Air purification flying robot
By designing a disc-shaped drone body with built-in drive components and an air filtration and disinfection device, the problems of high energy consumption and inaccurate purification of ventilation devices were solved, achieving a precise air purification effect with low energy consumption.
Patent Information
- Application Number
- CN202410642384.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-23
- Publication Date
- 2026-02-24
AI Technical Summary
Existing ventilation systems consume enormous amounts of energy and materials, yet they cannot accurately purify indoor air pollutants based on their distribution location.
A disc-shaped drone body was designed, with built-in drive components and an air filtration and disinfection device. It can take off and fly, and detect the distribution of pollutants through an air detection device to achieve targeted purification.
It achieves low-energy consumption and high-efficiency indoor air purification, and can accurately treat pollutants according to their distribution location, meeting environmental protection requirements.
Smart Images

Figure CN121553410A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of unmanned aerial vehicle (UAV) technology, and more specifically, to an air-purifying flying robot. Background Technology
[0002] Unmanned aerial vehicles (UAVs), also known as drones, are unmanned aircraft controlled by radio remote control equipment and their own program control devices. The term "UAV" is actually a general term for unmanned aerial vehicles, which can be technically categorized into several types: unmanned helicopters, unmanned fixed-wing aircraft, unmanned multi-rotor aircraft, unmanned airships, and unmanned paragliders.
[0003] Air pollution has become one of the greatest threats to human health. Surveys show that indoor air pollution levels in modern cities are 25% to 60% higher than outdoor levels. People spend about 80% to 90% of their lives indoors. Children, pregnant women, and people with chronic illnesses spend even more time indoors than other groups and are more severely affected by indoor air pollution.
[0004] Currently, in scenarios with high air quality requirements, such as laboratories, operating rooms, and workshops, ventilation devices are typically used to purify indoor air. However, existing ventilation devices consume a lot of energy and materials during use, are not conducive to meeting environmental protection requirements, and are not good at achieving precise purification based on the distribution of indoor air pollutants. Therefore, we propose an air-purifying flying robot. Summary of the Invention
[0005] The purpose of this invention is to overcome the shortcomings of the prior art, adapt to practical needs, and provide an air-purifying flying robot to solve the technical problems of existing ventilation devices that consume a lot of energy and materials during use, are not conducive to meeting environmental protection requirements, and are not conducive to achieving precise purification based on the distribution of indoor air pollutants.
[0006] To solve the above-mentioned technical problems, the present invention provides the following technical solution: an air-purifying flying robot, comprising a disc-shaped unmanned aerial vehicle body;
[0007] The disc-shaped drone body has an aerodynamic and streamlined disc-shaped structure, and the interior of the disc-shaped drone body has mounting holes arranged in a ring array. A drive component for driving the disc-shaped drone body to achieve take-off and flight is fixedly installed in the mounting holes. An inner cavity is formed inside the disc-shaped drone body, and a bottom shell component is detachably installed at the bottom of the disc-shaped drone body.
[0008] The disc-shaped drone body has a detachable air filtration and disinfection device for adsorbing and capturing air pollutants inside its internal cavity, and an air detection device for detecting indoor air quality is detachably installed on the top of the internal cavity of the disc-shaped drone body.
[0009] This invention designs a drive component structure that drives a disc-shaped drone to take off and fly, enabling it to operate indoors. An air filtration and disinfection device within its internal cavity adsorbs and captures pollutants from the indoor air, thus purifying the indoor air environment. Furthermore, because the disc-shaped drone uses the drive component for takeoff and flight, it can detect indoor air quality through an air quality monitoring device, allowing for targeted purification based on the distribution of indoor air pollutants. This solves the problems of existing ventilation systems, which consume enormous amounts of energy and materials, are not environmentally friendly, and are not conducive to precise purification based on the distribution of indoor air pollutants.
[0010] Preferably, a through groove is formed at the top of the disc-shaped drone body located in the inner cavity, and a breathable mesh is detachably installed in the through groove. A battery is detachably installed in the inner cavity of the disc-shaped drone body.
[0011] Preferably, the drive assembly includes a mounting ring fixedly disposed in a mounting hole, a connecting rod fixedly disposed in the mounting ring, a drive box fixedly disposed at one end of the connecting rod, a silent high-speed blade disposed on the top of the drive box, and a drive component for driving the silent high-speed blade to rotate disposed inside the drive box.
[0012] Preferably, the bottom of the inner cavity of the disc-shaped drone body is provided with a groove extending to the bottom of the disc-shaped drone body, and the bottom shell assembly includes a bottom shell body that can be detachably installed in the groove, and a second breathable mesh is symmetrically fixedly installed in the bottom shell body.
[0013] Preferably, the bottom of the disc-shaped drone body is provided with a support block in a ring array, and the bottom end of the support block is provided with a support structure for the disc-shaped drone body to be placed stably.
[0014] Preferably, the support structure includes a support leg connected to the support block at one end, and the end of the support leg away from the support block has a planar support portion for stabilizing the disc-shaped UAV body.
[0015] Compared with the prior art, the beneficial effects of the present invention are:
[0016] This invention designs a drive component structure that drives a disc-shaped drone to take off and fly, enabling it to operate indoors. An air filtration and disinfection device within its internal cavity adsorbs and captures pollutants from the indoor air, thus purifying the indoor air environment. Furthermore, because the disc-shaped drone uses the drive component for takeoff and flight, it can detect indoor air quality through an air quality monitoring device, allowing for targeted purification based on the distribution of indoor air pollutants. This solves the problems of existing ventilation systems, which consume enormous amounts of energy and materials, are not environmentally friendly, and are not conducive to precise purification based on the distribution of indoor air pollutants. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of the present invention;
[0018] Figure 2 For the present invention Figure 1 A schematic diagram of the bottom structure;
[0019] Figure 3 For the present invention Figure 1 A sectional view;
[0020] Figure 4 This is a schematic diagram of the bottom shell assembly of the present invention.
[0021] Explanation of the labels in the diagram:
[0022] 1. Disc-shaped UAV body; 2. Mounting hole; 3. Mounting ring; 4. Connecting rod; 5. Drive box; 6. Silent high-speed blades; 7. Ventilation mesh one; 8. Support block; 9. Support leg; 10. Flat support part; 11. Bottom shell assembly; 1101. Bottom shell body; 1102. Ventilation mesh two; 12. Air filtration and disinfection device; 13. Air detection device; 14. Battery. Detailed Implementation
[0023] like Figures 1 to 4As shown, the present invention relates to an air-purifying flying robot, comprising a disc-shaped drone body 1. The disc-shaped drone body 1 has an aerodynamic and streamlined disc-shaped structure, and the interior of the disc-shaped drone body 1 has mounting holes 2 arranged in a ring array. A drive component for driving the disc-shaped drone body 1 to achieve take-off and flight is fixedly installed in the mounting holes 2. An inner cavity is formed inside the disc-shaped drone body 1, and a bottom shell assembly 11 is detachably installed at the bottom of the disc-shaped drone body 1. An air filtration and disinfection device 12 for adsorbing and capturing pollutants in the air is detachably installed in the inner cavity of the disc-shaped drone body 1, and an air detection device 13 for detecting indoor air quality is detachably installed at the top of the inner cavity of the disc-shaped drone body 1.
[0024] like Figure 3 As shown, in an embodiment of the present invention, a through groove is formed at the top of the disc-shaped drone body 1 at the position of the inner cavity, and a breathable mesh 7 is detachably installed in the through groove. A battery 14 is detachably installed in the inner cavity of the disc-shaped drone body 1.
[0025] The disc-shaped drone body 1 has a built-in wireless control module that can connect to the user's mobile phone software to scan and vacuum according to a pre-programmed route, or autonomously find pollution points for sterilization. At the same time, when the battery 14 is about to run out of power, it will automatically return to the compartment for charging based on the preset trajectory in the wireless control module. After charging, it will automatically fly out and continue to purify the air. The disc-shaped drone body 1 is also equipped with an obstacle avoidance sensor and module, which will automatically avoid obstacles.
[0026] like Figure 1 As shown, in an embodiment of the present invention, the drive assembly includes a mounting ring 3 fixedly disposed in the mounting hole 2, a connecting rod 4 fixedly disposed in the mounting ring 3, a drive box 5 fixedly disposed at one end of the connecting rod 4, a silent high-speed blade 6 disposed on the top of the drive box 5, and a drive component for driving the silent high-speed blade 6 to rotate disposed inside the drive box 5.
[0027] like Figures 2-4 As shown, in an embodiment of the present invention, the bottom of the inner cavity of the disc-shaped drone body 1 is provided with a groove extending to the bottom of the disc-shaped drone body 1. The bottom shell assembly 11 includes a bottom shell body 1101 that can be detachably installed in the groove. A second ventilation mesh 1102 is symmetrically fixedly installed inside the bottom shell body 1101. The bottom of the disc-shaped drone body 1 is provided with a support block 8 in a ring array. The bottom end of the support block 8 is provided with a support structure for the disc-shaped drone body 1 to be stably placed. The support structure includes a support leg 9 connected to the support block 8 at one end. The end of the support leg 9 away from the support block 8 forms a planar support part 10 for the disc-shaped drone body 1 to be stably placed.
[0028] Working principle: This embodiment provides an air-purifying flying robot. In use, the silent high-speed blades 6 are first driven to rotate by the drive components in the drive box 5. The rotation of the silent high-speed blades 6 drives the disc-shaped drone body 1 to take off and fly. Indoor air can enter the inner cavity through the ventilation net 7. The indoor air quality is detected by the air detection device 13 to determine the distribution of indoor air pollutants. The drive components then drive the disc-shaped drone body 1 to move. The air filtration and disinfection device 12 adsorbs and captures pollutants in the air, thereby purifying the indoor air.
[0029] The embodiments disclosed in this invention are preferred embodiments, but are not limited thereto. Those skilled in the art can easily understand the spirit of this invention based on the above embodiments and make different extensions and variations, but as long as they do not depart from the spirit of this invention, they are all within the protection scope of this invention.
Claims
1. An air-purifying flying robot, characterized in that, Includes the disc-shaped drone body (1); The disc-shaped UAV body (1) has an aerodynamic and streamlined disc-shaped structure, and the interior of the disc-shaped UAV body (1) has mounting holes (2) arranged in a ring array. The mounting holes (2) are fixedly equipped with a drive component for driving the disc-shaped UAV body (1) to achieve take-off and landing. The disc-shaped UAV body (1) has an inner cavity, and the bottom of the disc-shaped UAV body (1) is detachably equipped with a bottom shell component (11). The disc-shaped drone body (1) has an air filtration and disinfection device (12) for adsorbing and capturing pollutants in the air that can be detachably installed in its inner cavity, and an air detection device (13) for detecting indoor air quality can be detachably installed on the top of the inner cavity of the disc-shaped drone body (1).
2. The air-purifying flying robot according to claim 1, characterized in that, The top of the disc-shaped drone body (1) has a through groove formed at the position of the inner cavity. A breathable mesh (7) is detachably installed in the through groove. A battery (14) is detachably installed in the inner cavity of the disc-shaped drone body (1).
3. The air-purifying flying robot according to claim 1, characterized in that, The drive assembly includes a mounting ring (3) fixedly disposed in the mounting hole (2), a connecting rod (4) fixedly disposed in the mounting ring (3), a drive box (5) fixedly disposed at one end of the connecting rod (4), a silent high-speed blade (6) disposed on the top of the drive box (5), and a drive component for driving the silent high-speed blade (6) to rotate disposed inside the drive box (5).
4. The air-purifying flying robot according to claim 1, characterized in that, The bottom of the inner cavity of the disc-shaped UAV body (1) is provided with a groove that extends to the bottom of the disc-shaped UAV body (1). The bottom shell assembly (11) includes a bottom shell body (1101) that can be detachably installed in the groove. A second ventilation mesh (1102) is symmetrically fixedly installed inside the bottom shell body (1101).
5. The air-purifying flying robot according to claim 1, characterized in that, The bottom of the disc-shaped UAV body (1) is provided with a support block (8) in a ring array. The bottom end of the support block (8) is provided with a support structure for the disc-shaped UAV body (1) to be placed stably.
6. The air-purifying flying robot according to claim 5, characterized in that, The support structure includes a support leg (9) connected to the support block (8) at one end, and the end of the support leg (9) away from the support block (8) has a planar support part (10) for the disc-shaped UAV body (1) to be stably placed.