Cooling device for industrial anticorrosive paint production

By incorporating a circulating cooling system and a stirring plate design, the problems of high consumption and high cost in existing paint cooling devices are solved, achieving a low-cost and high-efficiency paint cooling effect.

CN223826592UActive Publication Date: 2026-01-23XIAMEN BAIANXING NEW MATERIAL CO LTD
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Patent Information

Application Number
CN202520474052.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-18
Publication Date
2026-01-23
Estimated Expiration
2035-03-18

AI Technical Summary

Technical Problem

Existing paint cooling devices consume a lot of energy, are not suitable for large-scale paint cooling, and are costly and inefficient.

Method used

It employs a circulating cooling mechanism and a continuous coating treatment mechanism, using water or a mixture of ice and water as the cooling medium. The coating is cooled by circulation and stirred by a stirring plate, thereby expanding the cooling area and improving the cooling efficiency.

Benefits of technology

It achieves low-cost and high-efficiency coating cooling, reduces cooling water consumption, and improves the efficiency of coating cooling devices.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of anticorrosive paint production, and discloses a cooling device for industrial anticorrosive paint production, which aims to solve the problems of high consumption, low efficiency and the like of the conventional paint cooling device, and comprises a charging barrel, a main seat, a circulating cooling mechanism arranged on the surface of the main seat and a continuous paint treatment mechanism arranged on the surface of the charging barrel, the circulating cooling mechanism injects cooling media such as water or an ice-water mixture into an interlayer of a cooling shell through a water injection opening and a water inlet valve, the cooling media are recycled after being secondarily cooled through a circulating water cooler, cost is reduced, and efficient cooling is achieved. The stirring effect is improved through the auxiliary stirring tank, meanwhile, the coating attached to the inner wall of the charging barrel is scraped off through the side scraping plate and the bottom scraping plate, the cooling efficiency is improved, the cooling area is enlarged, the defects of a traditional cooling device are effectively overcome, and the device has good application prospects in the aspect of industrial anti-corrosion coating production cooling.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of anticorrosive paint production, in particular to an industrial anticorrosive paint production cooling device. BACKGROUND

[0002] Anticorrosive paint is generally divided into conventional anticorrosive paint and heavy-duty anticorrosive paint, and is an essential paint in paint coating. Conventional anticorrosive paint plays a role in corrosion protection for metals and the like under general conditions, thereby protecting the service life of non-ferrous metals. Heavy-duty anticorrosive paint refers to a type of anticorrosive paint that can be applied in relatively harsh corrosive environments and has a longer protection period than conventional anticorrosive paint.

[0003] Now commonly used paint cooling devices mostly use a large number of fans or cooling water to cool the paint. This cooling method has a large overall consumption and cannot be applied to the cooling of large quantities of paint. The consumption of cooling water is large, and the cost cannot be controlled. The overall efficiency is low. SUMMARY

[0004] The utility model provides an industrial anticorrosive paint production cooling device to solve the problems raised in the background.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: an industrial anticorrosive paint production cooling device, comprising a barrel, the barrel bottom is fixedly connected with a main seat, the main seat surface is provided with a circulating cooling mechanism, and the barrel surface is provided with a paint continuous treatment mechanism.

[0006] The circulating cooling mechanism comprises a cooling shell, the cooling shell is fixedly connected to the top of the main seat, the left rear end of the top of the cooling shell is fixedly connected with a water inlet valve, the top of the water inlet valve is fixedly connected with a water inlet, the right side of the bottom of the cooling shell is fixedly connected with a drain tank, the right end of the top of the main seat is installed with a circulating water cooler, the bottom of the right end of the circulating water cooler is installed with a first water pump, the first water pump and the drain tank are installed with a first water pipe, the right end of the top of the cooling shell is fixedly connected with a second water pump, the second water pump and the circulating water cooler are installed with a second water pipe, the cooling medium such as water or ice water mixture is injected into the inner layer of the cooling shell through the water inlet valve and the water inlet tank, the cooling medium flows in the cooling shell, thereby realizing the cooling of the barrel and the internal paint, and the cooling medium finally flows into the drain tank, is transported to the circulating water cooler for secondary cooling through the first water pump and the first water pipe, and is retransported to the inner part of the cooling shell for use through the second water pump and the second water pipe. The cooling medium can be recycled, water or ice water mixture is used as the cooling medium, the cost is low and easy to obtain, high-efficiency cooling is realized, and the cost is reduced.

[0007] Preferably, the barrel is arranged at the inner end of the cooling shell, and the cooling shell is internally provided with a sandwich.

[0008] Preferably, the drainage tank is arranged at the right end of the bottom of the cooling shell, and the drainage tank penetrates the right side of the bottom of the main seat.

[0009] Preferably, the paint continuous treatment mechanism comprises an inlet, which is fixedly connected to the top rear end of the barrel, an inlet sealing valve fixedly connected to the top of the inlet, a feeding pipe fixedly connected to the top of the inlet sealing valve, a motor frame fixedly connected to the top center of the barrel, a motor installed on the inner side of the motor frame, a main rotating shaft arranged at the bottom of the motor, a first fixing sleeve fixedly connected to the surface of the main rotating shaft, a stirring plate fixedly connected to the surface of the first fixing sleeve, an auxiliary stirring groove arranged on the surface of the stirring plate, a second fixing sleeve fixedly connected to the top end of the surface of the main rotating shaft, a side scraper fixedly connected to the outer end of the second fixing sleeve, a third fixing sleeve fixedly connected to the bottom end of the surface of the main rotating shaft, and a bottom scraper fixedly connected to the surface of the third fixing sleeve. The paint to be cooled is added into the barrel through the inlet sealing valve and the feeding pipe. While being cooled, the main rotating shaft is driven to rotate by the motor, and the paint is stirred and dispersed by the stirring plate, so that the paint is prevented from being accumulated and cooled. The auxiliary stirring groove is arranged to enlarge the contact area and make the stirring more thorough. The side scraper and the bottom scraper scrape the inner wall of the barrel to prevent the paint from being attached in large amount. The arrangement of the mechanism can improve the cooling efficiency of the paint and enlarge the cooling area.

[0010] Preferably, the main rotating shaft is fixedly connected to the output end of the bottom of the motor, the side scraper is in contact with the inner wall of the barrel, and the bottom end of the bottom scraper is in contact with the inner bottom of the barrel.

[0011] Preferably, the bottom end of the barrel is fixedly connected with a discharging valve, the bottom end of the discharging valve is provided with a discharging pipe, and the bottom of the main seat is fixedly connected with supporting legs at four corners.

[0012] Compared with the prior art, the industrial anticorrosive paint production cooling device has the following beneficial effects:

[0013] 1. The industrial anticorrosive paint production cooling device is provided with a circulating cooling mechanism. The sandwich of the cooling shell is injected with a cooling medium, such as water or an ice water mixture, through the water inlet valve and the water inlet of the tank. The cooling medium flows in the cooling shell, so as to cool the barrel and the internal paint. The cooling medium finally flows into the drainage tank and is transported to the circulating water cooler by the first water pump and the first water pipe for secondary cooling. The cooling medium is retransported to the inside of the cooling shell by the second water pump and the second water pipe for use. The cooling medium can be recycled. Water or an ice water mixture is used as the cooling medium, which is low in cost and easy to obtain. The cooling device realizes efficient cooling while reducing the cost.

[0014] 2、The industrial anticorrosive paint production cooling device is provided with a paint continuous treatment mechanism, paint to be cooled is added in the inside of the feeding closed valve and the injection pipe box barrel, while being cooled, the main rotating shaft is driven to rotate by the motor, the paint is stirred and dispersed by the stirring plate, accumulation is prevented, the auxiliary stirring groove is arranged to expand the contact area, the stirring is more thorough, the side scraper and the bottom scraper scrape the inner wall of the barrel to prevent the paint from being attached in large amount, the cooling efficiency of the paint is improved and the cooling area is expanded by the arrangement of the mechanism. BRIEF DESCRIPTION OF DRAWINGS

[0015] In order to more clearly illustrate the technical scheme in the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.

[0016] Figure 1 It is a schematic diagram of the structure of the present application;

[0017] Figure 2 It is a schematic diagram of the unloading pipe of the structure of the present application;

[0018] Figure 3 It is a schematic diagram of the circulating cooling mechanism of the structure of the present application;

[0019] Figure 4 It is a schematic diagram of the paint continuous treatment mechanism of the structure of the present application.

[0020] In the figure: 1, main seat; 2, supporting leg; 3, barrel; 4, unloading valve; 5, unloading pipe; 6, circulating cooling mechanism; 61, cooling shell; 62, water inlet valve; 63, water injection port; 64, drainage tank; 65, circulating water cooler; 66, first water pump; 67, first water pipe; 68, second water pump; 69, second water pipe; 7, paint continuous treatment mechanism; 71, feeding port; 72, feeding closed valve; 73, injection pipe; 74, motor frame; 75, motor; 76, main rotating shaft; 77, first fixed sleeve; 78, stirring plate; 79, auxiliary stirring groove; 701, second fixed sleeve; 702, side scraper; 703, third fixed sleeve; 704, bottom scraper. DETAILED DESCRIPTION

[0021] Clearly, the described embodiments are merely a part of the embodiments of the present application, but not all the embodiments. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0022] In the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connection", "connecting", "fixing" and the like should be understood in a broad sense, for example, can be fixed connection, or can be detachable connection, or can be integrated; can be mechanical connection, or can be electrical connection; can be directly connected, or can be indirectly connected through an intermediate medium, or can be the internal communication of two elements or the interaction relationship of two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0023] The present application provides the following technical solutions:

[0024] Embodiment one

[0025] Please refer to Figures 1-4 An industrial anticorrosive paint production cooling device includes a barrel 3, the barrel 3 bottom is fixedly connected with a main seat 1, the main seat 1 surface is provided with a circulating cooling mechanism 6, the barrel 3 surface is provided with a paint continuous treatment mechanism 7;

[0026] The circulating cooling mechanism 6 includes a cooling shell 61, the cooling shell 61 is fixedly connected to the top of the main seat 1, the cooling shell 61 top left rear end is fixedly connected with a water inlet valve 62, the water inlet valve 62 top is fixedly connected with a water inlet 63, the cooling shell 61 bottom right side is fixedly connected with a drain tank 64, the main seat 1 top right end is installed with a circulating water cooler 65, the circulating water cooler 65 right end bottom is installed with a first water pump 66, the first water pump 66 and the drain tank 64 are installed with a first water pipe 67, the cooling shell 61 top right end is fixedly connected with a second water pump 68, the second water pump 68 and the circulating water cooler 65 are installed with a second water pipe 69, the cooling medium such as water or ice water mixture is injected into the cooling shell 61 internal sandwich through the water inlet valve 62 and the water inlet 63, the cooling medium flows in the cooling shell 61 internal, so as to realize the cooling of the barrel 3 and the internal paint, and the cooling medium will finally flow into the drain tank 64, transported to the circulating water cooler 65 for secondary cooling through the first water pump 66 and the first water pipe 67, and transported to the cooling shell 61 internal for use through the second water pump 68 and the second water pipe 69, the cooling medium can be recycled, using water or ice water mixture as the cooling medium, low cost and easy to obtain, realizing efficient cooling while reducing cost;

[0027] The material cylinder 3 is arranged at the inner end of the cooling shell 61, and the cooling shell 61 is internally provided with a sandwich layer;

[0028] The drainage tank 64 is arranged at the bottom right end of the cooling shell 61, and the drainage tank 64 penetrates through the bottom right side of the main base 1.

[0029] Example two

[0030] Please refer to Figures 1-4 On the basis of example one, the paint continuous treatment mechanism 7 further comprises a feeding port 71, the feeding port 71 is fixedly connected to the top rear end of the material cylinder 3, the feeding port 71 is fixedly connected with a feeding sealing valve 72 at the top, the feeding sealing valve 72 is fixedly connected with a feeding pipe 73 at the top, the material cylinder 3 is fixedly connected with a motor bracket 74 at the top center, a motor 75 is installed inside the motor bracket 74, the motor 75 is provided with a main rotating shaft 76 at the bottom, the main rotating shaft 76 is fixedly connected with a first fixing sleeve 77 at the surface, the first fixing sleeve 77 is fixedly connected with a stirring plate 78 at the surface, the stirring plate 78 is provided with an auxiliary stirring groove 79 at the surface, the main rotating shaft 76 is fixedly connected with a second fixing sleeve 701 at the top end of the surface, the second fixing sleeve 701 is fixedly connected with a side scraper 702 at the outer end, the main rotating shaft 76 is fixedly connected with a third fixing sleeve 703 at the bottom end of the surface, the third fixing sleeve 703 is fixedly connected with a bottom scraper 704 at the surface, the paint that needs to be cooled is added to the inside of the material cylinder 3 through the feeding sealing valve 72 and the feeding pipe 73, while being cooled, the main rotating shaft 76 is driven to rotate by the motor 75, the paint is stirred and dispersed by the stirring plate 78, so as to prevent accumulation and difficult cooling, the setting of the auxiliary stirring groove 79 expands the contact area, so that the stirring is more thorough, at the same time, the side scraper 702 and the bottom scraper 704 will scrape the inner wall of the material cylinder 3, so as to prevent a large amount of paint from adhering, through the setting of the mechanism, the cooling efficiency of the paint can be improved, and the cooling area is expanded;

[0031] The main rotating shaft 76 is fixedly connected to the bottom output end of the motor 75, the side scraper 702 is in contact with the inner wall of the material cylinder 3, and the bottom end of the bottom scraper 704 is in contact with the bottom end inside the material cylinder 3;

[0032] The material cylinder 3 is fixedly connected with the unloading valve 4 at the bottom end, the unloading valve 4 is installed with the unloading pipe 5 at the bottom end, and the main base 1 is fixedly connected with the supporting leg 2 at the bottom four corners.

[0033] In actual operation, when the device is used, the paint to be cooled is added into the barrel 3 through the feeding sealing valve 72 and the feeding pipe 73. While being cooled, the main shaft 76 is driven to rotate by the motor 75, and the paint is stirred and dispersed by the stirring plate 78 to prevent accumulation and facilitate cooling. The auxiliary stirring tank 79 is arranged to expand the contact area and facilitate more thorough stirring. The side scraper 702 and the bottom scraper 704 can scrape the inner wall of the barrel 3 to prevent the paint from adhering in large quantities. The arrangement of the mechanism can improve the cooling efficiency of the paint and expand the cooling area.

[0034] The cooling medium, such as water or ice water mixture, is injected into the inner layer of the cooling shell 61 through the water inlet valve 62 and the water inlet 63. The cooling medium flows in the cooling shell 61 to cool the barrel 3 and the paint inside. The cooling medium eventually flows into the drain tank 64, is transported to the circulating water cooler 65 by the first water pump 66 and the first water pipe 67 for secondary cooling, and is transported back to the cooling shell 61 by the second water pump 68 and the second water pipe 69 for use. The cooling medium can be recycled. Using water or ice water mixture as the cooling medium is low in cost and easy to obtain, which can achieve efficient cooling while reducing cost. The paint cooled in the barrel 3 can be discharged from the main seat 1 through the discharge pipe 5 by opening the discharge valve 4 for collection and recycling.

[0035] It should be noted that, in the present document, the terms such as first and second are used only to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "contain" or any other variants thereof are intended to cover non-exclusive inclusion, so that the process, method, article or device including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such process, method, article or device. Without more limitations, the element defined by the statement "including a" does not exclude the presence of other identical elements in the process, method, article or device including the element.

Claims

1. A cooling device for the production of industrial anti-corrosion coatings, comprising a material cylinder (3), characterized in that: The bottom of the barrel (3) is fixedly connected to a main seat (1), the surface of the main seat (1) is provided with a circulating cooling mechanism (6), and the surface of the barrel (3) is provided with a coating continuous treatment mechanism (7). The circulating cooling mechanism (6) includes a cooling shell (61), which is fixedly connected to the top of the main seat (1). A water inlet valve (62) is fixedly connected to the top left rear end of the cooling shell (61), and a water inlet (63) is fixedly connected to the top of the water inlet valve (62). A drain tank (64) is fixedly connected to the bottom right side of the cooling shell (61). A circulating water cooler (65) is installed at the top right end of the main seat (1). A first water pump (66) is installed at the bottom right end of the circulating water cooler (65). A first water supply pipe (67) is installed between the first water pump (66) and the drain tank (64). A second water pump (68) is fixedly connected to the top right end of the cooling shell (61). A second water supply pipe (69) is installed between the second water pump (68) and the circulating water cooler (65).

2. The industrial anti-corrosion coating production cooling device according to claim 1, characterized in that: The material cylinder (3) is located at the inner end of the cooling shell (61), and the cooling shell (61) has an inner layer.

3. The industrial anti-corrosion coating production cooling device according to claim 1, characterized in that: The drain box (64) is located at the bottom right end of the cooling shell (61), and the drain box (64) extends through the bottom right side of the main seat (1).

4. The industrial anti-corrosion coating production cooling device according to claim 1, characterized in that: The coating continuous treatment mechanism (7) includes a feed inlet (71), which is fixedly connected to the rear end of the top of the material cylinder (3). A feed shut-off valve (72) is fixedly connected to the top of the feed inlet (71), and a filling pipe (73) is fixedly connected to the top of the feed shut-off valve (72). A motor frame (74) is fixedly connected to the center of the top of the material cylinder (3). A motor (75) is installed inside the motor frame (74), and a main shaft (76) is provided at the bottom of the motor (75). The surface of the main shaft (76) is fixed. A first fixed sleeve (77) is connected, and a stirring plate (78) is fixedly connected to the surface of the first fixed sleeve (77). An auxiliary stirring groove (79) is opened on the surface of the stirring plate (78). A second fixed sleeve (701) is fixedly connected to the top of the surface of the main rotating shaft (76). A side scraper (702) is fixedly connected to the outer end of the second fixed sleeve (701). A third fixed sleeve (703) is fixedly connected to the bottom of the surface of the main rotating shaft (76). A bottom scraper (704) is fixedly connected to the surface of the third fixed sleeve (703).

5. The industrial anti-corrosion coating production cooling device according to claim 4, characterized in that: The main rotating shaft (76) is fixedly connected to the bottom output end of the motor (75), the side scraper (702) is in contact with the inner wall of the material cylinder (3), and the bottom end of the bottom scraper (704) is in contact with the bottom end of the inside of the material cylinder (3).

6. The industrial anti-corrosion coating production cooling device according to claim 1, characterized in that: The bottom end of the material cylinder (3) is fixedly connected to the unloading valve (4), the bottom end of the unloading valve (4) is equipped with the unloading pipe (5), and the four corners of the bottom end of the main seat (1) are fixedly connected to the support feet (2).