Deodorizing fog making machine

By designing a deodorizing fogging machine including a liquid supply assembly, a gas supply assembly and a regulation assembly, the problem of reduced deodorization efficiency and high installation cost of the spray deodorizing device during long-term use is solved, and efficient deodorization and low-cost installation are achieved.

CN119971108AInactive Publication Date: 2025-05-13浙江亚格农业科技有限公司
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Patent Information

Application Number
CN202510295084.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-12
Publication Date
2025-05-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

When used for a long time, existing spray deodorization devices can easily increase the humidity of the air in the scene, and the water mist particles combine with the water vapor in the air to form larger water droplets, reducing the deodorization efficiency; at the same time, the coverage area of ​​the high-pressure atomization nozzle is limited, and adding the nozzle or rotating device will increase the installation cost, and the nozzle is prone to accumulate impurities and causing blockage.

Method used

A deodorizing mist maker is designed, including a liquid supply assembly, a gas supply assembly and a regulation assembly. By adjusting the pressure of gas and deodorizing solution, the secondary diffusion of water mist and the mixing and collision of odor molecules are achieved, and the deodorization efficiency is improved. At the same time, by adjusting the design of the assembly, the impurities on the filter parts are cleaned to avoid blockage of the spray assembly.

Benefits of technology

It effectively improves the deodorization efficiency, avoids the reduction in deodorization efficiency caused by increasing air humidity, reduces installation costs, and extends the service life of the nozzle, avoids blockage problems.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a deodorization fog making machine, and relates to the technical field of deodorization, the deodorization fog making machine comprises a fog making main machine and a transmission assembly, the deodorization fog making machine also comprises a liquid supply assembly, the liquid supply assembly is arranged in the fog making main machine, and the liquid supply assembly can mix purified water and a deodorant and convey the mixture to the transmission assembly in a high pressure form; and the air supply assembly is arranged in the fog making main machine. Through mutual cooperation of the gas supply assembly, the liquid supply assembly and other devices, high-pressure gas is subjected to convection, peculiar smell molecules in air can be driven to be mixed with water mist, collision is generated under driving of two strands of high-pressure gas with opposite flowing directions, and the adsorption effect of the water mist and the peculiar smell molecules is further improved; therefore, the problem that the dispersion effect of water mist is reduced due to the fact that water mist particles generated by the spray deodorization equipment are easily combined with water vapor in the air to form large water drops is solved.
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Description

Technical Field

[0001] The invention relates to the technical field of deodorization, in particular to a deodorizing fogging machine. Background Art

[0002] With the acceleration of urbanization and the improvement of industrialization, malodorous gases generated by various industrial emissions and domestic garbage have caused serious pollution to the environment and posed a threat to human health and quality of life. Therefore, deodorization technology has gradually received attention, among which deodorizing fog machines have emerged as an efficient and environmentally friendly deodorizing equipment. Deodorizing fog machines are mechatronic devices that use high pressure to atomize water and add deodorizing liquid to evenly spread the deodorizing liquid into the air by spraying. Its working principle is to purify the raw water and add deodorizing liquid, pressurize it through a high-pressure pump, atomize the water into tiny particles, spray it into the air, react with the malodorous gases in the air, and decompose them into harmless substances, thereby achieving a deodorizing effect.

[0003] A Chinese patent application with application number 202011629199.6 discloses a spray deodorizer, including an online water / drug proportioning device, an atomizing box, an atomizing device and a water level switch valve; the online water / drug proportioning device includes a dosing box, a dosing pump, a pulse metering valve and a driver; the inlet and outlet of the dosing pump are respectively connected to the dosing box and the atomizing box; the above invention can realize online real-time proportioning of drug / water, reduce the demand for container volume, increase proportioning accuracy, and reduce production consumption costs.

[0004] Chinese patent application number 201510620650.0 discloses a spray deodorizing device, including a box body, in which a raw liquid tank, a liquid storage tank, a spray system and a microcomputer automatic program control system are arranged; a metering pump is connected between the raw liquid tank and the liquid storage tank; a filter is connected to the liquid storage tank and is connected to a tap water inlet pipe; the above invention can control the flow of the mixed liquid according to different workplaces through the microcomputer automatic program control system, and the atomization effect is good. While ensuring the deodorizing effect, it effectively controls the cost and reduces the labor intensity.

[0005] Similar to the above-mentioned prior art, when a spray deodorizing device is used to spray deodorize the odor in the scene, the required spraying time is different due to the different odor concentrations in the scene, that is, the greater the odor concentration, the longer the spraying time. When the spray deodorizing device sprays in the scene for a long time, the air humidity in the scene will gradually increase. The water mist particles generated by the spray deodorizing equipment are easy to combine with water vapor in the air to form larger water droplets, which not only reduces the dispersion effect of the water mist, but also reduces the contact area between the water mist particles and the odor molecules, thereby reducing the deodorization efficiency. Similarly, when the humidity in the scene is too low, the water mist particles generated by the spray deodorizing equipment will evaporate quickly, reducing the contact time between the water mist particles and the odor molecules and reducing the deodorization effect.

[0006] In addition, existing high-pressure atomizing nozzles are usually fixed above the factory area during installation. When spray deodorization is performed, water mist is sprayed downward from the top of the factory area, resulting in a limited area covered by the mist. If the coverage area is increased by adding nozzles, the humidity in the factory area will rise rapidly, affecting the spray effect. If a device for rotating the nozzle is added to each nozzle, the installation cost will be greatly increased.

[0007] At the same time, after the nozzle is used for a long time, a large amount of impurities are easily accumulated in the nozzle, causing the nozzle to be blocked.

[0008] Therefore, it is necessary to invent a deodorizing fogging machine to solve the above problems. Summary of the invention

[0009] The object of the present invention is to provide a deodorizing fogging machine to solve the problems raised in the above-mentioned background technology.

[0010] To achieve the above object, the present invention provides the following technical solution: a deodorizing fogging machine, comprising a fogging main unit and a transmission component, the deodorizing fogging machine also comprising:

[0011] A liquid supply component, which is arranged inside the fog-making main unit and can mix purified water and deodorant and deliver them to the transmission component in the form of high pressure;

[0012] An air supply component, which is arranged inside the fog-making main unit, and can produce high-pressure gas and transport the high-pressure gas to the transmission component, so that the air supply component and the liquid supply component can adjust the pressure of the sprayed gas and water mist according to the air humidity;

[0013] An adjusting component includes a connecting piece, the connecting piece is connected to the transmission component, a bending elastic membrane is provided inside the connecting piece, the elastic membrane can divide the inside of the connecting piece into a liquid cavity and an air cavity, the liquid cavity can be connected to the liquid supply component, the air cavity can be connected to the air supply component, and the adjusting component can adjust the spray volume and spray range according to the pressure change entering the connecting piece.

[0014] Preferably, a spray assembly is provided at one end of the connecting piece connected to the liquid chamber, and the spray assembly includes a sealing piece, the sealing piece is threadedly connected to the connecting piece, a cavity connected to the liquid chamber is provided inside the sealing piece, a filter is slidably connected in the cavity of the sealing piece, the filter extends out of the sealing piece at one end close to the connecting piece, and a plurality of filter holes are provided on the filter piece in a ring array.

[0015] Preferably, the spray assembly also includes a spray piece, which is arranged at the end of the seal away from the connecting piece, and a mist outlet is opened in the central area of ​​the spray piece, and the mist outlet is connected to the cavity of the seal, and a fixing piece is provided at the end of the spray piece away from the seal, one end of the fixing piece is fixedly connected to the seal, and the other end of the fixing piece is arranged above the mist outlet, and the end of the fixing piece arranged above the mist outlet is fixedly connected to a striker, and the striker can atomize the high-pressure liquid sprayed from the mist outlet.

[0016] Preferably, the regulating component also includes an air outlet hole, which is opened on the connecting member and is connected to the air cavity in the connecting member. The multiple air outlet holes on each connecting member are arranged in a mirror image, and a pressure valve capable of unidirectional air outlet is fixedly installed in each air outlet.

[0017] Preferably, the regulating component also includes a first air duct, which is arranged on the connecting piece, and one end of the first air duct is connected to the air cavity, a damping member is provided in the first air duct, and the damping member can seal and slide in the first air duct, the other end of the first air duct is connected to the second air duct via an annular groove provided in the connecting piece, a sliding block is sealingly and slidingly connected in the second air duct, a traction member is provided at one end of the sliding block close to the filter, and the traction member is connected to the filter at one end close to the filter.

[0018] Preferably, the air pressure in the air cavity is divided into three states. In the first state, the air pressure in the air cavity cannot make the gas ejected through the air outlet and cannot push the damping member to slide in the first air duct; in the second state, the air pressure in the air cavity can make the gas ejected through the air outlet and cannot push the damping member to slide in the first air duct; in the third state, the air pressure in the air cavity can make the gas ejected through the air outlet and can push the damping member to slide in the first air duct.

[0019] Preferably, a control module and a humidity detection component are provided in the mist-making main unit, the control module can control the operation of various electrical components by means of electrical control, and the humidity detection component can detect the air humidity.

[0020] Preferably, the transmission component includes a connecting pipe, and the two connecting pipes are respectively connected to the liquid supply component and the air supply component, and the two connecting pipes are connected through a three-way valve. A guide pipe is provided on the outlet of the three-way valve. The liquid supply component and the air supply component can be connected with multiple adjustment components through multiple guide pipes and connecting valves, and each of the guide pipes is provided with a hose that is respectively connected to the liquid supply component and the air supply component.

[0021] Preferably, the liquid supply component includes a water tank, which is arranged in the fog-making main unit. The water tank is divided into a water storage tank and a medicine tank. A multi-stage filtering component is provided at the water inlet end of the water tank. The bottom of the water tank is connected to a high-pressure water pump through a pipeline. The high-pressure water pump can transmit the mixed deodorizing liquid to the transmission component under high pressure.

[0022] Preferably, the air supply component includes an air supply pump, which is arranged inside the fog-making main unit. The air outlet of the air supply pump is connected to the transmission component through a pipeline, and the air supply pump can deliver high-pressure gas to the transmission component.

[0023] Technical effects and advantages of the present invention:

[0024] 1. The present invention cooperates with the air supply component and the liquid supply component and other devices. On the one hand, by adjusting the pressure of the gas and the deodorizing solution, the high-pressure gas can drive the low-pressure water mist to diffuse secondary to increase the atomization range. On the other hand, by making the high-pressure gas convect, it can drive the odor molecules in the air to mix with the water mist, and the collision driven by the two high-pressure gases with opposite flow directions further improves the adsorption effect of the water mist and the odor molecules, thereby avoiding the problem that the spray deodorizing device sprays in the scene for a long time, causing the air humidity in the scene to gradually increase. The water mist particles generated by the spray deodorizing equipment are easy to combine with water vapor in the air to form larger water droplets, which not only reduces the dispersion effect of the water mist, but also reduces the contact area between the water mist particles and the odor molecules, thereby reducing the deodorizing efficiency.

[0025] 2. The present invention cooperates with devices such as a spray component and a traction member, and reciprocally changes the air pressure of the gas entering the regulating component so that the slider pulls the filter element to slide on the sealing element through the traction member, and flushes the filter holes with a high-pressure deodorizing solution, thereby cleaning impurities on the filter element during the deodorizing process to avoid the problem of the spray component being unable to spray mist. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 It is a schematic diagram of the overall structure of the present invention.

[0027] Figure 2 This is a schematic diagram of the internal structure of the fog-making host of the present invention.

[0028] Figure 3 This is a schematic diagram of the disassembled structure of the fog-making host of the present invention.

[0029] Figure 4 It is a schematic diagram of the cross-sectional structure of the adjustment component of the present invention.

[0030] Figure 5 It is a schematic diagram of the structure of the spray assembly of the present invention.

[0031] Figure 6 For the present invention Figure 4 Schematic diagram of the mechanism structure at A in the middle.

[0032] Figure 7 For the present invention Figure 4 Schematic diagram of the mechanism structure at B in the middle.

[0033] In the figure: 1. fog-making main unit; 2. transmission component; 21. connecting pipe; 22. three-way valve; 23. guide pipe; 3. liquid supply component; 31. water tank; 4. air supply component; 5. adjustment component; 51. connecting part; 52. elastic membrane; 53. liquid cavity; 54. air cavity; 55. air outlet; 56. first air duct; 57. damping part; 58. second air duct; 59. slider; 6. spray component; 61. sealing part; 62. filter part; 63. filter hole; 64. spray part; 65. fog outlet; 66. fixing part; 67. striker; 7. traction part. DETAILED DESCRIPTION

[0034] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0035] In order to improve the effect of odor treatment in the venue, Figure 1-Figure 7 As shown, the first embodiment of the present invention provides a deodorizing fog machine, including a fog-making main unit 1 and a transmission component 2. The deodorizing fog machine also includes: a liquid supply component 3, which is arranged inside the fog-making main unit 1. The liquid supply component 3 can mix purified water and deodorant and transport them to the transmission component 2 in the form of high pressure.

[0036] The deodorizing fog machine also includes an adjusting component 5, which includes a connecting member 51, which is connected to the transmission component 2, and a spraying component 6 is provided at one end of the connecting member 51 connected to the liquid cavity 53, and the spraying component 6 can atomize and spray out the mixed liquid containing the deodorant.

[0037] In this embodiment, a control module and a humidity detection component are provided in the fog-making host 1. The control module can control the operation of various electrical components by means of electrical control, and the humidity detection component can detect the air humidity.

[0038] In this embodiment, the transmission component 2 includes a connecting pipe 21, which is connected to the liquid supply component 3. A guide pipe 23 is provided on the connecting pipe 21. The liquid supply component 3 can be connected with multiple adjustment components 5 through multiple guide pipes 23 and connecting valves, so that multiple spray components 6 are laid out in an array in the venue, thereby improving the deodorization efficiency of odor in the venue.

[0039] In this embodiment, the liquid supply component 3 includes a water tank 31, which is arranged in the fog-making main unit 1. The water tank 31 is divided into a water storage tank and a medicine tank. A multi-stage filtering component is provided at the water inlet end of the water tank 31. The bottom of the water tank 31 is connected to a high-pressure water pump through a pipeline. The high-pressure water pump can transmit the mixed deodorizing liquid to the transmission component 2 under high pressure.

[0040] It should be noted that, in order to improve the mixing effect of pure water and deodorant, a mixing chamber specially used for mixing can also be set at the connection between the water tank 31 and the high-pressure water pump, so that the solution entering the high-pressure water pump is a deodorizing solution with better mixing effect.

[0041] In this embodiment, the spray assembly 6 includes a sealing member 61, which is threadedly connected to the connecting member 51. A cavity connected to the liquid chamber 53 is provided inside the sealing member 61. A filter 62 is slidably connected in the cavity of the sealing member 61. One end of the filter 62 close to the connecting member 51 extends out of the sealing member 61 and a plurality of filter holes 63 are provided in a circular array on the filter 62.

[0042] In this embodiment, the spray assembly 6 also includes a spray member 64, which is arranged at the end of the sealing member 61 away from the connecting member 51. A mist outlet 65 is opened in the central area of ​​the spray member 64, and the mist outlet 65 is connected to the cavity of the sealing member 61. A fixing member 66 is provided at the end of the spray member 64 away from the sealing member 61. One end of the fixing member 66 is fixedly connected to the sealing member 61, and the other end of the fixing member 66 is arranged above the mist outlet 65. The end of the fixing member 66 arranged above the mist outlet 65 is fixedly connected with a striker 67, and the striker 67 can atomize the high-pressure liquid sprayed from the mist outlet 65.

[0043] When in use, the mist-making host 1 controls the liquid supply component 3 to work and transmits the mixed deodorizing solution to the inside of the transmission component 2 in the form of high pressure. At this time, the high-pressure deodorizing solution moves toward the direction of multiple adjustment components 5 through the transmission component 2, and moves toward the direction of the spray component 6 through the adjustment component 5. When the high-pressure deodorizing solution is filtered by the filter element 62 and discharged from the mist outlet 65, a high-speed liquid flow will be formed. When the high-speed liquid flow collides with the impact pin 67, the velocity distribution of the jet cross-section of the water flow changes, and the large particle droplets are broken into small particles to achieve preliminary atomization. The small particles after preliminary atomization are further atomized under the action of aerodynamic force to form countless natural fog molecules with smaller diameters, thereby forming a water mist layer to adsorb and purify the odor molecules in the scene.

[0044] However, in actual use, due to the different odor concentrations in the scene, the required spray time is also different, that is, the greater the odor concentration, the longer the spray time. When the spray deodorization device sprays in the scene for a long time, it will cause the air humidity in the scene to gradually increase. The water mist particles generated by the spray deodorization equipment are easy to combine with water vapor in the air to form larger water droplets, which not only reduces the dispersion effect of the water mist, but also reduces the contact area between the water mist particles and the odor molecules, thereby reducing the deodorization efficiency. Similarly, when the humidity in the scene is too low, the water mist particles generated by the spray deodorization equipment will Rapid evaporation reduces the contact time between water mist particles and odor molecules, reducing the deodorization effect; in addition, existing high-pressure atomizing nozzles are usually fixed above the factory area during installation. When spray deodorization is performed, water mist is sprayed downward from the top of the factory area, resulting in a limited area covered by the mist. If the coverage area is increased by adding nozzles, the humidity in the factory area will rise rapidly, affecting the spray effect. If a device for rotating the nozzle is added to each nozzle, the installation cost is greatly increased. At the same time, after the nozzle is used for a long time, a large amount of impurities are easily accumulated in the nozzle, causing the nozzle to be blocked.

[0045] Based on the above technical problems, in another embodiment of the present invention, the deodorizing fog machine also includes: an air supply component 4, which is arranged inside the fog-making main unit 1. The air supply component 4 can produce high-pressure gas and transport the high-pressure gas to the transmission component 2, so the air supply component 4 and the liquid supply component 3 can adjust the pressure of the sprayed gas and water mist according to the air humidity.

[0046] In this embodiment, the air supply component 4 includes an air supply pump, which is arranged inside the fog-making main unit 1. The air outlet of the air supply pump is connected to the transmission component 2 through a pipeline, and the air supply pump can deliver high-pressure gas to the transmission component 2.

[0047] In this embodiment, the two connecting pipes 21 are respectively connected to the liquid supply component 3 and the air supply component 4, and the two connecting pipes 21 are connected through a three-way valve 22. A guide pipe 23 is provided on the outlet of the three-way valve 22. The liquid supply component 3 and the air supply component 4 can be connected with multiple adjustment components 5 through multiple guide pipes 23 and connecting valves. Each guide pipe 23 is provided with a hose that is respectively connected to the liquid supply component 3 and the air supply component 4.

[0048] In this embodiment, a bendable elastic membrane 52 is provided in the connecting member 51, and the elastic membrane 52 can divide the interior of the connecting member 51 into a liquid chamber 53 and an air chamber 54. The liquid chamber 53 can be connected to the liquid supply component 3, and the air chamber 54 can be connected to the air supply component 4. The regulating component 5 can adjust the spray volume and spray range according to the pressure change entering the connecting member 51.

[0049] In this embodiment, the adjustment component 5 also includes an air outlet hole 55, which is opened on the connecting member 51 and is connected to the air cavity 54 in the connecting member 51. The multiple air outlet holes 55 on each connecting member 51 are arranged in a mirror image, and a pressure valve capable of unidirectional air outlet is fixedly installed in each air outlet hole 55.

[0050] It should be noted that the multiple air outlets 55 on each connecting member 51 are respectively arranged on both sides of the spray assembly 6. When the air outlets 55 spray gas outward, according to the principle of fluid movement, the high-pressure gas sprayed from the air outlets 55 can drive the water mist sprayed from the spray assembly 6 to move secondary.

[0051] In this embodiment, the adjustment component 5 also includes a first air duct 56, which is arranged on the connecting member 51, and one end of the first air duct 56 is connected to the air cavity 54. A damping member 57 is provided in the first air duct 56, and the damping member 57 can perform sealing sliding in the first air duct 56. The other end of the first air duct 56 is connected to the second air duct 58 through an annular groove provided in the connecting member 51. A slider 59 is sealingly and slidably connected in the second air duct 58. A traction member 7 is provided at one end of the slider 59 close to the filter element 62, and the end of the traction member 7 close to the filter element 62 is connected to the filter element 62.

[0052] In this embodiment, the air pressure in the air cavity 54 is divided into three states. In the first state, the air pressure in the air cavity 54 cannot make the gas ejected through the air outlet 55 and cannot push the damping member 57 to slide in the first air duct 56; in the second state, the air pressure in the air cavity 54 can make the gas ejected through the air outlet 55 and cannot push the damping member 57 to slide in the first air duct 56; in the third state, the air pressure in the air cavity 54 can make the gas ejected through the air outlet 55 and can push the damping member 57 to slide in the first air duct 56.

[0053] When it is necessary to remove the odor in the scene where the device is located, the fogging host 1 controls the liquid supply component 3 and the air supply component 4 to work simultaneously. In this state, the high-pressure deodorizing solution and the high-pressure gas are respectively moved through the corresponding connecting pipes 21 to the direction of the three-way valve 22 through the high-pressure water pump and the air supply pump, and flow into the guide pipe 23 from the outlet of the three-way valve 22. At this time, the high-pressure gas and the high-pressure deodorizing solution respectively enter the air cavity 54 and the liquid cavity 53 of the multiple connecting parts 51 through the corresponding hoses. When the multiple adjusting components 5 arranged on the transmission component 2 are filled with high-pressure gas and high-pressure deodorizing solution, as the liquid supply component 3 and the air supply component 4 continue to work, the deodorizing solution in each connecting part 51 can move toward the direction of the spray component 6 under the action of high pressure and be sprayed out through the atomization of the spray component 6. During the process, the pressure values ​​of the high-pressure gas and the high-pressure deodorant solution in each connecting member 51 are adjusted by controlling the liquid supply component 3 and the air supply component 4, so that the air pressure value in the air cavity 54 is maintained in the first state. At this time, the gas cannot be sprayed out through the air outlet 55 and cannot push the damping member 57 to slide in the first air duct 56. The pressure value of the deodorant solution is close to the pressure value of the gas. In this state, since the pressure values ​​of the deodorant solution and the gas fluctuate, the elastic membrane 52 arranged in the connecting member 51 can bend irregularly according to the pressure changes of the deodorant solution and the gas on both sides, thereby disturbing the deodorant solution entering the connecting member 51, promoting the mixing effect of the pure water and the deodorant in the deodorant solution, and avoiding the problem that the deodorant solution is adsorbed in the pipeline and deteriorates due to uneven mixing, causing blockage.

[0054] Secondly, when it is necessary to expand the atomization range, the power of the air supply component 4 is increased by controlling the fog-making main unit 1 to change the gas pressure in the regulating component 5 from the first state to the second state. In this state, the gas pressure in the regulating component 5 increases, and the gas can be ejected through the air outlet 55 at this time, and cannot push the damping member 57 to slide in the first air duct 56. When the gas is discharged outward through the air outlet 55, according to Bernoulli's principle, an increase in flow rate will lead to a decrease in pressure. Therefore, when the high-pressure gas is ejected outward through the air outlet 55, a low-pressure area will be formed around it, thereby driving the water mist in this area to perform secondary movement, thereby expanding the atomization range of the water mist and further improving the deodorization effect on the air.

[0055] Furthermore, as the gas pressure increases, the gas can push the elastic membrane 52 to move toward the spray assembly 6, reducing the volume of the liquid cavity 53, thereby increasing the hydraulic pressure of the liquid in the liquid cavity 53 in disguised form, thereby improving the atomization effect of the spray assembly 6 on the deodorizing solution.

[0056] It should be noted that the fog-making host 1 can control the air supply component 4 so that the air pressure in the adjustment component 5 is continuously switched between the first state, the second state and the third state, thereby further optimizing the deodorization effect of the device.

[0057] At the same time, the humidity of the air is monitored in real time by the humidity sensor arranged on the fog-making host 1. If it is detected that the air humidity is lower than the normal value at this time, the air supply component 4 is controlled to change from the second state to the first state. In this state, only water mist is sprayed out, thereby increasing the humidity of the air and avoiding the rapid evaporation of the water mist particles generated by the spray deodorization equipment due to excessive dryness of the air, thereby reducing the contact time between the water mist particles and the odor molecules and reducing the deodorization effect; if it is detected that the air humidity is higher than the normal value, the air supply component 4 is controlled to change from the first state to the second state. In this state, the elastic membrane 52 is pushed by the high-pressure gas to move toward the direction close to the spray component 6, thereby causing the volume of the liquid cavity 53 to become smaller and the hydraulic pressure in the liquid cavity 53 to increase. The deodorizing solution is pressurized twice to make the water mist finer. At the same time, multiple connectors 51 are arranged in a rectangular array so that the air outlets 55 of the multiple connectors 51 correspond to each other. When the high-pressure gas is ejected outward from the air outlet 55, it can drive the odor molecules in the air to mix with the water mist, and the collision caused by the two streams of high-pressure gas with opposite flow directions further improves the adsorption effect of the water mist and the odor molecules, thereby avoiding the spray deodorizing device from spraying in the scene for a long time, causing the air humidity in the scene to gradually increase. The water mist particles generated by the spray deodorizing equipment are easy to combine with water vapor in the air to form larger water droplets, which not only reduces the dispersion effect of the water mist, but also reduces the contact area between the water mist particles and the odor molecules, thereby reducing the deodorizing efficiency.

[0058] Finally, when it is necessary to clean the impurities on the filter element 62 during the deodorization process to avoid the problem that the spray component 6 cannot spray mist, the mist-making host 1 controls the air supply component 4 to change the air pressure of the gas entering the regulating component 5 from the first state to the third state. In this state, the gas can be sprayed out through the air outlet 55 and can push the damping element 57 to slide in the first air channel 56. When the high-pressure gas pushes the damping element 57 to move away from the air cavity 54, since the first air channel 56 and the second air channel 58 are connected, the damping element 57 can pass through the air pressure The change pushes the slider 59 to move toward the filter element 62, and when the air pressure of the gas entering the regulating component 5 is changed from the third state to the first state, the slider 59 can move away from the filter element 62 under the action of negative pressure, and the air pressure of the gas entering the regulating component 5 is changed reciprocally so that the slider 59 pulls the filter element 62 to slide on the sealing component 61 through the traction member 7, and the filter hole 63 is flushed with a high-pressure deodorizing solution, so that impurities on the filter element 62 are cleaned during the deodorizing process to avoid the problem that the spray component 6 cannot spray mist.

[0059] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A deodorizing fog machine, comprising a fogging main unit (1) and a transmission component (2), characterized in that: The deodorizing fogging machine also includes: A liquid supply component (3), the liquid supply component (3) being arranged inside the fog-generating main unit (1), the liquid supply component (3) being capable of mixing purified water and deodorant and delivering them to the transmission component (2) in the form of high pressure; An air supply component (4), the air supply component (4) being arranged inside the fog-making main unit (1), the air supply component (4) being capable of producing high-pressure gas and conveying the high-pressure gas to the transmission component (2), so that the air supply component (4) and the liquid supply component (3) are capable of adjusting the pressure of the ejected gas and water mist according to the air humidity; The regulating component (5) comprises a connecting member (51), wherein the connecting member (51) is connected to the transmission component (2), wherein a bendable elastic membrane (52) is provided inside the connecting member (51), wherein the elastic membrane (52) can divide the interior of the connecting member (51) into a liquid chamber (53) and an air chamber (54), wherein the liquid chamber (53) can be connected to the liquid supply component (3), and the air chamber (54) can be connected to the air supply component (4), and wherein the regulating component (5) can adjust the spray volume and the spray range according to the pressure change entering the connecting member (51).

2. The deodorizing fogging machine according to claim 1, characterized in that: A spray assembly (6) is provided at one end of the connecting member (51) that is in communication with the liquid chamber (53). The spray assembly (6) comprises a sealing member (61). The sealing member (61) is threadedly connected to the connecting member (51). A cavity in communication with the liquid chamber (53) is provided inside the sealing member (61). A filter member (62) is slidably connected inside the cavity of the sealing member (61). An end of the filter member (62) close to the connecting member (51) extends out of the sealing member (61) and a plurality of filter holes (63) are provided on the filter member (62) in an annular array.

3. The deodorizing fogging machine according to claim 2, characterized in that: The spray assembly (6) further comprises a spray element (64), wherein the spray element (64) is arranged at one end of the sealing element (61) away from the connecting element (51), a mist outlet (65) is provided in the central area of ​​the spray element (64), and the mist outlet (65) is communicated with the cavity of the sealing element (61), and a fixing element (66) is provided at one end of the spray element (64) away from the sealing element (61), one end of the fixing element (66) is fixedly connected to the sealing element (61), and the other end of the fixing element (66) is arranged above the mist outlet (65), and one end of the fixing element (66) arranged above the mist outlet (65) is fixedly connected to a striker (67), and the striker (67) can atomize the high-pressure liquid sprayed from the mist outlet (65).

4. The deodorizing fogging machine according to claim 3, characterized in that: The regulating assembly (5) further comprises an air outlet hole (55), the air outlet hole (55) being provided on the connecting member (51) and being in communication with the air cavity (54) in the connecting member (51); the plurality of air outlet holes (55) on each connecting member (51) are arranged in a mirror-like manner, and a pressure valve capable of unidirectional air outlet is fixedly installed in each air outlet hole (55).

5. The deodorizing fogging machine according to claim 4, characterized in that: The regulating assembly (5) further comprises a first air passage (56), wherein the first air passage (56) is arranged on the connecting member (51), and one end of the first air passage (56) is communicated with the air cavity (54), a damping member (57) is arranged in the first air passage (56), and the damping member (57) can slide sealingly in the first air passage (56), and the other end of the first air passage (56) is communicated with the second air passage (58) via an annular groove provided in the connecting member (51), and a sliding block (59) is sealingly and slidingly connected in the second air passage (58), and a traction member (7) is arranged at one end of the sliding block (59) close to the filter element (62), and one end of the traction member (7) close to the filter element (62) is connected to the filter element (62).

6. The deodorizing fogging machine according to claim 5, characterized in that: The air pressure in the air cavity (54) is divided into three states. In the first state, the air pressure in the air cavity (54) cannot cause the gas to be ejected through the air outlet (55) and cannot push the damping member (57) to slide in the first air passage (56); in the second state, the air pressure in the air cavity (54) can cause the gas to be ejected through the air outlet (55) and cannot push the damping member (57) to slide in the first air passage (56); in the third state, the air pressure in the air cavity (54) can cause the gas to be ejected through the air outlet (55) and can push the damping member (57) to slide in the first air passage (56).

7. The deodorizing fogging machine according to claim 6, characterized in that: The mist-generating main unit (1) is provided with a control module and a humidity detection component. The control module can control various electrical components to work by means of electrical control, and the humidity detection component can detect air humidity.

8. The deodorizing fogging machine according to claim 7, characterized in that: The transmission component (2) comprises a connecting pipe (21), wherein the two connecting pipes (21) are respectively connected to the liquid supply component (3) and the gas supply component (4), and the two connecting pipes (21) are connected via a three-way valve (22), and a flow guide pipe (23) is provided at the outlet of the three-way valve (22). The liquid supply component (3) and the gas supply component (4) can be connected to the multiple adjustment components (5) via the multiple flow guide pipes (23) and the connecting valve, and each of the flow guide pipes (23) is provided with a hose respectively connected to the liquid supply component (3) and the gas supply component (4).

9. The deodorizing fogging machine according to claim 8, characterized in that: The liquid supply component (3) comprises a water tank (31), wherein the water tank (31) is arranged in the mist-generating main unit (1), and the water tank (31) is divided into a water storage tank and a medicine tank. A multi-stage filtering component is arranged at the water inlet end of the water tank (31), and a high-pressure water pump is connected to the bottom of the water tank (31) via a pipeline, and the high-pressure water pump can transmit the mixed deodorizing liquid to the transmission component (2) at high pressure.

10. The deodorizing fogging machine according to claim 9, characterized in that: The air supply component (4) comprises an air supply pump, which is arranged inside the fog-making main unit (1). The air outlet of the air supply pump is connected to the transmission component (2) through a pipeline, and the air supply pump can transport high-pressure gas into the transmission component (2).

Citation Information

Patent Citations

  • Spray deodorizing device

    CN106552280A

  • Spraying deodorizer

    CN112870952A