Cooling device for aluminum alloy part machining
By designing a multi-functional cooling device, the problems of bulky and difficult-to-dry existing cooling devices have been solved, achieving efficient cooling and drying of aluminum alloy parts, and improving the practicality of the equipment and the quality of the workpieces.
Patent Information
- Application Number
- CN202423122643.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-18
- Publication Date
- 2025-12-12
- Estimated Expiration
- 2034-12-18
AI Technical Summary
Existing cooling devices for aluminum alloy parts after processing are bulky, occupy a large area, and are difficult to dry quickly, which may lead to rust and affect the quality of the workpiece.
A cooling device comprising a main frame, a water tank, a cooling chamber, and a drying chamber was designed. Combining a drive mechanism with a cooling and drying mechanism, it enables multi-angle rotational cooling and drying of aluminum alloy parts. Cooling is achieved using a water pump and a spray nozzle, water is recovered through a filter screen, and drying is performed by a fan.
The cooling device is lightweight and energy-efficient, enabling it to quickly complete the cooling and drying processes, preventing rust, and improving the practicality of the equipment and the quality of the aluminum alloy parts.
Smart Images

Figure CN223663586U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of aluminum alloy parts processing technology, and in particular relates to a cooling device for aluminum alloy parts processing. Background Technology
[0002] Aluminum alloys are alloys based on aluminum with the addition of certain amounts of other alloying elements, and are one of the lightweight metal materials. In addition to the general properties of aluminum, aluminum alloys also have some specific alloy characteristics due to the different types and amounts of alloying elements added. They have good casting and plastic processing properties, good electrical and thermal conductivity, good corrosion resistance and weldability, and can be used as structural materials. They have wide applications in aerospace, aviation, transportation, construction, electromechanical, light chemical and daily consumer goods.
[0003] After aluminum alloy parts are processed, they need to be cooled, mostly by water cooling. However, existing cooling devices are bulky and take up a lot of space. In addition, the cooling devices cannot quickly dry the aluminum alloy parts, which may cause the parts to rust and thus affect the quality of the workpiece. Utility Model Content
[0004] In view of the above-mentioned shortcomings of the existing technology, the present invention provides a cooling device for processing aluminum alloy parts, which can effectively solve the problems of the existing technology.
[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:
[0006] This utility model relates to a cooling device for processing aluminum alloy parts, comprising a main frame and a water tank fixed to the lower end face of the main frame, and further comprising:
[0007] The placement cavity is located on one side of the upper end face of the main frame. A cooling cavity is provided on the counterclockwise side of the placement cavity, and a drying cavity is provided on the clockwise side of the placement cavity.
[0008] The support plate is set on the upper end face of the main frame, and the lower end face of the support plate is fixed with a drive mechanism to drive the support plate to rotate at multiple angles;
[0009] A first support frame is set on the upper end face of the support plate, and aluminum alloy components are set on the inner side of the first support frame.
[0010] The cooling mechanism, located inside the cooling chamber, is used to cool the aluminum alloy components within the support frame plate.
[0011] Furthermore, the driving mechanism includes a drive motor and a baffle plate. The drive motor is fixed at the center of the lower end face of the support plate, and the bottom of the drive motor is fixed to the inner wall of the main frame. The baffle plate is fixed to the upper end face of the support plate.
[0012] Furthermore, a filter screen is uniformly provided on the upper surface of the support plate.
[0013] Furthermore, the upper surface of the support plate is uniformly provided with a limiting groove, and the cross-section of the limiting groove is a "T" shaped structure, and the support frame plate slides left and right along the inside of the limiting groove for adjustment.
[0014] Furthermore, a connector is fixed to the upper end of the first support plate, and a second support plate is provided at the upper end of the connector. The connector is slidably embedded in the bottom of the second support plate, and the external structure of the first support plate and the second support plate are compatible.
[0015] Furthermore, the cooling mechanism includes a water pump body, a spray end, and a refrigeration component. The water pump body is connected to one side of the cooling chamber, and the other end of the water pump body is connected to the water tank. The spray end is evenly distributed on the inner wall of the cooling chamber and connected to the output end of the water pump body. The refrigeration component is located at the lower end of the inner wall of the water tank.
[0016] Furthermore, a fan body is provided on one side of the drying chamber, and an exhaust port is opened on the upper end face of the main frame, and the exhaust port is located at the upper end of the drying chamber.
[0017] This utility model has the following beneficial effects:
[0018] This invention reduces the footprint of the cooling device by incorporating a placement chamber, a cooling chamber, and a drying chamber within the main frame, making the equipment lighter and more energy-efficient. In conjunction with the drive mechanism, it rotates the support plate, allowing the aluminum alloy parts to undergo cooling and drying processes, further enhancing the equipment's practicality. Subsequently, the water pump and spray nozzle work together to cool the parts, and a filter screen filters the water produced by the cooling process, returning it to the water tank for subsequent recycling. Finally, the fan and exhaust port dry the parts, preventing rust and ensuring proper subsequent processing. Attached Figure Description
[0019] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0020] Figure 1 This is a top view schematic diagram of the cooling device for processing aluminum alloy parts according to this utility model;
[0021] Figure 2 This is a bottom view schematic diagram of the cooling device for processing aluminum alloy parts according to this utility model;
[0022] Figure 3 This is a schematic diagram of the internal structure of the main frame of this utility model;
[0023] Figure 4 This is a schematic cross-sectional view of the cooling device for processing aluminum alloy parts according to this utility model;
[0024] Figure 5 This is a schematic diagram of the first and second load-bearing frame plates of this utility model.
[0025] The attached diagram lists the components represented by each number as follows:
[0026] 1. Main frame; 2. Water tank; 3. Placement chamber; 4. Cooling chamber; 5. Drying chamber; 6. Support plate; 7. Drive motor; 8. Filter screen; 9. Baffle plate; 10. Limiting slide; 11. Support plate one; 12. Connector; 13. Support plate two; 14. Water pump body; 15. Injection end; 16. Fan body; 17. Exhaust port; 18. Refrigeration components. Detailed Implementation
[0027] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.
[0028] Please see Figure 1-5 As shown, this utility model is a cooling device for processing aluminum alloy parts, including a main frame 1 and a water tank 2 fixed to the lower end face of the main frame 1, and further including:
[0029] Placement cavity 3 is located on one side of the upper end face of main frame 1. Cooling cavity 4 is provided on the counterclockwise side of placement cavity 3, and air drying cavity 5 is provided on the clockwise side of placement cavity 3.
[0030] The support plate 6 is set on the upper end face of the main frame 1. The lower end face of the support plate 6 is fixed with a drive mechanism for driving the support plate 6 to rotate at multiple angles. The drive mechanism includes a drive motor 7 and a baffle plate 9. The drive motor 7 is fixed at the center of the lower end face of the support plate 6, and the bottom of the drive motor 7 is fixed to the inner wall of the main frame 1. The baffle plate 9 is fixed on the upper end face of the support plate 6. The support plate 6 is set in the main frame 1 through the placement cavity 3, cooling cavity 4 and drying cavity 5. When the drive motor 7 drives the support plate 6 to rotate counterclockwise, the support frame plate 11 and support frame plate 13 at the upper end of the support plate 6 can pass through the cooling cavity 4 and the drying cavity 5 in sequence and then rotate back to the placement cavity 3. This allows the aluminum alloy parts to complete the placement, cooling, drying and recycling processes, which further improves the applicability of the equipment. Since the time spent in the cooling cavity 4 and the drying cavity 5 can be selected as needed, the cooling and drying effect of the aluminum alloy parts can be guaranteed.
[0031] The upper surface of the support plate 6 is uniformly provided with filter screens 8. These filter screens 8 filter the water produced by water cooling and return it to the water tank 2 for subsequent recycling. A support frame plate 11 is located on the upper surface of the support plate 6, and aluminum alloy components are provided on its inner side. The upper surface of the support plate 6 is uniformly provided with limiting grooves 10, and the cross-section of the limiting grooves 10 is a "T" shape. The support frame plate 11 slides left and right along the inside of the limiting grooves 10, which limits the position of the support frame plate 11 and prevents it from shifting or wobbling. The first support plate 11 is then used to place aluminum alloy parts, facilitating subsequent processing. A connector 12 is fixed to the upper end of the first support plate 11, and a second support plate 13 is provided at the upper end of the connector 12. The connector 12 is slidably embedded into the bottom of the second support plate 13, and the external structure of the first support plate 11 and the second support plate 13 are compatible. The connector 12 can be slidably engaged inside the second support plate 13, thus connecting the first support plate 11 and the second support plate 13. Since multiple sets of the second support plate 13 can be provided, it is convenient to cool multiple sets of aluminum alloy parts simultaneously.
[0032] A cooling mechanism, located inside the cooling chamber 4, is used to cool the aluminum alloy components within the support frame plate 11. The cooling mechanism includes a water pump body 14, a spray nozzle 15, and a refrigeration assembly 18. The water pump body 14 is connected to one side of the cooling chamber 4, and its other end is connected to the water tank 2. The spray nozzle 15 is evenly distributed on the inner wall of the cooling chamber 4 and connected to the output end of the water pump body 14. The refrigeration assembly 18 is located at the lower end of the inner wall of the water tank 2. The refrigeration assembly 18 cools the water in the water tank 2, and the water is guided by the water pump body 14 to cool the water. The spray nozzle 15 sprays out to cool the aluminum alloy parts that rotate into the cooling chamber 4. A fan body 16 is provided on one side of the drying chamber 5, and an exhaust port 17 is provided on the upper end of the main frame 1. The exhaust port 17 is located at the upper end of the drying chamber 5. The fan body 16 can guide the gas and heat it through the heating wire inside the fan body 16, so as to dry the aluminum alloy parts that enter the drying chamber 5. This can prevent water stains from appearing on the aluminum alloy parts and causing corrosion. In addition, the exhaust port 17 can discharge the gas, so that it can be circulated.
[0033] The above are merely preferred embodiments of the present utility model and do not limit the present utility model. Any modifications, equivalent substitutions, or improvements made to the technical solutions described in the foregoing embodiments, or to some of the technical features, shall fall within the protection scope of the present utility model.
Claims
1. A cooling device for processing aluminum alloy parts, comprising a main frame (1) and a water tank (2) fixed to the lower end face of the main frame (1), characterized in that, Also includes: The placement cavity (3) is located on one side of the upper end face of the main frame (1). A cooling cavity (4) is provided on the counterclockwise side of the placement cavity (3), and a drying cavity (5) is provided on the clockwise side of the placement cavity (3). The bearing plate (6) is set on the upper end face of the main frame (1), and the lower end face of the bearing plate (6) is fixed with a driving mechanism to drive the bearing plate (6) to rotate at multiple angles; A support frame plate (11) is set on the upper end face of the support plate (6), and aluminum alloy parts are provided on the inner side of the support frame plate (11). The cooling mechanism is located inside the cooling chamber (4) and is used to cool the aluminum alloy parts in the support frame plate (11).
2. The cooling device for processing aluminum alloy parts according to claim 1, characterized in that, The driving mechanism includes a drive motor (7) and a baffle plate (9). The drive motor (7) is fixed at the center of the lower end face of the support plate (6). The bottom of the drive motor (7) is fixed to the inner wall of the main frame (1). The baffle plate (9) is fixed to the upper end face of the support plate (6).
3. The cooling device for processing aluminum alloy parts according to claim 1, characterized in that, The upper surface of the support plate (6) is uniformly provided with filter screens (8).
4. A cooling device for processing aluminum alloy parts according to claim 1, characterized in that, The upper surface of the bearing plate (6) is uniformly provided with a limiting groove (10), and the cross-section of the limiting groove (10) is a "T" shaped structure. The bearing frame plate (11) slides left and right along the inside of the limiting groove (10) for adjustment.
5. A cooling device for machining aluminum alloy parts according to claim 4, characterized in that, The upper end face of the first bearing plate (11) is fixed with a connector (12), and the upper end of the connector (12) is provided with a second bearing plate (13). The connector (12) is slidably embedded in the bottom of the second bearing plate (13), and the external structure of the first bearing plate (11) and the second bearing plate (13) matches.
6. A cooling device for machining aluminum alloy parts according to claim 1, characterized in that, The cooling mechanism includes a water pump body (14), a spray end (15), and a refrigeration component (18). The water pump body (14) is connected to one side of the cooling chamber (4), and the other end of the water pump body (14) is connected to the water tank (2). The spray end (15) is evenly arranged on the inner wall of the cooling chamber (4) and connected to the output end of the water pump body (14). The refrigeration component (18) is arranged at the lower end of the inner wall of the water tank (2).
7. A cooling device for machining aluminum alloy parts according to claim 1, characterized in that, A fan body (16) is provided on one side of the air drying chamber (5), and an exhaust port (17) is provided on the upper end face of the main frame (1), and the exhaust port (17) is located at the upper end of the air drying chamber (5).