Efficient laminar flow purification operating room air conditioning system

By designing multi-angle rotatable air supply blades and quick-detachable air supply panels, the problem of fixed positions of traditional air supply outlets has been solved, enabling flexible adjustment of air supply direction and cleaning and maintenance of air supply components, thereby improving the adaptability and safety of the operating room environment.

CN223924959UActive Publication Date: 2026-02-17SHANGHAI YAOWEI CONSTR ENG CO LTD
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Patent Information

Application Number
CN202520626225.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-03
Publication Date
2026-02-17
Estimated Expiration
2035-04-03

AI Technical Summary

Technical Problem

The fixed location of traditional air outlets makes it difficult to adapt to the air supply needs of different surgeries, resulting in an inflexible operating room environment.

Method used

A high-efficiency laminar flow purification operating room air conditioning system was designed. Through the cooperation of components such as cylinders, connecting plates, push rods, and air supply blades, the air supply blades can be rotated at multiple angles and the air supply plates can be quickly disassembled, which facilitates the adjustment of the air supply direction and the cleaning and replacement of air supply components according to the needs of the surgical area.

Benefits of technology

It enables flexible adjustment of the air supply direction, improves the adaptability of the operating room environment and the cleanliness of the air supply components, and reduces the risk of infection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of air conditioners, and discloses an efficient laminar flow purification operating room air conditioning system which comprises a machine body, a supporting frame is arranged on the lower surface of the machine body, an air cylinder is fixedly connected into the supporting frame, the output end of the air cylinder is fixedly connected with a connecting plate, and a push rod is fixedly connected into the connecting plate. A fixed block is fixedly connected to the outer wall of the push rod, a sliding rod is fixedly connected to the interior of the fixed block, a rotating frame is slidably connected to the outer wall of the sliding rod, a rotating shaft is fixedly connected to the interior of the rotating frame, a fixed shaft is fixedly connected to the interior of the rotating shaft, and air supply blades are fixedly connected to the outer wall of the fixed shaft. According to the device, the air cylinder is started, the air cylinder drives the connecting plate to enable the push rod to move, then the fixing block, the sliding rod, the rotating frame, the rotating shaft, the fixing shaft and the air supply blade are matched with one another, the air supply blade rotates at multiple angles, and the air supply direction can be conveniently adjusted according to the requirement of an operation area.
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Description

TECHNICAL FIELD

[0001] The utility model relates to air conditioning technical field especially relates to high -efficient laminar flow purification operating room air conditioning system. BACKGROUND

[0002] Operating room needs to keep a highly clean, constant temperature and humidity environment, reduces the operation infection risk in the maximum, guarantees patient safety and operation success rate, and high -efficient laminar flow purification operating room air conditioning system can provide clean, safe environment for operating room through laminar flow air supply, high -efficient filtration, constant temperature and humidity control and positive pressure maintenance technology, therefore operating room needs to use high -efficient laminar flow purification operating room air conditioning system.

[0003] High -efficient laminar flow purification operating room air conditioning system is a high -standard air purification system specially designed for operating room, aims at providing clean, constant temperature and humidity environment for operating room through laminar flow air supply technology and high -efficient filtration system, significantly reduces the infection risk, improves operation success rate. SUMMARY

[0004] In order to make up for the above insufficient, the utility model provides high -efficient laminar flow purification operating room air conditioning system, aims at improving the problem that traditional air supply opening is usually fixed position and is difficult to adapt to the air supply demand of different operations.

[0005] In order to achieve the above purpose, the utility model provides the following technical scheme: high -efficient laminar flow purification operating room air conditioning system, including body, the lower surface of body is provided with support frame, the inside fixedly connected with air cylinder of support frame, the output fixedly connected with connecting plate of air cylinder, the outer wall sliding connection in the inside of support frame of connecting plate, the inside fixedly connected with push rod of connecting plate, the outer wall sliding connection in the inside of support frame of push rod, the outer wall fixedly connected with fixed block of push rod, the inside fixedly connected with slide rod of fixed block, the outer wall sliding connection has rotary frame of slide rod, the inside fixedly connected with rotating shaft of rotary frame, the outer wall rotationally connected in the inside of support frame of rotating shaft, the inside fixedly connected with fixed shaft of rotating shaft, the outer wall fixedly connected with air supply leaf of fixed shaft, the inside of support frame is provided with fixed assembly, and the fixed assembly is used for fixed support.

[0006] Preferably, the fixed assembly includes a connecting rod, the outer wall of the connecting rod is slidingly connected in the inside of the support frame, and the outer wall of the connecting rod is fixedly connected with a fixed handle.

[0007] Preferably, the outer wall of the connecting rod is fixedly connected with a limiting plate, and the outer wall of the limiting plate is slidingly connected in the inside of the support frame.

[0008] Preferably, the inside of the limiting plate is slidably connected with a fixing column, and the outer wall of the fixing column is slidably connected in the inside of the support frame.

[0009] Preferably, the inside of the limiting plate is provided with a sliding groove, and the outer wall of the fixing column is further connected to the inner wall of the sliding groove.

[0010] Preferably, the lower surface of the fixing column is fixedly connected with a fixing plate, and the outer wall of the fixing plate is slidably connected in the inside of the support frame.

[0011] Preferably, the outer wall of the fixing plate is slidably connected with a air supply plate, and the outer wall of the air supply plate is slidably connected to the inner wall of the support frame.

[0012] Preferably, the outer wall of the connecting rod is sleeved with a spring, one end of the spring is fixedly connected to the inner wall of the support frame, and the other end of the spring is fixedly connected to the outer wall of the limiting plate.

[0013] The utility model has the advantages of the following:

[0014] 1. In the utility model, the starting cylinder drives the connecting plate to move the push rod, and the mutual cooperation between the fixed block, the slide rod, the rotating frame, the rotating shaft, the fixing shaft and the air supply blade makes the air supply blade rotate at multiple angles, which is convenient for adjusting the air supply direction according to the operation area requirement.

[0015] 2. In the utility model, pulling the fixed handle drives the connecting rod to move, and the mutual cooperation between the limiting plate, the fixing column, the sliding groove, the fixing plate and the spring makes the fixing plate separate from the inside of the air supply plate, achieves the effect of quickly disassembling the air supply plate, and is convenient for cleaning and replacing the air supply plate. DRAWINGS

[0016] Figure 1 It is the perspective view of the high-efficiency laminar flow purification operating room air conditioning system provided by the utility model;

[0017] Figure 2 It is the support frame internal structure section view schematic view of the high-efficiency laminar flow purification operating room air conditioning system provided by the utility model;

[0018] Figure 3 It is the rotating frame partial structure schematic view of the high-efficiency laminar flow purification operating room air conditioning system provided by the utility model;

[0019] Figure 4 It is the connecting rod partial structure schematic view of the high-efficiency laminar flow purification operating room air conditioning system provided by the utility model;

[0020] Figure 5 It is the limiting plate partial structure schematic view of the high-efficiency laminar flow purification operating room air conditioning system provided by the utility model.

[0021] Legend:

[0022] 1. body; 2. support frame; 3. cylinder; 4. connecting plate; 5. push rod; 6. fixed block; 7. sliding rod; 8. rotating frame; 9. rotating shaft; 10. fixed shaft; 11. air supply blade; 12. connecting rod; 13. fixed handle; 14. limiting plate; 15. fixed column; 16. fixed plate; 17. air supply plate; 18. spring; 19. sliding groove. DETAILED DESCRIPTION

[0023] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the accompanying drawings in the specification of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0024] With reference to Figure 1 , Figure 2 and Figure 3 , the present application provides an embodiment: an efficient laminar flow purification operating room air conditioning system, comprising a body 1, the lower surface of the body 1 is provided with a support frame 2, the inside of the support frame 2 is fixedly connected with a cylinder 3, the output end of the cylinder 3 is fixedly connected with a connecting plate 4, the outer wall of the connecting plate 4 is slidingly connected in the inside of the support frame 2, the inside of the connecting plate 4 is fixedly connected with a push rod 5, the outer wall of the push rod 5 is slidingly connected in the inside of the support frame 2, the outer wall of the push rod 5 is fixedly connected with a fixed block 6, the inside of the fixed block 6 is fixedly connected with a sliding rod 7, the outer wall of the sliding rod 7 is slidingly connected with a rotating frame 8, the inside of the rotating frame 8 is fixedly connected with a rotating shaft 9, the outer wall of the rotating shaft 9 is rotatably connected in the inside of the support frame 2, the inside of the rotating shaft 9 is fixedly connected with a fixed shaft 10, the outer wall of the fixed shaft 10 is fixedly connected with an air supply blade 11, the inside of the support frame 2 is provided with a fixing assembly, and the fixing assembly is used for fixing the support effect.

[0025] Specifically, the inside of the body 1 has a filter, and the body 1 can purify and supply air, the body 1 has a fixed support effect on the support frame 2, and the support frame 2 can accurately deliver clean air, the support frame 2 has a fixing effect on the cylinder 3, and the support frame 2 has a supporting and limiting effect on the connecting plate 4 and the push rod 5. When the connecting plate 4 moves, it will drive the push rod 5 to move inside the support frame 2. The push rod 5 has a fixing effect on the fixed block 6, and the fixed block 6 has a fixing effect on the sliding rod 7. The movement of the fixed block 6 will drive the sliding rod 7 to move simultaneously. The rotating frame 8 is provided with a hole in the inside, and the rotating frame 8 has a fixing effect on the rotating shaft 9. The sliding rod 7 will slide in the hole of the rotating frame 8 when moving, and the rotating frame 8 has a supporting effect on the sliding rod 7 through the hole, so that the sliding rod 7 will not be separated from the rotating frame 8. At the same time, the inner wall of the support frame 2 is provided with a hole, which is used for the movement of the sliding rod 7, and the sliding rod 7 can make the rotating frame 8 rotate in the support frame 2 through the rotating shaft 9. When the rotating frame 8 rotates, it will drive the air supply leaf 11 to rotate through the fixed shaft 10, so that the air supply leaf 11 can rotate at multiple angles and adjust the air supply angle.

[0026] Referring to Figure 2 and Figure 4 , the fixed assembly comprises a connecting rod 12, the outer wall of the connecting rod 12 is slidably connected in the inside of the support frame 2, the outer wall of the connecting rod 12 is fixedly connected with a fixed handle 13, and the outer wall of the connecting rod 12 is fixedly connected with a limiting plate 14. The outer wall of the limiting plate 14 is slidably connected in the inside of the support frame 2.

[0027] Specifically, the connecting rod 12 has a fixing effect on the fixed handle 13, and the fixed handle 13 can be used to pull the connecting rod 12. The connecting rod 12 has a fixing effect on the limiting plate 14, and the outer wall of the connecting rod 12 is fixedly connected with two limiting plates 14. When the limiting plate 14 moves, it will drive the limiting plate 14 to move simultaneously.

[0028] Referring to Figure 1 , Figure 4 and Figure 5 , the inside of the limiting plate 14 is slidably connected with a fixed column 15, the outer wall of the fixed column 15 is slidably connected in the inside of the support frame 2, the inside of the limiting plate 14 is provided with a sliding groove 19, and the outer wall of the fixed column 15 is further connected to the inner wall of the sliding groove 19. The lower surface of the fixed column 15 is fixedly connected with a fixed plate 16, the outer wall of the fixed plate 16 is slidably connected in the inside of the support frame 2, the outer wall of the fixed plate 16 is slidably connected with an air supply plate 17, and the outer wall of the air supply plate 17 is slidably connected to the inner wall of the support frame 2.

[0029] Specifically, the shape of the sliding groove 19 is "S", the limiting plate 14 limits the offset of the fixed column 15 through the sliding groove 19, the inside of the support frame 2 has a groove, and the fixed column 15 is limited and offset, so that the fixed column 15 can only move in the groove. When the limiting plate 14 moves, the inner wall of the sliding groove 19 will slide on the outer wall of the fixed column 15, and through the sliding groove 19 and the groove inside the support frame 2, the fixed column 15 can only move forward and backward. The fixed column 15 has a fixing effect on the fixed plate 16, and when the fixed column 15 moves, it will drive the fixed plate 16 to move at the same time. The support frame 2 supports and limits the offset of the fixed plate 16, so that the fixed plate 16 can only move forward and backward in the inside of the support frame 2. The outer wall of the air supply plate 17 is provided with a groove, and the fixed plate 16 can be placed in the groove. The fixed plate 16 supports the air supply plate 17, and when the fixed plate 16 moves, it will be clamped or separated in the groove of the air supply plate 17, thereby achieving the effect of quickly disassembling the air supply plate 17.

[0030] With reference to Figure 4 and Figure 5 The outer wall of the connecting rod 12 is sleeved with a spring 18, one end of the spring 18 is fixedly connected to the inner wall of the support frame 2, and the other end of the spring 18 is fixedly connected to the outer wall of the limiting plate 14.

[0031] Specifically, the support frame 2 and the limiting plate 14 support the spring 18, and the spring 18 has a reset effect on the connecting rod 12 and the limiting plate 14. When the connecting rod 12 is pulled to move, the limiting plate 14 will extrude the spring 18, and when the connecting rod 12 is released, the limiting plate 14 will be reset through the spring 18. In the resetting process, the limiting plate 14 will again clamp the air supply plate 17, thereby enabling the air supply plate 17 to be installed.

[0032] Working principle: when the air conditioning system is needed, start the air cylinder 3, the air cylinder 3 will drive the connecting plate 4 to move in the inside of the support frame 2, the connecting plate 4 moves and drives the push rod 5 to move in the inside of the support frame 2, when the push rod 5 moves, the fixed block 6 will move in the hole in the inner wall of the support frame 2, when the fixed block 6 in the time will slide in the inner wall of the rotating frame 8, and drive the rotating frame 8 to rotate in the inside of the support frame 2 through the rotating shaft 9, when the rotating frame 8 rotates, the fixed shaft 10 will drive the air supply blade 11 to rotate, the air supply blade 11 can adjust the air supply direction, when the air supply plate 17 needs to be cleaned and replaced, pull the fixed handle 13, the fixed handle 13 will drive the connecting rod 12 to move, the connecting rod 12 moves and drives the limiting plate 14 to move in the inside of the support frame 2, the limiting plate 14 moves at the same time, the fixed column 15 will make the inner wall of the sliding groove 19 slide, through the S shape of the sliding groove 19, the fixed column 15 will move in the sliding process following the shape of the sliding groove 19, and further drive the fixed plate 16 to slide in the inside of the support frame 2 through the fixed column 15, further make the fixed plate 16 separate from the inside of the air supply plate 17, no longer limit and support the air supply plate 17, so that the air supply plate 17 can be quickly disassembled, the device not only can adjust the air supply angle of the air supply blade 11, but also can adjust the air supply direction to adapt to the needs of different operation areas, and is more flexible in use, and the air supply plate 17 can be quickly disassembled, so that the air supply plate 17 can be cleaned or replaced, and the cleanliness of the air supply plate 17 is ensured.

[0033] Finally, it should be pointed out that: the above only for preferred embodiments of the present application, and not for limiting the present application, although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, it still can modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement for part of the technical features, any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application, should be included in the protection scope of the present application.

Claims

1. A high efficiency laminar flow purifying operating room air conditioning system comprising a body (1), characterized in that: The lower surface of the machine body (1) is provided with a support frame (2), the inner part of the support frame (2) is fixedly connected with a gas cylinder (3), the output end of the gas cylinder (3) is fixedly connected with a connecting plate (4), the outer wall of the connecting plate (4) is slidably connected in the inner part of the support frame (2), the inner part of the connecting plate (4) is fixedly connected with a push rod (5), the outer wall of the push rod (5) is slidably connected in the inner part of the support frame (2), the outer wall of the push rod (5) is fixedly connected with a fixed block (6), the inner part of the fixed block (6) is fixedly connected with a sliding rod (7), the outer wall of the sliding rod (7) is slidably connected with a rotating frame (8), the inner part of the rotating frame (8) is fixedly connected with a rotating shaft (9), the outer wall of the rotating shaft (9) is rotatably connected in the inner part of the support frame (2), the inner part of the rotating shaft (9) is fixedly connected with a fixed shaft (10), the outer wall of the fixed shaft (10) is fixedly connected with a blower leaf (11), the inner part of the support frame (2) is provided with a fixing assembly, and the fixing assembly is used for fixing the support effect.

2. The high efficiency laminar flow purifying operating room air conditioning system according to claim 1, characterized in that: The fixing assembly comprises a connecting rod (12), and the outer wall of the connecting rod (12) is slidably connected in the inner part of the support frame (2).

3. The high efficiency laminar flow purifying operating room air conditioning system according to claim 2, characterized in that: The outer wall of the connecting rod (12) is fixedly connected with a limiting plate (14), and the outer wall of the limiting plate (14) is slidably connected in the inner part of the support frame (2).

4. The high efficiency laminar flow purifying operating room air conditioning system according to claim 3, characterized in that: The inner part of the limiting plate (14) is slidably connected with a fixed column (15), and the outer wall of the fixed column (15) is slidably connected in the inner part of the support frame (2).

5. The high efficiency laminar flow purifying operating room air conditioning system according to claim 4, characterized in that: The inner part of the limiting plate (14) is provided with a sliding groove (19), and the outer wall of the fixed column (15) is further connected to the inner wall of the sliding groove (19).

6. The high efficiency laminar flow purifying operating room air conditioning system according to claim 4, characterized in that: The lower surface of the fixed column (15) is fixedly connected with a fixed plate (16), and the outer wall of the fixed plate (16) is slidably connected in the inner part of the support frame (2).

7. The high efficiency laminar flow purifying operating room air conditioning system according to claim 6, characterized in that: The outer wall of the fixed plate (16) is slidably connected with a blower plate (17), and the outer wall of the blower plate (17) is slidably connected to the inner wall of the support frame (2).

8. The high efficiency laminar flow purifying operating room air conditioning system according to claim 7, characterized in that: The outer wall of the connecting rod (12) is sleeved with a spring (18), one end of the spring (18) is fixedly connected to the inner wall of the support frame (2), and the other end of the spring (18) is fixedly connected to the outer wall of the limiting plate (14).