A mist-type disinfection atomization device and its working method

By designing a mist-type disinfection atomization device, the combination of spiral atomization main pipe and heater is used to solve the problems of insufficient atomization and poor disinfection effect, and the stability and visual detection of the disinfection effect are achieved.

CN112843314BActive Publication Date: 2025-08-22NINGBO HUAQIN INTELLIGENT EQUIPMENT CO LTD
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Patent Information

Application Number
CN202110287031.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-03-17
Publication Date
2025-08-22
Estimated Expiration
2041-03-17

AI Technical Summary

Technical Problem

Inadequate heating in the existing atomization and disinfection technology leads to insufficient atomization and poor disinfection effect. The effect of the disinfectant is reduced after heating, making it difficult to detect the degree of disinfection.

Method used

A mist-type disinfection atomization device is designed, including atomization box, atomization base, insulation box, heater, ultrasonic atomization mechanism and fan. Through the spiral atomization main pipe and micropump system, the disinfection solution is fully heated and atomized and visual disinfection effect of the suspension agent.

Benefits of technology

The disinfection effect and efficiency are improved to ensure sufficient atomization. The combination of heater and insulated box ensures atomization effect. The suspension agent realizes visual detection of the disinfection degree.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a mist-type disinfection atomization device and a working method thereof, comprising a misting box, an atomizing base fixedly provided inside the misting box, an insulation box fixedly provided with an obliquely upwardly extending base, a spray formed in the insulation box through a spiral atomizing main pipe and a heater, one end of the heating main pipe extending out of the misting box and docking with a collecting nozzle, the other end of the heating main pipe being communicated with two atomizing branch pipes, and being communicated with a medicine bottle below through a micropump, the collecting nozzle comprising a collecting chamber docking with the atomizing main pipe, the lower end of the collecting chamber obliquely extending into the misting box through a collecting pipe and downwardly passing through the atomizing base to be communicated with an ultrasonic atomizing mechanism, the mist-type disinfection atomization device having a simple structure and a stable and efficient disinfection effect.
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Description

Technical Field

[0001] The invention relates to a mist-type disinfection atomization device and a working method thereof. Background Art

[0002] In the existing atomization disinfection technology, when the environment is disinfected by heating the atomized disinfectant, insufficient heating often occurs, that is, insufficient atomization, and poor effect. In addition, the disinfection effect of the disinfectant will be reduced after heating and atomization. If it cannot be replenished, its disinfection effect and efficiency will be greatly reduced. It is difficult to detect the degree of disinfection of the environment during the atomization disinfection process. Summary of the Invention

[0003] In view of the deficiencies in the prior art, the technical problem to be solved by the present invention is to provide a mist-type disinfection atomization device and a working method thereof, which not only has a reasonable structure but also has stable atomization and disinfection effects.

[0004] In order to solve the above technical problems, the technical solution of the present invention is: a mist-type disinfection atomization device, comprising an atomization box, an atomization base is fixedly provided inside the atomization box, and an insulation box extending obliquely upward is fixedly provided on the atomization base. Spray is formed in the insulation box through a spiral atomization main pipe and a heater. One end of the heating main pipe extends out of the atomization box and connects with a collecting nozzle, and the other end is communicated with two atomization branches, and is communicated with the medicine bottle below through a micropump. The collecting nozzle includes a collecting chamber connected to the atomization main pipe, and the lower end of the collecting chamber extends obliquely into the atomization box through a collecting pipe and passes downward through the atomization base to communicate with the ultrasonic atomization mechanism.

[0005] Furthermore, the atomizer base is horizontally arranged in the atomizer box, the insulation box is fixedly connected to the atomizer base via a fixed base, the lower end of the fixed base is fixedly connected to the atomizer base, and the front end of the fixed base extends obliquely upward and forward. The insulation box extends in the same direction as the fixed base and is fixedly connected to the upper end of the fixed base. The micro pumps are all fixedly connected to the atomizer base, and the medicine bottles are all located below the atomizer base. A through opening is opened on the atomizer base for the atomizer branch pipe to extend downward.

[0006] Furthermore, the atomizing main pipe is spirally wound around the outer periphery of the heater and is embedded and fixed in the heat-conducting block. The heat-conducting block is cast and wrapped around the outside of the atomizing main pipe and the heater and filled in the insulation box. The atomizing main pipe extends from back to front in the same direction as the insulation box, and the heat-conducting blocks extend from the front and rear ends.

[0007] Furthermore, the circumferential sides of the atomizer base are fixedly connected to the inner end surface of the atomizer box to divide the atomizer box into upper and lower layers. The ultrasonic atomizer mechanism and the medicine bottle are both located in the lower layer. The ultrasonic atomizer mechanism includes an atomizer chamber, the top opening of the atomizer chamber is connected to the collecting chamber, an ultrasonic module is provided at the bottom of the atomizer chamber, and a ventilation port connected to the external fan is opened near the top of the atomizer chamber.

[0008] Furthermore, the outer wall of the atomizing chamber is fixedly provided with a wind cavity connected to the vent, the bottom end surface of the wind cavity is extended obliquely upward from the outer wall of the atomizing chamber, and the fan is docked at the bottom end of the wind cavity, that is, the fan blows air obliquely upward toward the vent, and the top of the vent is fixedly provided with an air guide plate extending obliquely downward.

[0009] Furthermore, a water pump is fixedly provided on the outer wall of the atomization chamber and extends into the atomization chamber and communicates with the medicine bottle through a hose. Two liquid level sensors are fixedly provided on the inner wall of the atomization chamber. The two liquid level sensors have different heights, and the height of the higher liquid level sensor does not exceed the height of the vent.

[0010] Furthermore, a vertical liquid exchange tube is fixedly connected to the lower end of the atomizing chamber, the upper end of the liquid exchange tube extends into the atomizing chamber, and the lower end extends out of the atomizing box. A manual valve is provided on the liquid exchange tube.

[0011] Furthermore, the front end surface of the upper layer of the atomizer box is inclined, slanting downward from the top to match the installation of the collecting chamber. An atomizer nozzle is opened at the front end of the collecting chamber. The top of the rear end of the upper layer of the atomizer box is concave and a control platform is fixed thereon. Two push handles extend horizontally backward from the rear end of the upper layer of the atomizer box.

[0012] Furthermore, the bottom end of the lower layer of the atomizing box is fixed on a universal caster, and a box door is hinged on the outer wall of the lower layer of the atomizing box.

[0013] Furthermore, the control platform is electrically connected to the insulated box, heater, micro pump, and ultrasonic atomization mechanism.

[0014] The invention discloses a working method of a mist-type disinfection atomization device, which is carried out according to the following steps: first, a control platform controls two micro pumps to pump a suspension agent and disinfectant in a medicine bottle into an atomization main pipe, and then atomizes them through heating by a heater and transports them into a collection chamber; at the same time, an ultrasonic atomization mechanism under an atomization base works, that is, a water pump transports the disinfectant into the atomization chamber, an ultrasonic module works to atomize the disinfectant, and a fan is turned on to blow the atomized disinfectant into a collection pipe and into the collection chamber. After being uniformly collected in the collection chamber, the disinfectant and suspension agent in the collection chamber are sprayed out from an atomization nozzle through the atomization jet force of the atomization main pipe to complete the disinfection work.

[0015] Compared with the prior art, the present invention has the following beneficial effects: after the atomized disinfectant and suspension are uniformly collected in the collecting chamber, the disinfectant and suspension in the collecting chamber are sprayed out from the atomizing nozzle through the atomizing jet force of the atomizing main pipe, and the collection is sprayed obliquely upward, which will greatly improve the disinfection effect and disinfection efficiency. In addition, the insulation box and its internal heater structure ensure that the atomizing main pipe is fully heated and atomized, the atomization effect is good, and the degree of disinfection can be visualized through the suspension.

[0016] The present invention will be further described in detail below with reference to the accompanying drawings and specific embodiments. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 Schematic diagram of the structure of an embodiment of the present invention Figure 1 ;

[0018] Figure 2 Schematic diagram of the structure of an embodiment of the present invention Figure 2 ;

[0019] Figure 3 A side view of an embodiment of the present invention;

[0020] Figure 4 for Figure 3 Cross-sectional view of AA;

[0021] Figure 5 Schematic diagram of the structure of the converging nozzle in an embodiment of the present invention;

[0022] Figure 6 Schematic diagram of the internal structure of the thermal insulation box in an embodiment of the present invention.

[0023] In the figure: 1-atomization box, 2-atomization base, 3-insulation box, 4-atomization main pipe, 5-heater, 6-collecting nozzle, 7-atomization branch pipe, 8-micro pump, 9-collecting chamber, 10-collecting pipe, 11-ultrasonic atomization mechanism, 12-fixing seat, 13-heat conduction block, 14-atomization chamber, 15-ultrasonic module, 16-ventilation port, 17-wind chamber, 18-air guide plate, 19-water pump, 20-liquid level sensor, 21-liquid exchange pipe, 22-manual valve, 23-atomization nozzle, 24-control platform, 25-push handle, 26-universal caster, 27-box door, 28-fan, 29-medicine bottle. DETAILED DESCRIPTION

[0024] In order to make the above features and advantages of the present invention more clearly understood, embodiments are given below with reference to the accompanying drawings for detailed description.

[0025] like Figures 1 to 6 As shown, a mist-type disinfection atomization device comprises an atomization box 1, an atomization base 2 is fixedly provided inside the atomization box, an insulation box 3 extending obliquely upward is fixedly provided on the atomization base, a spray is formed in the insulation box through a spiral atomization main pipe 4 and a heater 5, one end of the heating main pipe extends out of the atomization box and connects with a collecting nozzle 6, and the other end is communicated with two atomization branches 7, and is communicated with the medicine bottle below through a micro pump 8, the collecting nozzle includes a collecting chamber 9 connected with the atomization main pipe, and the lower end of the collecting chamber extends obliquely into the atomization box through a collecting pipe 10 and downwardly passes through the atomization base to communicate with an ultrasonic atomization mechanism 11.

[0026] In an embodiment of the present invention, the atomizer base is horizontally arranged in the atomizer box, the insulation box is fixedly connected to the atomizer base via a fixed seat 12, the lower end of the fixed seat is fixedly connected to the atomizer base, and the front end of the fixed seat extends obliquely upward and forward, the insulation box extends in the same direction as the fixed seat and is fixedly connected to the upper end of the fixed seat, the micro pumps are all fixedly connected to the atomizer base, the medicine bottles are all located below the atomizer base, and a through opening for the atomizer branch pipe to extend downward is opened on the atomizer base.

[0027] In an embodiment of the present invention, the atomization main pipe is spirally wound around the outer periphery of the heater and is embedded and fixed in the heat-conducting block 13. The heat-conducting block is cast and coated on the outside of the atomization main pipe and the heater and filled in the insulation box. The atomization main pipe extends from back to front in the same direction as the insulation box, and the heat-conducting blocks extend from the front and rear ends.

[0028] In an embodiment of the present invention, the circumferential sides of the atomizing base are fixedly connected to the inner end surface of the atomizing box to separate the atomizing box into an upper and lower layer. The ultrasonic atomizing mechanism and the medicine bottle are both located in the lower layer. The ultrasonic atomizing mechanism includes an atomizing chamber 14. The top opening of the atomizing chamber is connected to the collecting chamber. An ultrasonic module 15 is provided at the bottom of the atomizing chamber. A vent 16 connected to an external fan is provided near the top of the atomizing chamber. As for the principle of atomizing the disinfectant by the ultrasonic module, it is a universal design and will not be elaborated on here.

[0029] In an embodiment of the present invention, the outer wall of the atomizing chamber is fixedly provided with a wind chamber 17 communicating with the vent, the bottom end surface of the wind chamber is extended obliquely upward from the outer wall of the atomizing chamber, and the fan 28 is docked at the bottom end of the wind chamber, that is, the fan blows air obliquely upward toward the vent, and the top of the vent is fixedly provided with an air guide plate 18 extending obliquely downward.

[0030] In an embodiment of the present invention, a water pump 19 is fixedly provided on the outer wall of the atomization chamber and extends into the atomization chamber and communicates with the medicine bottle through a hose. Two liquid level sensors 20 are fixedly provided on the inner wall of the atomization chamber. The two liquid level sensors are at different heights, and the height of the higher liquid level sensor does not exceed the height of the vent. When the disinfectant in the atomization chamber is lower than the lower liquid level sensor, the water pump starts to input the disinfectant into the atomization chamber. When the disinfectant level reaches the higher liquid level sensor, the water pump is turned off.

[0031] In an embodiment of the present invention, a vertical liquid exchange tube 21 is fixedly connected to the lower end of the atomizing chamber, the upper end of the liquid exchange tube extends into the atomizing chamber, and the lower end extends out of the atomizing box. A manual valve 22 is provided on the liquid exchange tube. When the disinfectant inside the atomizing chamber needs to be replaced, the manual valve is opened to discharge the internal disinfectant from the atomizing box, and then the valve is closed to re-input other liquid medicine through the water pump.

[0032] In an embodiment of the present invention, the front end surface of the upper layer of the atomizer box is inclined, slanting downward from the top to cooperate with the installation of the collecting chamber. An atomizing nozzle 23 is opened at the front end of the collecting chamber. The top of the rear end of the upper layer of the atomizer box is concave and a control platform 24 is fixed. Two push handles 25 extend horizontally backward from the rear end of the upper layer of the atomizer box, which are convenient for moving the device with universal casters and are easy to move.

[0033] In an embodiment of the present invention, the bottom end of the lower layer of the atomizer box is fixed on a universal caster 26, and a box door 27 is hinged on the outer wall of the lower layer of the atomizer box to facilitate the replacement of internal medicine bottles 29. The medicine bottles include a disinfectant bottle containing disinfectant and a suspension bottle containing suspension agent. The two atomization branches extend into the disinfectant bottle and the suspension bottle respectively, and the hose at the water pump end only extends into the disinfectant bottle to fully complete the disinfection work. The suspension agent will be heated and atomized to become a milky white spray and sprayed out, which cooperates with the atomization of the disinfectant to realize the visualization of the disinfection degree.

[0034] In an embodiment of the present invention, the control platform is electrically connected to the insulated box, heater, micro pump, and ultrasonic atomization mechanism.

[0035] A working method of a mist-type disinfection atomization device is provided, and the method is carried out in the following steps: first, a control platform controls two micro pumps to pump a suspension agent and disinfectant in a medicine bottle into an atomization main pipe, and then atomizes them through heating by a heater and transports them into a collection chamber; simultaneously, an ultrasonic atomization mechanism under an atomization base works, that is, a water pump transports the disinfectant into the atomization chamber, an ultrasonic module works to atomize the disinfectant, and a fan is turned on to blow the atomized disinfectant into a collection pipe and into the collection chamber. After being uniformly collected in the collection chamber, the disinfectant and suspension agent in the collection chamber are sprayed out from an atomization nozzle through the atomization jet force of the atomization main pipe to complete the disinfection work.

[0036] The present invention is not limited to the above-mentioned preferred embodiment, and anyone can derive other various forms of mist-type disinfection atomization devices and working methods thereof under the enlightenment of the present invention. All equal changes and modifications made according to the scope of the present invention should fall within the scope of the present invention.

Claims

1. A mist-type disinfection atomization device, characterized in that: The invention comprises an atomizing box, wherein an atomizing base is fixedly provided inside the atomizing box, and an insulation box extending obliquely upward is fixedly provided on the atomizing base. A spray is formed in the insulation box through a spiral atomizing main pipe and a heater. One end of the atomizing main pipe extends out of the atomizing box and connects with a collecting nozzle. The other end is communicated with two atomizing branch pipes and is communicated with the suspension and disinfectant bottles below through a micropump. The collecting nozzle includes a collecting chamber connected to the atomizing main pipe. The lower end of the collecting chamber extends obliquely into the atomizing box through a collecting pipe and passes downward through the atomizing base to communicate with the ultrasonic atomizing mechanism. The atomizing main pipe is spirally wound around the outer periphery of the heater and is embedded and fixed in the heat-conducting block. The heat-conducting block is cast and coated on the outside of the atomizing main pipe and the heater and filled in the heat-insulating box. The atomizing main pipe extends from the back to the front in the same direction as the heat-insulating box, and the heat-conducting blocks extend from the front and rear ends. The circumferential sides of the atomizer base are fixedly connected to the inner end surface of the atomizer box to divide the atomizer box into upper and lower layers. The ultrasonic atomizer mechanism and the medicine bottle are both located in the lower layer. The ultrasonic atomizer mechanism includes an atomizer chamber, the top opening of the atomizer chamber is connected to the collecting chamber, an ultrasonic module is provided at the bottom of the atomizer chamber, and a ventilator connected to an external fan is provided near the top of the atomizer chamber. The outer wall of the atomizing chamber is fixedly provided with an air cavity communicated with the vent, the bottom end surface of the air cavity is extended obliquely upward from the outer wall of the atomizing chamber, and the fan is docked at the bottom end of the air cavity, that is, the fan blows air obliquely upward toward the vent, and the top of the vent is fixedly provided with an air guide plate extending obliquely downward.

2. A mist-type disinfection atomization device according to claim 1, characterized in that: The atomizer base is horizontally arranged in the atomizer box, the insulation box is fixedly connected to the atomizer base via a fixed base, the lower end of the fixed base is fixedly connected to the atomizer base, and the front end of the fixed base extends obliquely upward and forward. The insulation box extends in the same direction as the fixed base and is fixedly connected to the upper end of the fixed base. The micro pumps are all fixedly connected to the atomizer base, and the medicine bottles are all located below the atomizer base. A through opening for the atomizer branch pipe to extend downward is opened on the atomizer base.

3. A mist-type disinfection atomization device according to claim 1, characterized in that: A water pump is fixedly provided on the outer wall of the atomization chamber and extends into the atomization chamber and communicates with the medicine bottle through a hose. Two liquid level sensors are fixedly provided on the inner wall of the atomization chamber. The two liquid level sensors have different heights, and the height of the higher liquid level sensor does not exceed the height of the vent. A vertical liquid exchange pipe is fixedly connected to the lower end of the atomization chamber. The upper end of the liquid exchange pipe extends into the atomization chamber and the lower end extends out of the atomization box. A manual valve is provided on the liquid exchange pipe.

4. A mist-type disinfection atomization device according to claim 1, characterized in that: The front end surface of the upper layer of the atomizer box is inclined, slanting downward from the top to match the installation of the collecting chamber. An atomizer nozzle is opened at the front end of the collecting chamber. The top of the rear end of the upper layer of the atomizer box is concave and a control platform is fixed thereon. Two push handles are extended horizontally backward from the rear end of the upper layer of the atomizer box.

5. A mist-type disinfection atomization device according to claim 1, characterized in that: The bottom end of the lower layer of the atomizing box is fixed on a universal caster, and a box door is hinged on the outer wall of the lower layer of the atomizing box.

6. A mist-type disinfection atomization device according to claim 1, characterized in that: The control platform is electrically connected to the insulated box, heater, micro pump and ultrasonic atomization mechanism.

7. A working method of a mist disinfection atomization device, characterized in that: A mist-type disinfection atomization device according to any one of claims 1 to 6 is used, and the following steps are performed: first, two micropumps are controlled by a control platform to pump the suspension agent and disinfectant in the medicine bottle into the atomization main pipe, and the suspension agent and disinfectant are heated and atomized by a heater and transported into the collection chamber. At the same time, the ultrasonic atomization mechanism under the atomization base works, that is, the water pump transports the disinfectant into the atomization chamber, the ultrasonic module works to atomize the disinfectant, and the fan is turned on to blow the atomized disinfectant into the collection pipe and into the collection chamber. After being uniformly collected in the collection chamber, the disinfectant and suspension agent in the collection chamber are sprayed out from the atomization nozzle through the atomization jet force of the atomization main pipe to complete the disinfection work.

Citation Information

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