Active oxygen negative oxygen composite atomizing sterilizer
Technical Field
The utility model belongs to the technical field of the atomizer, concretely relates to compound atomizing sterilizing machine of oxygen anion
Background
Along with people's standard of living improves day by day, people have provided higher requirement to indoor air quality and humidity, and the atomizer should be transported to life, and the atomizer can be through atomizing to the moisture in the water tank, discharges through atomizer fog mouth, effectively improves the peripheral air humidity of device, increases air humidity, all has the health protection effect to skin and respiratory track.
However, the requirement of people on indoor atomizers is higher and higher at present, most atomizers in the market only have a single humidifying function and do not have the functions of generating negative ions and the like for sterilizing air and increasing air nutrition. Or the atomizer with the negative ion function, negative ions generated by a general negative ion generator are mixed with mist in the machine body, and when the mist mixed with the negative ions is conveyed to a mist outlet in the machine body, the negative ions are basically ineffective after being conveyed for a long distance, so that the effects of sterilizing the negative ions and increasing the air nutrition cannot be well exerted.
SUMMERY OF THE UTILITY MODEL
The utility model aims to overcome the problem of the unsatisfactory existence of anion function effect that current atomizer produced, provide a mist and anion outside the organism mix plays the compound atomizing sterilizing machine of active oxygen negative oxygen of air sterilization purifying effect.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
the active oxygen negative oxygen composite atomization disinfection machine comprises a machine body, a water tank and an atomization chamber, wherein the water tank and the atomization chamber are arranged in the machine body, an atomization device is arranged in the atomization chamber, a water adding structure is arranged at the upper end of the water tank, a water outlet communicated with the atomization chamber is arranged at the lower side of the water tank, a water level control device connected with the water outlet is arranged in the atomization chamber, a mist outlet channel communicated with the atomization chamber and the outside is arranged in the machine body, and a mist outlet nozzle is formed at an outlet of the mist outlet channel; the machine body is internally provided with an active oxygen generator and a negative ion generator, the active oxygen generator generates active oxygen gas passing through the fog outlet channel, and the active oxygen gas is mixed with fog vapor and then discharged outside; the surface of the machine body is provided with an anion outlet corresponding to the anion generator, and the anions generated by the anion generator can be discharged through the anion outlet and then mixed and diffused with the mist sprayed by the mist outlet nozzle.
Compared with the prior art, the utility model discloses a compound atomizing sterilizing machine of active oxygen negative oxygen sets up active oxygen generator and anion generator in the organism to and through set up the anion discharge port on the organism surface, the anion that makes anion generator produce further takes place to mix with the fog that goes out the fog mouth exhaust and thoughtlessly have the active oxygen gas outside the organism, the time that the anion that makes fog mix persists in the air is longer, anion air sterilization is better with the increase air nutrition effect, the anion can effectively track the virus bacterium and the various pollution sources that have the positive charge. The active oxygen and the negative ions have higher sterilization and disinfection effects after being mixed, and can degrade pollutants in the air, including but not limited to: PM1.0, PM2.5, PM10, formaldehyde, benzene compounds, TVOCs, etc. The anion after mixing with the mist can increase the nutrition of the air and has better effect.
Furthermore, two poles of the negative ion generator are arranged on two opposite sides of the mist outlet nozzle, and one negative ion outlet is arranged on each of two sides of the mist outlet nozzle; through the arrangement, the two sides of the mist outlet nozzle are respectively provided with the negative ion outlet, so that the negative ion disinfection effect is good.
Further, the distance between the releasing end of the negative ion generator and the negative ion discharge port is less than 20 cm; by means of the arrangement, the negative ions mixed with the mist are retained in the air for a longer time.
Furthermore, the negative ion outlet and the mist outlet nozzle are arranged on one side of the top of the machine body; through such setting, air humidifying and atomizing disinfection effect are better.
Further, a live oxygen generating chamber communicated with the mist outlet channel is further arranged in the machine body, an air inlet communicated with the live oxygen generating chamber is formed in the side part of the machine body, a live oxygen generator and a fan are arranged in the live oxygen generating chamber, and the fan is used for conveying generated live oxygen gas to the mist outlet channel; through setting up like this, the user of being convenient for selects the active oxygen purification performance to carry out air humidifying and disinfects, can save the cost that the user purchased the active oxygen clearing machine in addition simultaneously.
The water storage device is characterized by further comprising a base which is detachably arranged at the bottom of the machine body, wherein a water storage cavity is arranged in the base, and a delivery pump which is respectively communicated with the water storage cavity and the water tank through pipelines is arranged in the machine body; through setting up like this, make the compound atomizing sterilizing machine of oxygen anion have more lasting water storage and supply, save the user and add the water frequency.
Furthermore, the water level control device comprises a normally closed water valve arranged at the water outlet and a floating ball control device arranged in the atomizing chamber, the normally closed water valve is detachably connected with the floating ball control device, and the water level control device can open or release the normally closed water valve according to the water level in the atomizing chamber; through setting up like this, adopt this kind of structure, make things convenient for water level control device to control the water tank and launch according to the demand volume of the indoor water of atomizer.
Furthermore, the floating ball control device comprises a floating ball body, a lever and a lever connecting seat, the floating ball body is arranged on the water level in the atomizing chamber, the middle part of the lever is hinged on the lever connecting seat, and two ends of the lever are respectively connected with the floating ball body and the normally closed water valve; through the arrangement, the floating ball control device is simple in structure and good in water level control effect.
Furthermore, the top of the water tank is provided with an opening, and the water tank also comprises a top cover which can be detachably covered at the opening of the water tank; through such setting, convenience of customers adds water on the upside.
Further, a control panel is arranged on the front side of the machine body and is electrically connected with the atomizing device, the negative ion generator, the live oxygen generator and the fan through a control module; through the arrangement, a user can conveniently control the working state of the active oxygen and negative oxygen composite atomization sterilizing machine.
Drawings
FIG. 1 is a schematic view of a machine body
FIG. 2 is a schematic view of the top cover of the body
FIG. 3 is a schematic view of the body with the top cover removed
FIG. 4 is a sectional view of the body in the atomizing chamber
FIG. 5 is a cross-sectional view of the body in the water tank
FIG. 6 is a schematic view of a compound atomizing sterilizer using active oxygen and negative oxygen
Detailed Description
The technical scheme of the utility model is described below with the accompanying drawings:
referring to fig. 1 to 5, the utility model discloses a compound atomizing sterilizer of active oxygen negative oxygen, including organism 1 and water tank 2 and atomizer chamber 3 located in organism 1, the water tank 2 is located the upper side of atomizer chamber 3, is equipped with atomizer 31 in the atomizer chamber 3, atomizer 31 is for example the ultrasonic atomization ware, the upper end of water tank 2 is equipped with the structure of adding water, the downside is equipped with the delivery port 21 that communicates with the atomizer chamber 3, be equipped with the water level control device who is connected with delivery port 21 in the atomizer chamber 3, be equipped with in the organism 1 and communicate the atomizer chamber 3 with the external fog passageway 22, the export of the fog passageway 22 forms out fog mouth 23; an active oxygen generator (not shown) and a negative ion generator (not shown) are arranged in the machine body 1, the active oxygen generator generates active oxygen gas passing through the fog outlet channel 22, and the active oxygen gas and the fog gas are mixed and then discharged to the outside; the surface of the machine body 1 is provided with an anion outlet 11 corresponding to the anion generator, and the anions generated by the anion generator can be discharged through the anion outlet 11 and then mixed and diffused with the mist sprayed from the mist outlet nozzle 23.
Compared with the prior art, the utility model discloses a compound atomizing sterilizing machine of active oxygen negative oxygen sets up active oxygen generator and anion generator in organism 1 to and through setting up anion discharge port 11 on the surface of play organism 1, the anion that makes anion generator produce further takes place to mix with the mist that has mixed with active oxygen gas of fog mouth 23 exhaust outside organism 1, the time that the anion that makes mist mix persists in the air is longer, anion air sterilization is better with the increase air nutrition effect. The negative ions can effectively track viruses and bacteria with positive charges and various pollution sources, the active oxygen and the negative ions have higher sterilization and disinfection effects after being mixed, and pollutants in the air can be degraded, including but not limited to: PM1.0, PM2.5, PM10, formaldehyde, benzene compounds, TVOCs, etc. The anion after mixing with the mist can increase the nutrition of the air and has better effect.
Referring to fig. 1 to 4, in one embodiment, two poles of the negative ion generator are disposed on two opposite sides of the mist outlet nozzle 23, and one negative ion outlet 11 is disposed on each of two sides of the mist outlet nozzle 23; by the arrangement, the negative ion discharge ports 11 are respectively arranged on the two sides of the mist outlet nozzle 23, so that the negative ion disinfection effect is good.
In one embodiment, the distance between the releasing end of the negative ion generator and the negative ion discharge port 11 is less than 20cm, and preferably, the distance between the releasing end of the negative ion generator and the negative ion discharge port 11 is less than 10 cm; by such an arrangement, the negative ions mixed with the mist can be retained in the air for a longer time.
In one embodiment, the anion discharge port 11 and the mist outlet nozzle 23 are arranged at one side of the top of the machine body 1, and the anion generator is arranged at the lower side of the anion discharge port 11; through setting up like this, air humidification and atomizing disinfection effect are better.
Referring to fig. 2 to 4, in an embodiment, a vertically arranged mist outlet pipe 221 connected to a mist outlet nozzle 23 and an atomizing chamber 3 respectively is arranged in the water tank 2, the mist outlet channel 22 is formed in a pipe hole of the mist outlet pipe 221, the atomizing device 31 is arranged at a lower side of the mist outlet pipe 221, a live oxygen generating chamber 4 communicated with the mist outlet channel 22 is further arranged in the machine body 1, the live oxygen generating chamber 4 is arranged at a side portion of the atomizing chamber 3 and is separated from the atomizing chamber 3, an air inlet 41 communicated with the live oxygen generating chamber 4 is arranged at a side portion of the machine body 1, a live oxygen generator and a fan 43 are arranged in the live oxygen generating chamber 4, and the fan 43 is used for conveying an air flow mixed with live oxygen generated by the live oxygen generator to the mist outlet channel 22 and further mixing with mist and discharging through the mist outlet nozzle 23; through setting up like this, the user of being convenient for selects the active oxygen purification performance to carry out air humidifying and disinfects, can save the cost that the user purchased the active oxygen clearing machine in addition simultaneously.
Referring to fig. 5, in an embodiment, the portable water treatment device further includes a base 5 detachably mounted at the bottom of the machine body 1, a water storage cavity 51 is arranged in the base 5, a delivery pump 12 connected with the water storage cavity 51 and the water tank 2 through a pipeline is arranged in the machine body 1, an infusion port (not shown) communicated with the delivery pump 12 through a pipeline is arranged at the bottom of the machine body 1, the infusion port can be connected with the water storage cavity 51 through a pipeline, and a water outlet pipe 14 communicated with the delivery pump 12 through a pipeline is arranged in the water tank 2; through the arrangement, the active oxygen and negative oxygen composite atomizing sterilizer has more continuous water storage supply, and the water adding times of users are saved.
Referring to fig. 2 to 4, in an embodiment, the water level control device includes a normally closed water valve 33 disposed at the water outlet 21 and a float control device 6 disposed in the atomization chamber 3, the normally closed water valve 33 is detachably connected to the float control device 6, and the water level control device can open or release the normally closed water valve 33 according to the water level in the atomization chamber 3 to control the water tank 2 to supply water to the atomization chamber 3 or stop supplying water; through setting up like this, adopt this kind of structure, make things convenient for water level control device to control 2 offwaters of water tank according to the demand volume of the interior water of atomizer chamber 3.
Referring to fig. 2 to 4, in one embodiment, the float control device 6 includes a float body 61, a lever 62 and a lever connecting seat 63, the float body 61 is disposed at the water level in the atomization chamber 3, the middle of the lever 62 is hinged to the lever connecting seat 63, and two ends of the lever 62 are respectively connected to the float body 61 and the normally closed water valve 33; through the arrangement, the floating ball control device 6 is simple in structure and good in water level control effect.
Referring to fig. 1 to 3, in an embodiment, the top opening of the water tank 2 forms the water adding structure, the water adding structure further includes a top cover 17, the top cover 17 detachably covers the opening of the water tank 2, and the top cover 17 is provided with an avoiding hole 171 corresponding to the negative ion discharge port 11; through setting up like this, convenience of customers adds water in the upside.
Referring to fig. 1, in an embodiment, a control panel 18 is disposed on the front side of the machine body 1, and the control panel 18 is electrically connected to the atomizing device 31, the negative ion generator, the delivery pump 12, the ozone generator and the fan 43 through a control module; through setting up like this, convenience of customers controls the operating condition of active oxygen function, anion function, the function of adding water and the function of going out fog of active oxygen negative oxygen composite atomization sterilizing machine.
Variations and modifications to the above-described embodiments may occur to those skilled in the art, in light of the above teachings and teachings. Therefore, the present invention is not limited to the specific embodiments disclosed and described above, and modifications and variations of the present invention are also intended to fall within the scope of the appended claims. Furthermore, although specific terms are employed herein, such terms are used for convenience of description and are not to be construed as limiting the invention in any way.