Air cooler water distribution box anti-blocking structure
Patent Information
- Application Number
- CN202522099280.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-29
- Publication Date
- 2026-09-22
- Estimated Expiration
- 2035-09-29
AI Technical Summary
[0002]空冷器分水箱是空冷器冷却系统中的重要部件,主要用于将冷却水分配到各个冷却管或冷却回路中,以实现均匀冷却的目的,为了避免空冷器分水箱进水时,进水口产生堵塞,影响装置稳定运作,从而需要一种空冷器分水箱防堵结构
1、该空冷器分水箱防堵结构,通过连接管与圆板的配合使用,当与连接管对接的滤板受到堵塞时,在连接管的底部转动圆板,从而辅助滤板进行替换,当需要对受到堵塞的滤板进行拆卸时,转动圆环,从而利用圆环通过弧型槽带动调节板移动,进而利用调节板带动滑板移动,从而辅助滑板的侧面远离滤板的内壁,进而辅助滤板的外沿与圆板的内壁相分离,进而辅助滤板实现快速拆卸维护。
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Figure CN224787825U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of air cooler water distribution tanks, specifically an anti-clogging structure for air cooler water distribution tanks. Background Technology
[0002] The air cooler water distribution tank is an important component in the air cooler cooling system. It is mainly used to distribute cooling water to various cooling pipes or cooling circuits to achieve uniform cooling. In order to avoid the water inlet of the air cooler water distribution tank becoming blocked when water enters, which would affect the stable operation of the device, an anti-blocking structure for the air cooler water distribution tank is needed.
[0003] Traditional air cooler water tank anti-clogging structures involve installing a filter screen at the water inlet of the water tank to assist in filtration. However, the inner wall of the traditional filter screen is easily clogged by the external environment, requiring easy disassembly and replacement. Disassembly requires rotating the bolts and nuts of the flange connection, which affects the efficiency of disassembly and replacement of the device. Utility Model Content
[0004] To address the shortcomings of existing technologies, this utility model provides an anti-clogging structure for the water distribution tank of an air cooler, thereby solving the problems mentioned in the background section.
[0005] This utility model provides the following technical solution: an anti-clogging structure for an air cooler water distribution tank, comprising a water distribution tank body, an inlet pipe fixedly sleeved on the inner wall near the top of the water distribution tank body, an mounting bracket fixedly sleeved on the outer edge of the inlet pipe, a connecting pipe fixedly sleeved on the inner wall of the mounting bracket, a circular plate rotatably connected to the bottom of the connecting pipe, a sliding groove formed on the top of the circular plate, a sliding plate slidably connected to the inner wall of the sliding groove, a filter plate slidably connected to the inner wall of the circular plate, the side of the sliding plate passing through the inner wall of the circular plate and slidably connected to the inner wall of the filter plate, an mounting plate fixedly assembled on the outer edge near the bottom of the water distribution tank body, a sliding cylinder fixedly assembled on the bottom of the mounting plate, an outer cylinder slidably sleeved on the outer edge of the sliding cylinder, and a bottom plate fixedly assembled on the bottom of the outer cylinder.
[0006] As a preferred technical solution of this utility model, the top of the circular plate is rotatably connected to a circular ring, the top of the circular ring is provided with an arc-shaped groove, the inner wall of the arc-shaped groove is slidably connected to an adjusting plate, and the bottom of the adjusting plate is fixedly assembled with the top of the sliding plate.
[0007] As a preferred embodiment of this utility model, a push plate is fixedly mounted on the outer edge of the ring, a fixing plate is fixedly mounted on the outer edge of the circular plate, and an arc-shaped spring is fixedly connected to the side of the fixing plate, with the end of the arc-shaped spring away from the fixing plate being fixedly connected to the side of the push plate.
[0008] As a preferred embodiment of this utility model, a magnet ring is fixedly mounted at the bottom of the slide cylinder, and a coil is fixedly sleeved on the inner wall of the outer cylinder, with the inner wall of the coil slidably sleeved with the outer edge of the magnet ring.
[0009] As a preferred embodiment of this utility model, a sliding rod is fixedly sleeved on the inner wall of the sliding cylinder near the top. The top of the sliding rod is fixedly assembled with the bottom of the mounting plate. An inner cylinder is slidably sleeved on the outer edge of the sliding rod. The bottom of the inner cylinder is fixedly assembled with the bottom of the inner wall of the outer cylinder. The outer edge of the inner cylinder is slidably sleeved with the inner wall of the sliding cylinder.
[0010] As a preferred embodiment of this utility model, there are two base plates, and two outer cylinders are fixedly mounted on the top of each base plate, with the connection structure of the inner walls of the two outer cylinders being completely identical.
[0011] Compared with the prior art, the present invention has the following beneficial effects: 1. The anti-clogging structure of the air cooler's water tank, through the cooperation of the connecting pipe and the circular plate, allows the filter plate connected to the connecting pipe to be rotated at the bottom of the connecting pipe when it becomes clogged, thus assisting in the replacement of the filter plate. When it is necessary to disassemble the clogged filter plate, the circular ring is rotated, thereby using the circular ring to drive the adjusting plate to move through the arc groove, and then using the adjusting plate to drive the sliding plate to move, thus assisting the side of the sliding plate to move away from the inner wall of the filter plate, thereby assisting the outer edge of the filter plate to separate from the inner wall of the circular plate, and thus assisting in the quick disassembly and maintenance of the filter plate.
[0012] 2. The anti-clogging structure of the air cooler's water distribution tank utilizes the cooperation of the sliding cylinder and the outer cylinder. When the water distribution tank body vibrates during operation, the outer edge of the sliding cylinder slides within the inner wall of the outer cylinder. This causes the magnetic ring to slide within the inner wall of the coil, which in turn generates electromagnetic damping on the magnetic ring. This helps to reduce vibration in the water distribution tank body. Furthermore, the sliding rod moves with the sliding cylinder, and its outer edge slides within the inner wall of the inner cylinder, further ensuring stable vibration reduction operation of the water distribution tank body. Attached Figure Description
[0013] Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is a cross-sectional structural diagram of the water distribution tank body of this utility model; Figure 3 This is a cross-sectional view of the filter plate of this utility model; Figure 4 This is a schematic cross-sectional view of the slide bar structure of this utility model; Figure 5 This utility model Figure 4 Enlarged structural diagram at point A in the middle; Figure 6This is a schematic diagram of the circular ring structure of this utility model.
[0014] In the diagram: 1. Water tank body; 2. Inlet pipe; 3. Mounting bracket; 4. Connecting pipe; 5. Circular plate; 6. Slide groove; 7. Slide plate; 8. Filter plate; 9. Base plate; 10. Adjusting plate; 11. Circular ring; 12. Arc groove; 13. Push plate; 14. Fixing plate; 15. Arc spring; 16. Mounting plate; 17. Slide rod; 18. Slide cylinder; 19. Outer cylinder; 20. Coil; 21. Magnet ring; 22. Inner cylinder. Detailed Implementation
[0015] 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.
[0016] Please see Figures 1-6 A clog-resistant structure for an air cooler water tank includes a water tank body 1. An inlet pipe 2 is fixedly sleeved on the inner wall of the water tank body 1 near the top. A mounting bracket 3 is fixedly sleeved on the outer edge of the inlet pipe 2. A connecting pipe 4 is fixedly sleeved on the inner wall of the mounting bracket 3. A circular plate 5 is rotatably connected to the bottom of the connecting pipe 4. A groove 6 is formed on the top of the circular plate 5. A sliding plate 7 is slidably connected to the inner wall of the groove 6. A filter plate 8 is slidably connected to the inner wall of the circular plate 5. The side of the sliding plate 7 passes through the inner wall of the circular plate 5 and is slidably connected to the inner wall of the filter plate 8. A mounting plate 16 is fixedly mounted on the outer edge near the bottom. A sliding cylinder 18 is fixedly mounted on the bottom of the mounting plate 16. An outer cylinder 19 is slidably sleeved on the outer edge of the sliding cylinder 18. A base plate 9 is fixedly mounted on the bottom of the outer cylinder 19. Through the cooperation of the circular plate 5 and the filter plate 8, the outer edge of the filter plate 8 is slidably placed on the inner wall of the circular plate 5. Then, the side of the sliding plate 7 slides in the inner wall of the sliding groove 6, so that the side of the sliding plate 7 passes through the inner wall of the circular plate 5 and connects with the inner wall of the filter plate 8, thereby helping the filter plate 8 to be stably mounted in the inner wall of the circular plate 5.
[0017] In a preferred embodiment, a ring 11 is rotatably connected to the top of the circular plate 5. An arc-shaped groove 12 is formed on the top of the ring 11. An adjusting plate 10 is slidably connected to the inner wall of the arc-shaped groove 12. The bottom of the adjusting plate 10 is fixedly assembled with the top of the slide plate 7. By using the ring 11 and the arc-shaped groove 12 in cooperation, the ring 11 rotates on the top of the circular plate 5, thereby pushing the adjusting plate 10 to move by the inner wall of the arc-shaped groove 12. In turn, the adjusting plate 10 drives the slide plate 7 to perform stable position adjustment.
[0018] In a preferred embodiment, a push plate 13 is fixedly mounted on the outer edge of the ring 11, and a fixing plate 14 is fixedly mounted on the outer edge of the circular plate 5. An arc-shaped spring 15 is fixedly connected to the side of the fixing plate 14, and the end of the arc-shaped spring 15 away from the fixing plate 14 is fixedly connected to the side of the push plate 13. Through the cooperation of the arc-shaped spring 15 and the push plate 13, the arc-shaped spring 15 pushes the push plate 13 to move on the side of the fixing plate 14, thereby using the push plate 13 to drive the ring 11 to assist in limiting the position, and then assisting the adjusting plate 10 to drive the sliding plate 7 to limit the position.
[0019] In a preferred embodiment, a magnet ring 21 is fixedly mounted on the bottom of the slide cylinder 18, and a coil 20 is fixedly sleeved on the inner wall of the outer cylinder 19. The inner wall of the coil 20 is slidably sleeved with the outer edge of the magnet ring 21. Through the cooperation of the magnet ring 21 and the coil 20, the outer edge of the slide cylinder 18 slides in the inner wall of the outer cylinder 19, thereby driving the magnet ring 21 to slide in the inner wall of the coil 20. The coil 20 then generates electromagnetic damping on the magnet ring 21, thereby assisting the slide cylinder 18 in shock absorption.
[0020] In a preferred embodiment, a slide rod 17 is fixedly sleeved on the inner wall of the slide cylinder 18 near the top. The top of the slide rod 17 is fixedly assembled with the bottom of the mounting plate 16. The outer edge of the slide rod 17 is slidably sleeved with an inner cylinder 22. The bottom of the inner cylinder 22 is fixedly assembled with the bottom of the inner wall of the outer cylinder 19. The outer edge of the inner cylinder 22 is slidably sleeved with the inner wall of the slide cylinder 18. Through the cooperation of the slide rod 17 and the inner cylinder 22, the outer edge of the slide rod 17 slides in the inner wall of the inner cylinder 22, thereby further assisting in limiting the shock absorption path of the device.
[0021] In a preferred embodiment, there are two base plates 9, and two outer cylinders 19 are fixedly mounted on the top of each of the two base plates 9. The connection structure of the inner walls of the two outer cylinders 19 is completely identical. The two base plates 9 provide auxiliary support at the bottom of the water distribution tank body 1, thereby ensuring the stable support and erection of the water distribution tank body 1.
[0022] Working principle: When the device is in use, the filter plate 8 mounted on the top of the inlet pipe 2 becomes blocked, causing the circular plate 5 at the bottom of the connecting pipe 4 to rotate, thereby assisting in the replacement of the filter plate 8. Then, the circular ring 11 is rotated, and the circular ring 11 drives the adjusting plate 10 to adjust its position through the arc groove 12. The adjusting plate 10 drives the sliding plate 7 to adjust its position, thereby using the side of the sliding plate 7 to move away from the inner wall of the filter plate 8, thus assisting the filter plate 8 to move away from the inner wall of the circular plate 5, thereby assisting in the quick disassembly and replacement of the filter plate 8. When the water distribution tank body 1 is in operation, the water distribution tank body 1 drives the outer edge of the sliding rod 17 to slide in the inner wall of the inner cylinder 22 through the mounting plate 16, and drives the outer edge of the sliding cylinder 18 to slide in the inner wall of the outer cylinder 19, and drives the inner wall of the sliding cylinder 18 to slide in the outer edge of the inner cylinder 22. The sliding cylinder 18 drives the magnetic ring 21 to slide in the inner wall of the coil 20, thereby using the coil 20 to generate electromagnetic damping on the magnetic ring 21, thereby assisting in the stable vibration reduction of the water distribution tank body 1.
[0023] Although embodiments of the present invention have been shown and described, 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. An anti-clogging structure for an air cooler water distribution tank, comprising a water distribution tank body (1), characterized in that: The water distribution tank body (1) is fixedly fitted with an inlet pipe (2) on the inner wall near the top. The outer edge of the inlet pipe (2) is fixedly fitted with an mounting bracket (3). The inner wall of the mounting bracket (3) is fixedly fitted with a connecting pipe (4). The bottom of the connecting pipe (4) is rotatably connected with a circular plate (5). The top of the circular plate (5) is provided with a sliding groove (6). The inner wall of the sliding groove (6) is slidably connected with a sliding plate (7). The inner wall of the circular plate (5) is slidably connected with a filter plate (8). The side of the sliding plate (7) passes through the inner wall of the circular plate (5) and is slidably connected with the inner wall of the filter plate (8). The outer edge of the water distribution tank body (1) is fixedly fitted with an mounting plate (16) near the bottom. The bottom of the mounting plate (16) is fixedly fitted with a sliding cylinder (18). The outer edge of the sliding cylinder (18) is slidably fitted with an outer cylinder (19). The bottom of the outer cylinder (19) is fixedly fitted with a bottom plate (9).
2. The anti-clogging structure for the water distribution tank of an air cooler according to claim 1, characterized in that: The top of the circular plate (5) is rotatably connected to a ring (11), and the top of the ring (11) is provided with an arc groove (12). The inner wall of the arc groove (12) is slidably connected to an adjusting plate (10), and the bottom of the adjusting plate (10) is fixedly assembled with the top of the sliding plate (7).
3. The anti-clogging structure for the water distribution tank of an air cooler according to claim 2, characterized in that: A push plate (13) is fixedly mounted on the outer edge of the ring (11), and a fixing plate (14) is fixedly mounted on the outer edge of the circular plate (5). An arc-shaped spring (15) is fixedly connected to the side of the fixing plate (14), and the end of the arc-shaped spring (15) away from the fixing plate (14) is fixedly connected to the side of the push plate (13).
4. The anti-clogging structure for the water distribution tank of an air cooler according to claim 1, characterized in that: A magnet ring (21) is fixedly fitted at the bottom of the slide cylinder (18), and a coil (20) is fixedly sleeved on the inner wall of the outer cylinder (19). The inner wall of the coil (20) is slidably sleeved with the outer edge of the magnet ring (21).
5. The anti-clogging structure for the water distribution tank of an air cooler according to claim 1, characterized in that: The inner wall of the slide cylinder (18) near the top is fixedly sleeved with a slide rod (17). The top of the slide rod (17) is fixedly assembled with the bottom of the mounting plate (16). The outer edge of the slide rod (17) is slidably sleeved with an inner cylinder (22). The bottom of the inner cylinder (22) is fixedly assembled with the bottom of the inner wall of the outer cylinder (19). The outer edge of the inner cylinder (22) is slidably sleeved with the inner wall of the slide cylinder (18).
6. The anti-clogging structure for the water distribution tank of an air cooler according to claim 1, characterized in that: The number of base plates (9) is two, and two outer cylinders (19) are fixedly assembled on the top of each of the two base plates (9). The connection structure of the inner walls of the two outer cylinders (19) is completely identical.