A high-energy particle flow sterilization and purification device for fan coil units

The wind turbine heat exchanger with dual filtration stages addresses contamination issues in HVAC systems by integrating movable seals and filtration, ensuring effective air sterilization and cleanliness.

CN119554693BActive Publication Date: 2025-07-15中科原宇宙(杭州)科学技术研究有限公司 +1
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Patent Information

Application Number
CN202411777537.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-05
Publication Date
2025-07-15
Estimated Expiration
2044-12-05

AI Technical Summary

Technical Problem

Traditional fan coil high-energy particle flow sterilization and purification devices are prone to contamination of the device during the suction and exhaust process, and the exhaust gas needs additional treatment, resulting in unstability of the system.

Method used

A high-energy particle flow sterilization and purification device for fan coils is designed. By setting up a filter inner network and an external filter net, the air conditioning air is sterilized by a high-energy particle emission module. During the purification process, the double filtration and purification of the purified air is achieved through the reset spring and slider structure to avoid damage to the device by high-energy particles.

Benefits of technology

Efficient air sterilization and purification are achieved, reducing the risk of airborne bacteria, improving indoor air quality, and simplifying the operation process of the device.

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Abstract

The present invention relates to the technical field of air purification, and specifically to a high-energy particle flow sterilization and purification device for a fan coil unit. One side of the fan coil unit chamber is fixedly connected with an installation connection chamber. Inside the installation connection chamber, a hot air pipe is fixedly installed, and a cold air pipe is fixedly connected inside the installation connection chamber. The bottom plate of the fan coil unit chamber is fixedly connected with a purification chamber. Inside the purification chamber, a partition middle plate is fixedly connected. One side of the partition middle plate is fixedly connected with an exhaust lead chamber. The top of the exhaust lead chamber is fixedly connected with a communication top cover. The bottom plate of the fan coil unit chamber is communicated with a ventilation pipe, and the ventilation pipe is communicated with the communication top cover. It has high-efficiency sterilization and purification capabilities, can significantly improve indoor air quality, and reduce the risk of airborne bacteria. Its structural design is reasonable and the operation is simple. By adopting the high-energy particle flow technology, this device can effectively kill various microorganisms including bacteria and viruses, providing a healthier and safer environment for users.
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Description

Technical Field

[0001] The present invention relates to the technical field of air purification, and in particular to a high-energy particle flow sterilization and purification device for a fan coil unit. Background Art

[0002] In a special high-requirement environment (such as an operating room, a clean room), a fan coil unit can be sterilized and purified by high-energy particle flow. The high-energy electron beam generated by an electron accelerator acts on microorganisms in the air conditioner air, such as bacteria, viruses, etc., and can directly damage the molecular structure of their genetic material DNA or RNA, making it impossible for the microorganisms to carry out normal metabolic and reproductive activities, thereby achieving the sterilization effect.

[0003] In the room where this device is used, ventilation and air change are also required. When using a traditional device to inhale air with the high-energy particle flow sterilization and purification device for a fan coil unit, it will cause device pollution, and the exhausted gas also needs to be treated after being discharged; for this reason, the present invention provides a high-energy particle flow sterilization and purification device for a fan coil unit. Summary of the Invention

[0004] The purpose of the present invention is to provide a high-energy particle flow sterilization and purification device for a fan coil unit to solve the problems raised in the above background art.

[0005] The technical solution of the present invention is: A high-energy particle flow sterilization and purification device for a fan coil unit, including a fan coil unit bin and an installation and connection bin. One side of the fan coil unit bin is fixedly connected to the installation and connection bin. Inside the installation and connection bin, a hot air pipe is fixedly installed, and a cold air pipe is fixedly connected. The bottom plate of the fan coil unit bin is fixedly connected to a purification bin. Inside the purification bin, a partition middle plate is fixedly connected. One side of the partition middle plate is fixedly connected to an exhaust lead bin. The top of the exhaust lead bin is fixedly connected to a communication top cover. The bottom plate of the fan coil unit bin is communicated with a ventilation pipe, and the ventilation pipe is communicated with the communication top cover. Inside the exhaust lead bin, an intake lead plate is fixedly connected. The bottom of the intake lead plate is fixedly connected to a connection outer cylinder. Inside the connection outer cylinder, a connection inner column is slidably clamped. A return spring is installed inside the connection outer cylinder, and the return spring is fixedly connected between the connection inner column and the intake lead plate. The bottom of the connection inner column is fixedly connected to an upper moving slide bar. The top of the upper moving slide bar is fixedly connected to an upper conical lead block, and the upper conical lead block is closely attached to the bottom of the intake lead plate. The outside of the upper moving slide bar is slidably clamped with an upper moving slide frame. The bottom of the upper moving slide frame is fixedly connected to a filter inner net, and the filter inner net is slidably clamped inside the exhaust lead bin. Inside the partition middle plate, a high-energy particle emission module is fixedly connected, and the high-energy particle emission module is fixedly connected to the bottom of the exhaust lead bin. One side of the exhaust lead bin is fixedly connected to an exhaust port, and one side of the purification bin is fixedly connected to an exhaust chamber; When in use: The air conditioner air enters the inside of the fan coil unit bin through the hot air pipe and the cold air pipe, and enters the inside of the exhaust lead bin through the ventilation pipe. The air conditioner air pushes the upper conical lead block downward and pulls the return spring, so that the top of the intake lead plate can be closed when not started, which can prevent high-energy particles from damaging the device. It enters the top of the high-energy particle emission module through the filter inner net. A part of the air conditioner air can be purified through the filter inner net. The high-energy particle emission module is started, and the high-energy particles act on the microorganisms in the air conditioner air for sterilization. At the same time, the bacteria collected by the filter inner net can also be eliminated. The air conditioner air is discharged into the inside of the purification bin through the exhaust port, and then the air is controlled to enter the room by controlling the exhaust chamber.

[0006] Preferably, a suction lead bin is fixedly connected to one side of the partition middle plate away from the exhaust lead bin. The suction lead bin is fixedly connected to the top of the high-energy particle emission module. A suction port is fixedly connected to one side of the suction lead bin. The suction lead bin is fixedly connected inside the purification bin. A suction bin is fixedly connected to one side of the purification bin away from the exhaust bin. A suction protection lead plate is fixedly connected inside the suction lead bin. Contrary to the inside of the exhaust lead bin, a connection outer cylinder is fixedly connected to the top of the suction protection lead plate. A connection inner column is slidably clamped inside the connection outer cylinder. A return spring is installed inside the connection outer cylinder. A lower moving slide bar is fixedly connected to the top of the connection inner column. A lower conical lead block is fixedly connected to the bottom of the lower moving slide bar. The lower conical lead block is closely attached to the top of the suction protection lead plate. The lower moving slide bar is slidably clamped outside the lower moving slide frame. A filter outer net is fixedly connected to the top of the lower moving slide frame. The top of the suction lead bin is the same as the top of the exhaust lead bin. A communication top cover is fixedly connected to the top of the suction lead bin. And there is a ventilation pipe connecting the communication top cover and the fan coil bin. An air vent is opened inside the partition middle plate. A connection plug board is fixedly connected to one side of the filter inner net and the filter outer net. A fixed pull handle is fixedly connected to the other side of the connection plug board. The connection plug board is slidably clamped inside the purification bin. When in use: When air exchange and purification are required, air is inhaled through the suction bin, enters the outside of the suction lead bin, enters the inside of the suction lead bin through the suction port, is sterilized and purified by the high-energy particle emission module. The purified gas pushes the lower conical lead block upward, enters the top, is filtered and purified again through the filter outer net. The top of the suction protection lead plate is communicated with the top of the intake lead plate through the air vent of the partition middle plate, which can facilitate the exhaust and intake of the ventilation pipe. By setting the connection plug board, the upper moving slide frame and the lower moving slide frame, the filter outer net and the filter inner net can be replaced.

[0007] The present invention provides a fan coil high-energy particle flow sterilization and purification device through improvement. Compared with the prior art, it has the following improvements and advantages:

[0008] First: For the fan coil high-energy particle flow sterilization and purification device of the present invention, the air-conditioning air enters the inside of the fan coil bin through the hot air pipe and the cold air pipe, enters the inside of the exhaust lead bin through the ventilation pipe. The air-conditioning air pushes the upper conical lead block downward and pulls the return spring, which can seal the top of the intake lead plate when not in use, and can avoid the high-energy particles from damaging the device. The air-conditioning air enters the top of the high-energy particle emission module through the filter inner net. Part of the air-conditioning air can be purified through the filter inner net. The high-energy particle emission module is started. The high-energy particles act on the microorganisms in the air-conditioning air for sterilization. At the same time, the bacteria collected by the filter inner net can also be eliminated. The air-conditioning air is discharged into the inside of the purification bin through the exhaust port, and then the air is controlled to enter the room by controlling the exhaust bin.

[0009] Second: For the high-energy particle flow sterilization and purification device of the fan coil unit of the present invention, when ventilation and purification are required, air is inhaled through the air suction chamber, enters the outside of the air suction lead chamber, enters the inside of the air suction lead chamber through the air suction port, and is sterilized and purified by the high-energy particle emission module. The purified gas pushes the lower conical lead block upward and enters the top, and is filtered and purified again through the outer filter network. The top of the air suction protection lead plate is connected to the top of the air intake lead plate through the ventilation hole of the partition middle plate, which facilitates the exhaust and air intake of the ventilation pipe. By setting the connecting plug board, the upper moving sliding frame and the lower moving sliding frame, the outer filter network and the inner filter network can be replaced;

[0010] Summary: The high-energy particle flow sterilization and purification device of the fan coil unit of the present invention has high sterilization and purification capabilities, can significantly improve the indoor air quality, and reduce the risk of airborne bacteria. Its structural design is reasonable and the operation is simple. By adopting the high-energy particle flow technology, this device can effectively kill various microorganisms including bacteria and viruses, providing a healthier and safer environment for users. Description of the Drawings

[0011] The following further explains the present invention in conjunction with the drawings and embodiments:

[0012] Figure 1 is the three-dimensional structure schematic diagram of the present invention;

[0013] Figure 2 is the structure schematic diagram of the fan coil unit chamber of the present invention;

[0014] Figure 3 is the structure schematic diagram of the purification chamber of the present invention;

[0015] Figure 4 is the structure schematic diagram of the connecting plug board of the present invention;

[0016] Figure 5 is the structure schematic diagram of the air intake lead plate of the present invention;

[0017] Figure 6 is the structure schematic diagram of the upper conical lead block of the present invention;

[0018] Figure 7 is the structure schematic diagram of the outer filter network of the present invention;

[0019] Figure 8 is the structure schematic diagram of the lower moving slide bar of the present invention;

[0020] Figure 9 is the structure schematic diagram of the air suction lead chamber of the present invention;

[0021] Figure 10 is the sectional schematic diagram of the partition middle plate of the present invention.

[0022] Description of the Reference Numerals:

[0023] 1. Fan coil unit bin; 2. Purification bin; 3. Suction bin; 4. Installation connection bin; 5. Hot air duct; 6. Cold air duct; 7. Exhaust bin; 8. Suction lead bin; 9. Exhaust lead bin; 10. Connection plug board; 11. Fixed pull handle; 12. Partition middle plate; 13. Connecting top cover; 14. High-energy particle emission module; 15. Suction port; 16. Intake lead plate; 17. Inner filter net; 18. Upper conical lead block; 19. Upper moving sliding frame; 20. Upper moving sliding bar; 21. Connecting outer cylinder; 22. Suction protection lead plate; 23. Outer filter net; 24. Lower moving sliding frame; 25. Lower conical lead block; 26. Lower moving sliding bar; 27. Connecting inner column; 28. Reset spring; 29. Exhaust port; 30. Vent pipe. Specific implementation mode

[0024] The present invention will be described in detail below. The technical solutions in the embodiments of the present invention are clearly and completely described. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0025] The present invention provides a fan coil high-energy particle flow sterilization and purification device through improvement. The technical solution of the present invention is as follows:

[0026] As Figures 1-10As shown in the figure, a high-energy particle flow sterilization and purification device for a fan coil unit includes a fan coil unit bin 1 and an installation connection bin 4. One side of the fan coil unit bin 1 is fixedly connected to the installation connection bin 4. Inside the installation connection bin 4, a hot air pipe 5 is fixedly installed, and a cold air pipe 6 is fixedly connected. The bottom plate of the fan coil unit bin 1 is fixedly connected to a purification bin 2. Inside the purification bin 2, a partition middle plate 12 is fixedly connected. One side of the partition middle plate 12 is fixedly connected to an exhaust lead bin 9. The top of the exhaust lead bin 9 is fixedly connected to a communication top cover 13. The bottom plate of the fan coil unit bin 1 is communicated with a ventilation pipe 30, and the ventilation pipe 30 is communicated with the communication top cover 13. Inside the exhaust lead bin 9, an intake lead plate 16 is fixedly connected. The bottom of the intake lead plate 16 is fixedly connected to a connection outer cylinder 21. Inside the connection outer cylinder 21, a connection inner column 27 is slidably clamped. Inside the connection outer cylinder 21, a return spring 28 is installed. The return spring 28 is fixedly connected between the connection inner column 27 and the intake lead plate 16. The bottom of the connection inner column 27 is fixedly connected to an upper moving slide bar 20. The top of the upper moving slide bar 20 is fixedly connected to an upper conical lead block 18. The upper conical lead block 18 is closely attached to the bottom of the intake lead plate 16. The outside of the upper moving slide bar 20 is slidably clamped with an upper moving slide frame 19. The bottom of the upper moving slide frame 19 is fixedly connected to a filter inner net 17. The filter inner net 17 is slidably clamped inside the exhaust lead bin 9. Inside the partition middle plate 12, a high-energy particle emission module 14 is fixedly connected. The high-energy particle emission module 14 is fixedly connected to the bottom of the exhaust lead bin 9. One side of the exhaust lead bin 9 is fixedly connected to an exhaust port 29. One side of the purification bin 2 is fixedly connected to an exhaust bin 7. When in use: The air-conditioning air enters the inside of the fan coil unit bin 1 through the hot air pipe 5 and the cold air pipe 6, and enters the inside of the exhaust lead bin 9 through the ventilation pipe 30. The air-conditioning air pushes the upper conical lead block 18 downward and pulls the return spring 28, which can seal the top of the intake lead plate 16 when not in use, and can prevent high-energy particles from damaging the device. The air passes through the filter inner net 17 and enters the top of the high-energy particle emission module 14. The air can be purified to a certain extent through the filter inner net 17. The high-energy particle emission module 14 is started, and the high-energy particles act on the microorganisms in the air-conditioning air for sterilization. At the same time, the bacteria collected by the filter inner net 17 can also be eliminated. The air-conditioning air is discharged into the inside of the purification bin 2 through the exhaust port 29, and then by controlling the exhaust bin 7, the air is controlled to enter the room.

[0027] Furthermore, on one side of the partition middle plate 12 away from the exhaust lead bin 9, there is a suction lead bin 8 fixedly connected. The suction lead bin 8 is fixedly connected to the top of the high-energy particle emission module 14. On one side of the suction lead bin 8, there is a suction port 15 fixedly connected. The suction lead bin 8 is fixedly connected inside the purification bin 2. On one side of the purification bin 2 away from the exhaust bin 7, there is a suction bin 3 fixedly connected. Inside the suction lead bin 8, there is a suction protection lead plate 22 fixedly connected. Contrary to the inside of the exhaust lead bin 9, on the top of the suction protection lead plate 22, there is a connecting outer cylinder 21 fixedly connected. Inside the connecting outer cylinder 21, there is a connecting inner column 27 slidably clamped. Inside the connecting outer cylinder 21, there is a return spring 28 installed. On the top of the connecting inner column 27, there is a downward moving slide bar 26 fixedly connected. On the bottom of the downward moving slide bar 26, there is a downward conical lead block 25 fixedly connected. The downward conical lead block 25 is closely attached to the top of the suction protection lead plate 22. Outside the downward moving slide bar 26, there is a downward moving slide frame 24 slidably clamped. On the top of the downward moving slide frame 24, there is a filter outer net 23 fixedly connected. The top of the suction lead bin 8 is the same as the top of the exhaust lead bin 9. On the top of the suction lead bin 8, there is a connecting top cover 13 fixedly connected. And there is a ventilation pipe 30 connecting the connecting top cover 13 and the fan coil unit bin 1. On the inner side of the partition middle plate 12, there are ventilation openings. On one side of the filter inner net 17 and the filter outer net 23, there is a connecting plug board 10 fixedly connected. On the other side of the connecting plug board 10, there is a fixed pull handle 11 fixedly connected. The connecting plug board 10 is slidably clamped inside the purification bin 2. When in use: When ventilation and purification are required, air is sucked through the suction bin 3, enters the outside of the suction lead bin 8, enters the inside of the suction lead bin 8 through the suction port 15, and is sterilized and purified by the high-energy particle emission module 14, so that the purified gas pushes the downward conical lead block 25 upward, enters the top, is filtered and purified again through the filter outer net 23, and the top of the suction protection lead plate 22 and the intake lead plate 16 are connected through the ventilation holes of the partition middle plate 12, which can facilitate the exhaust and intake of the ventilation pipe 30. By setting the connecting plug board 10, the upward moving slide frame 19 and the downward moving slide frame 24, the filter outer net 23 and the filter inner net 17 can be replaced.

[0028] Working principle: When in use: The air from the air conditioner enters the interior of the fan coil chamber 1 through the hot air duct 5 and the cold air duct 6, and enters the interior of the exhaust lead chamber 9 through the ventilation pipe 30. The air from the air conditioner pushes the upper conical lead block 18 downward and pulls the return spring 28, which can close the top of the intake lead plate 16 when not in use, avoiding the destruction of the device by high-energy particles. The air enters the top of the high-energy particle emission module 14 through the filter inner net 17. The filter inner net 17 can purify part of the air from the air conditioner. The high-energy particle emission module 14 is activated, and the high-energy particles act on the microorganisms in the air from the air conditioner for sterilization. At the same time, it can also eliminate the bacteria collected by the filter inner net 17. The air from the air conditioner is discharged into the interior of the purification chamber 2 through the exhaust port 29, and then the air is controlled to enter the room by controlling the exhaust chamber 7. When ventilation and purification are required, air is inhaled through the intake chamber 3, enters the outside of the intake lead chamber 8, and enters the interior of the intake lead chamber 8 through the intake port 15. Sterilization and purification are carried out through the high-energy particle emission module 14, so that the purified gas pushes the lower conical lead block 25 upward and enters the top. It is filtered and purified again through the filter outer net 23. The ventilation holes in the partition middle plate 12 connect the intake protection lead plate 22 with the top of the intake lead plate 16, which is convenient for the exhaust and intake of the ventilation pipe 30. By setting the connecting plug board 10, the upper moving sliding frame 19 and the lower moving sliding frame 24, the filter outer net 23 and the filter inner net 17 can be replaced.

[0029] The above description enables those skilled in the art to implement or use the present invention. Various modifications to these embodiments will be obvious to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present invention. Therefore, the present invention will not be limited to these embodiments shown herein, but will be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A high-energy particle flow sterilization and purification device for a fan coil unit, comprising a fan coil unit bin (1) and an installation and connection bin (4), characterized in that: One side of the fan coil unit bin (1) is fixedly connected with an installation connection bin (4). Inside the installation connection bin (4), a hot air pipe (5) is fixedly installed, and a cold air pipe (6) is fixedly connected. The bottom plate of the fan coil unit bin (1) is fixedly connected with a purification bin (2). Inside the purification bin (2), a partition middle plate (12) is fixedly connected. One side of the partition middle plate (12) is fixedly connected with an exhaust lead bin (9). The top of the exhaust lead bin (9) is fixedly connected with a communicating top cover (13). The bottom plate of the fan coil unit bin (1) is communicated with a ventilation pipe (30), and the ventilation pipe (30) is communicated with the communicating top cover (13). Inside the exhaust lead bin (9), an intake lead plate (16) is fixedly connected. The bottom of the intake lead plate (16) is fixedly connected with a connecting outer cylinder (21). Inside the connecting outer cylinder (21), a connecting inner column (27) is slidably clamped. A return spring (28) is installed inside the connecting outer cylinder (21), and the return spring (28) is fixedly connected between the connecting inner column (27) and the intake lead plate (16). The bottom of the connecting inner column (27) is fixedly connected with an upper moving slide bar (20). The top of the upper moving slide bar (20) is fixedly connected with an upper conical lead block (18). The upper conical lead block (18) is closely attached to the bottom of the intake lead plate (16). The outside of the upper moving slide bar (20) is slidably clamped with an upper moving slide frame (19). The bottom of the upper moving slide frame (19) is fixedly connected with a filtering inner net (17), and the filtering inner net (17) is slidably clamped inside the exhaust lead bin (9). Inside the partition middle plate (12), a high-energy particle emission module (14) is fixedly connected. The high-energy particle emission module (14) is fixedly connected to the bottom of the exhaust lead bin (9). One side of the exhaust lead bin (9) is fixedly connected with an exhaust port (29). One side of the purification bin (2) is fixedly connected with an exhaust bin (7).

2. The high-energy particle flow sterilization and purification device for a fan coil unit according to claim 1, wherein: On the side of the partition middle plate (12) away from the exhaust lead bin (9), an intake lead bin (8) is fixedly connected. The intake lead bin (8) is fixedly connected to the top of the high-energy particle emission module (14). One side of the intake lead bin (8) is fixedly connected with an intake port (15).

3. The high-energy particle flow sterilization and purification device for a fan coil unit according to claim 2, characterized in that: The intake lead bin (8) is fixedly connected inside the purification bin (2). On the side of the purification bin (2) away from the exhaust bin (7), an intake bin (3) is fixedly connected.

4. A high-energy particle flow sterilization and purification device for a fan coil unit according to claim 3, characterized in that: Inside the suction lead bin (8), there is a fixedly connected suction protection lead plate (22), which is opposite to the inside of the exhaust lead bin (9). At the top of the suction protection lead plate (22), there is a fixedly connected connecting outer cylinder (21). Inside the connecting outer cylinder (21), there is a slidably clamped connecting inner column (27). Inside the connecting outer cylinder (21), there is a reset spring (28) installed. At the top of the connecting inner column (27), there is a fixedly connected downward moving slide bar (26). At the bottom of the downward moving slide bar (26), there is a fixedly connected downward conical lead block (25), and the downward conical lead block (25) is in close contact with the top of the suction protection lead plate (22). The outside of the downward moving slide bar (26) is slidably clamped with a downward moving slide frame (24), and at the top of the downward moving slide frame (24), there is a fixedly connected filter outer net (23).

5. The high-energy particle flow sterilization and purification device for a fan coil unit according to claim 4, characterized in that: The top of the suction lead bin (8) is the same as the top of the exhaust lead bin (9). At the top of the suction lead bin (8), there is a fixedly connected communication top cover (13), and there is a ventilation pipe (30) communicating between the communication top cover (13) and the fan coil bin (1). There is a ventilation port opened on the inner side of the partition middle plate (12).

6. The high-energy particle flow sterilization and purification device for a fan coil unit according to claim 4, characterized in that: On one side of the filter inner net (17) and the filter outer net (23), there is a fixedly connected connecting plug board (10). On the other side of the connecting plug board (10), there is a fixedly connected fixed pull handle (11), and the connecting plug board (10) is slidably clamped inside the purification bin (2).

Citation Information

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