Nanometer oxygen generator for breeding tail water treatment

By designing a dustproof mesh anti-clogging mechanism and a connecting mechanism in the nano oxygen generator, the problem of easy clogging of the heat dissipation dustproof mesh is solved, realizing vibration anti-clogging and convenient disassembly of the dustproof mesh, improving heat dissipation effect and maintenance convenience.

CN223995644UActive Publication Date: 2026-03-17JIANGSU OERRUN BIOTECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-17
Publication Date
2026-03-17

AI Technical Summary

Technical Problem

The heat dissipation and dustproof mesh is easily clogged by dust in the nano oxygen generator, affecting the ventilation and heat dissipation effect.

Method used

The dustproof net anti-clogging mechanism includes a rotating shaft, a push rod, a slider, and a motor drive. The motor drives the rotating shaft and push rod to rotate, thereby vibrating the dustproof net and preventing clogging. The connecting mechanism uses balls and grooves to facilitate the disassembly and cleaning of the dustproof net.

Benefits of technology

It effectively prevents dust filters from clogging, maintains unobstructed airflow, facilitates cleaning and maintenance of the dust filters, and improves heat dissipation efficiency.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223995644U_ABST
    Figure CN223995644U_ABST
Patent Text Reader

Abstract

The nanometer oxygen generator comprises a generator body, the bottom of the generator body is fixedly connected with a plurality of wheel carriers which are evenly distributed, a moving wheel is hinged to the interior of each wheel carrier, a ventilation opening is formed in the generator body, and the bottom of the generator body is provided with a ventilation opening. The outer side of the generator body is fixedly connected with a fixing base, a connecting plate is slidably connected into the fixing base in a sleeved mode, and a dustproof net is arranged in the connecting plate. Through the design of the ventilation opening, ventilation and heat dissipation can be conducted on the interior of the generator body, dust and impurities entering the generator body can be filtered under the action of the dustproof net, pollution to the interior of the generator is avoided, and in the using process of the dustproof net, the output end of the motor can drive the rotating shaft, the rotating block and the ejector rod to rotate; the ejector rod rotates to impact the dustproof net, vibration of the dustproof net can be achieved, and the phenomenon that the air passing ability is affected due to blockage of the dustproof net is avoided.
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Description

Technical Field

[0001] This utility model relates to the field of nano-oxygen generator technology, specifically a nano-oxygen generator for treating aquaculture wastewater. Background Technology

[0002] The nano-oxygen generator for aquaculture wastewater treatment is an advanced technological device used to treat aquaculture wastewater. In the aquaculture industry, wastewater typically contains pollutants such as organic matter, ammonia nitrogen, and phosphorus. Direct discharge into water bodies can cause water pollution and ecological damage. The nano-oxygen generator is a device manufactured using nanotechnology that releases oxygen from the water, increasing the dissolved oxygen content and thus improving water quality and wastewater treatment.

[0003] A utility model patent with patent authorization announcement number CN214653651U discloses an ozone generator based on nanotechnology, comprising a main body with a cavity on one side surface. A push-pull mechanism is provided inside the cavity, including a movable door located inside the cavity. A first pivot is provided at the connection between the movable door and the cavity. A magnetic strip is provided on one side surface of the movable door and movably connected to the inside of the cavity. A pull block is fixedly connected to one side surface of the movable door, located outside the main body. A handle is provided on the other side surface of the movable door, located inside the cavity. A second pivot is provided at the connection between the handle and the cavity, and a torsion spring is provided at the connection between the second pivot and the handle. Through this push-pull mechanism, when the main body needs to be moved for work convenience, the handle can be operated to push the main body, making it more convenient and quick while avoiding direct contact with the main body. Furthermore, when the main body does not need to be moved, the handle can be hidden, not occupying unnecessary space.

[0004] In the aforementioned prior art, during the generator's operation, the dust filter used to filter dust can become clogged with dust if not cleaned and maintained in a timely manner, affecting subsequent ventilation and heat dissipation. Therefore, improvements are needed. Utility Model Content

[0005] The purpose of this invention is to provide a nano-oxygen generator for treating aquaculture wastewater, which solves the problem that the heat dissipation and dust prevention net is prone to blockage and affects the heat dissipation effect if it is not cleaned in time.

[0006] To achieve the above objectives, this utility model provides the following technical solution: a nano-oxygen generator for treating aquaculture wastewater, comprising a generator body, a plurality of evenly distributed wheel frames fixedly connected to the bottom of the generator body, each wheel frame having a movable wheel hinged inside, a ventilation opening inside the generator body, a fixed base fixedly connected to the outer side of the generator body, a connecting plate slidably sleeved inside the fixed base, a dustproof net provided inside the connecting plate, a motor fixedly connected to the top of the fixed base, a connecting mechanism provided on the connecting plate, and an anti-clogging mechanism provided on the dustproof net;

[0007] The anti-clogging mechanism includes a rotating shaft. The lower end of the motor output is fixedly connected to the rotating shaft, and a rotating block is fixedly connected to the bottom of the rotating shaft. Multiple push rods are slidably sleeved inside the rotating block, and each push rod contacts the dust filter. A slider is fixedly connected to the top of each push rod, and the slider is slidably connected to the rotating block. A fixed rod is slidably sleeved inside the slider, and the fixed rod is fixedly connected to the rotating block. A second spring is provided on the outer side of the fixed rod. By designing this anti-clogging mechanism, clogging of the dust filter can be prevented.

[0008] Preferably, the connecting mechanism includes a guide rod, which is slidably sleeved inside the fixed base. A first spring is provided on the outer side of the guide rod, and a guide block is fixedly connected to the outer side of the guide rod. The guide block is slidably connected to the fixed base, and a ball bearing is movably sleeved inside the guide block. The ball bearing is movably connected to the fixed base, and a connecting block is movably sleeved on the outer side of the ball bearing. The connecting block is slidably connected to the fixed base, and a connecting plate is fixedly connected to the top of the connecting block. This connecting mechanism facilitates the disassembly of the dustproof net.

[0009] Preferably, one end of the first spring is fixedly connected to the fixed base, and the other end of the first spring is fixedly connected to the guide block. The first spring is designed so that its force can be applied to the guide block.

[0010] Preferably, the connecting block has a groove inside, and a ball bearing is movably fitted inside the groove. By designing the groove, the ball bearing can roll inside the connecting block.

[0011] Preferably, a sealing ring is rotatably fitted onto the outer side of the rotating shaft, and the sealing ring is fixedly connected to the fixed base. By designing the sealing ring, the connection between the rotating shaft and the fixed base can be sealed.

[0012] Preferably, one end of the second spring is fixedly connected to the rotating block, and the other end of the second spring is fixedly connected to the slider. By designing the second spring, the force of the second spring can be applied to the slider.

[0013] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0014] 1. This utility model, through the design of ventilation openings, can ventilate and dissipate heat inside the generator body. Under the action of the dustproof net, the incoming dust and impurities can be filtered to avoid contamination of the generator. During the use of the dustproof net, the output end of the motor can drive the rotating shaft, rotating block and push rod to rotate. The rotation of the push rod can impact the dustproof net, which can realize the vibration of the dustproof net and avoid the dustproof net from being blocked and affecting the air passage.

[0015] 2. This utility model, by designing the insertion of the ball bearing into the groove inside the connecting block, can limit the position of the connecting block, thereby enabling the fixed use of the connecting plate and the dustproof net. When the handle is pulled, the connecting block and the connecting plate can be moved, thereby separating the ball bearing from the groove. Then the connecting plate can be pulled out from the fixed base, facilitating the cleaning, maintenance, or replacement of the dustproof net. Attached Figure Description

[0016] Figure 1 This is a three-dimensional view of the overall structure of this utility model;

[0017] Figure 2 This utility model Figure 1 A three-dimensional sectional view of a partial structure of the fixing seat;

[0018] Figure 3 This utility model Figure 2 Enlarged view of point A;

[0019] Figure 4 This utility model Figure 2 The front sectional view of the rotating block.

[0020] In the diagram: 1. Generator body; 2. Wheel frame; 3. Moving wheel; 4. Ventilation port; 5. Fixed base; 6. Connecting plate; 7. Dustproof net; 8. Connecting mechanism; 9. Anti-blocking mechanism; 10. Motor; 81. Guide rod; 82. First spring; 83. Guide block; 84. Ball bearing; 85. Connecting block; 86. Groove; 87. Handle; 91. Rotating shaft; 92. Sealing ring; 93. Rotating block; 94. Top rod; 95. Sliding block; 96. Fixed rod; 97. Second spring. Detailed Implementation

[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0022] Please see Figure 1 , Figure 2 A nano-oxygen generator for treating aquaculture wastewater includes a generator body 1. Multiple evenly distributed wheel frames 2 are fixedly connected to the bottom of the generator body 1. Each wheel frame 2 has a movable wheel 3 hinged inside. A ventilation opening 4 is provided inside the generator body 1. A fixed base 5 is fixedly connected to the outside of the generator body 1. A connecting plate 6 is slidably sleeved inside the fixed base 5. A dustproof net 7 is provided inside the connecting plate 6. A motor 10 is fixedly connected to the top of the fixed base 5. A connecting mechanism 8 is provided on the connecting plate 6, and an anti-clogging mechanism 9 is provided on the dustproof net 7.

[0023] Please see Figure 1 , Figure 2 , Figure 3 The connecting mechanism 8 includes a guide rod 81, which is slidably sleeved inside the fixed seat 5. A first spring 82 is provided on the outside of the guide rod 81. One end of the first spring 82 is fixedly connected to the fixed seat 5, and the other end of the first spring 82 is fixedly connected to the guide block 83. By designing the first spring 82, the force of the first spring 82 can act on the guide block 83. The guide block 83 is fixedly connected to the outside of the guide rod 81 and is slidably connected to the fixed seat 5. A ball bearing 84 is movably sleeved inside the guide block 83 and is movably connected to the fixed seat 5. A connecting block 85 is movably sleeved on the outside of the ball bearing 84. A groove 86 is provided inside the connecting block 85, and the ball bearing 84 is movably sleeved inside the groove 86. By designing the groove 86, the ball bearing 84 can roll inside the connecting block 85. The connecting block 85 is slidably connected to the fixed seat 5 and is fixedly connected to the connecting plate 6. A handle 87 is fixedly connected to the top of the connecting block 85. By designing the connecting mechanism 8, it is convenient to disassemble the dustproof net 7.

[0024] Please see Figure 1 , Figure 2 , Figure 4 The anti-blocking mechanism 9 includes a rotating shaft 91. The lower end of the output end of the motor 10 is fixedly connected to the rotating shaft 91. A sealing ring 92 is rotatably sleeved on the outer side of the rotating shaft 91. The sealing ring 92 is fixedly connected to the fixed seat 5. By designing the sealing ring 92, the connection between the rotating shaft 91 and the fixed seat 5 can be sealed. A rotating block 93 is fixedly connected to the bottom of the rotating shaft 91. Multiple push rods 94 are slidably sleeved inside the rotating block 93. The push rods 94 are in contact with the dustproof net 7. A slider 95 is fixedly connected to the top of the push rods 94. The slider 95 is slidably connected to the rotating block 93. A fixed rod 96 is slidably sleeved inside the slider 95. The fixed rod 96 is fixedly connected to the rotating block 93. A second spring 97 is provided on the outer side of the fixed rod 96. One end of the second spring 97 is fixedly connected to the rotating block 93. The other end of the second spring 97 is fixedly connected to the slider 95. By designing the second spring 97, the force of the second spring 97 can act on the slider 95. By designing the anti-blocking mechanism 9, the clogging of the dustproof net 7 can be prevented.

[0025] The specific implementation process of this utility model is as follows: During use, the ventilation port 4 can ventilate and dissipate heat inside the generator body 1. Under the action of the dustproof net 7, the incoming dust and impurities can be filtered to avoid contamination inside the generator. When the dustproof net 7 is in use, the output end of the motor 10 intermittently drives the rotating shaft 91 to rotate. The rotating shaft 91 drives the rotating block 93 to rotate. The rotating block 93 drives the top rod 94 to rotate. The rotation of the top rod 94 will contact the dustproof net 7. The top rod 94 will correspondingly drive the slider 95 to slide along the fixed rod 96 to squeeze the second spring 97. The rotation of the top rod 94 can impact the dustproof net 7, which can realize the vibration of the dustproof net 7 and avoid the blockage of the dustproof net 7 affecting the air passage.

[0026] When it is necessary to disassemble the connecting plate 6, simply pull the handle 87 upwards. The handle 87 will move the connecting block 85, causing the connecting block 85 and the ball 84 to slide relative to each other. The arc surface of the groove 86 inside the connecting block 85 will squeeze and push the ball 84 to move horizontally. The ball 84 will drive the guide block 83 and the guide rod 81 to move horizontally. The guide block 83 will squeeze the first spring 82, which can separate the groove 86 from the ball 84. As the connecting block 85 moves, the connecting plate 6 and the dustproof net 7 can be pulled out from the fixed base 5, making it convenient to clean, maintain or replace the dustproof net 7.

[0027] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A nano-oxygen generator for treating aquaculture effluent, comprising a generator body (1), characterized in that: The bottom of the generator body (1) is fixedly connected with a plurality of wheel supports (2) distributed uniformly, the inside of each wheel support (2) is hingedly connected with a moving wheel (3), the inside of the generator body (1) is provided with a ventilation opening (4), the outside of the generator body (1) is fixedly connected with a fixed seat (5), the inside of the fixed seat (5) is slidably sleeved with a connecting plate (6), the inside of the connecting plate (6) is provided with a dust screen (7), the top of the fixed seat (5) is fixedly connected with a motor (10), the connecting plate (6) is provided with a connecting mechanism (8), and the dust screen (7) is provided with an anti-blocking mechanism (9). The anti-blocking mechanism (9) comprises a rotating shaft (91), the lower end of the output end of the motor (10) is fixedly connected with the rotating shaft (91), the bottom of the rotating shaft (91) is fixedly connected with a rotating block (93), the inside of the rotating block (93) is slidably sleeved with a plurality of jacks (94), the jacks (94) are in contact with the dust screen (7), the top of the jack (94) is fixedly connected with a sliding block (95), the sliding block (95) is slidably connected with the rotating block (93), the inside of the sliding block (95) is slidably sleeved with a fixed rod (96), and the fixed rod (96) is fixedly connected with the rotating block (93). The outer side of the fixed rod (96) is provided with a second spring (97).

2. The nano oxygen generator for treating the aquaculture tail water according to claim 1, characterized in that: The connecting mechanism (8) comprises a guide rod (81), the inside of the fixed seat (5) is slidably sleeved with the guide rod (81), the outer side of the guide rod (81) is provided with a first spring (82), the outer side of the guide rod (81) is fixedly connected with a guide block (83), the guide block (83) is slidably connected with the fixed seat (5), the inside of the guide block (83) is movably sleeved with a ball (84), the ball (84) is movably connected with the fixed seat (5), the outer side of the ball (84) is movably sleeved with a connecting block (85), the connecting block (85) is slidably connected with the fixed seat (5), the connecting block (85) is fixedly connected with the connecting plate (6), and the top of the connecting block (85) is fixedly connected with a handle (87).

3. The nano oxygen generator for treating the aquaculture tail water according to claim 2, characterized in that: One end of the first spring (82) is fixedly connected with the fixed seat (5), and the other end of the first spring (82) is fixedly connected with the guide block (83).

4. The nano oxygen generator for treating the aquaculture tail water according to claim 2, characterized in that: The inside of the connecting block (85) is provided with a groove (86), and the inside of the groove (86) is movably sleeved with a ball (84).

5. The nano oxygen generator for treating the aquaculture tail water according to claim 1, characterized in that: The outer side of the rotating shaft (91) is rotatably sleeved with a sealing ring (92), and the sealing ring (92) is fixedly connected with the fixed seat (5).

6. The nano oxygen generator for treating the aquaculture tail water according to claim 1, characterized in that: One end of the second spring (97) is fixedly connected with the rotating block (93), and the other end of the second spring (97) is fixedly connected with the sliding block (95). The inside of the connecting block (85) is provided with a groove (86), and the inside of the groove (86) is movably sleeved with a ball (84).