Atomization dosing device
By designing atomization and dosing device for liquid reservoirs, atomization boxes, liquid supply components, air supply components and air guide plates, the problem of small atomization amount of existing equipment is solved, and efficient and directional atomization effect and high fog rate are achieved, which is suitable for animal feeding.
Patent Information
- Application Number
- CN202421196341.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-29
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2034-05-29
AI Technical Summary
The existing ultrasonic atomization equipment has a small size and atomization amount, which cannot meet the needs of good atomization effect, high mist yield and strong atomization targeted during animal feeding.
A atomization and dosing device is designed, including a liquid reservoir, atomization box, atomization outlet, a fluid supply assembly, an air supply assembly and an air guide plate. Through the liquid supply assembly, the atomization plate turns the drug solution into water mist, and the air supply assembly blows air into the atomization chamber. The air guide plate guides the water mist to flow quickly to the mist outlet, realizing directional and rapid mist delivery.
It achieves no need for frequent addition of solutions by artificially and frequently, has good atomization effect, high fog yield rate, and strong targeted atomization, meeting the atomization needs during animal feeding.
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Figure CN223041664U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of atomizing devices, and particularly to an atomizing medicine adding device. Background Art
[0002] Ultrasonic atomization uses electronic high-frequency oscillation (the oscillation frequency is 1.7 MHz or 2.4 MHz, beyond the audible range of humans, and this electronic oscillation is harmless to humans and animals) to break the molecular bonds between liquid water molecules to generate natural floating water mist, without heating or adding any chemical reagents.
[0003] Currently, during animal breeding, animals absorb drugs through the nasal cavity, respiratory tract, and lungs, which can greatly improve the treatment effect and the value of vaccine drugs. Therefore, a set of atomizing equipment with good atomizing effect, high mist output rate, and strong atomizing pertinence is required, which is applied to scenarios such as the treatment of related diseases, epidemic disease immunity, and breeding environment disinfection during animal breeding. However, the current ultrasonic atomizing equipment is mainly small ultrasonic humidifying equipment, and most of them are fixed equipment, only used in small spaces, with small volume, small atomizing amount, and frequent water addition, which cannot meet the requirements of good atomizing effect, high mist output rate, and strong atomizing pertinence during animal breeding. Utility Model Content
[0004] The purpose of this application is to provide an atomizing medicine adding device, which solves the problem that traditional atomizing equipment cannot meet the requirements of good atomizing effect, high mist output rate, and strong atomizing pertinence.
[0005] To achieve the above purpose, this application provides an atomizing medicine adding device, including:
[0006] A liquid storage device for storing the medicine solution;
[0007] An atomizing chamber, in which several atomizing plates are arranged, and the atomizing plates are used to turn the medicine solution in the atomizing chamber into water mist;
[0008] A mist outlet, which is communicated with the atomizing chamber and is used to output the water mist into a preset position;
[0009] A liquid supply component for continuously flowing the medicine solution in the liquid storage device into the atomizing chamber to ensure the amount of water mist in the atomizing chamber;
[0010] A blowing component, which is arranged on the atomizing chamber and is used to blow air into the atomizing chamber;
[0011] A wind guiding plate, which is arranged in the atomizing chamber and is used to guide the air blown out by the blowing component, so that the water mist in the atomizing chamber quickly flows towards the mist outlet.
[0012] In some embodiments, the atomizing medicine adding device further includes:
[0013] A control component, communicatively connected to the atomization plate and the air supply component, for controlling the opening and closing of the atomization plate and the air supply component;
[0014] A user instruction receiving unit, communicatively connected to the control component, for receiving the user's operation instructions and transmitting the operation instructions to the control component.
[0015] In some embodiments, the atomization and dosing device further includes a control box, which is arranged on one side of the atomization box. The control component is arranged inside the control box, and a heat dissipation component is arranged on the control box and communicatively connected to the control component. The heat dissipation component is used for dissipating heat from the control box.
[0016] In some embodiments, the atomization box is arranged above the liquid storage device. The liquid supply component includes a pump body and a water inlet pipe. One end of the water inlet pipe is connected to the pump body, and the other end extends into the atomization box. The drug solution in the liquid storage device can be sucked into the atomization box through the pump body.
[0017] In some embodiments, an overflow port is further arranged inside the atomization box. A preset height difference is maintained between the overflow port and the bottom of the atomization box, so that when the liquid level in the atomization box is higher than the overflow port, the excess solution overflows through the overflow port.
[0018] In some embodiments, the air guide plate is bent. One end of the air guide plate is connected below the mist outlet, and the other end forms a preset gap with the side wall of the atomization box. The preset gap is used to guide the air blown out by the air supply component to the upper area of the atomization plate, so that the water mist above the atomization plate quickly flows towards the mist outlet.
[0019] In some embodiments, the air guide plate includes a connecting plate body and a guiding plate body. The connecting plate body is L-shaped. One end of the connecting plate body is connected below the mist outlet, and the other end is connected to the guiding plate body. The guiding plate body includes an inclined plate body and a bent end. The inclined plate body extends in a direction away from the mist outlet and at a preset angle to the horizontal direction. The bent end is connected to the end of the inclined plate body far from the connecting plate body, and the distance between the bent end and the side wall of the atomization box gradually decreases in the direction away from the air supply component.
[0020] In some embodiments, the liquid storage device is arranged upside down on the atomization box, and a float valve is installed inside the atomization box. A preset distance is maintained between the float valve and the bottom of the atomization box. When the liquid level in the atomization box is lower than the float valve, the drug solution in the liquid storage device flows into the atomization box through the float valve. When the liquid level in the atomization box reaches the preset liquid level, the float valve closes, so that the liquid level in the atomized water remains at a certain height.
[0021] In some embodiments, the air guide plate is bent and is arranged directly below the air supply component and on the side of the float valve away from each atomization plate.
[0022] In some embodiments, the atomization and dosing device further includes a frame for carrying the atomization box and the liquid storage device, and universal wheels are installed at the bottom of the frame.
[0023] Compared with the above background art, the atomizing drug adding device provided by the embodiment of the present application includes a liquid storage device, an atomizing chamber, a mist outlet, a liquid supply assembly, a blowing assembly and a wind guiding plate. Among them, the liquid storage device is used to store the drug solution. A plurality of atomizing plates are arranged in the atomizing chamber, and the atomizing plates are used to turn the drug solution in the atomizing chamber into water mist. The mist outlet is communicated with the atomizing chamber, and the mist outlet is used to output the water mist into a preset position. The liquid supply assembly is used to continuously flow the drug solution in the liquid storage device into the atomizing chamber to ensure the amount of water mist in the atomizing chamber. The blowing assembly is arranged on the atomizing chamber, and the blowing assembly is used to blow air into the atomizing chamber. The wind guiding plate is arranged in the atomizing chamber, and the wind guiding plate is used to guide the air blown out by the blowing assembly, so that the water mist in the atomizing chamber quickly flows to the mist outlet.
[0024] It can be seen that for the atomizing drug adding device provided by the embodiment of the present application, the liquid supply assembly is used to continuously flow the drug solution in the liquid storage device into the atomizing chamber. The atomizing plates in the atomizing chamber can turn the drug solution in the atomizing chamber into water mist. By continuously supplying liquid and stable atomizing work, the amount of water mist in the atomizing chamber is ensured. At the same time, the blowing assembly can blow air into the atomizing chamber, and the blown air is guided by the wind guiding plate to a preset position in the atomizing chamber, so that the water mist generated in the atomizing chamber quickly flows to the mist outlet and quickly overflows from the top mist outlet and is output into the preset position, realizing the directional and rapid transportation of the mist. The atomizing drug adding device arranged in this way does not require frequent manual addition of the solution, and has good atomizing effect, high mist output rate and strong atomizing pertinence, solving the problem that the traditional atomizing equipment cannot meet the requirements of good atomizing effect, high mist output rate and strong atomizing pertinence. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] In order to more clearly illustrate the technical solutions in the embodiments of the present application or related technologies, the following will briefly introduce the drawings required to be used in the description of the embodiments or related technologies. Obviously, the drawings in the following description are only the embodiments of the present application. For those of ordinary skill in the art, other drawings can be obtained according to the provided drawings without creative efforts.
[0026] Figure 1 It is a schematic structural diagram of an atomizing drug adding device in an embodiment of the present application;
[0027] Figure 2 is Figure 1 the front view of the shown atomizing drug adding device;
[0028] Figure 3 is Figure 1 the side view of the shown atomizing drug adding device;
[0029] Figure 4 It is the front view of another atomizing drug adding device in an embodiment of the present application;
[0030] Figure 5 For Figure 4 the side view of the atomizing medicine adding device shown in the figure.
[0031] Wherein:
[0032] 1 - liquid storage container, 2 - atomizing chamber, 3 - atomizing plate, 4 - mist outlet, 5 - liquid supply assembly, 51 - pump body, 52 - water inlet pipe, 53 - float valve, 54 - liquid inlet pipeline, 6 - air supply assembly, 7 - air guide plate, 71 - connecting plate body, 72 - diversion plate body, 721 - inclined plate body, 722 - bent end, 8 - control assembly, 9 - user instruction receiving part, 10 - control box, 11 - heat dissipation assembly, 12 - overflow port, 13 - frame, 14 - universal wheel. Specific embodiments
[0033] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.
[0034] In order to enable those skilled in the art in the technical field to better understand the solution of the present application, the present application will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.
[0035] It should be noted that the orientation terms such as "upper end, lower end, left side, right side" described below are defined based on the accompanying drawings of the specification.
[0036] Please refer to Figures 1 to 5 , Figure 1 which is the structural schematic diagram of an atomizing medicine adding device in an embodiment of the present application; Figure 2 For Figure 1 the front view of the atomizing medicine adding device shown in the figure; Figure 3 For Figure 1 the side view of the atomizing medicine adding device shown in the figure; Figure 4 which is the front view of another atomizing medicine adding device in an embodiment of the present application; Figure 5 For Figure 4 the side view of the atomizing medicine adding device shown in the figure.
[0037] The atomizing medicine adding device provided by the embodiment of the present application includes a liquid storage container 1, an atomizing chamber 2, a mist outlet 4, a liquid supply assembly 5, an air supply assembly 6 and an air guide plate 7.
[0038] The liquid storage container 1 is used to store the medicine solution. The liquid storage container 1 is a relatively large liquid storage bucket or liquid storage box, which can supply liquid continuously to maintain the stability of atomization.
[0039] Inside the atomization box 2, there are several atomization plates 3 which are used to turn the drug solution in the atomization box 2 into water mist. The atomization plate 3 is an ultrasonic atomization plate. The ultrasonic atomization plate uses electronic high-frequency oscillation (the oscillation frequency is 1.7 MHz or 2.4 MHz, beyond the audible range of humans, and this electronic oscillation is harmless to humans and animals). Through high-frequency resonance, the molecular bonds between liquid water molecules are broken up to generate natural and floating water mist without heating or adding any chemical reagents.
[0040] The mist outlet 4 is connected to the atomization box 2. The mist outlet 4 is arranged at the top of the atomization box 2 and can accurately output the water mist in the atomization box 2 into the unit inner pen for the animals in the pen to absorb the drug.
[0041] The liquid supply component 5 is used to make the drug solution in the liquid storage device 1 continuously flow into the atomization box 2 to ensure the amount of water mist in the atomization box 2. When the liquid storage device 1 is located below the atomization box 2, the liquid supply component 5 can be a water pump component, using the water pump component to provide power to supply the drug solution in the liquid storage device 1 into the atomization box 2; when the liquid storage device 1 is located above the atomization box 2, the liquid supply component 5 can be a liquid supply pipe component, and the drug solution in the liquid storage device 1 can flow into the atomization box 2 through the liquid supply pipe component. Of course, a control valve for controlling the on-off of the liquid supply pipe component can be arranged on the liquid supply pipe component.
[0042] The air supply component 6 is arranged on the atomization box 2. The air supply component 6 is used to blow air into the atomization box 2. The air supply component 6 can be an air supply fan. The air supply fan is arranged at the top of the atomization box 2. By blowing air downward, it can prompt the water mist vapor inside to quickly discharge through the top of the box, thereby improving the flow efficiency of the water mist in the atomization box 2 and enhancing the atomization efficiency.
[0043] The air guide plate 7 is arranged inside the atomization box 2. The air guide plate 7 is used to guide the air blown out by the air supply component 6 to make the water mist in the atomization box 2 quickly flow towards the mist outlet 4. The air guide plate 7 can be arranged at a preset position below the air supply fan.
[0044] It can be seen that for the atomization and medicine adding device provided by the embodiment of the present application, the liquid supply component 5 is used to make the drug solution in the liquid storage device 1 continuously flow into the atomization box 2. The atomization plate 3 in the atomization box 2 can turn the drug solution in the atomization box 2 into water mist. By continuously supplying liquid and performing stable atomization work, the amount of water mist in the atomization box 2 is ensured. At the same time, the air supply component 6 can blow air into the atomization box 2, and the blown air is guided by the air guide plate 7 to a preset position inside the atomization box 2, so that the water mist generated in the atomization box 2 quickly flows towards the mist outlet 4 and quickly overflows from the top mist outlet 4 and is output to the preset pen, realizing the directional and rapid transportation of the mist.
[0045] The atomizing and medicine adding device configured in this way eliminates the need for frequent manual addition of the solution, and has good atomizing effect, high mist output rate and strong atomizing pertinence, solving the problem that traditional atomizing devices cannot meet the requirements of good atomizing effect, high mist output rate and strong atomizing pertinence.
[0046] Moreover, the atomizing and medicine adding device further includes a control component 8 and a user instruction receiving part 9. Among them, the control component 8 is communicatively connected to the atomizing plate 3 and the air supply component 6. The control component 8 is used to control the opening and closing of the atomizing plate 3 and the air supply component 6. The user instruction receiving part 9 is communicatively connected to the control component 8. The user instruction receiving part 9 is used to receive the operation instructions of the user and transmit the operation instructions to the control component 8.
[0047] For example, the user instruction receiving part 9 can be a switch button or a key. When the user presses the button, the control component 8 transmits a control signal to the atomizing plate 3 and the air supply component 6, so as to turn on or off the atomizing plate 3 and the air supply component 6. The control component 8 can be a waterproof control box arranged in the control box 10.
[0048] In addition, the atomizing and medicine adding device further includes a control box 10. The control box 10 is arranged on one side of the atomizing box 2. The control component 8 is arranged in the control box 10. And a heat dissipation component 11 is arranged on the control box 10. The heat dissipation component 11 can be a heat dissipation fan. The heat dissipation component 11 is communicatively connected to the control component 8. The heat dissipation component 11 is used to dissipate heat from the control box 10.
[0049] With such a setting, by sending a control signal from the control component 8 to the heat dissipation component 11, the heat dissipation component 11 is turned on to discharge the hot air in the control box 10, so as to achieve heat exchange for the control box 10.
[0050] Of course, according to actual needs, the main part of the atomizing box 2 can be set as a vertical structure. In the vertical atomizing box 2, the atomizing box 2 is arranged above the liquid storage device 1. The main part of the atomizing box 2 can also be set as a horizontal structure. In the horizontal atomizing box 2, the liquid storage device 1 is arranged upside down on the atomizing box 2.
[0051] In some embodiments, the atomizing box 2 is arranged above the liquid storage device 1. The liquid supply component 5 includes a pump body 51 and a water inlet pipe 52. One end of the water inlet pipe 52 is connected to the pump body 51. The pump body 51 is arranged in the liquid storage device 1. The other end of the water inlet pipe extends into the atomizing box 2. The medicine solution in the liquid storage device 1 can be sucked into the atomizing box 2 through the pump body 51.
[0052] Furthermore, an overflow port 12 is further arranged in the atomizing box 2. The overflow port 12 and the bottom of the atomizing box 2 maintain a preset height difference, so that when the liquid level in the atomizing box 2 is higher than the overflow port 12, the excess solution overflows through the overflow port 12.
[0053] Specifically, the water inlet and the overflow port 12 of the water inlet pipe 52 are arranged beside the atomization plate 3. A pump body 51 and a liquid reservoir 1 are installed at the bottom of the water inlet. The solution in the liquid reservoir 1 can be sucked into the atomization chamber 2 through the pump body 51. There is a certain liquid level difference between the overflow port 12 and the bottom of the atomization chamber 2. When the amount of water pumped in by the pump body 51 is higher than the overflow port 12, the excess water will overflow automatically.
[0054] In this embodiment, the height of the air guide plate 7 is higher than the optimal fog formation height of the atomization plate 3. The incoming air can carry away the water mist above the fog formation height of the atomization plate 3 through the guiding action of the air guide plate 7.
[0055] The air guide plate 7 is bent. One end of the air guide plate 7 is connected to the lower part of the mist outlet 4, and the other end forms a preset gap with the side wall of the atomization chamber 2. The preset gap is used to guide the air blown out by the air supply assembly 6 to the upper area above the atomization plate 3 (the area above the fog formation height of the atomization plate 3), so that the water mist above the atomization plate 3 can flow quickly to the mist outlet 4.
[0056] Specifically, the air guide plate 7 includes a connecting plate body 71 and a diversion plate body 72. The connecting plate body 71 is L-shaped. One end of the connecting plate body 71 is connected to the lower part of the mist outlet 4, and the other end is connected to the diversion plate body 72. The diversion plate body 72 includes an inclined plate body 721 and a bent end 722. The inclined plate body 721 extends in a direction away from the mist outlet 4 and at a preset angle to the horizontal direction. The bent end 722 is connected to the end of the inclined plate body 721 far from the connecting plate body 71. The distance between the bent end 722 and the side wall of the atomization chamber 2 gradually decreases in the direction away from the air supply assembly 6.
[0057] With such a setting, the air supply assembly 6 can blow out the water mist generated inside the box body along the direction of the air guide plate 7 and quickly overflow from the top mist outlet 4.
[0058] In some embodiments, the liquid reservoir 1 is inverted and arranged on the atomization chamber 2. A float valve 53 is installed inside the atomization chamber 2. The float valve 53 is installed on the liquid inlet pipe 54. The float valve 53 maintains a preset distance from the bottom of the atomization chamber 2. When the liquid level in the atomization chamber 2 is lower than the float valve 53, the drug solution in the liquid reservoir 1 automatically flows into the atomization chamber 2 through the float valve 53. When the liquid level in the atomization chamber 2 reaches the preset liquid level, the float valve 53 closes, so that the liquid level in the atomized water always remains at a certain height.
[0059] In this embodiment, the air guide plate 7 is bent. The air guide plate 7 is arranged directly below the air supply assembly 6 and is located on the side of the float valve 53 away from each atomization plate 3. The height of the air guide plate 7 is higher than the optimal fog formation height of the atomization plate 3. In this way, the water mist generated inside the atomization chamber 2 can be efficiently discharged.
[0060] In addition, for the convenience of sewage discharge, a cleaning and sewage discharge port is arranged near the bottom edge inside the atomization chamber 2.
[0061] To facilitate the movement of the atomizing medicine adding device, the atomizing medicine adding device further includes a frame 13 for carrying the atomizing tank 2 and the liquid storage device 1, and universal wheels 14 are installed at the bottom of the frame 13. The installation of the universal wheels 14 at the bottom of the frame 13 enables free movement in multiple directions, thus facilitating the control of the movement position of the atomizing medicine adding device.
[0062] In summary, the present application provides an atomizing medicine adding device with a larger fog output, which can be applied to the atomization in a larger space for pig farming. Specifically, it includes:
[0063] Firstly, a sufficient number of atomizing plates 3 are provided to increase the fog output and ensure the atomization efficiency.
[0064] Secondly, a mechanical float valve 53 or an overflow port 12 with a certain height is used to ensure that a certain liquid level is always maintained in the atomizing tank 2, avoiding dry burning damage of the atomizing plates 3 and improving the atomization efficiency.
[0065] Thirdly, several air supply fans and air guide plates 7 are arranged in the atomizing tank 2 to improve the air inlet and fog output efficiency.
[0066] Fourthly, several fog outlets 4 are arranged at the top of the atomizing tank 2, which can accurately send water mist to the required pen for atomization.
[0067] Fifthly, universal wheels 14 are provided at the bottom of the device, making it convenient to move.
[0068] During use, a medicine solution needs to be added to the liquid storage device 1. After adding the medicine solution, the device is started through the device button or the Internet of Things platform. The pump body 51 first works to inject liquid into the atomizing tank 2 or flows into the atomizing tank 2 through the float valve 53. After reaching a certain liquid level, atomization begins.
[0069] It should be noted that in this specification, relational terms such as first and second are only used to distinguish one entity from several other entities, and do not necessarily require or imply any actual relationship or order between these entities.
[0070] The above has introduced the atomizing medicine adding device provided by the present application in detail. Specific examples are used in this article to elaborate on the principle and implementation manner of the present application. The description of the above embodiments is only used to help understand the solution and its core idea of the present application. It should be pointed out that for those of ordinary skill in the art in this technical field, without departing from the principle of the present application, several improvements and modifications can still be made to the present application, and these improvements and modifications also fall within the protection scope of the present application.
Claims
1. An atomizing dosing device, characterized in that: include: a liquid reservoir for storing a drug solution; A nebulizer box, wherein a plurality of nebulizer plates are arranged in the nebulizer box, and the nebulizer plates are used to convert the drug solution in the nebulizer box into water mist; A mist outlet is connected to the atomization box and is used to output water mist into a preset column; A liquid supply component, used to allow the drug solution in the liquid reservoir to continuously flow into the atomization box to ensure the amount of water mist in the atomization box; An air supply assembly, provided on the atomizing box, for blowing air into the atomizing box; The air guide plate is arranged in the atomizing box and is used for guiding the wind blown out by the air supply assembly so that the water mist in the atomizing box quickly flows to the mist outlet.
2. The atomizing dosing device according to claim 1, characterized in that: The atomizing and dosing device also includes: A control component, which is in communication with the atomizing plate and the air supply component, and is used to control the opening and closing of the atomizing plate and the air supply component; The user instruction receiving unit is connected to the control component for receiving the user's operation instruction and transmitting the operation instruction to the control component.
3. The atomizing dosing device according to claim 2, characterized in that: The atomizing dosing device also includes a control box, which is arranged on one side of the atomizing box. The control component is arranged in the control box, and a heat dissipation component is provided on the control box. The heat dissipation component is communicatively connected with the control component, and the heat dissipation component is used to dissipate heat from the control box.
4. The atomizing dosing device according to claim 1, characterized in that: The atomizer box is arranged above the liquid reservoir, and the liquid supply assembly includes a pump body and a water inlet pipe, one end of the water inlet pipe is connected to the pump body, and the other end extends into the atomizer box, and the drug solution in the liquid reservoir can be sucked into the atomizer box through the pump body.
5. The atomizing dosing device according to claim 4, characterized in that: An overflow port is also provided in the atomizing box, and a preset height difference is maintained between the overflow port and the bottom of the atomizing box, so that when the liquid level in the atomizing box is higher than the overflow port, the excess solution overflows through the overflow port.
6. The atomizing dosing device according to claim 4, characterized in that: The air guide plate is bent, one end of the air guide plate is connected to the bottom of the mist outlet, and the other end forms a preset gap with the side wall of the atomizer box. The preset gap is used to guide the wind blown out by the air supply assembly to the upper area of the atomizer plate, so that the water mist above the atomizer plate can quickly flow to the mist outlet.
7. The atomizing dosing device according to claim 6, characterized in that: The air guide plate includes a connecting plate body and a guide plate body, the connecting plate body is L-shaped, one end of the connecting plate body is connected to the bottom of the mist outlet, and the other end is connected to the guide plate body, the guide plate body includes an inclined plate body and a bent end, the inclined plate body extends in a direction away from the mist outlet and at a preset angle to the horizontal direction, the bent end is connected to one end of the inclined plate body away from the connecting plate body, and the distance between the bent end and the side wall of the atomizer box gradually decreases in the direction away from the air supply assembly.
8. The atomizing dosing device according to claim 1, characterized in that: The liquid reservoir is invertedly arranged on the atomizer box, and a float valve is installed in the atomizer box. The float valve maintains a preset distance from the bottom of the atomizer box. When the liquid level in the atomizer box is lower than the float valve, the drug solution in the liquid reservoir flows into the atomizer box through the float valve. When the liquid level in the atomizer box reaches a preset level, the float valve is closed to keep the liquid level in the atomized water at a certain height.
9. The atomizing dosing device according to claim 8, characterized in that: The air guide plate is in a bent shape, and is arranged directly below the air supply assembly and located on a side of the float valve away from each atomizing plate.
10. The atomizing dosing device according to any one of claims 1 to 9, characterized in that: The atomizing and dosing device further comprises a frame, which is used to carry the atomizing box and the liquid storage device, and a universal wheel is installed at the bottom of the frame.