Movable ultrasonic ultraviolet light ozone sterilization atomization system
The mobile ultraviolet light ozone misting system provides autonomous, efficient, and thorough disinfection of indoor spaces using integrated ultraviolet light, ozone, and ultrasonic misting technologies, addressing inefficiencies in traditional methods.
Patent Information
- Application Number
- CN202510735020.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-04
- Publication Date
- 2025-07-15
AI Technical Summary
Traditional indoor disinfection equipment relies on manual operation, and the equipment is complex, high cost and low efficiency, and cannot achieve fast and efficient disinfection without dead corners.
Design a mobile ultrasonic ultraviolet ozone sterilization atomization system, integrates ultraviolet sterilization device, ozone sterilization atomization device, ultrasonic atomization device and a potion delivery pump, and configures a navigation system and a mobile mechanism to achieve autonomous movement and all-round sterilization.
It achieves fast and efficient all-round disinfection and sterilization, saves manpower and material resources, has low cost, and has a thorough sterilization effect. It is suitable for deep disinfection on indoor air and items on the surface and inside items with pores.
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Figure CN120305432A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the field of indoor disinfection equipment, and particularly relates to a mobile ultrasonic ultraviolet light ozone sterilization atomization system. Background Art
[0002] With the progress of the times and the improvement of people's living standards, the impact of the quality of the working and living environments on people's health has been increasingly emphasized. The purification of the indoor environment of new buildings is an important link that people urgently need to improve, and pollutants exist everywhere in indoor spaces of different sizes. For example, formaldehyde, VOCs (volatile organic compounds), etc. not only cause hidden damage to the working and living environments, but also have a permanent impact on people's health and work.
[0003] Traditional indoor environmental bacteria disinfection and treatment rely on manual operation of disinfection equipment. The equipment used is numerous and complex, wasting a lot of manpower and material resources. At the same time, the cost is high and the efficiency is low, and it is impossible to enter the continuous disinfection and sterilization process in a short time. Summary of the Invention
[0004] The purpose of the present invention is to provide a mobile ultrasonic ultraviolet light ozone sterilization atomization system, which can continuously implement rapid and efficient atomization for disinfection and sterilization without dead angles, effectively improving the environmental protection quality of people's working and living environments.
[0005] The present invention is realized as follows. A mobile ultrasonic ultraviolet light ozone sterilization atomization system includes a body. A moving mechanism is installed at the bottom of the body. An ultraviolet light sterilization device, an ozone sterilization atomization device, an ultrasonic atomization device, a medicine storage tank, and a medicine delivery pump are configured on the body;
[0006] A navigation system is configured on the moving mechanism, and path data leading to various indoor areas is pre-stored in the navigation system; the moving mechanism can drive the body to autonomously move along the path planned by the navigation system;
[0007] The ultraviolet light sterilization device is used to emit ultraviolet light for deep sterilization of indoor spaces and items;
[0008] The ozone sterilization atomization device is used to atomize ozone into the indoor space for sterilizing the indoor space;
[0009] The delivery pump transports the sterilizing liquid loaded in the medicine storage tank to the ultrasonic atomization device, and the ultrasonic atomization device atomizes the liquid into the indoor space for sterilizing the indoor space.
[0010] Further, a turbine directional atomization device, an ozone chamber, and an ozone delivery pump are also arranged on the body. The ozone delivery pump delivers the ozone loaded in the ozone chamber to the turbine directional atomization device. After the turbine directional atomization device atomizes the ozone, it is directionally sprayed into the indoor space to perform directional sterilization on the indoor space.
[0011] Further, an odor removal device is also arranged on the body. The odor removal device is used to spray two types of super odor removers, type A and type B, into the decoration space to remove odors from the decoration space.
[0012] Further, a microwave antenna and a processor are also arranged on the body. The microwave antenna is electrically connected to the processor; the processor realizes two-way data transmission with the indoor environment detection system, the cloud platform, or the mobile terminal through the microwave antenna.
[0013] Further, a buzzer is also arranged on the body. The buzzer is electrically connected to the processor; when the processor receives the link sound wave sensing signal sent by the indoor environment detection system, the processor controls the buzzer to start to inform the programmer that this system can be started.
[0014] Further, the moving mechanism is of a wheeled or caterpillar structure. The moving mechanism is also equipped with an obstacle avoidance sensor and a positioning system; the obstacle avoidance sensor is used to detect obstacles around the body and send signals to the processor, and the processor controls the moving mechanism to avoid obstacles according to the received signals.
[0015] Further, a user interface is arranged on the box-shaped outer shell of the body. The user interface is electrically connected to the processor, and the user inputs various instructions for controlling the system through the user interface.
[0016] Further, an exhaust fan is arranged inside the box-shaped outer shell of the body, and an air outlet is arranged on the box-shaped outer shell of the body. When the exhaust fan works, the heat generated by the electronic devices can be discharged outside the body through the air outlet.
[0017] Further, a power switch is also arranged on the front of the box-shaped outer shell of the body. The user turns on or off the power of the detection system by operating the power switch.
[0018] Further, the ultraviolet light sterilization device, the ozone sterilization atomization device, and the ultrasonic atomization device are respectively equipped with a working time display and a time regulator. The user can understand the working time of various sterilization devices through the working time display, and the user can adjust the sterilization duration of various sterilization devices by adjusting the time regulator.
[0019] The beneficial effects of the present invention compared with the prior art are as follows:
[0020] The mobile ultrasonic ultraviolet light ozone sterilization atomization system provided by the present invention is configured with an ultraviolet light sterilization device, an ozone sterilization atomization device, an ultrasonic atomization device, a liquid medicine bin, and a liquid medicine delivery pump on the machine body; among them, the ultraviolet light sterilization device can irradiate the indoor air and the surfaces of articles, and the ozone sterilization atomization device and the ultrasonic atomization device can not only adhere to the surfaces of air and articles, but also penetrate into the interiors of porous articles for sterilization. Through the combination of multiple sterilization devices, it is possible to achieve all-round deep disinfection of bacteria in indoor air, on the surfaces of articles, and inside porous articles. Compared with a single sterilization mode, the sterilization effect is more thorough.
[0021] A moving mechanism is installed at the bottom of the machine body of the present invention, and a navigation system is configured on the moving mechanism. The navigation system pre-stores path data leading to various areas in the room; enabling the machine body to autonomously move to each area that needs to be sterilized. With the above configuration, the system can fully automatically perform programmed sterilization operations with high efficiency. Moreover, the integrated design layout of multiple types of sterilization devices in this system has a reasonable and simple spatial layout. Compared with the prior art's sterilization method that uses manual labor and multiple tools in cooperation, the present invention can save a large amount of manpower and material resources and has a low cost. Brief Description of the Drawings
[0022] Figure 1 It is a schematic three-dimensional structure diagram of a mobile ultrasonic ultraviolet light ozone sterilization atomization system provided by an embodiment of the present invention;
[0023] Figure 2 It is a circuit structure block diagram of a mobile ultrasonic ultraviolet light ozone sterilization atomization system provided by an embodiment of the present invention. Detailed Embodiments
[0024] In order to make the objectives, technical solutions, and advantages of the present invention clearer and more understandable, the present invention will be further described in detail below with reference to the drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.
[0025] In the description of the present invention, it should be noted that the orientation or positional relationship indicated by the terms "center", "upper", "lower", "left", "right", "front", "rear", "vertical", "horizontal", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation of the present invention; the terms "first", "second", "third" are only used for descriptive purposes and cannot be understood as indicating or implying relative importance; in addition, unless otherwise clearly defined and limited, the terms "installation", "connection", "connection" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be directly connected, or indirectly connected through an intermediate medium, and it can be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.
[0026] Please refer to Figure 1 and Figure 2 , which shows a mobile ultrasonic ultraviolet ozone sterilization atomization system provided in this embodiment, including a body 1. A moving mechanism is installed at the bottom of the body 1, and an ultraviolet sterilization device, an ozone sterilization atomization device, an ultrasonic atomization device, a medicine bin, a medicine delivery pump, a turbine directional atomization device, an ozone bin, and an ozone delivery pump are configured on the body 1.
[0027] The moving mechanism can be a wheeled structure or a crawler structure. In this embodiment, only a wheeled structure moving mechanism is exemplified. The moving mechanism includes a motor and a runner 2. The motor is installed inside the box-shaped housing of the body 1, and the runner 2 is installed at the four corner positions of the bottom of the box-shaped housing of the body 1. The motor is in transmission connection with the runner 2. When the motor works, it can drive the runner 2 to rotate, so as to realize the movement of the body 1. Further, in order to prevent the body 1 from moving accidentally after it stops, a locking structure can also be provided on the runner 2 to lock the runner, so that the body 1 can stay stably at the current position.
[0028] A user interface, a microwave antenna 3, and a processor are also configured on the body 1. Among them, the user interface and the microwave antenna 3 are installed outside the box-shaped housing, and the processor is welded on the circuit board inside the box-shaped housing. The user interface and the microwave antenna 3 are both electrically connected to the processor. The processor realizes two-way data transmission with the indoor environment detection system, the cloud platform, or the mobile terminal through the microwave antenna 3, and the user inputs various instructions for controlling the system through the user interface.
[0029] The moving mechanism is equipped with a navigation system, an obstacle avoidance sensor, and a positioning system. Among them, the navigation system pre-stores path data leading to various areas indoors; the moving mechanism can drive the body 1 to move autonomously along the path planned by the navigation system. The path data in the navigation system can be sent to the memory of the navigation system through a cloud platform or a mobile terminal, or can be input through a user interface.
[0030] The obstacle avoidance sensor is used to detect obstacles around the body and send signals to the processor. The processor controls the moving mechanism to avoid obstacles according to the received signals.
[0031] The ultraviolet sterilization device is used to emit ultraviolet rays to deeply sterilize the indoor space and items.
[0032] The ozone sterilization atomization device is used to atomize ozone into the indoor space to sterilize the indoor space. The transfer pump transports the sterilizing liquid medicine loaded in the liquid medicine tank to the ultrasonic atomization device, and the ultrasonic atomization device atomizes the liquid medicine into the indoor space to sterilize the indoor space.
[0033] The ozone transfer pump transports the ozone loaded in the ozone tank to the turbine directional atomization device. After the turbine directional atomization device atomizes the ozone, it is directionally sprayed onto the items in the indoor space to perform directional sterilization at multiple angles on the indoor space. Ozone does not require light, can directly and effectively decompose harmful substances and directly synchronously sterilize.
[0034] The above-mentioned ultraviolet sterilization device, ozone sterilization atomization device, ultrasonic atomization device, liquid medicine tank, liquid medicine transfer pump, turbine directional atomization device, ozone tank, and ozone transfer pump are all installed inside the box-shaped housing. Correspondingly, the box-shaped housing is provided with an ultraviolet light screen 4 for the emission of ultraviolet rays, an ozone sterilization atomization button 5 for operating the ozone sterilization atomization device, an ultrasonic atomization button 6 for operating the ultrasonic atomization device, and a turbine directional atomization button 7 for operating the turbine directional atomization device.
[0035] Furthermore, the ultraviolet sterilization device, ozone sterilization atomization device, ultrasonic atomization device, and turbine directional atomization device are all electrically connected to the processor, and are equipped with a working time display 8, a time regulator 9, and a function display lamp 10. Users can understand the working time of various sterilization devices through the working time display 8, can adjust the sterilization duration of various sterilization devices by adjusting the time regulator 9, and can understand whether the corresponding device is in a normal working state through the function display lamp 10.
[0036] Furthermore, the body 1 is also equipped with an odor removal device. The odor removal device is used to spray two types of super odor removers, type A and type B, into the decoration space to deeply sterilize and remove odors from the decoration space and items.
[0037] Further, a buzzer 11 is also arranged on the body 1, and the buzzer 11 is electrically connected to the processor; when the processor receives the linked sound wave sensing signal sent by the indoor environment detection system, the processor controls the buzzer 11 to start to inform the programmer that this system can be started.
[0038] Further, an exhaust fan is arranged inside the box-shaped housing of the body 1, and an air outlet 12 is arranged on the box-shaped housing of the body. When the exhaust fan works, the heat generated by the electronic devices can be discharged outside the body through the air outlet 12.
[0039] Further, a power switch 13 is also arranged on the front of the box-shaped housing of the body. The user can turn on or off the power of the detection system by operating the power switch.
[0040] In summary, for the mobile ultrasonic ultraviolet light ozone sterilization atomization system provided in this embodiment, its ultraviolet light sterilization device can irradiate the indoor air and the surfaces of articles. The ozone sterilization atomization device and the ultrasonic atomization device can not only adhere to the surfaces of air and articles, but also penetrate into the interior of porous articles for sterilization. Through the combination of multiple sterilization devices, all-round deep disinfection of bacteria in indoor air, on the surfaces of articles, and inside porous articles can be achieved. Compared with a single sterilization mode, the sterilization effect is more thorough.
[0041] The body 1 can automatically move to each area that needs sterilization, synchronously realizing programmed sterilization operations with high efficiency. Moreover, the integrated design layout of multiple types of sterilization devices in this system has a reasonable and simple spatial layout. Compared with the sterilization method that uses manual labor and multiple tools in the prior art, the system in this embodiment can save a large amount of manpower and material resources and has a low cost.
[0042] The above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims
1. A mobile ultrasonic ultraviolet light ozone sterilization atomization system, characterized in that, It includes a body, on the bottom of which a moving mechanism is installed. An ultraviolet sterilization device, an ozone sterilization atomization device, an ultrasonic atomization device, a liquid medicine tank and a liquid medicine delivery pump are configured on the body; A navigation system is configured on the moving mechanism, and path data leading to various areas in the room is pre-stored in the navigation system; the moving mechanism can drive the body to autonomously move according to the path planned by the navigation system; The ultraviolet sterilization device is used to emit ultraviolet rays to deeply sterilize the indoor space and items; The ozone sterilization atomization device is used to atomize ozone into the indoor space to sterilize the indoor space; The delivery pump transports the sterilizing liquid medicine loaded in the liquid medicine tank to the ultrasonic atomization device, and the ultrasonic atomization device atomizes the liquid medicine into the indoor space to sterilize the indoor space.
2. The mobile ultrasonic ultraviolet ozone sterilization atomization system according to claim 1, characterized in that, A turbine directional atomization device, an ozone tank and an ozone delivery pump are also configured on the body. The ozone delivery pump transports the ozone loaded in the ozone tank to the turbine directional atomization device, and the turbine directional atomization device atomizes the ozone and then directionally sprays it into the indoor space to conduct directional sterilization on the indoor space.
3. The mobile ultrasonic ultraviolet ozone sterilization atomization system according to claim 1, wherein An odor removal device is also configured on the body. The odor removal device is used to spray two types of super odor removers, type A and type B, into the decoration space to remove odors from the decoration space.
4. The mobile ultrasonic ultraviolet ozone sterilization atomization system according to claim 1, characterized in that, A microwave antenna and a processor are also configured on the body. The microwave antenna is electrically connected to the processor; the processor realizes two-way data transmission with the indoor environment detection system, the cloud platform or the mobile terminal through the microwave antenna.
5. The mobile ultrasonic ultraviolet ozone sterilization atomization system according to claim 4, characterized in that A buzzer is also configured on the body. The buzzer is electrically connected to the processor; when the processor receives the link sound wave sensing signal sent by the indoor environment detection system, the processor controls the buzzer to start to inform the programmer that this system can be started.
6. The mobile ultrasonic ultraviolet ozone sterilization atomization system according to claim 4, characterized in that, The moving mechanism is of a wheeled or crawler structure, and an obstacle avoidance sensor and a positioning system are also configured on the moving mechanism; the obstacle avoidance sensor is used to detect obstacles around the body and send signals to the processor, and the processor controls the moving mechanism to avoid obstacles according to the received signals.
7. The mobile ultrasonic ultraviolet ozone sterilization atomization system according to claim 4, characterized in that A user interface is provided on the box-shaped outer shell of the body. The user interface is electrically connected to the processor, and the user inputs various instructions for controlling the system through the user interface.
8. The mobile ultrasonic ultraviolet ozone sterilization atomization system according to claim 1, wherein An exhaust fan is provided inside the box-shaped outer shell of the body, and an air outlet is provided on the box-shaped outer shell of the body. When the exhaust fan works, the heat dissipated by the electronic devices can be discharged outside the body through the air outlet.
9. The mobile ultrasonic ultraviolet ozone sterilization atomization system according to claim 1, wherein A power switch is also provided on the front of the box-shaped outer shell of the body. The user turns on or off the power of the detection system by operating the power switch.
10. The mobile ultrasonic ultraviolet ozone sterilization atomization system according to claim 1, wherein The ultraviolet sterilization device, the ozone sterilization atomization device and the ultrasonic atomization device are respectively equipped with a working time display and a time regulator. The user can understand the working time of various sterilization devices through the working time display, and the user can adjust the sterilization duration of various sterilization devices by adjusting the time regulator.