Intelligent dry fog disinfection machine
By using small low-power air compressors and two-fluid nozzles in fluid sprayers, the movement limitations of traditional sprayers need to be connected to large air compressors are solved, and convenient movement and stable spray angle control is achieved.
Patent Information
- Application Number
- CN202422145340.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-02
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2034-09-02
AI Technical Summary
Traditional fluid sprayers need to be connected to large high-power air compressors, which makes it impossible to move and use easily.
Using a small low-power air compressor, pump and two-fluid nozzle, the dry mist is sprayed by mixing compressed air with liquid, controlling the spray angle and reducing the power specification of the air compressor.
It realizes convenient mobile use of fluid sprayers and stable spray angle control, reducing the movement limit of the equipment.
Smart Images

Figure CN223288271U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of atomization equipment, and in particular to an intelligent dry fog disinfection machine. Background Art
[0002] Conventional fluid sprayers typically use two-fluid nozzles, connected to a pump and compressed air hose, respectively. These nozzles then utilize a large, high-powered external air compressor to supply compressed air, allowing the two-fluid nozzles to spray the spray. However, traditional fluid sprayers require a compressed air hose to connect to a large, high-powered external air compressor, making them difficult to move around. Therefore, solving this problem has become a pressing research topic for industry players. Utility Model Content
[0003] The main purpose of the present utility model is that the intelligent dry fog disinfection machine is equipped with a small low-power air compressor, a pump and a two-fluid nozzle in the chassis, and the two-fluid nozzle is connected to the pump and the air compressor respectively. The two-fluid nozzle uses compressed air to mix liquid to spray dry fog outward, thereby being able to stably control the spray angle and reduce the power specifications of the air compressor, making the intelligent dry fog disinfection machine more convenient to move around and use.
[0004] To achieve the above-mentioned purpose, the intelligent dry fog disinfection machine of the present invention includes a chassis, an air compressor, a pump and a two-fluid nozzle, wherein: the chassis has an accommodating space inside; the air compressor is arranged in the accommodating space of the chassis, the air compressor sucks in air from the air inlet for pressurization, and then outputs compressed air from the air compressor pipeline; the pump is arranged in the chassis, the pump sucks in liquid from the liquid inlet pipeline, and then controls the flow to output the liquid from the liquid outlet pipeline; the two-fluid nozzle is arranged in the chassis, the two-fluid nozzle includes a nozzle body corresponding to one end of a mixing pipe, the air inlet hole at the other end of the mixing pipe is connected to the output end of the air compressor pipeline, and the liquid inlet hole on the side of the mixing pipe is connected to the output end of the liquid outlet pipeline; compressed air is transported into the mixing pipe of the two-fluid nozzle through the air compressor pipeline, and the compressed air attracts liquid from the liquid outlet pipeline into the mixing pipe, so that the compressed air mixes the liquid in the mixing pipe, and sprays dry fog outward from the nozzle body.
[0005] The aforementioned intelligent dry fog disinfection machine, wherein the chassis includes a box cover, and a through hole is provided on one side of the chassis for exposing the nozzle body outward.
[0006] The aforementioned intelligent dry fog disinfection machine, wherein the bottom of the air compressor is connected to the base, and a plurality of upper shock absorbers are arranged between the air compressor and the base, and a plurality of lower shock absorbers are arranged between the bottom of the base and the bottom of the chassis.
[0007] The aforementioned intelligent dry fog disinfection machine, wherein the liquid outlet pipeline is connected to an air inlet pipe, and the air inlet pipe is connected to a check valve to attract air through the air inlet pipe and the check valve and into the liquid outlet pipeline and the mixing pipe.
[0008] The aforementioned intelligent dry fog disinfection machine, wherein a nozzle rack is fixedly provided on the inner surface of one side of the chassis, a sleeve is pivotally connected to the nozzle rack, a two-fluid nozzle is radially passed through and fixed to the sleeve, and the nozzle body extends outward from the sleeve, the nozzle rack and the chassis to set the inclination angle of the two-fluid nozzle.
[0009] The aforementioned intelligent dry mist disinfection machine, wherein the middle section of the nozzle rack is provided with clips on both sides of the corresponding collar, and one side of the chassis is provided with a positioning bolt for locking the middle section of the nozzle rack to control the clips to clamp or loosen the collar.
[0010] The aforementioned intelligent dry fog disinfection machine, wherein the liquid is water, insecticide or insect repellent. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 It is a three-dimensional diagram (1) of the utility model intelligent dry fog disinfection machine.
[0012] Figure 2 This is a three-dimensional diagram (two) of the utility model intelligent dry fog disinfection machine.
[0013] Figure 3 This is a three-dimensional diagram (1) of the internal structure of the intelligent dry fog disinfection machine of the utility model.
[0014] Figure 4 This is a three-dimensional diagram (2) of the internal structure of the intelligent dry fog disinfection machine of the utility model.
[0015] Figure 5 It is a three-dimensional exploded view of the air compressor and chassis of the utility model intelligent dry fog disinfection machine.
[0016] Figure 6 It is a three-dimensional diagram of the installation status of the pump and two-fluid nozzle of the intelligent dry fog disinfection machine of the utility model.
[0017] Figure 7 This is a three-dimensional exploded view of the two-fluid nozzle and chassis of the intelligent dry fog disinfection machine of the utility model.
[0018] Figure 8 It is a three-dimensional exploded view of the two-fluid nozzle and the nozzle rack of the utility model intelligent dry fog disinfection machine.
[0019] Figure 9 It is a three-dimensional diagram of the installation state of the two-fluid nozzle of the intelligent dry fog disinfection machine of the utility model.
[0020] Figure 10 It is a cross-sectional view of the installation state of the two-fluid nozzle of the intelligent dry fog disinfection machine of the utility model.
[0021] Figure 11 It is a three-dimensional diagram of the adjustment angle of the two-fluid nozzle of the intelligent dry fog disinfection machine of the utility model.
[0022] Figure 12 It is a cross-sectional view of the adjustment angle of the two-fluid nozzle of the intelligent dry fog disinfection machine of the utility model.
[0023] Description of Reference Numerals
[0024] 1. Chassis 33, air intake pipe
[0025] 11. Bottom wall 34. Check valve
[0026] 12. Side wall 4. Two-fluid nozzle
[0027] 121, through hole 41, nozzle body
[0028] 122, positioning hole 42, mixed flow tube
[0029] 13. Side wall 421, air intake
[0030] 131, vent 422, liquid inlet
[0031] 14. Box cover 43. Nozzle rack
[0032] 141, handle 431, shelf
[0033] 15. Side panel 432, shelf panel
[0034] 151, vent 433, groove
[0035] 16. Accommodation space 434, clip
[0036] 2. Air compressor 435, screw hole
[0037] 21. Air inlet 44. Ring
[0038] 22. Air compressor pipeline 441, through hole
[0039] 23. Machine base 45. Positioning bolts
[0040] 24. Upper shock absorber 5. Electrical control device
[0041] 25. Lower shock absorber 51. Touch panel
[0042] 3. Pump 52, power switch
[0043] 31. Liquid inlet pipe 53. Power socket
[0044] 32. Liquid outlet pipe 54. Cooling fan. DETAILED DESCRIPTION
[0045] Regarding the technical means and effects adopted by the present invention to achieve the above-mentioned purpose, feasible embodiments are now given and described as follows with reference to the accompanying drawings:
[0046] First, see Figures 1 to 8 As shown in the figure, it can be clearly seen that the intelligent dry fog disinfection machine of the utility model includes an engine box 1, an air compressor 2, a pump 3, a two-fluid nozzle 4 and an electrical control device 5, wherein:
[0047] The chassis 1 is assembled and connected with the bottom wall 11, the two side walls 12 and 13, and the removable cover 14 to form an internal accommodating space 16. The side wall 12 of the chassis 1 is provided with a through hole 121 and a positioning hole 122, and the side wall 13 is provided with a vent 131. The cover 14 is provided with a handle 141, and each side panel 15 is provided with a vent 151.
[0048] The air compressor 2 is arranged in the accommodating space 16 of the chassis 1. The air compressor 2 can adopt a miniaturized specification with lower power, and sucks air from the air inlet 21 for pressurization, and then outputs the compressed air from the air compression pipeline 22. The bottom of the air compressor 2 is connected to the machine base 23, and a plurality of upper shock absorbers 24 are arranged between the air compressor 2 and the machine base 23, and a plurality of lower shock absorbers 25 are arranged between the bottom of the machine base 23 and the bottom wall 11 of the chassis 1 to reduce the noise generated by vibration.
[0049] The pump 3 is mounted within the housing 1. A liquid inlet line 31 connects to an external liquid line (not shown) to draw in liquid, which can be water, insecticide, or insect repellent, and then controls the flow rate of the liquid out of a liquid outlet line 32. Liquid outlet line 32 is connected to an air inlet line 33, which is connected to a check valve 34 to draw air from the outside through the air inlet line 33 and the check valve 34 into the liquid outlet line 32.
[0050] The two-fluid nozzle 4 is arranged in conjunction with the nozzle holder 43 inside the chassis 1. Figures 6 to 12 As shown, the conventional or ultrasonic two-fluid nozzle 4 includes a nozzle body 41 connected to one end of a mixing tube 42. The air inlet 421 at the other end of the mixing tube 42 is connected to the output end of the air pressure pipeline 22, and the liquid inlet 422 on the side of the mixing tube 42 is connected to the output end of the liquid outlet pipeline 32. The two corresponding frame plates 431 and 432 of the nozzle frame 43 are fixed to the inner surface of the side wall 12 of the chassis 1. The nozzle frame 43 is pivotally connected to a collar 44 in a groove 433. The two-fluid nozzle 4 is radially penetrated and fixed to the radially opposite through holes 441 of the collar 44 (see FIG. 2 ). Figure 9), and the nozzle body 41 extends outward from the collar 44, and the nozzle holder 43 corresponds to the side wall 12 of the chassis 1 to set the inclination angle of the two-fluid nozzle 4, and the middle sections of the two frame plates 431 and 432 of the nozzle holder 43 are respectively provided with clips 434 on both sides corresponding to the collar 44. The chassis 1 is provided with positioning bolts 45 in the positioning holes 122 of the side wall 12 for locking the middle sections of the two frame plates 431 and 432 of the nozzle holder 43 relative to the screw holes 435 to control the clips 434 to clamp or loosen the collar 44 to adjust the angle.
[0051] The electrical control device 5 includes a touch panel 51, a power switch 52, a power socket 53, and a cooling fan 54. The electrical control device 5 is disposed on the side wall 13 of the chassis 1. The electrical control device 5 controls the operation of the air compressor 2, the pump 3, and the cooling fan 54. The touch panel 51 can be used to control the liquid flow rate, or the liquid flow rate can be remotely controlled using a remote control. The electrical control device 5 can also control intermittent output of the liquid according to demand, thereby achieving intelligent operation and control.
[0052] When the intelligent dry fog disinfection machine of the present invention is actually in operation, a small low-power air compressor 2 is arranged in the accommodating space 16 of the chassis 1. The air compressor 2 draws in air from the air inlet 21 for pressurization, and then outputs compressed air from the air compressor pipe 22, while the pump 3 draws in liquid from the liquid inlet pipe 31, and then controls the flow to output the liquid from the liquid outlet pipe 32. The compressed air is transported into the mixing pipe 42 of the two-fluid nozzle 4 by the air compressor pipe 22, and the compressed air attracts the liquid from the liquid outlet pipe 32 into the mixing pipe 42, allowing the compressed air to mix with the liquid in the mixing pipe 42 and spray dry fog outward from the nozzle body 41, thereby being able to stably control the spray angle and reduce the power specifications of the air compressor 2, making the intelligent dry fog disinfection machine more convenient to move around and use.
[0053] When the intelligent dry fog disinfection machine is performing a spraying operation, the pump 3 can be adjusted and controlled to deliver low-flow or trace liquids, and the small low-power air compressor 2 outputs at full power, allowing the compressed air to attract low-flow or trace liquids into the mixing pipe 42 for thorough mixing, and at the same time attract outside air through the air inlet pipe 33 and the check valve 34 to enter the liquid outlet pipe 32 and the mixing pipe 42, which can prevent the liquid outlet pipe 32 from suffocating and allow the two-fluid nozzle 4 to maintain a stable spray angle.
[0054] The above embodiments are only used to facilitate the description of the present invention and are not intended to limit the present invention. Various simple changes and modifications that can be made by those skilled in the art without departing from the spirit of the present invention should still be included in the scope of the following patent applications.
Claims
1. An intelligent dry fog disinfection machine, characterized in that: It includes a machine box, an air compressor, a pump and a two-fluid nozzle, including: The chassis has an accommodating space inside; The air compressor is arranged in the accommodation space of the chassis, and the air compressor sucks air from the air inlet to pressurize it, and then outputs the compressed air from the air compression pipeline; The pump is installed in the chassis, and the pump sucks liquid from the liquid inlet pipe and then controls the flow rate to output the liquid from the liquid outlet pipe; The two-fluid nozzle is arranged in the chassis, and includes a nozzle body correspondingly connected to one end of the mixing tube, an air inlet at the other end of the mixing tube connected to the output end of the air pressure pipeline, and a liquid inlet on the side of the mixing tube connected to the output end of the liquid outlet pipeline; Compressed air is delivered to the mixing tube of the two-fluid nozzle through the air compressor pipeline, and the compressed air attracts the liquid from the liquid outlet pipeline into the mixing tube, allowing the compressed air to mix the liquid in the mixing tube and spray dry mist outward from the nozzle body.
2. The intelligent dry fog disinfection machine according to claim 1, characterized in that: The machine box comprises a box cover, and one side of the machine box is provided with a through hole for exposing the nozzle body outwards.
3. The intelligent dry fog disinfection machine according to claim 1, characterized in that: The bottom of the air compressor is connected to a base, and a plurality of upper shock-absorbing members are arranged between the air compressor and the base, while a plurality of lower shock-absorbing members are arranged between the bottom of the base and the bottom of the chassis.
4. The intelligent dry fog disinfection machine according to claim 1, characterized in that: The liquid outlet pipeline is connected to an air inlet pipe, and the air inlet pipe is connected to a check valve to attract air through the air inlet pipe and the check valve and enter the liquid outlet pipeline and the mixing pipe.
5. The intelligent dry fog disinfection machine according to claim 1, characterized in that: A nozzle rack is fixedly provided on the inner surface of one side of the chassis, a sleeve is pivotally connected to the nozzle rack, a two-fluid nozzle is radially passed through the sleeve, and the nozzle body extends outward from the sleeve, the nozzle rack and the chassis to set the inclination angle of the two-fluid nozzle.
6. The intelligent dry fog disinfection machine according to claim 5, characterized in that: The middle section of the nozzle frame is provided with clips on both sides of the corresponding collar. One side of the chassis is provided with a positioning bolt that locks the middle section of the nozzle frame to control the clips to clamp or loosen the collar.
7. The intelligent dry fog disinfection machine according to claim 1, characterized in that: The liquid is water, insecticide or repellent.