Intelligent indoor oxygenating device for building

Through the design of the guide plate and the connecting frame, the driving motor controls the rotation and fan of the guide plate, the problem of slow oxygen diffusion speed at the terminal of the diffusion oxygen supply machine is solved, and the rapid diffusion of oxygen indoors is achieved.

CN223050169UActive Publication Date: 2025-07-01WEIHAI TONGFANG PROJECT MANAGEMENT CONSULTING CO LTD
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Patent Information

Application Number
CN202422250435.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-13
Publication Date
2025-07-01
Estimated Expiration
2034-09-13

AI Technical Summary

Technical Problem

The terminal installation position of the existing diffusion oxygen supply machine is fixed, resulting in slow diffusion of oxygen indoors and affecting the oxygen supply effect.

Method used

An intelligent indoor oxygen replenishment device for building is designed. Through the coordination of the guide plate and the connecting frame, the driving motor is used to control the rotation and fan of the guide plate, adjust the oxygen flow direction and accelerate the air flow speed.

Benefits of technology

The diffusion speed of oxygen in the room is improved and the diffusion effect of oxygen in the room is enhanced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of indoor oxygen supplementation, and particularly relates to a building intelligent indoor oxygen supplementation device which comprises a dispersion oxygen supply machine terminal and a driving motor, a plurality of oxygen outlets are formed in the bottom of the dispersion oxygen supply machine terminal, and a plurality of guide plates are rotatably connected to the bottom of the dispersion oxygen supply machine terminal. One side of each guide plate is rotationally connected with a connecting block, and a connecting frame is arranged on the outer sides of the multiple guide plates. A plurality of guide plates can rotate left and right through left-right translation of a connecting frame, when the directions of the guide plates are changed, the flowing direction of oxygen can be adjusted, so that the diffusion speed of the oxygen can be increased, meanwhile, in the rotating process of the guide plates, air around the terminal of the diffusion oxygen supply machine can be flapped, and the diffusion speed of the oxygen can be increased. And the flow speed of air around the terminal of the dispersion oxygen supply machine is accelerated through flapping of the guide plate, so that the diffusion speed of oxygen entering a room is further improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of indoor oxygen supplementation, and particularly relates to an intelligent building indoor oxygen supplementation device. Background Art

[0002] A diffusion oxygen supply machine is a device that can continuously provide high-concentration oxygen to a certain space. It mainly separates nitrogen and other gases in the air, leaves high-concentration oxygen, and releases the oxygen into the surrounding environment in a diffusion manner. It mainly includes a host installed outdoors and an oxygen supply terminal installed indoors. Since the installation position of the oxygen supply terminal is fixed and the air circulation in the room is relatively slow, after oxygen enters the room through the oxygen supply terminal, the natural diffusion speed of oxygen is relatively slow, and a large amount of oxygen will accumulate around the oxygen supply terminal, resulting in an unsatisfactory oxygen supply effect. Content of the Utility Model

[0003] The utility model provides an intelligent building indoor oxygen supplementation device, which has the characteristics that the flow direction of oxygen can be adjusted through a plurality of guide plates, and at the same time, the air flow speed around the diffusion oxygen supply machine terminal is accelerated by the flapping of the guide plates, so as to be beneficial to further improving the diffusion speed of oxygen after entering the room.

[0004] The utility model provides the following technical solution: including a diffusion oxygen supply machine terminal and a driving motor, characterized in that: a plurality of oxygen outlets are opened at the bottom of the diffusion oxygen supply machine terminal, a plurality of guide plates are rotatably connected to the bottom of the diffusion oxygen supply machine terminal, a connecting block is rotatably connected to one side of the guide plate, a connecting frame is arranged outside the plurality of guide plates, the connecting frame includes a first connecting plate, a second connecting plate and a plurality of connecting rods, the first connecting plate and the second connecting plate are fixedly connected through the plurality of connecting rods, a plurality of connecting grooves are opened on the second connecting plate, and the connecting block is slidably connected to the inner side of the connecting groove, and the side of the first connecting plate away from the second connecting plate is connected to the driving motor.

[0005] Wherein, a plurality of connecting seats are arranged at the bottom of the diffusion oxygen supply machine terminal, a through groove is opened at the top of the guide plate, and the connecting seat is movably connected to the through groove.

[0006] Wherein, the plurality of guide plates and the plurality of oxygen outlets are mutually misaligned, and ribbons are arranged at the bottoms of some of the guide plates.

[0007] Wherein, the two ends of the connecting rod are respectively fixedly connected to the first connecting plate and the second connecting plate, and the first connecting plate is parallel to the second connecting plate.

[0008] Wherein, the length of the connecting rod is the same as the width of the guide plate, and a plurality of the connecting rods and a plurality of the connecting grooves are staggered with each other.

[0009] Wherein, a spring 1 and a spring 2 are provided on the inner side of the connecting groove, the bottom of the spring 1 is fixedly connected to the top of the connecting block, and the top of the spring 2 is fixedly connected to the bottom of the connecting block.

[0010] Wherein, the driving motor is fixedly connected to the bottom of the diffusion oxygen supply machine terminal, and the driving motor is connected to the connecting plate 1 through a connecting shaft.

[0011] The beneficial effect of the utility model is that a plurality of guide plates can be rotated left and right by the left and right translation of the connecting frame. When the directions of the plurality of guide plates are changed, the flow direction of oxygen can be adjusted, thereby increasing the diffusion speed of oxygen. At the same time, when the plurality of guide plates are rotating, the air around the terminal of the diffusion oxygen supply machine will be fanned. The fanning of the guide plates will accelerate the flow speed of air around the terminal of the diffusion oxygen supply machine, thereby facilitating further increasing the diffusion speed of oxygen after entering the room.

[0012] The parts not involved in the device are the same as those in the prior art or can be implemented by using the prior art. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 This is a schematic diagram of the main structure of the utility model;

[0014] Figure 2 It is a schematic diagram of the top view structure of the utility model;

[0015] Figure 3 It is a side view structural schematic diagram of the utility model;

[0016] Figure 4 It is a structural schematic diagram of the guide plate in the utility model;

[0017] Figure 5 It is a structural schematic diagram of the connecting frame in the utility model;

[0018] Figure 6 For the utility model Figure 1 Schematic diagram of the motion dynamics;

[0019] In the figure: 1. diffusion oxygen supply machine terminal; 11. oxygen outlet; 12. connecting seat; 13. driving motor; 131. connecting shaft; 2. guide plate; 21. through groove; 22. connecting block; 23. ribbon; 3. connecting frame; 31. connecting plate 1; 32. connecting plate 2; 321. connecting groove; 322. spring 1; 323. spring 2; 33. connecting rod. DETAILED DESCRIPTION

[0020] Please refer to Figures 1-6 , the present utility model provides the following technical solutions: including a diffused oxygen supply machine terminal 1 and a driving motor 13, characterized in that: a plurality of oxygen outlets 11 are opened at the bottom of the diffused oxygen supply machine terminal 1, a plurality of guide plates 2 are rotatably connected to the bottom of the diffused oxygen supply machine terminal 1, one side of the guide plate 2 is rotatably connected with an adapter block 22, a connecting frame 3 is arranged outside the plurality of guide plates 2, the connecting frame 3 includes a first connecting plate 31, a second connecting plate 32 and a plurality of connecting rods 33, the first connecting plate 31 and the second connecting plate 32 are fixedly connected by a plurality of connecting rods 33, a plurality of connecting grooves 321 are opened on the second connecting plate 32, the adapter block 22 is slidably connected to the inside of the connecting groove 321, and the side of the first connecting plate 31 away from the second connecting plate 32 is connected to the driving motor 13.

[0021] In this implementation: It includes a diffused oxygen supply machine terminal 1 and a driving motor 13. The diffused oxygen supply machine terminal 1 is connected to the main machine of the diffused oxygen supply machine through a pipeline, and the diffused oxygen supply machine terminal 1 is generally installed on the wall of an indoor building. A control panel is provided on the outer side of the diffused oxygen supply machine terminal 1. The driving motor 13 is connected to the diffused oxygen supply machine terminal 1 through an electric connection line. A plurality of oxygen outlets 11 are opened at the bottom of the diffused oxygen supply machine terminal 1, and the plurality of oxygen outlets 11 are equidistantly distributed. Oxygen is transmitted through the pipeline to the position of the diffused oxygen supply machine terminal 1 and then enters the room through the plurality of oxygen outlets 11. A plurality of guide plates 2 are rotatably connected to the bottom of the diffused oxygen supply machine terminal 1, and the plurality of guide plates 2 are equidistantly distributed. The movement direction of oxygen can be guided through the plurality of guide plates 2. Through the rotation of the guide plates 2, oxygen can be diffused in different directions. One side of the guide plate 2 is rotatably connected to an adapter block 22. The adapter block 22 is a rectangular block. A connecting frame 3 is provided outside the plurality of guide plates 2. Through the connection of the connecting frame 3, the plurality of guide plates 2 can move synchronously. The connecting frame 3 includes a first connecting plate 31, a second connecting plate 32, and a plurality of connecting rods 33. The first connecting plate 31 and the second connecting plate 32 have the same size. The plurality of guide plates 2 are located between the first connecting plate 31 and the second connecting plate 32. The first connecting plate 31 and the second connecting plate 32 are fixedly connected through the plurality of connecting rods 33. The first connecting plate 31 and the second connecting plate 32 are parallel to each other. The plurality of connecting rods 33 are equidistantly distributed, and the connecting rods 33 do not contact the guide plates 2. Therefore, the connecting rods 33 will not interfere with the rotation of the guide plates 2. A plurality of connecting grooves 321 are opened on the second connecting plate 32, and the plurality of connecting grooves 321 are equidistantly distributed, and the connecting grooves 321 are matched with the size of the adapter block 22. The plurality of connecting grooves 321 correspond to the positions of the plurality of guide plates 2. The adapter block 22 is slidably connected to the inner side of the connecting groove 321. When the connecting frame 3 moves to the left or right, the height of the connecting frame 3 is the same. And because the adapter block 22 is located inside the connecting groove 321, the translation of the connecting frame 3 will drive the plurality of guide plates 2 to rotate to the left or right. During the rotation process, the adapter block 22 will slide upward along the connecting groove 321, and the adapter block 22 will not rotate along with the rotation of the guide plates 2. The side of the first connecting plate 31 away from the second connecting plate 32 is connected to the driving motor 13. Through the driving motor 13, the connecting frame 3 can be reciprocally moved left and right, so that the plurality of guide plates 2 will swing left and right. When the directions of the plurality of guide plates 2 change, the flow direction of oxygen can be adjusted, thereby improving the diffusion speed of oxygen. At the same time, when the plurality of guide plates 2 are rotating, the air around the diffused oxygen supply machine terminal 1 will be fanned. Through the fanning of the guide plates 2, the air flow speed around the diffused oxygen supply machine terminal 1 is increased, which is beneficial to further improving the diffusion speed of oxygen after it enters the room.

[0022] The bottom of the terminal 1 of the diffused oxygen supply machine is provided with a plurality of connecting seats 12. The top of the guide plate 2 is provided with a through groove 21, and the connecting seat 12 is movably connected with the through groove 21; the connecting seat 12 is fixedly connected with the bottom of the terminal 1 of the diffused oxygen supply machine, and a plurality of connecting seats 12 and a plurality of oxygen outlets 11 are offset from each other. Therefore, the guide plate 2 will not interfere with the outflow of oxygen.

[0023] A plurality of guide plates 2 and a plurality of oxygen outlets 11 are offset from each other. Among them, the bottom of a plurality of guide plates 2 is provided with streamers 23; the guide plate 2 will not block the terminal 1 of the diffused oxygen supply machine. When oxygen passes between a plurality of guide plates 2, it will drive the streamers 23 to flutter, and the air circulation speed around the terminal 1 of the diffused oxygen supply machine can also be increased through the fluttering of the streamers 23.

[0024] Both ends of the connecting rod 33 are fixedly connected with the first connecting plate 31 and the second connecting plate 32 respectively, and the first connecting plate 31 and the second connecting plate 32 are parallel; through the connection of a plurality of connecting rods 33, the positions between the first connecting plate 31 and the second connecting plate 32 are fixed.

[0025] The length of the connecting rod 33 is the same as the width of the guide plate 2, and a plurality of connecting rods 33 and a plurality of connecting slots 321 are offset from each other; when the first connecting plate 31 and the second connecting plate 32 are respectively located on both sides of the guide plate 2, both sides of the guide plate 2 are respectively in close contact with the first connecting plate 31 and the second connecting plate 32. Therefore, the connecting block 22 will not separate from the connecting slot 321.

[0026] A first spring 322 and a second spring 323 are arranged inside the connecting slot 321. The bottom of the first spring 322 is fixedly connected with the top of the connecting block 22, and the top of the second spring 323 is fixedly connected with the bottom of the connecting block 22; the connecting block 22 is located between the first spring 322 and the second spring 323, and the connecting block 22 and the connecting frame 3 can be shock-absorbed through the second spring 323 and the first spring 322.

[0027] The driving motor 13 is fixedly connected to the bottom of the terminal 1 of the diffused oxygen supply machine, and the driving motor 13 is connected with the first connecting plate 31 through a connecting shaft 131; the driving motor 13 can control the left and right translation of the connecting shaft 131. Since one end of the connecting shaft 131 away from the driving motor 13 is connected with the first connecting plate 31, the connecting shaft 131 will drive the connecting frame 3 to translate left and right.

[0028] Working principle and usage process of the present utility model: When in use, oxygen is transmitted through a pipeline to the position of the terminal 1 of the diffused oxygen supply machine, and then enters the room through a plurality of oxygen outlets 11. Then, the driving motor 13 is used to make the connecting frame 3 perform a reciprocating movement of left - right translation. When the connecting frame 3 moves to the left or right, since the heights of the connecting frames 3 are the same, and because the connecting block 22 is located inside the connecting groove 321, therefore, the translation of the connecting frame 3 will drive a plurality of guide plates 2 to rotate to the left or right. During the rotation process, the connecting block 22 will slide upward along the connecting groove 321, and the connecting block 22 will not rotate along with the rotation of the guide plate 2. By rotating a plurality of guide plates 2, the flow direction of oxygen can be changed. At the same time, the rotation of the guide plate 2 will also fan the surrounding air, thereby increasing the diffusion speed of oxygen. Moreover, when oxygen passes between a plurality of guide plates 2, it will drive the ribbon 23 to flutter. Through the fluttering of the ribbon 23, the air circulation speed around the terminal 1 of the diffused oxygen supply machine can also be increased.

Claims

1. An intelligent indoor oxygen supply device for a building, comprising a diffuse oxygen supply terminal (1) and a drive motor (13), characterized in that: The bottom of the diffuse oxygen supply terminal (1) is provided with a plurality of oxygen outlets (11), the bottom of the diffuse oxygen supply terminal (1) is rotatably connected to a plurality of guide plates (2), one side of the guide plate (2) is rotatably connected to a connection block (22), a connection frame (3) is provided on the outer side of the plurality of guide plates (2), the connection frame (3) comprises a connection plate 1 (31), a connection plate 2 (32) and a plurality of connection rods (33), the connection plate 1 (31) and the connection plate 2 (32) are fixedly connected via a plurality of connection rods (33), the connection plate 2 (32) is provided with a plurality of connection grooves (321), the connection block (22) is slidably connected to the inner side of the connection groove (321), and the connection plate 1 (31) is connected to the drive motor (13) on a side away from the connection plate 2 (32).

2. The intelligent indoor oxygen supplement device for buildings according to claim 1, characterized in that: A plurality of connection seats (12) are provided at the bottom of the diffuse oxygen supply terminal (1), a through slot (21) is provided at the top of the guide plate (2), and the connection seat (12) is movably connected to the through slot (21).

3. The intelligent indoor oxygen supplementation device for buildings according to claim 2 is characterized in that: The plurality of guide plates (2) and the plurality of oxygen outlets (11) are mutually staggered, wherein streamers (23) are provided at the bottom of the plurality of guide plates (2).

4. The intelligent indoor oxygen supplement device for buildings according to claim 3 is characterized in that: The two ends of the connecting rod (33) are respectively fixedly connected to the first connecting plate (31) and the second connecting plate (32), and the first connecting plate (31) is parallel to the second connecting plate (32).

5. The intelligent indoor oxygen supplement device for buildings according to claim 4, characterized in that: The length of the connecting rod (33) is the same as the width of the guide plate (2), and a plurality of the connecting rods (33) and a plurality of the connecting grooves (321) are mutually staggered.

6. The intelligent indoor oxygen supplement device for buildings according to claim 5, characterized in that: A spring 1 (322) and a spring 2 (323) are provided on the inner side of the connection groove (321); the bottom of the spring 1 (322) is fixedly connected to the top of the connection block (22); and the top of the spring 2 (323) is fixedly connected to the bottom of the connection block (22).

7. The intelligent indoor oxygen supplement device for buildings according to claim 6, characterized in that: The driving motor (13) is fixedly connected to the bottom of the diffusion oxygen supply machine terminal (1), and the driving motor (13) is connected to the connecting plate 1 (31) via a connecting shaft (131).