Cooling device for sizing agent production

CN224650108UActive Publication Date: 2026-08-18JIAXING JIAHE WOOD IND CO LTD
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Patent Information

Application Number
CN202521621845.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-07-31
Publication Date
2026-08-18
Estimated Expiration
2035-07-31

AI Technical Summary

Technical Problem

[0003]由于施胶剂生产用的冷却装置通常采用水冷的方式对其进行冷却,施胶剂水冷时无法与冷却源进行接触,导致施胶剂冷却不均匀,影响冷却效果,单一的冷却方式效率较低,且因此我们提出了一种施胶剂生产用冷却装置来解决上述问题

Benefits of technology

[0013] This invention employs a combination of water cooling and air cooling to simultaneously cool the adhesive inside the tank. Water cooling removes heat through circulating water, directly and efficiently reducing the tank's temperature. Air cooling, on the other hand, continuously dissipates heat from the adhesive as it is lifted and descended by the auger, further enhancing the heat dissipation process. The combination of these two methods accelerates the dissipation of heat from the adhesive inside the tank through different pathways, resulting in a faster reduction in the adhesive's temperature compared to a single cooling method.

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Abstract

The utility model belongs to the field of sizing agent production technology especially to a cooling device for sizing agent production, the inside fixed body of casing has the jar, the jar is fixed with spiral plate between casing, the lower portion of jar is provided with water tank, the top of water tank is fixed with casing, the top intercommunication of casing is fixed with annular inlet pipe, the bottom intercommunication of casing is fixed with two drain pipes, the bottom end of drain pipe all is fixed with water tank intercommunication. The utility model discloses a jar inside sizing agent adopts the mode of water cooling and air cooling simultaneously cooling, and water cooling carries away heat through circulating water, can directly and efficiently reduce the temperature of jar, and air cooling utilizes cold air to fall to the sizing agent of screw auger promotion and assists heat dissipation, thereby can further strengthen the heat dissipation process, after the combination of both, can accelerate the heat emission of the sizing agent in the jar from different ways, compared with single cooling mode, can reduce the temperature of sizing agent more quickly.
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Description

Technical Field

[0001] This utility model relates to the field of sizing agent production technology, specifically a cooling device for sizing agent production. Background Technology

[0002] Adhesives are substances that bond two or more materials together through physical or chemical action. They provide mechanical strength, durability, and other functionalities, ensuring the stability of the bonded materials under various environmental conditions. Adhesives are widely used in industries, construction, and home furnishings. Cooling devices are required during the production of adhesives to cool them down.

[0003] Since cooling devices used in sizing agent production typically employ water cooling, the sizing agent cannot come into contact with the cooling source during water cooling, resulting in uneven cooling and affecting the cooling effect. A single cooling method is inefficient. Therefore, we propose a cooling device for sizing agent production to solve the above problems. Utility Model Content

[0004] To address the shortcomings of existing technologies, this utility model provides a cooling device for sizing agent production, which solves the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model specifically adopts the following technical solution:

[0006] A cooling device for producing sizing agents includes a housing, a tank fixed inside the housing, a spiral plate fixed between the tank and the housing, a water tank below the tank, the housing fixed to the top of the water tank, an annular inlet pipe fixedly connected to the top of the housing, two drain pipes fixedly connected to the bottom of the housing, the bottom ends of the drain pipes being fixedly connected to the water tank, a water pump fixed to the back of the water tank, the inlet pipe of the water pump passing through the water tank and extending into its interior, the outlet pipe of the water pump being fixedly connected to the annular inlet pipe, two through holes on one side of the water tank each containing a cooling rod, a cylinder fixed inside the tank by a cross bracket, an auger rotatably connected to the tank by bearings inside the cylinder, and an air-cooling component on the tank for blowing air onto the liquid falling after being lifted by the auger.

[0007] Furthermore, the air-cooling assembly includes an annular air inlet pipe that is connected and fixed to the tank body, and nozzles that are connected and fixed in a ring array on the annular air inlet pipe. A cooling fan is fixed to the back of the water tank, and the air outlet pipe of the cooling fan is connected and fixed to the annular air inlet pipe.

[0008] Furthermore, the interior of the water tank is rotatably connected to two agitators via bearings, and gears are fixed to the surface of each agitator, with the two gears meshing with each other.

[0009] Furthermore, a rotating seat is fixed to the surface of the auger, and scrapers adapted to the tank body are fixed in a circular array on the rotating seat.

[0010] Furthermore, blades are fixed at equal intervals on one side wall of the scraper.

[0011] Furthermore, a cover plate is hinged to the opening at the top of the water tank, and a handle is fixed to the top of the cover plate.

[0012] Compared with the prior art, the present invention provides a cooling device for sizing agent production, which has the following beneficial effects:

[0013] This invention employs a combination of water cooling and air cooling to simultaneously cool the adhesive inside the tank. Water cooling removes heat through circulating water, directly and efficiently reducing the tank's temperature. Air cooling, on the other hand, continuously dissipates heat from the adhesive as it is lifted and descended by the auger, further enhancing the heat dissipation process. The combination of these two methods accelerates the dissipation of heat from the adhesive inside the tank through different pathways, resulting in a faster reduction in the adhesive's temperature compared to a single cooling method. Attached Figure Description

[0014] Figure 1 This is a first-view schematic diagram of the overall structure of this utility model;

[0015] Figure 2 This is a second-view schematic diagram of the overall structure of this utility model;

[0016] Figure 3 This is a cross-sectional view of the overall structure of this utility model.

[0017] In the diagram: 1. Shell; 2. Tank; 3. Spiral plate; 4. Water tank; 5. Annular inlet pipe; 6. Drain pipe; 7. Water pump; 8. Cooling rod; 9. Cylinder; 10. Screwdriver; 11. Air-cooled assembly; 1101. Annular air inlet pipe; 1102. Nozzle; 1103. Air cooler; 12. Agitator; 13. Gear; 14. Rotating seat; 15. Scraper; 16. Blade; 17. Cover plate. Detailed Implementation

[0018] 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.

[0019] Example

[0020] like Figure 1 , Figure 2 and Figure 3 As shown in the figure, a cooling device for producing adhesives according to one embodiment of this utility model includes a shell 1, a tank 2 fixed inside the shell 1, and an inlet pipe and a drain pipe connected and fixed to the tank 2 to facilitate the delivery and discharge of adhesives into and from the tank 2. A spiral plate 3 is fixed between the tank 2 and the shell 1. A water tank 4 is provided below the tank 2. A cover plate 17 is hinged to the opening at the top of the water tank 4. A handle is fixed to the top of the cover plate 17. The cover plate 17 facilitates the sealing of the water inlet of the water tank 4 to prevent dust and other impurities in the outside air from entering through the water inlet. The water tank 4 is inserted into the interior of the housing 1, which is fixed to the top of the housing 4. A ring-shaped inlet pipe 5 is fixedly connected to the top of the housing 1, and two drain pipes 6 are fixedly connected to the bottom of the housing 1. The bottom ends of the drain pipes 6 are both fixedly connected to the water tank 4. A water pump 7 is fixed to the back of the water tank 4. The inlet pipe of the water pump 7 passes through the water tank 4 and extends into its interior. The outlet pipe of the water pump 7 is fixedly connected to the ring-shaped inlet pipe 5. Two through holes on one side of the water tank 4 each contain a cooling rod 8. A cylinder 9 is fixed inside the tank 2 via a cross-shaped bracket. An auger 1, rotatably connected to the tank 2 via bearings, is installed inside the cylinder 9. 0. The tank 2 is equipped with a wind-cooling component 11 for blowing air onto the liquid falling after being lifted by the auger 10. During the cooling process of using this adhesive production cooling device, when it is necessary to cool the adhesive placed inside the tank 2, the water pump 7 is started. Under the action of the water pump 7, the cooling water inside the water tank 4 can be pumped into the cavity between the shell 1 and the tank 2, thereby cooling the tank 2 and thus cooling the adhesive inside. Under the action of the spiral plate 3, the flow time of the cooling water can be extended, and the used cooling water will flow back into the water tank 4 through the drain pipe 6. When the used cooling water flows back into the water tank 4, the two cooling rods 8 installed inside the tank can cool the returned cooling water, so that the cooling water inside the water tank 4 can always be kept at a low temperature, so as not to affect the subsequent use effect of the cooling water. In addition, while water cooling is being carried out, the motor can be started to drive the auger 10 to rotate. With the cooperation of the cylinder 9, when the auger 10 rotates, it can lift the adhesive and drop it through the protrusion of the cylinder 9. When the adhesive falls, the air cooling component 11 can continuously blow cold air to cool it, thus increasing the cooling speed of the adhesive inside the tank 2.

[0021] like Figure 2 and Figure 3As shown, in some embodiments, the air-cooling assembly 11 includes an annular air inlet pipe 1101 connected and fixed to the tank body 2. The annular air inlet pipe 1101 is connected and fixed with nozzles 1102 in an annular array. A cold air fan 1103 is fixed to the back of the water tank 4. The air outlet pipe of the cold air fan 1103 is connected and fixed to the annular air inlet pipe 1101. When in use, the cold air fan 1103 is started, and then the cold air fan 1103 can send the cold air it blows into the interior of the annular air inlet pipe 1101. Then the cold air can be blown out through multiple air nozzles 1102. At this time, the adhesive agent lifted and falling by the auger 10 can be cooled by blowing air.

[0022] like Figure 3 As shown, in some embodiments, two agitator paddles 12 are rotatably connected inside the water tank 4 via bearings. Gears 13 are fixed on the surface of each agitator paddle 12, and the two gears 13 mesh with each other. The agitator paddles 12 can be used to stir and mix the cooling water flowing back into the water tank 4, so as to avoid uneven cooling of the cooling water inside the water tank 4. The cooperation of the two gears 13 allows the two agitator paddles 12 to rotate synchronously in opposite directions under the action of a motor, thereby saving production costs.

[0023] like Figure 3 As shown, in some embodiments, a rotating seat 14 is fixed to the surface of the auger 10. Scrapers 15 adapted to the tank 2 are fixed in a circular array on the rotating seat 14. Blades 16 are fixed at equal intervals on one side wall of the scraper 15. When the auger 10 rotates, it can drive the rotating seat 14 to rotate. After the rotating seat 14 rotates, it can drive the scraper 15 to rotate. When the adhesive is discharged into the inside of the tank 2, it can prevent the adhesive from adhering to the inner wall of the tank 2. In addition, the blades 16 fixed on the scraper 15 can play an auxiliary role in stirring and mixing the adhesive when the scraper 15 rotates.

[0024] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.

Claims

1. A cooling device for producing sizing agents, comprising a housing (1), characterized in that: A tank (2) is fixed inside the shell (1). A spiral plate (3) is fixed between the tank (2) and the shell (1). A water tank (4) is provided below the tank (2). The shell (1) is fixed to the top of the water tank (4). An annular water inlet pipe (5) is fixedly connected to the top of the shell (1). Two drain pipes (6) are fixedly connected to the bottom of the shell (1). The bottom ends of the drain pipes (6) are fixedly connected to the water tank (4). A water pump (7) is fixed to the back of the water tank (4). The inlet pipe of the water tank (4) passes through the water tank (4) and extends into its interior. The outlet pipe of the water pump (7) is connected and fixed to the annular inlet pipe (5). The two through holes on one side of the water tank (4) are fixed with cooling rods (8). The inside of the tank (2) is fixed with a cylinder (9) by a cross bracket. The inside of the cylinder (9) is provided with an auger (10) that is rotatably connected to the tank (2) by a bearing. The tank (2) is provided with an air-cooling component (11) for blowing air on the liquid falling after the auger (10) is lifted.

2. The cooling device for producing sizing agents according to claim 1, characterized in that: The air-cooled assembly (11) includes an annular air inlet pipe (1101) connected and fixed on the tank body (2). The annular air inlet pipe (1101) is connected and fixed with nozzles (1102) in an annular array. A cold air fan (1103) is fixed on the back of the water tank (4). The air outlet pipe of the cold air fan (1103) is connected and fixed to the annular air inlet pipe (1101).

3. A cooling device for producing sizing agents according to claim 1, characterized in that: The water tank (4) has two agitators (12) rotatably connected inside by bearings. The surfaces of the agitators (12) are fixed with gears (13), and the two gears (13) mesh with each other.

4. A cooling device for producing sizing agents according to claim 1, characterized in that: The surface of the auger (10) is fixed with a rotating seat (14), and scrapers (15) adapted to the tank body (2) are fixed in a ring array on the rotating seat (14).

5. A cooling device for producing sizing agents according to claim 4, characterized in that: Blades (16) are fixed at equal intervals on one side wall of the scraper (15).

6. A cooling device for producing sizing agents according to claim 1, characterized in that: A cover plate (17) is hinged to the opening at the top of the water tank (4), and a handle is fixed to the top of the cover plate (17).