Blast regeneration efficient and energy-saving adsorption type compressed air drying equipment

By introducing a cleaning brush and a removable perforated plate into the adsorption-type compressed air dryer, the problem of dust accumulation in the heat dissipation slots is solved, achieving efficient cleaning and stable operation of the equipment, extending its service life and reducing safety hazards.

CN224057057UActive Publication Date: 2026-03-31ZHEJIANG TUOHANG IND EQUIP CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Dust easily accumulates on the surface of the heat dissipation tank of existing adsorption compressed air drying equipment, resulting in poor heat dissipation, which may cause overheating, aging and safety hazards of the control device, and the equipment is easily damaged during movement.

Method used

A control box with a cleaning brush and a removable perforated plate was designed. The drive motor drives the threaded rod to clean the heat dissipation slots. Combined with damping rods and pulleys, it reduces vibration and impact when the equipment moves, protects internal components, and prevents dust from entering through the movable door.

Benefits of technology

It effectively prevents poor heat dissipation and short circuits caused by dust accumulation, extends equipment life, improves operational stability and efficiency, and reduces the difficulty of manual handling.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a blast regeneration efficient energy-saving adsorption type compressed air drying equipment, which relates to the technical field of gas purification and comprises a base, two groups of fixing plates are fixedly mounted at the top of the base, and drying equipment bodies are fixedly mounted on the side surfaces of the two groups of fixing plates. Two sets of connecting plates are fixedly installed between the two sets of drying equipment bodies, a control box is fixedly installed on the side faces of the two sets of connecting plates, a heat dissipation groove is formed in the side face of the control box, a rectangular plate is fixedly installed on the side face of the control box, and a rectangular groove is formed in the side face of the rectangular plate. Compared with the prior art, the device has the advantages that the device can prevent the problems of poor heat dissipation and short circuit caused by dust accumulation, so that the equipment failure rate is reduced, the equipment performance and stability are improved, meanwhile, either one of the two is selected by cleaning the heat dissipation groove and replacing the mesh plate when the device is operated, the equipment operation does not need to be stopped for a long time, and the production cost is reduced. And the efficiency of the device is improved.
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Description

Technical Field

[0001] This utility model relates to the field of gas purification technology, specifically to a high-efficiency and energy-saving adsorption-type compressed air drying device with blower regeneration. Background Technology

[0002] Adsorption-type compressed air drying equipment, as a key industrial device, has the core function of efficiently removing moisture from compressed air using specific adsorbents to ensure that the output compressed air reaches the expected degree of dryness. This is crucial for ensuring the stability of many industrial processes and product quality. However, although this type of equipment is quite mature in technology, it still has certain limitations in practical applications, especially in terms of equipment heat dissipation and control device maintenance.

[0003] The existing control devices of the adsorption compressed air drying equipment are responsible for monitoring and adjusting the operating status of the equipment to ensure that it can work stably under various working conditions. These control devices are usually carefully placed inside the housing to avoid interference from the external environment. In order to effectively dissipate the heat generated by the control devices during operation, heat dissipation grooves are specially designed on the surface of the housing to optimize the heat conduction path.

[0004] However, over time, especially in dusty industrial environments, a thick layer of dust and grime often accumulates on the surface of the heat sink. This layer of dust not only hinders the effective dissipation of heat, causing the internal temperature of the control device to rise, but may also form a heat insulation layer, further aggravating the accumulation of heat. Excessive temperature will not only accelerate the aging process of electronic components and shorten their service life, but may also cause a series of safety hazards, posing a serious threat to production safety and equipment stability. Utility Model Content

[0005] The purpose of this invention is to provide a high-efficiency and energy-saving adsorption-type compressed air drying device with blower regeneration.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a high-efficiency and energy-saving adsorption-type compressed air drying device with blower regeneration, comprising a base, two sets of fixing plates fixedly installed on the top of the base, and drying device bodies fixedly installed on the sides of both sets of fixing plates. Two sets of connecting plates are fixedly installed between the two sets of drying device bodies. A control box is fixedly installed on the sides of the two sets of connecting plates. A heat dissipation groove is provided on the side of the control box. A rectangular plate is fixedly installed on the side of the control box, and a rectangular groove is provided on the side of the rectangular plate. A threaded rod is movably installed inside the rectangular groove, and a sleeve block is movably installed on the surface of the threaded rod. A sliding groove is provided on the front of the rectangular plate, and the sliding groove extends to... Inside the rectangular groove, a cleaning plate is movably installed, and the cleaning plate is fixedly connected to the connecting block. A cleaning brush is fixedly installed on the side of the cleaning plate. A control device is installed inside the control box. A rectangular frame is fixedly installed on the inner wall of the control box. Inner groove one and inner groove two are sequentially opened on the inner walls of the two sides of the rectangular frame. Inner plate two is movably installed inside inner groove one. A push rod is fixedly installed on the side of inner plate two. A push block is fixedly installed on the other end of the push rod. A return spring is wound between the push rod and the rectangular frame. Inner plate one is movably installed inside inner groove two. A damping spring is wound between inner plate one and inner groove two. A perforated plate is provided between inner plate one and inner plate two.

[0007] As a further embodiment of this utility model: a damping rod is fixedly installed at the bottom of the base, a pulley is fixedly installed at the bottom of the damping rod, and a spring is sleeved on the surface of the damping rod.

[0008] As a further embodiment of this utility model: a motor protective cover is provided at the bottom of the rectangular plate, a drive motor is provided inside the motor protective cover, and heat dissipation holes are provided on the surface of the motor protective cover.

[0009] As a further embodiment of this utility model: a movable door is movably installed on the front of the control box, and a handle is fixedly installed on the surface of the movable door.

[0010] As a further embodiment of this utility model: a reinforcing rib is fixedly installed at the connection between the control box and the rectangular plate, and the reinforcing rib is triangular in shape.

[0011] As a further embodiment of this utility model: the outer diameter of the cleaning plate is equal to the inner diameter of the chute.

[0012] Compared with the prior art, the beneficial effects of this utility model by adopting the above technical solution are as follows:

[0013] 1. This utility model allows the operator to start the drying equipment by moving the device to the working position and pressing the control device. After prolonged use, dust accumulates on the surface of the heat dissipation tank. At this time, the power of the drive motor causes the sleeve block on the surface of the threaded rod to move, thereby allowing the cleaning brush on the side of the cleaning plate to clean the surface of the heat dissipation tank. Alternatively, the perforated plate can be quickly disassembled and assembled. This device can prevent poor heat dissipation and short circuit caused by dust accumulation, thereby reducing the equipment failure rate and improving the performance and stability of the equipment. At the same time, when the device is running, the operator can choose between cleaning the heat dissipation tank and replacing the perforated plate, without having to stop the equipment for a long time, thereby improving the efficiency of the device.

[0014] 2. This utility model can effectively reduce the impact of the equipment on the ground during movement by using the cooperation between the damping rod and the spring, avoiding damage to the ground due to excessive pressure. At the same time, it can also reduce the vibration of the equipment during movement, protect the precision components inside the equipment from damage, and extend the service life of the equipment. The pulley makes it more convenient to move the device when needed, reducing the difficulty of manual handling.

[0015] Other advantages, objectives and features of this invention will be set forth in part in the description which follows, and in part will be apparent to those skilled in the art from the following examination or study, or may be taught from the practice of this invention. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the structure of this utility model;

[0017] Figure 2 This is a schematic diagram of the connecting plate structure of this utility model;

[0018] Figure 3 This is a schematic diagram of the internal structure of the control box of this utility model;

[0019] Figure 4 This is a schematic diagram of the drive motor structure of this utility model;

[0020] Figure 5 This is a schematic diagram of the push rod structure of this utility model.

[0021] In the diagram: 1. Base; 2. Drying equipment body; 3. Fixing plate; 4. Connecting plate; 5. Control box; 6. Control device; 7. Heat dissipation groove; 8. Rectangular plate; 9. Rectangular groove; 10. Threaded rod; 11. Slide groove; 12. Sleeve block; 13. Cleaning plate; 14. Cleaning brush; 15. Drive motor; 16. Damping rod; 17. Pulley; 18. Spring; 19. Movable door; 20. Handle; 21. Motor protective cover; 22. Heat dissipation hole; 23. Reinforcing rib; 24. Rectangular frame; 25. Inner groove one; 26. Inner groove two; 27. Mesh plate; 28. Damping spring; 29. ​​Inner plate one; 30. Inner plate two; 31. Push rod; 32. Push block; 33. Return spring. Detailed Implementation

[0022] The specific embodiments of this utility model will be further described below with reference to the accompanying drawings. It should be noted that the description of these embodiments is for the purpose of helping to understand this utility model, but does not constitute a limitation on this utility model.

[0023] Furthermore, the technical features involved in the various embodiments of this utility model described below can be combined with each other as long as they do not conflict with each other.

[0024] Please see the appendix Figure 1 - Appendix Figure 5 This utility model provides a high-efficiency and energy-saving adsorption-type compressed air drying device with blower regeneration, including a base 1. Two sets of fixing plates 3 are fixedly installed on the top of the base 1, and drying equipment bodies 2 are fixedly installed on the sides of both sets of fixing plates 3. Two sets of connecting plates 4 are fixedly installed between the two sets of drying equipment bodies 2. A control box 5 is fixedly installed on the side of the two sets of connecting plates 4. A heat dissipation groove 7 is opened on the side of the control box 5. A rectangular plate 8 is fixedly installed on the side of the control box 5, and a rectangular groove 9 is opened on the side of the rectangular plate 8. A threaded rod 10 is movably installed inside the rectangular groove 9. A sleeve block 12 is movably installed on the surface of the threaded rod 10. A sliding groove 11 is opened on the front of the rectangular plate 8 and extends into the interior of the rectangular groove 9. A sliding groove 12 is movably installed inside the sliding groove 11. There is a cleaning plate 13, and the cleaning plate 13 is fixedly connected to the sleeve block 12. A cleaning brush 14 is fixedly installed on the side of the cleaning plate 13. A control device 6 is set inside the control box 5. A rectangular frame 24 is fixedly installed on the inner wall of the control box 5. Inner groove 1 25 and inner groove 26 are opened sequentially on the inner walls of both sides of the rectangular frame 24. Inner plate 20 is movably installed inside inner groove 1 25. A push rod 31 is fixedly installed on the side of inner plate 20. A push block 32 is fixedly installed at the other end of the push rod 31. A reset spring 33 is wound between the push rod 31 and the rectangular frame 24. Inner plate 1 29 is movably installed inside inner groove 26. A damping spring 28 is wound between inner plate 1 29 and inner groove 26. A mesh plate 27 is set between inner plate 1 29 and inner plate 20.

[0025] By adopting the above solution, this device can prevent poor heat dissipation and short circuits caused by dust accumulation, thereby reducing the equipment failure rate and improving equipment performance and stability. At the same time, when the device is running, it can be selected to clean the heat dissipation slot 7 or replace the mesh plate 27, without having to stop the equipment for a long time, thus improving the efficiency of the device.

[0026] like Figure 2 As shown, a damping rod 16 is fixedly installed at the bottom of the base 1, a pulley 17 is fixedly installed at the bottom of the damping rod 16, and a spring 18 is sleeved on the surface of the damping rod 16.

[0027] The above solution effectively reduces the impact of the equipment on the ground during movement by cooperating with the damping rod 16 and the spring 18, preventing the ground from being damaged due to excessive pressure. It also reduces the vibration of the equipment during movement, protects the precision components inside the equipment from damage, and extends the service life of the equipment. The pulley 17 makes it more convenient to move the device when needed, reducing the difficulty of manual handling.

[0028] like Figure 4 As shown, a motor protective cover 21 is provided at the bottom of the rectangular plate 8, a drive motor 15 is provided inside the motor protective cover 21, and heat dissipation holes 22 are provided on the surface of the motor protective cover 21.

[0029] The above solution is adopted: by setting a motor protective cover 21 at the bottom of the rectangular plate 8, and the drive motor 15 is located inside the motor protective cover 21, the drive motor 15 is protected from damage caused by impact from external objects. Heat dissipation holes 22 are opened on the surface of the motor protective cover 21 to improve the heat dissipation of the drive motor 15.

[0030] like Figure 1 As shown, a movable door 19 is movably installed on the front of the control box 5, and a handle 20 is fixedly installed on the surface of the movable door 19;

[0031] The above solution is adopted: by installing a movable door 19 on the front of the control box 5, dust is prevented from entering the interior of the control box 5, and by fixing a handle 20 on the surface of the movable door 19, the convenience of the movable door 19 is improved.

[0032] like Figure 4 As shown, a reinforcing rib 23 is fixedly installed at the connection between the control box 5 and the rectangular plate 8. The reinforcing rib 23 is triangular in shape.

[0033] The above solution is adopted: by fixing a reinforcing rib 23 at the connection between the control box 5 and the rectangular plate 8, the connection between the control box 5 and the rectangular plate 8 is strengthened, and the shape of the reinforcing rib 23 is set as a triangle, which has stability.

[0034] like Figure 4 As shown, the outer diameter of the cleaning plate 13 is equal to the inner diameter of the groove 11;

[0035] The above solution is adopted: by setting the outer diameter of the cleaning plate 13 and the inner diameter of the slide 11 to be equal, the cleaning plate 13 becomes more stable when moving inside the slide 11.

[0036] Working principle:

[0037] Option 1: Before use, the staff pushes the device to the position where it needs to be used. When using it, the staff first opens the movable door 19, and then presses the control device 6 to start the drying equipment body 2. After long-term use, dust will accumulate on the surface of the heat dissipation tank 7. At this time, the staff starts the drive motor 15 through the external switch. The power generated by the drive motor 15 causes the threaded rod 10 to rotate. The rotation of the threaded rod 10 drives the sleeve block 12 on its surface to move. The movement of the sleeve block 12 causes the cleaning plate 13 to move synchronously, so that the cleaning brush 14 cleans the surface of the heat dissipation tank 7.

[0038] Option 2: When the perforated plate 27 needs to be replaced, the worker first presses the push block 32. The push block 32 causes the inner plate 20 at the front end of the push rod 31 to push the perforated plate 27 out of the inner groove 25 and gradually push the perforated plate 27 into the inner groove 26. At the same time, the return spring 33 is compressed and the damping spring 28 is also compressed. At this time, the worker replaces the perforated plate 27 inside the rectangular frame 24. Then, the push block 32 is released, and the reaction force of the damping spring 28 and the return spring 33 causes the new perforated plate 27 to reset, thereby realizing the replacement of the perforated plate 27.

[0039] The terms "front," "back," "left," "right," "top," and "bottom" all refer to the figures in the accompanying drawings. Figure 1 Based on.

[0040] In the description of this utility model, it should be understood that the terms "center", "longitudinal", "lateral", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limiting the scope of protection of this utility model.

[0041] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings, but the present invention is not limited to the described embodiments.

[0042] For those skilled in the art, various changes, modifications, substitutions, and alterations to these embodiments without departing from the principles and spirit of this utility model will still fall within the protection scope of this utility model.

Claims

1. A blast regenerative high-efficiency energy-saving adsorption compressed air drying device comprising a base (1), characterized in that: The top of the base (1) is fixedly installed with two groups of fixed plates (3), and the side surfaces of the two groups of fixed plates (3) are fixedly installed with drying equipment bodies (2), two groups of connecting plates (4) are fixedly installed between the two groups of drying equipment bodies (2), control boxes (5) are fixedly installed on the side surfaces of the two groups of connecting plates (4), heat dissipation grooves (7) are formed in the side surfaces of the control boxes (5), rectangular plates (8) are fixedly installed on the side surfaces of the control boxes (5), rectangular grooves (9) are formed in the side surfaces of the rectangular plates (8), threaded rods (10) are movably installed in the rectangular grooves (9), sleeve blocks (12) are movably installed on the surfaces of the threaded rods (10), sliding grooves (11) are formed in the front surfaces of the rectangular plates (8) and extend into the rectangular grooves (9), cleaning plates (13) are movably installed in the sliding grooves (11) and are fixedly connected with the sleeve blocks (12), cleaning brushes (14) are fixedly installed on the side surfaces of the cleaning plates (13), control devices (6) are arranged in the control boxes (5), rectangular frames (24) are fixedly installed on the inner walls of the control boxes (5), inner grooves one (25) and inner grooves two (26) are sequentially formed in the inner walls on the two sides of the rectangular frames (24), inner plates two (30) are movably installed in the inner grooves one (25), push rods (31) are fixedly installed on the side surfaces of the inner plates two (30), push blocks (32) are fixedly installed on the other ends of the push rods (31), return springs (33) are wound between the push rods (31) and the rectangular frames (24), inner plates one (29) are movably installed in the inner grooves two (26), damping springs (28) are wound between the inner plates one (29) and the inner grooves two (26), and mesh plates (27) are arranged between the inner plates one (29) and the inner plates two (30).

2. The blast regenerative high-efficiency energy-saving adsorption compressed air drying apparatus according to claim 1, characterized in that: The bottom of the base (1) is fixedly installed with a damping rod (16), the bottom of the damping rod (16) is fixedly installed with a pulley (17), and the surface of the damping rod (16) is sleeved with a spring (18).

3. The blast regenerative high-efficiency energy-saving adsorption compressed air drying apparatus according to claim 1, characterized in that: The bottom of the rectangular plate (8) is provided with a motor protection cover (21), the inside of the motor protection cover (21) is provided with a driving motor (15), and the surface of the motor protection cover (21) is provided with heat dissipation holes (22).

4. The blast regenerative high-efficiency energy-saving adsorption compressed air drying apparatus according to claim 1, characterized in that: The front surface of the control box (5) is movably installed with a movable door (19), and the surface of the movable door (19) is fixedly installed with a handle (20).

5. The blast regenerative high-efficiency energy-saving adsorption compressed air drying apparatus according to claim 1, characterized in that: The connection between the control box (5) and the rectangular plate (8) is fixedly installed with a reinforcing rib (23), and the shape of the reinforcing rib (23) is triangular.

6. The blast regenerative high-efficiency energy-saving adsorption compressed air drying apparatus according to claim 1, characterized in that: The outer diameter of the cleaning plate (13) is equal to the inner diameter of the sliding groove (11).