sheet, influences the cooling treatment effect of the rubber sheet cooling machine in the rubber sheet processing and production, and the utility model provides a kind of sticking prevention film cooling machine to solve the above background art. UTILITY MODEL CONTENTS

[0004] The utility model aims at providing a kind of sticking prevention film cooling machine to solve the above background art and the cooling treatment effect of the rubber sheet cooling machine in the rubber sheet processing and production is influenced when the cooling machine is cooled and handled to the rubber sheet after processing and production, directly through the conveying roller to convey the rubber sheet in the inside of the cooling box through the cooling fan blowing cooling, or the surface water cooling treatment of the rubber sheet, therefore reaches the expected cooling treatment effect when cooling treatment, and is not convenient for the even blowing cooling of the upper surface of the rubber sheet, reduces the cooling effect problem.

[0005] To achieve the above object, the utility model provides the following technical scheme: a kind of sticking prevention film cooling machine, including film cooling machine main body, the film cooling machine main body includes cooling box, three conveying rollers are rotated in the inside of the cooling box by bearing, and drive motor is installed at the end of the conveying roller on the side of cooling box, and the connection of three conveying rollers is conveyed with rubber sheet body, the inlet and outlet are set in the both ends of cooling box, and the rubber sheet body is penetrated in the inside of inlet and outlet, cooling fan is fixed in the both ends of the inside of cooling box, and the film cooling machine main body is also provided with:

[0006] A cooling and anti-sticking mechanism is provided, which includes uniform air blowing cooling components disposed at both ends inside the cooling box. The end of the cooling fan is provided with a separating air blowing component at the end of the uniform air blowing cooling component. Water storage components are disposed at the bottom of both ends inside the cooling box. Circulating cooling components are disposed on both sides inside the uniform air blowing cooling component at the end of the water storage component.

[0007] An anti-friction rolling mechanism, wherein the anti-friction rolling mechanism includes anti-friction rolling components disposed on both sides inside the inlet and outlet.

[0008] Preferably, the uniform airflow cooling assembly includes a fixed frame that is bolted to both ends inside the cooling box. Both ends of the fixed frame have through slots, and the lower surface of the through slots has a plurality of uniform air outlet holes. The end of the cooling fan is connected to the inside of the through slot.

[0009] Preferably, the separating air blowing assembly includes a vertical air inlet located at the middle of the end of the cooling fan, and an inclined air inlet is formed at the end edge of the cooling fan.

[0010] Preferably, the water storage assembly includes a water storage tank fixedly installed at both ends of the bottom inside the cooling box by bolts, a high-pressure water pump fixedly installed on the upper surface of the water storage tank by bolts, and an outlet pipe installed on the side of the high-pressure water pump and inside the water storage tank.

[0011] Preferably, the circulating cooling assembly includes two cooling circulation pipes fixedly installed inside the fixed frame by fastening clamps, and the top of the high-pressure water pump is provided with a main water inlet pipe, and the end of the main water inlet pipe is sealed and fixed to the end of the cooling circulation pipe.

[0012] Preferably, a return water pipe is provided at the other end of the upper surface of the water storage tank, and the tail end of the cooling circulation pipe is sealed and fixed to the side of the return water pipe by a sealing gasket.

[0013] Preferably, the anti-friction rolling assembly includes two rolling grooves formed on both sides inside the inlet and outlet, and a guide protective roller rolls inside the rolling grooves.

[0014] Compared with the prior art, the beneficial effects of this utility model are:

[0015] By designing a reinforced cooling and anti-sticking mechanism, the film body can be inserted through the inlet and outlet, positioned on the surface of two cooling circulation pipes. Simultaneously, water circulates into the cooling circulation pipes, while a cooling fan blows air vertically into the channel through a vertical air inlet. Air then enters the channel through an inclined air inlet towards its inner edge, and finally, through uniform air outlets, is evenly blown onto the surface of the cooling circulation pipes. This ensures uniform airflow and water cooling of the film body's upper surface, resulting in faster and more effective cooling. This also reduces the likelihood of sticking during transport by the internal conveyor rollers, improving the cooling efficiency of the film cooling machine during film processing. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of this utility model;

[0017] Figure 2 This is a cross-sectional structural diagram of the present invention;

[0018] Figure 3 This utility model Figure 2 Enlarged structural diagram of section A;

[0019] Figure 4 This is a side sectional view of the present invention.

[0020] Figure 5 This is a schematic diagram of the fixed frame and cooling circulation pipe structure of this utility model;

[0021] Figure 6 This is a schematic diagram of the guide protection roller structure of this utility model;

[0022] In the diagram: 100, Main body of the film cooler; 101, Cooling box; 102, Film body; 103, Cooling fan; 1031, Fixing frame; 1032, Through groove; 1033, Uniform air outlet; 1034, Vertical air inlet; 1035, Inclined air inlet; 1036, Water storage tank; 1037, High-pressure water pump; 1038, Main water inlet pipe; 1039, Cooling circulation pipe; 1030, Return water pipe; 104, Inlet and outlet; 1041, Rolling groove; 1042, Guide protection roller; 105, Conveyor roller. Detailed Implementation

[0023] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0024] Please see Figures 1 to 6This utility model provides a technical solution: an anti-sticking film cooler, including a film cooler body 100, the film cooler body 100 including a cooling box 101, three conveying rollers 105 rotating inside the cooling box 101 via bearings, drive motors mounted at the ends of the conveying rollers 105 on the side of the cooling box 101, film bodies 102 conveyed at the connection of the three conveying rollers 105, inlet and outlet 104 opening at both ends of the cooling box 101, and the film bodies 102 penetrating through the interior of the inlet and outlet 104, cooling fans 103 fixed at both ends of the interior of the cooling box 101, and the film cooler body 100 also being provided with:

[0025] The enhanced cooling and anti-sticking mechanism includes uniform air blowing cooling components located at both ends inside the cooling box 101. The end of the cooling fan 103 is provided with a separating air blowing component located at the end of the uniform air blowing cooling component. Water storage components are provided at the bottom of both ends inside the cooling box 101. Circulating cooling components are provided on both sides inside the uniform air blowing cooling component located at the end of the water storage component. When cooling the film 102, the enhanced cooling and anti-sticking mechanism can effectively enhance the cooling treatment of the film 102, resulting in faster and more obvious cooling effects. When the film enters the internal conveying roller 105 for conveying, it is less likely to stick.

[0026] To facilitate uniform airflow cooling via the uniform airflow cooling assembly, in this embodiment, preferably, the uniform airflow cooling assembly includes a fixing frame 1031 bolted to both ends of the cooling box 101. Both ends of the fixing frame 1031 have through slots 1032, and the lower surface of the through slots 1032 has several uniform airflow holes 1033. The end of the cooling fan 103 is connected to the interior of the through slots 1032, allowing the cooling fan 103 to blow air into the interior of the through slots 1032, and then uniformly blow the air through the uniform airflow holes 1033 onto the surface of the cooling circulation pipe 1039 for both airflow and water cooling, thus enhancing the cooling process.

[0027] In order to facilitate uniform air intake into the interior of the channel 1032 by means of the partitioned air blowing assembly, in this embodiment, preferably, the partitioned air blowing assembly includes a vertical air inlet 1034 opened at the middle position of the end of the cooling fan 103, and an inclined air inlet 1035 formed at the end edge of the cooling fan 103. The cooling fan 103 can be driven to blow air, which is vertically introduced into the interior of the channel 1032 through the vertical air inlet 1034, and air is introduced into the interior edge of the channel 1032 through the inclined air inlet 1035, which facilitates uniform air intake into the interior of the channel 1032.

[0028] In order to facilitate the storage of cooling water for cooling treatment through the water storage component, in this embodiment, preferably, the water storage component includes a water storage tank 1036 that is fixedly installed at the bottom of both ends inside the cooling box 101 by bolts. A high-pressure water pump 1037 is fixedly installed on the upper surface of the water storage tank 1036 by bolts. A water outlet pipe is installed on the side of the high-pressure water pump 1037 and inside the water storage tank 1036, which can store cooling water inside the water storage tank 1036 and then draw it out by the high-pressure water pump 1037 for water cooling treatment after storage.

[0029] To facilitate water cooling through the circulating cooling assembly, in this embodiment, preferably, the circulating cooling assembly includes two cooling circulation pipes 1039 fixedly installed inside the fixed frame 1031 by fastening clamps. A main water inlet pipe 1038 is provided at the top of the high-pressure water pump 1037, and the end of the main water inlet pipe 1038 is sealed and fixed to the end of the cooling circulation pipe 1039. A return water pipe 1030 is provided at the other end of the upper surface of the water storage tank 1036. The tail end of the cooling circulation pipe 1039 is sealed and fixed to the side of the return water pipe 1030 by a sealing gasket. The high-pressure water pump 1037 can be powered on to draw cooling water from inside the water storage tank 1036 and enter the two cooling circulation pipes 1039 through the main water inlet pipe 1038 until it enters the return water pipe 1030 and flows back to the water storage tank 1036. This facilitates water cooling circulation and cooling again when blowing air, thus enhancing the cooling process.

[0030] The anti-friction rolling mechanism includes anti-friction rolling components disposed on both sides inside the inlet and outlet 104. When the film body 102 is cooled inside the extended cooling box 101 inside the inlet and outlet 104, the anti-friction rolling mechanism rolls and protects the film body 102 inside the inlet and outlet 104, making it less susceptible to friction damage.

[0031] In order to facilitate the rolling protection of the film body 102 inside the inlet / outlet 104 by the anti-friction rolling assembly and prevent friction damage, in this embodiment, preferably, the anti-friction rolling assembly includes two rolling grooves 1041 formed on both sides inside the inlet / outlet 104. A guide protection roller 1042 rolls inside the rolling groove 1041, which can bring the surface of the film body 102 into contact with the surface of the guide protection roller 1042 and drive the guide protection roller 1042 to roll, so that the film body 102 is not easily damaged by friction when it comes into contact with the inside of the inlet / outlet 104, and facilitates rolling protection and conveying.

[0032] The working principle and usage process of this utility model: When using this anti-sticking film cooler, firstly, the film body 102 is inserted through the inlet / outlet 104 at one end and extended into the interior of the cooling box 101, and the film body 102 is brought into contact with the surface of the conveying roller 105. The drive motor drives the conveying roller 105 to rotate and convey the film body 102, which facilitates the cooling treatment of the film body 102 when it is conveyed inside the cooling box 101.

[0033] Then, when the film cooler body 100 is in the cooling process, the film body 102, which runs through the inlet and outlet 104, is located at the connection of the two cooling circulation pipes 1039. Cooling water is filled into the water storage tank 1036. The high-pressure water pump 1037 is then energized to draw cooling water from the water storage tank 1036, which enters the two cooling circulation pipes 1039 through the main inlet pipe 1038, until it flows back into the water storage tank 1036 through the return pipe 1030. Simultaneously, while the circulating water is cooling, the cooling fan 103 is driven to blow air, which is then vertically introduced into the channel through the vertical air inlet 1034. Inside 1032, air enters through the inclined air inlet 1035 to the inner edge of the through groove 1032, which facilitates uniform air intake inside the through groove 1032. The air is then blown onto the surface of the cooling circulation pipe 1039 through the uniform air outlet 1033, and the upper surface of the film body 102 is uniformly cooled by air blowing. The cooling circulation pipe 1039 strengthens the air blowing during the circulating water cooling process, resulting in faster and more obvious cooling. When the film enters the internal conveying roller 105, it is less likely to stick, thus improving the cooling effect of the film cooling machine body 100 during film processing and production.

[0034] Finally, when the film cooler body 100 is cooling, and the film body 102 is inside the inlet / outlet 104 during transport, when the film body 102 is inside the inlet / outlet 104 and is touched during transport, the surface of the film body 102 can directly contact the surface of the guide protection roller 1042 and drive the guide protection roller 1042 to roll. This makes it easier for the film body 102 to come into contact with the inside of the inlet / outlet 104 without being damaged by friction, and facilitates rolling protection during transport. In addition, during transport, the inlet / outlet 104 will be cooled by air blowing from the side of the fixed frame 1031. The surface of the film body 102 has already been slightly blown by air inside the inlet / outlet 104, which makes it less likely to cause sticking when in contact, thus improving the anti-friction rolling protection effect of the film cooler body 100 during film processing and production.

[0035] Although embodiments of the present invention have been shown and described (see the detailed description above), it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A kind of anti-sticking film cooling machine, including film cooling machine main body (100), the film cooling machine main body (100) includes cooling box (101), the inside of cooling box (101) is rotated with three conveying rollers (105) by bearing, the end of conveying roller (105) is installed with driving motor in the side of cooling box (101), the junction of three conveying roller (105) is conveyed with film body (102), the inlet and outlet (104) are set up in the both ends of cooling box (101), and the film body (102) is passed through in the inside of inlet and outlet (104), the both ends of the inside of cooling box (101) are fixed with cooling fan (103), it is characterized by: The film cooling machine body (100) is also provided with: The reinforced cooling anti-sticking mechanism comprises uniform blowing cooling assemblies arranged at both ends of the inside of the cooling box (101), the end of the cooling fan (103) is provided with a partition blowing assembly at the end of the uniform blowing cooling assembly, the inside of both ends of the cooling box (101) is provided with a water storage assembly, and the end of the water storage assembly is provided with a circulating cooling assembly at both sides of the inside of the uniform blowing cooling assembly. The anti-friction rolling mechanism comprises anti-friction rolling assemblies arranged at both sides of the inlet and outlet (104).

2. A non-stick sheet cooler as claimed in claim 1, wherein: The uniform blowing cooling assembly comprises a fixed frame (1031) fixedly installed at both ends of the inside of the cooling box (101) through bolts, the inside of the fixed frame (1031) is provided with a through groove (1032) at both ends, the lower surface of the through groove (1032) is provided with a plurality of uniform air outlet holes (1033), and the end of the cooling fan (103) is in communication with the inside of the through groove (1032).

3. An anti-sticking film cooler according to claim 2, wherein: The partition blowing assembly comprises a vertical air inlet (1034) arranged at the middle position of the end of the cooling fan (103), and an inclined air inlet (1035) is formed at the edge of the end of the cooling fan (103).

4. An anti-sticking film cooler according to claim 2, wherein: The water storage assembly comprises a water storage tank (1036) fixedly installed at the bottom of both ends of the inside of the cooling box (101) through bolts, a high-pressure water pump (1037) is fixedly installed on the upper surface of the water storage tank (1036) through bolts, and a water outlet pipe is installed on the side of the high-pressure water pump (1037) and the inside of the water storage tank (1036).

5. An anti-sticking film cooler according to claim 4, wherein: The circulating cooling assembly comprises two cooling circulating pipes (1039) fixedly installed in the inside of the fixed frame (1031) through fastening hoops, a main water inlet pipe (1038) is arranged at the top end of the high-pressure water pump (1037), and the end of the main water inlet pipe (1038) is sealingly fixed with the end of the cooling circulating pipe (1039).

6. An anti-sticking film cooler according to claim 5, wherein: The other end of the upper surface of the water storage tank (1036) is provided with a water return pipe (1030), and the tail end of the cooling circulating pipe (1039) is sealingly fixed with the side of the water return pipe (1030) through a sealing pad.

7. A non-stick sheet cooler as claimed in claim 1, wherein: The anti-friction rolling assembly comprises two rolling grooves (1041) arranged at both sides of the inside of the inlet and outlet (104), and a guide protection roller (1042) rolls in the inside of the rolling groove (1041).