Negative oxygen ion ecological environment control device
Patent Information
- Application Number
- CN202522288609.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-29
- Publication Date
- 2026-09-11
- Estimated Expiration
- 2035-10-29
AI Technical Summary
[0005]为解决目前,市面上负氧离子设备的负氧离子扩散均匀性差,吹风组件直接对负氧离子发生器吹风,导致负氧离子多集中在出风孔正前方区域,因此将会导致待调节环境内负氧离子浓度梯度差异大的上述技术问题,本实用新型采用技术方案的基本构思是:
本实用新型,通过负氧离子发生器产生负氧离子至转动框中,通过风机产生风力吹向转动框,此时的风力将会携带着负氧离子从喷射口喷出,之后通过出风口排至室内环境中,通过电机带动转动框转动即可带动喷射口沿着出风口进行三百六十度转动,这样携带着负氧离子的风力即可持续均匀的从出风口进行三百六十度的喷出,因此相比较集中在出风口正前方区域的固定吹风,可以快速的对室内环境进行均匀的增加负氧离子,从而防止室内环境中的负氧离子浓度梯度差异大。
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Figure CN224743703U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of negative oxygen ion equipment, specifically, it relates to a negative oxygen ion ecological environment control device. Background Technology
[0002] Negative ions are negatively charged gaseous ions in the air. They not only promote the synthesis and storage of vitamins in the human body and strengthen and activate physiological activities, but also have a significant impact on the life activities of humans and other organisms. As a natural air activator, the concentration fluctuations of negative oxygen ions profoundly reflect the interaction between the ecological environment and human activities. Due to the cyclical changes in climate characteristics and human activities, their concentration levels exhibit significant variations across different seasons. The negative oxygen ion ecological environment transformation project is an ecological optimization project that uses artificial intervention technology as its core, systematically increasing the concentration of negative oxygen ions in specific spaces by simulating natural ionization mechanisms. By releasing highly active negative oxygen ions, it achieves comprehensive functions such as air purification, microbial inhibition, and ecological regulation, reconstructing a microclimate environment that meets health standards.
[0003] Currently, the negative ion diffusion uniformity of negative ions in commercially available negative ion devices is poor. The air blowing component blows air directly onto the negative ion generator, causing the negative ions to concentrate in the area directly in front of the air outlet. This will result in a large difference in the concentration gradient of negative ions in the environment to be regulated.
[0004] In view of this, this utility model is hereby proposed. Utility Model Content
[0005] To address the current technical problem of poor uniformity of negative ion diffusion in commercially available negative ion generators, where the blower assembly directly blows air onto the negative ion generator, causing negative ions to concentrate in the area directly in front of the air outlet, thus leading to large differences in the concentration gradient of negative ions within the environment to be regulated, the basic concept of the technical solution adopted in this utility model is as follows: A negative oxygen ion ecological environment control device includes a main body and a base connected to the bottom of the main body. A rotation control mechanism and a dustproof mechanism are installed on the main body and the base. The rotation control mechanism includes a rotating frame rotatably disposed inside the main body. The outer wall of the rotating frame is provided with a spray nozzle, and the outer wall of the main body is provided with an air outlet. The rotating frame rotates to drive the spray nozzle to rotate along the air outlet to discharge negative oxygen ions. The dustproof mechanism includes a storage groove formed in the main body, and a dust baffle is slidably installed on the inner wall of the storage groove. The dust baffle is used to protect the air outlet from dust.
[0006] In a preferred embodiment of this utility model, the rotation control mechanism includes a fan mounted on a base, a connecting pipe connected to the output end of the fan, the top end of the connecting pipe connected to the bottom end of the rotating frame, a supporting slide rod connected to the outer wall of the rotating frame, a supporting rotating groove formed in the inner wall of the main body, the outer wall of the supporting slide rod slidingly disposed on the inner wall of the supporting rotating groove, a negative oxygen ion generator installed on the inner wall of the rotating frame, and a motor installed at the top end of the inner wall of the main body, the output end of the motor connected to the top surface of the rotating frame.
[0007] In a preferred embodiment of this utility model, a lower magnetic ring is connected to the outer wall of the dust baffle, and an upper magnetic ring is connected to the outer wall of the main body.
[0008] In a preferred embodiment of this utility model, the number of supporting slide rods is four, and the supporting slide rods are distributed in pairs in a symmetrical structure on the outer wall of the rotating frame.
[0009] In a preferred embodiment of this utility model, the outer wall of the supporting slide rod is fitted to the inner wall of the supporting rotating groove.
[0010] In a preferred embodiment of this utility model, the inner wall of the receiving groove is fitted to the outer wall of the dust baffle.
[0011] In a preferred embodiment of this utility model, the number of air outlets is several, and the air outlets are evenly and equidistantly distributed at 360 degrees on the outer wall of the main body.
[0012] Compared with the prior art, the present invention has the following advantages: This invention generates negative oxygen ions through a negative oxygen ion generator and directs them into a rotating frame. A fan then blows air onto the rotating frame, carrying the negative oxygen ions out of the nozzle. The ions are then discharged into the indoor environment through the air outlet. A motor drives the rotating frame to rotate, causing the nozzle to rotate 360 degrees along the air outlet. This ensures that the airflow carrying negative oxygen ions is continuously and evenly sprayed out from the air outlet at a 360-degree angle. Therefore, compared to fixed airflow concentrated in the area directly in front of the air outlet, this invention can quickly and evenly increase the concentration of negative oxygen ions in the indoor environment, thus preventing large differences in the concentration gradient of negative oxygen ions in the indoor environment.
[0013] This invention allows the dust baffle to move upwards by moving the lower magnetic ring, causing it to slide and retract into the inner wall of the receiving groove until the lower magnetic ring moves to the position of the upper magnetic ring. At this point, the two magnetically connect, thus magnetically limiting the dust baffle. The dust baffle can protect the air outlet from dust when the equipment is not in use, preventing dust from the air from adhering to it. This extends the lifespan of the air outlet and avoids affecting subsequent use.
[0014] The specific embodiments of this utility model will be described in further detail below with reference to the accompanying drawings. Attached Figure Description
[0015] In the attached diagram: Figure 1 This is a schematic diagram of the overall structure of this utility model; Figure 2 This is a schematic diagram of the unfolded structure of this utility model; Figure 3 This is a cross-sectional view of the rotation control mechanism of this utility model; Figure 4 This is a cross-sectional view of the dustproof mechanism of this utility model.
[0016] In the diagram: 1. Main body; 2. Base; 31. Rotation control mechanism; 311. Fan; 312. Connecting pipe; 313. Supporting rotating groove; 314. Rotating frame; 315. Supporting slide bar; 316. Negative oxygen ion generator; 317. Spray nozzle; 318. Motor; 319. Air outlet; 32. Dustproof mechanism; 321. Storage groove; 322. Dust baffle; 323. Lower magnetic ring; 324. Upper magnetic ring. Detailed Implementation
[0017] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions in the embodiments will be clearly and completely described below with reference to the accompanying drawings. The following embodiments are used to illustrate this utility model.
[0018] like Figures 1 to 4As shown, a negative oxygen ion ecological environment control device includes a main body 1 and a base 2 connected to the bottom of the main body 1. A rotation control mechanism 31 and a dustproof mechanism 32 are installed on the main body 1 and the base 2. The rotation control mechanism 31 includes a rotating frame 314 rotatably disposed inside the main body 1. A spray nozzle 317 is opened on the outer wall of the rotating frame 314, and an air outlet 319 is opened on the outer wall of the main body 1. The rotating frame 314 rotates to drive the spray nozzle 317 to rotate along the air outlet 319 to discharge negative oxygen ions. The dustproof mechanism 32 includes a receiving groove 321 opened in the main body 1. A dust baffle 322 is slidably disposed on the inner wall of the receiving groove 321. The dust baffle 322 is used to protect the air outlet 319 from dust.
[0019] Furthermore, the rotation control mechanism 31 includes a fan 311 mounted on the base 2, with a connecting pipe 312 connected to the output end of the fan 311. The top end of the connecting pipe 312 is connected to the bottom end of the rotating frame 314. A support slide rod 315 is connected to the outer wall of the rotating frame 314. A support groove 313 is opened on the inner wall of the main body 1. The outer wall of the support slide rod 315 is slidably mounted on the inner wall of the support groove 313. A negative oxygen ion generator 316 is installed on the inner wall of the rotating frame 314. A motor 318 is installed on the top end of the inner wall of the main body 1. The output end of the motor 318 is connected to the top surface of the rotating frame 314.
[0020] Furthermore, there are four support slide rods 315, which are distributed in pairs on the outer wall of the rotating frame 314 in a symmetrical structure, so as to provide uniform support for the upper and lower ends of the rotating frame 314 and improve the stability of the rotating frame 314.
[0021] Furthermore, the outer wall of the support slide rod 315 fits snugly against the inner wall of the support rotating groove 313, and there are several air outlets 319. The air outlets 319 are evenly and equidistantly distributed on the outer wall of the main body 1 at 360 degrees. This can improve the tight fit between the support slide rod 315 and the inner wall of the support rotating groove 313, thereby improving the rotational support stability of the rotating frame 314.
[0022] A lower magnetic ring 323 is connected to the outer wall of the dust baffle 322, and an upper magnetic ring 324 is connected to the outer wall of the main body 1.
[0023] Furthermore, the inner wall of the storage groove 321 fits snugly against the outer wall of the dust baffle 322, thereby improving the tight fit between the storage groove 321 and the dust baffle 322, and thus improving the stability of the dust baffle 322 during the supporting sliding process.
[0024] The implementation principle of the negative oxygen ion ecological environment control device in this embodiment is as follows: When using the device, first place the device indoors, then start the negative oxygen ion generator 316. The negative oxygen ion generator 316 generates negative oxygen ions, and simultaneously starts the motor 318 and the fan 311. As the motor 318 starts, its output end will drive the rotating frame 314 to rotate. At this time, the rotating frame 314 will simultaneously drive the support slide rod 315 on the outer wall to rotate in the inner wall of the support rotating groove 313. The support slide rod 315 and the support rotating groove 313 can push the rotating frame 314 to support the rotation stably. At the same time, the wind force generated by the fan 311 will be transmitted to the rotating frame 314 through the connecting pipe 312 at its top. At this time, the negative oxygen ion generator 316 generates a large amount of negative oxygen ions. A large amount of negative oxygen ions will accumulate in the rotating frame 314. When the air force generated by the fan 311 enters the rotating frame 314, the air force will carry the negative oxygen ions and spray them out through the nozzle 317 opened on the outer wall of the rotating frame 314. Then, the air force carrying negative oxygen ions can be discharged into the indoor environment through the air outlet 319. At the same time, as the rotating frame 314 continues to rotate, it will drive the nozzle 317 to rotate along the air outlet 319. In this way, the air force carrying negative oxygen ions can be continuously and evenly sprayed out from the air outlet 319 in a 360-degree manner. Therefore, compared with the fixed blowing concentrated in the area directly in front of the air outlet 319, it can quickly and evenly increase the negative oxygen ions in the indoor environment, thereby preventing large differences in the concentration gradient of negative oxygen ions in the indoor environment.
[0025] Before using the equipment, first move the lower magnetic ring 323 upwards, so that the lower magnetic ring 323 can drive the dust baffle 322 upwards. At this time, the dust baffle 322 can slide and be stored inside the storage groove 321 until the top surface of the lower magnetic ring 323 moves and contacts the bottom end of the upper magnetic ring 324. In this way, the two can be magnetically connected, thereby magnetically limiting the dust baffle 322. At this time, the dust baffle 322 will be completely stored in the storage groove 321, thereby opening the air outlet 319. The dust baffle 322 can protect the air outlet 319 from dust when the equipment is not in use, thereby preventing dust in the air from adhering to it. Therefore, it can improve the long-term use of the air outlet 319 and avoid affecting subsequent use.
Claims
1. A negative oxygen ion ecological environment control device, comprising a main body (1) and a base (2) connected to and disposed at the bottom end of the main body (1), characterized in that, A rotation control mechanism (31) and a dustproof mechanism (32) are installed on the main body (1) and the base (2). The rotation control mechanism (31) includes a rotating frame (314) rotatably disposed inside the main body (1). The outer wall of the rotating frame (314) is provided with a spray nozzle (317), and the outer wall of the main body (1) is provided with an air outlet (319). The rotating frame (314) rotates to drive the spray nozzle (317) to rotate along the air outlet (319) to discharge negative oxygen ions. The dustproof mechanism (32) includes a storage groove (321) opened in the main body (1), and a dust baffle (322) is slidably stored on the inner wall of the storage groove (321). The dust baffle (322) is used to protect the air outlet (319) from dust.
2. The negative oxygen ion ecological environment control device according to claim 1, characterized in that, The rotation control mechanism (31) includes a fan (311) installed on the base (2). The output end of the fan (311) is connected to a connecting pipe (312). The top end of the connecting pipe (312) is connected to the bottom end of the rotating frame (314). The outer wall of the rotating frame (314) is connected to a support slide rod (315). The inner wall of the main body (1) is provided with a support rotating groove (313). The outer wall of the support slide rod (315) is slidably disposed on the inner wall of the support rotating groove (313). The inner wall of the rotating frame (314) is installed with a negative oxygen ion generator (316). The top of the inner wall of the main body (1) is installed with a motor (318). The output end of the motor (318) is connected to the top surface of the rotating frame (314).
3. The negative oxygen ion ecological environment control device according to claim 1, characterized in that, The outer wall of the dust baffle (322) is connected to a lower magnetic ring (323), and the outer wall of the main body (1) is connected to an upper magnetic ring (324).
4. The negative oxygen ion ecological environment control device according to claim 2, characterized in that, There are four support slide rods (315), which are arranged in pairs on the outer wall of the rotating frame (314) in a symmetrical structure.
5. The negative oxygen ion ecological environment control device according to claim 2, characterized in that, The outer wall of the support slide bar (315) fits snugly against the inner wall of the support rotating groove (313).
6. The negative oxygen ion ecological environment control device according to claim 3, characterized in that, The inner wall of the receiving groove (321) fits snugly against the outer wall of the dust baffle (322).
7. The negative oxygen ion ecological environment control device according to claim 2, characterized in that, The number of air outlets (319) is several, and the air outlets (319) are evenly and equidistantly distributed at 360 degrees on the outer wall of the main body (1).