Rapid cooling equipment for aluminum strip
By introducing a pre-cooling system and a surface water stain removal device into the aluminum strip cooling equipment, the problems of low cooling efficiency and surface water stains of aluminum strips are solved, achieving efficient cooling and clean aluminum strip processing.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HENAN YONGHENG TECHNOLOGY CO LTD
- Filing Date
- 2025-05-26
- Publication Date
- 2026-04-28
AI Technical Summary
Existing aluminum strip cooling equipment has low cooling efficiency and the aluminum strip surface is covered with a large amount of water stains, which affects subsequent processing.
Pre-cooling is achieved by using a combination of a first processing frame, a diversion frame, a water outlet, a pre-cooling tank, and a water pump. Combined with the design of a water-absorbing sponge, a pressure plate, a drive cylinder, and a triangular scraper, the aluminum strip is pre-cooled and surface water stains are removed.
It improves the cooling efficiency of the aluminum strip and effectively removes surface water stains, making subsequent processing easier.
Smart Images

Figure CN224168355U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of aluminum strip cooling technology, and in particular to a rapid cooling device for aluminum strip. Background Technology
[0002] Aluminum strips formed by casting and rolling mills need to be cooled after hot pressing, and then cold pressed to extrude the aluminum strips into various thicknesses. The aluminum strips are generally cooled in a cooling water tank. During the cooling process, the aluminum strips need to be submerged in the water in the cooling water tank.
[0003] Extensive research revealed that while existing cold water baths can cool aluminum strips, they lack proper pretreatment, resulting in low cooling efficiency. Furthermore, after cooling, a large amount of water stains adhere to the surface of the aluminum strip, affecting subsequent processing.
[0004] Therefore, it is necessary to provide a rapid cooling device for aluminum strips to solve the above-mentioned technical problems. Utility Model Content
[0005] This invention provides a rapid cooling device for aluminum strips, which solves the problems in the background art.
[0006] To solve the above-mentioned technical problems, this utility model provides a rapid cooling device for aluminum strip, including a water-cooling tank body. A first processing frame and a second processing frame are respectively installed at both ends of the water-cooling tank body. A first drainage hopper is provided through the bottom of the first processing frame, and a pre-cooling tank is provided through the bottom of the first drainage hopper. A diversion frame is installed at the top inside the first processing frame, and a water outlet is installed on the bottom surface of the diversion frame. A water pump is installed on the top surface of the first processing frame. The output and input ends of the water pump are respectively connected to the diversion frame and the pre-cooling tank via water pipes. By using the first processing frame, diversion frame, water outlet, pre-cooling tank, and water pump in coordination, the aluminum strip can be pre-cooled before cooling. During operation, the aluminum strip is transported to the first processing frame, and then the water pump is started. Under the action of the water pump, the liquid inside the pre-cooling tank is drawn into the diversion frame and then sprayed out through the water outlet to pre-cool the aluminum strip. This method is simple to operate, changes the traditional single cooling method, and improves the cooling efficiency of the aluminum strip.
[0007] Preferably, the second processing frame is equipped with an absorbent sponge, and a conveying channel is formed through the end face of the absorbent sponge. A mounting frame is installed on the top surface of the second processing frame, and a driving cylinder is installed on the top surface of the mounting frame. A pressure plate is installed through the output end of the driving cylinder on the top surface of the second processing frame. A second drainage hopper is installed at the bottom of the second processing frame, and a filter hole is formed at the bottom of the interior of the second processing frame. By using the first processing frame, absorbent sponge, conveying channel, pressure plate, and driving cylinder in coordination, after the aluminum strip is output from the water-cooling tank body, it enters the second processing frame and then passes through the conveying channel in the absorbent sponge, allowing the absorbent sponge to absorb water stains on the surface of the aluminum strip. After the conveying is completed, the driving cylinder is activated, and then the driving cylinder drives the pressure plate to squeeze the absorbent sponge, squeezing out the water in the absorbent sponge, and then discharging it through the filter hole. This method is simple to operate and facilitates the subsequent conveying and processing of the aluminum strip.
[0008] Preferably, a threaded drive rod is spirally connected to the top surface of the first processing frame, and a triangular scraper is movably mounted at the bottom end of the threaded drive rod. A limit hole is formed on the top surface of the first processing frame, and a limit rod is slidably inserted into the limit hole. The bottom end of the limit rod is fixed to the top surface of the triangular scraper. By setting the threaded drive rod, the limit rod, the limit hole, and the triangular scraper in cooperation, it is convenient to scrape water off the surface of the pre-treated aluminum strip. When the aluminum strip is conveyed inside the first processing frame, the threaded drive rod is rotated, causing it to drive the triangular scraper to move downward. Then, the bottom end of the triangular scraper contacts the surface of the aluminum strip, so that during subsequent pre-cooling, the liquid on its surface can be scraped off by the triangular scraper and then collected into the pre-cooling tank through the first drainage hopper for reuse.
[0009] Preferably, a first conveying roller is movably installed at the bottom of the first and second processing frames. By setting the first conveying roller, it is convenient to transport the aluminum strip entering the first and second processing frames.
[0010] Preferably, a second conveyor roller is installed inside the water cooling tank body. Two sets of the second conveyor roller are provided. By setting the second conveyor roller, it is convenient to cool the aluminum strip entering the cold water tank body.
[0011] Preferably, a controller is installed on the surface of the water-cooled tank body, and a drain pipe is provided through the surface of the water-cooled tank body. By setting the controller, it is convenient to control the internal parts of the equipment.
[0012] Compared with related technologies, the aluminum strip rapid cooling device provided by this utility model has the following beneficial effects:
[0013] Compared with existing technologies, this rapid cooling equipment for aluminum strips, through the coordinated use of a first processing frame, a diversion frame, a water outlet, a pre-cooling tank, and a water pump, facilitates pre-cooling of the aluminum strip before cooling. During operation, the aluminum strip is conveyed to the first processing frame, then the water pump is started. The pump draws liquid from the pre-cooling tank into the diversion frame, and then sprays it out through the water outlet to pre-cool the aluminum strip. This method is simple to operate, changes the traditional single-cooling method, and improves the cooling efficiency of the aluminum strip. The coordinated use of the first processing frame, absorbent sponge, conveying channel, pressure plate, and drive cylinder ensures that after the aluminum strip is output from the water-cooling tank, it enters the second processing frame and then passes through the conveying channel in the absorbent sponge. The process involves using a water-absorbing sponge to absorb water stains from the aluminum strip surface. After conveying, a drive cylinder is activated, which then moves a pressure plate to squeeze the water-absorbing sponge, expelling the water through a filter. This method is simple to operate and facilitates subsequent conveying and processing of the aluminum strip. The coordinated use of a threaded drive rod, limit rod, limit hole, and triangular scraper frame facilitates scraping water from the pre-treated aluminum strip surface. While the aluminum strip is conveyed within the first processing frame, rotating the threaded drive rod causes the triangular scraper frame to move downwards. The bottom of the scraper frame then contacts the aluminum strip surface, allowing the surface liquid to be scraped off during subsequent pre-cooling. The liquid is then collected in the first drainage hopper and stored in the pre-cooling tank for reuse.
[0014] The parts of the device not covered herein are the same as or can be implemented using existing technologies. Attached Figure Description
[0015] Figure 1 A schematic diagram of the structure of an aluminum strip rapid cooling device provided by this utility model;
[0016] Figure 2 A schematic diagram of the first processing frame structure of an aluminum strip rapid cooling device provided by this utility model;
[0017] Figure 3 A schematic diagram of the second processing frame structure of an aluminum strip rapid cooling device provided by this utility model;
[0018] Figure 4 A schematic diagram of the triangular scraper structure of an aluminum strip rapid cooling device provided by this utility model.
[0019] Numbering on the map:
[0020] 1. Water-cooled tank body; 2. First processing frame; 3. Water pump; 4. Threaded drive rod; 5. Second conveyor roller; 6. Controller; 7. Drive cylinder; 8. Mounting bracket; 9. Second processing frame; 10. Second drainage hopper; 11. First drainage hopper; 12. Pre-cooling tank; 13. First conveyor roller; 14. Limiting rod; 15. Triangular scraper frame; 16. Diverter frame; 17. Pressure plate; 18. Water outlet; 19. Absorbent sponge; 20. Filter holes. Detailed Implementation
[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.
[0022] First Embodiment
[0023] Please refer to the following: Figure 1-4 A rapid cooling device for aluminum strip includes a water-cooled tank body 1. A first processing frame 2 and a second processing frame 9 are respectively installed at both ends of the water-cooled tank body 1. A first drainage hopper 11 is provided through the bottom end of the first processing frame 2, and a pre-cooling tank 12 is provided through the bottom end of the first drainage hopper 11. A diversion frame 16 is installed at the top inside the first processing frame 2, and a water outlet 18 is installed on the bottom surface of the diversion frame 16. A water pump 3 is installed on the top surface of the first processing frame 2. The output and input ends of the water pump 3 are connected to the diversion frame 16 and the pre-cooling tank 12 respectively via water pipes. The cooling tank 12 is connected in a continuous manner. By setting up a first processing frame 2, a diversion frame 16, a water outlet 18, a pre-cooling tank 12, and a water pump 3, it is convenient to pre-cool the aluminum strip before cooling it. During operation, the aluminum strip is transported to the first processing frame 2, and then the water pump 3 is started. Under the action of the water pump 3, the liquid inside the pre-cooling tank 12 is drawn into the diversion frame 16 and then sprayed out through the water outlet 18 to pre-cool the aluminum strip. This method is simple to operate, changes the traditional single cooling method, and improves the cooling efficiency of the aluminum strip.
[0024] The working principle of the rapid cooling device for aluminum strip provided by this utility model is as follows:
[0025] This type of rapid cooling equipment for aluminum strips, through the coordinated use of a first processing frame 2, a diversion frame 16, a water outlet 18, a pre-cooling tank 12, and a water pump 3, facilitates the pre-cooling of the aluminum strip during the cooling process. During operation, the aluminum strip is conveyed to the first processing frame 2, then the water pump 3 is activated. Under the action of the water pump 3, the liquid inside the pre-cooling tank 12 is drawn into the diversion frame 16 and then sprayed out through the water outlet 18 to pre-cool the aluminum strip. This method is simple to operate, changes the traditional single cooling method, and improves the cooling efficiency of the aluminum strip. Through the coordinated use of the first processing frame 2, water-absorbing sponge 19, conveying channel, pressure plate 17, and drive cylinder 7, after the aluminum strip is output from the water-cooling tank body 1, it enters the second processing frame 9 and then passes through the conveying channel in the water-absorbing sponge 19, allowing water to be absorbed. The sponge 19 absorbs water stains on the surface of the aluminum strip. After the conveying is completed, the drive cylinder 7 is started, and then the drive cylinder 7 drives the pressure plate 17 to squeeze the water-absorbing sponge 19, squeezing out the water from the sponge 19 and then discharging it through the filter hole 20. This method is simple to operate and facilitates the subsequent conveying and processing of the aluminum strip. By setting the threaded drive rod 4, the limiting rod 14, the limiting hole and the triangular scraper 15 in cooperation, it is easy to scrape water off the surface of the pre-treated aluminum strip. When the aluminum strip is conveyed inside the first processing frame 2, the threaded drive rod 4 is rotated, which drives the triangular scraper 15 to move downward. Then the bottom end of the triangular scraper 15 contacts the surface of the aluminum strip, so that during the subsequent pre-cooling, the liquid on its surface can be scraped off by the triangular scraper 15 and then collected into the pre-cooling box 12 through the first drain hopper 11 for reuse.
[0026] Compared with related technologies, the aluminum strip rapid cooling device provided by this utility model has the following beneficial effects:
[0027] This type of rapid cooling equipment for aluminum strips, through the coordinated use of a first processing frame 2, a diversion frame 16, a water outlet 18, a pre-cooling tank 12, and a water pump 3, facilitates the pre-cooling of the aluminum strip during the cooling process. During operation, the aluminum strip is conveyed to the first processing frame 2, then the water pump 3 is activated. Under the action of the water pump 3, the liquid inside the pre-cooling tank 12 is drawn into the diversion frame 16 and then sprayed out through the water outlet 18 to pre-cool the aluminum strip. This method is simple to operate, changes the traditional single cooling method, and improves the cooling efficiency of the aluminum strip. Through the coordinated use of the first processing frame 2, water-absorbing sponge 19, conveying channel, pressure plate 17, and drive cylinder 7, after the aluminum strip is output from the water-cooling tank body 1, it enters the second processing frame 9 and then passes through the conveying channel in the water-absorbing sponge 19, allowing water to be absorbed. The sponge 19 absorbs water stains on the surface of the aluminum strip. After the conveying is completed, the drive cylinder 7 is started, and then the drive cylinder 7 drives the pressure plate 17 to squeeze the water-absorbing sponge 19, squeezing out the water from the sponge 19 and then discharging it through the filter hole 20. This method is simple to operate and facilitates the subsequent conveying and processing of the aluminum strip. By setting the threaded drive rod 4, the limiting rod 14, the limiting hole and the triangular scraper 15 in cooperation, it is easy to scrape water off the surface of the pre-treated aluminum strip. When the aluminum strip is conveyed inside the first processing frame 2, the threaded drive rod 4 is rotated, which drives the triangular scraper 15 to move downward. Then the bottom end of the triangular scraper 15 contacts the surface of the aluminum strip, so that during the subsequent pre-cooling, the liquid on its surface can be scraped off by the triangular scraper 15 and then collected into the pre-cooling box 12 through the first drain hopper 11 for reuse.
[0028] Second Embodiment
[0029] Please refer to the following: Figure 1-4 Based on the first embodiment of this application, which provides a rapid cooling device for aluminum strips, the second embodiment of this application proposes another rapid cooling device for aluminum strips. The second embodiment is merely a preferred embodiment of the first embodiment, and the implementation of the second embodiment will not affect the separate implementation of the first embodiment.
[0030] Based on Example 1, see [link / reference] Figure 1-4The second processing frame 9 is equipped with an absorbent sponge 19, and a conveying channel is opened through the end face of the absorbent sponge 19. A mounting frame 8 is installed on the top surface of the second processing frame 9, and a driving cylinder 7 is installed on the top surface of the mounting frame 8. A pressure plate 17 is installed through the output end of the driving cylinder 7 through the top surface of the second processing frame 9. A second drainage hopper 10 is installed at the bottom of the second processing frame 9, and a filter hole 20 is opened at the bottom of the interior of the second processing frame 9. By setting up the first processing frame 2, the absorbent sponge 19, the conveying channel, the pressure plate 17, and the driving cylinder 7 in cooperation, after the aluminum strip is output from the water cooling tank body 1, it enters the second processing frame 9 and then passes through the conveying channel in the absorbent sponge 19, so that the absorbent sponge 19 absorbs the water stains on the surface of the aluminum strip. After the conveying is completed, the driving cylinder 7 is activated, and then the driving cylinder 7 drives the pressure plate 17 to squeeze the absorbent sponge 19, squeeze out the water in the absorbent sponge 19, and then discharge it through the filter hole 20. This method is simple to operate and facilitates the subsequent conveying and processing of the aluminum strip.
[0031] Based on Example 1, see [link / reference] Figure 1-4 The top surface of the first processing frame 2 is helically connected to a threaded drive rod 4, and a triangular scraper 15 is movably mounted on the bottom end of the threaded drive rod 4. A limiting hole is opened on the top surface of the first processing frame 2, and a limiting rod 14 is slidably inserted into the limiting hole. The bottom end of the limiting rod 14 is fixed to the top surface of the triangular scraper 15. By setting the threaded drive rod 4, the limiting rod 14, the limiting hole and the triangular scraper 15 in cooperation, it is convenient to scrape water off the surface of the pre-treated aluminum strip. When the aluminum strip is conveyed inside the first processing frame 2, the threaded drive rod 4 is rotated, which drives the triangular scraper 15 to move downward. Then the bottom end of the triangular scraper 15 contacts the surface of the aluminum strip, so that during subsequent pre-cooling, the liquid on its surface can be scraped off by the triangular scraper 15 and then collected into the pre-cooling tank 12 through the first drainage hopper 11 for reuse.
[0032] Based on Example 1, see [link / reference] Figure 1-4 The first processing frame 2 and the second processing frame 9 are movably installed with a first conveying roller 13 at their bottom ends. By setting the first conveying roller 13, it is convenient to transport the aluminum strips that enter the first processing frame 2 and the second processing frame 9.
[0033] Based on Example 1, see [link / reference] Figure 1-4 The water-cooling tank body 1 is equipped with a second conveying roller 5. There are two sets of the second conveying roller 5. By setting the second conveying roller 5, it is convenient to cool the aluminum strip entering the water-cooling tank body.
[0034] Based on Example 1, see [link / reference] Figure 1-4A controller 6 is installed on the surface of the water-cooled tank body 1, and a drain pipe is provided through the surface of the water-cooled tank body 1. By setting the controller 6, it is convenient to control the internal parts of the equipment. The control circuit of the control panel can be implemented by simple programming by those skilled in the art. It is common knowledge in the art. It is only used and not modified. Therefore, the control method and circuit connection will not be described in detail.
[0035] It should be noted that all components used in this application are standard parts that can be purchased from the market. The specific connection methods of each part adopt conventional methods such as bolts, rivets and welding that are mature in the prior art. The mechanical parts and electrical equipment adopt conventional models in the prior art. The circuit connection adopts conventional connection methods in the prior art. The electrical equipment is connected to an external safe power source. These will not be described in detail here.
[0036] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent structural or procedural transformations made based on the content of this utility model specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the patent protection scope of this utility model.
Claims
1. A rapid cooling device for aluminum strips, comprising a water-cooling tank body (1), characterized in that, The water-cooled tank body (1) is equipped with a first processing frame (2) and a second processing frame (9) at both ends. A first drainage hopper (11) is provided through the bottom of the first processing frame (2). A pre-cooling box (12) is provided through the bottom of the first drainage hopper (11). A diversion frame (16) is installed at the top inside the first processing frame (2). A water outlet (18) is installed on the bottom surface of the diversion frame (16). A water pump (3) is installed on the top surface of the first processing frame (2). The output end and input end of the water pump (3) are connected through water pipes to the diversion frame (16) and the pre-cooling box (12) respectively.
2. The rapid cooling device for aluminum strip according to claim 1, characterized in that, The second processing frame (9) is provided with an absorbent sponge (19) inside. The end face of the absorbent sponge (19) is provided with a conveying channel. The top surface of the second processing frame (9) is provided with a mounting bracket (8). The top surface of the mounting bracket (8) is provided with a driving cylinder (7). The output end of the driving cylinder (7) is provided with a pressure plate (17) through the top surface of the second processing frame (9). The bottom end of the second processing frame (9) is provided with a second drainage bucket (10). The bottom end of the second processing frame (9) is provided with a filter hole (20).
3. The rapid cooling device for aluminum strip according to claim 1, characterized in that, The top surface of the first processing frame (2) is spirally connected with a threaded drive rod (4), and a triangular wiper frame (15) is movably installed at the bottom end of the threaded drive rod (4). A limit hole is opened on the top surface of the first processing frame (2), and a limit rod (14) is slidably inserted into the limit hole. The bottom end of the limit rod (14) is fixed to the top surface of the triangular wiper frame (15).
4. The rapid cooling device for aluminum strip according to claim 1, characterized in that, The first processing frame (2) and the second processing frame (9) are movably mounted at their bottom ends.
5. The rapid cooling device for aluminum strip according to claim 1, characterized in that, The water-cooling tank body (1) is equipped with a second conveyor roller (5), and there are two sets of the second conveyor roller (5).
6. The aluminum strip rapid cooling device according to claim 1, characterized in that, A controller (6) is installed on the surface of the water-cooled tank body (1), and a drain pipe is provided through the surface of the water-cooled tank body (1).