Air purification device capable of self-cleaning
Technical Field
The utility model relates to an air purifier field, concretely relates to air purification device that can automatically cleaning.
Background
In the environment where modern people live, there are many pollution sources such as building materials, industrial waste gas and human excrement generated in daily life, and in order to improve quality of life, air evolution equipment is used in large quantities in commercial buildings, and in home rooms to remove as much as possible the pollution dust (PM2.5 dust; pollen, bacteria; allergen) floating in the air; the conventional air purification preparation includes a fan generating air flow and a filtering device such as a filter net to which particulate pollutants floating in the air are adsorbed for the purpose of purifying the air; high efficiency sieve HEPA is often used for effectively removing fine particles (PM2.5), but after a period of use, the efficiency of the filter is reduced and even lost, because the filter holes are blocked by the adsorption of dust particles, the air purification efficiency is reduced, and particularly in the environment or season with a large number of pollution sources, the air purification effect is remarkably reduced. In order to ensure the required purification requirements, the filter screen needs to be replaced frequently; however, most of the existing air purifiers have no way to detect the effectiveness of the filter screen timely and accurately, and the filter screen cannot be replaced timely; in order to ensure the filtering efficiency, the existing filter screen is more and more complex, the thickness is increased, and even if the existing filter screen cannot ensure the due efficiency of the filter screen; there are also some screens that claim to be cleanable, which is generally not suitable for high efficiency screens, even if the screen efficiency is reduced after cleaning.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problem, the utility model provides a technical scheme does: the utility model provides an air purification device that can automatically cleaning, includes upper filter box and the separable clean case that sets up in upper filter box lower part, upper filter box is hollow structure, and its one end is equipped with the air intake, and the other end is equipped with the air outlet, be equipped with several filter element assembly along its length direction interval between air intake and the air outlet, filter element assembly both ends are equipped with the transmission assembly who stretches into in the clean case respectively, the clean case is hollow structure, and its upper portion is equipped with the opening, upper filter box bottom is equipped with the clean entry that corresponds with filter element assembly and covers the closed plate subassembly of clean entry, clean case upper portion is provided with the rotation cleaning brush with the department of correspondence of clean entry relatively, clean case one end still is equipped with inlet tube and outlet pipe.
As an improvement, the transmission assembly comprises a first transmission rack, a first transmission gear and a first transmission track, the first transmission rack is arranged at two ends of the filter element assembly respectively, the first transmission track is sleeved outside the first transmission rack and comprises an upper track arranged in the upper filter box and a lower track arranged in the cleaning box, the first transmission gear is arranged in the first transmission track and meshed with the first transmission rack, and one end of the first transmission gear is connected with the first driving motor through a transmission shaft.
As an improvement, the first transmission gears are two groups and are respectively arranged at one ends, close to each other, of the upper rail and the lower rail.
As an improvement, the sealing plate assembly comprises a sealing plate body arranged at the cleaning inlet, a driving plate is arranged at one end of the sealing plate body, a second transmission rack is arranged on two sides of the driving plate, a second transmission gear is kneaded on one side of the second transmission rack, and the second transmission gear is connected with a second driving motor through a transmission shaft.
As an improvement, the sealing plate assembly is arranged on the inner side of the bottom surface of the upper-layer filter box, and a track clamping groove corresponding to the moving direction of the sealing plate body is arranged on the bottom surface of the upper-layer filter box.
As an improvement, a time controller electrically connected with the second driving motor and the first driving motor is further arranged in the upper-layer filter box.
As an improvement, a fan is further arranged at one end, located at the air outlet, of the upper-layer filter box.
As the improvement, the inlet tube sets up in the clean case top, the outlet pipe sets up in the clean case bottom.
As an improvement, the bottom of the upper-layer filter box is clamped with the top of the cleaning box through a clamping piece.
As an improvement, the cleaning box is a transparent box body.
After the structure more than adopting, the utility model has the advantages of as follows: the utility model discloses a set up clean case and belt drive assembly's filter element, make the filter element can reciprocate, and can clean through the rotation cleaning brush at clean roof portion, with detach the dust of remaining on the filter element, harmful substance in the air effectively, reach the purpose of protective air, setting through the closing plate subassembly, can seal clean entry when the filter element is unclean and make upper filter case and lower part clean case separation avoid steam to upper air filter layer, the clean time of filter element can be set for through time controller, the clean case sets transparent case in addition, the state convenience of customers who can observe inside clean liquid judges whether need change, and can increase the sanitizer in the clean case, further improve the clean effect of filter element.
Drawings
Fig. 1 is a schematic diagram of the front structure of an air cleaning device capable of self-cleaning according to the present invention.
Fig. 2 is a schematic diagram of a rear structure of the air cleaning device capable of self-cleaning.
Fig. 3 is a schematic cross-sectional structure diagram of the air purification device capable of self-cleaning according to the present invention.
Fig. 4 is a schematic view of the internal structure of the air cleaning device with self-cleaning function of the present invention.
Fig. 5 is a schematic view of the internal structure of the cleaning box in the self-cleaning air purification device of the present invention.
Fig. 6 is a schematic diagram of a rear structure of a cleaning box in the self-cleaning air purification device of the present invention.
Fig. 7 is a schematic structural diagram of a closing plate assembly in an air cleaning device capable of self-cleaning according to the present invention.
As shown in the figure: 1. the upper-layer filter box comprises an upper-layer filter box body 1.1, a cleaning inlet 1.2, a rail clamping groove, 2, a cleaning box body, 3, an air inlet, 4, an air outlet, 5, a filter element assembly, 6, a transmission assembly, 6.1, a first transmission rack, 6.2, a first transmission gear, 6.3, a first transmission rail, 6.3a, an upper rail, 6.3b, a lower rail, 6.4, a first driving motor, 7, a sealing plate assembly, 7.1, a sealing plate body, 7.2, a driving plate, 7.3, a second transmission rack, 7.4, a second transmission gear, 8, a rotary cleaning brush, 9, a water inlet pipe, 10, a water outlet pipe, 11, a fan, 12 and a clamping piece.
Detailed Description
With reference to the accompanying drawings, an air purification device capable of self-cleaning comprises an upper-layer filter box 1 and a cleaning box 2 which is arranged at the lower part of the upper-layer filter box 1 in a separable mode, wherein the upper-layer filter box 1 is of a hollow structure, an air inlet 3 is arranged at one end of the upper-layer filter box, an air outlet 4 is arranged at the other end of the upper-layer filter box, a plurality of filter assemblies 5 are arranged between the air inlet 3 and the air outlet 4 at intervals along the length direction of the upper-layer filter box, transmission assemblies 6 extending into the cleaning box are respectively arranged at two ends of each filter assembly 5, the cleaning box 2 is of a hollow structure, an opening is formed in the upper part of each cleaning box, a cleaning inlet 1.1 corresponding to each filter assembly 5 and a sealing plate assembly 7 covering each cleaning inlet 1.1 are arranged at the bottom of the upper-layer filter box 1, a rotating cleaning brush 8 is arranged at the corresponding position of the upper part of each cleaning box 2 and the corresponding to the cleaning inlet 1.1, and a water inlet pipe 9 and a water outlet pipe 10 are further arranged at one end of each cleaning box 2.
As a preferred embodiment of the present embodiment, the transmission assembly 6 includes a first transmission rack 6.1, a first transmission gear 6.2 and a first transmission rail 6.3, the first transmission rack 6.1 is respectively disposed at two ends of the filter assembly 5, the first transmission rail 6.3 is sleeved outside the first transmission rack 6.1, and includes an upper rail 6.3a disposed in the upper filter tank 1 and a lower rail 6.3b disposed in the cleaning tank 2, the first transmission gear 6.2 is disposed in the first transmission rail 6.3 and engaged with the first transmission rack 6.1, and one end of the first transmission gear 6.2 is connected with the first driving motor 6.4 through a transmission shaft.
As a preferred embodiment of the present embodiment, the number of the first transmission gears 6.2 is two, and the first transmission gears are respectively arranged at one end of the upper rail 6.3a, which is close to the lower rail 6.4.
As a preferred embodiment of the present embodiment, the closing plate assembly 7 includes a closing plate body 7.1 disposed at the cleaning inlet 1.1, a driving plate 7.2 is disposed at one end of the closing plate body 7.1, two driving racks 7.3 are disposed on two sides of the driving plate 7.2, a second transmission gear 7.4 is engaged on one side of the second driving rack 7.3, and the second transmission gear 7.4 is connected to a second driving motor through a transmission shaft.
As a preferred embodiment of this embodiment, the closing plate assembly 7 is disposed inside the bottom surface of the upper filtering box 1, and a rail slot 1.2 corresponding to the moving direction of the closing plate body 7.1 is disposed on the bottom surface of the upper filtering box 7.
As a preferred embodiment of this embodiment, a time controller electrically connected to the second driving motor and the first driving motor 6.4 is further disposed in the upper filtering tank 1.
As a preferred embodiment of this embodiment, a fan 11 is further disposed at one end of the upper layer filter box 1 located at the air outlet 4.
As a preferred embodiment of this embodiment, the water inlet pipe 9 is disposed at the top end of the cleaning tank 2, and the water outlet pipe 10 is disposed at the bottom end of the cleaning tank 2.
As the preferred embodiment of the embodiment, the bottom of the upper layer filter box 1 is clamped with the top of the cleaning box 2 through a clamping piece 12.
As a preferred embodiment of the present embodiment, the cleaning tank 2 is a transparent tank.
When the utility model is implemented, the filter element components can be set into filter elements with different apertures (20 to 6000 meshes), the filter elements can be orderly arranged according to the mesh number to respectively filter dust with large particle size to fine dust, and the filter elements can be made of stainless steel or plastic materials;
when air containing polluted dust is brought into the air purifier by a fan, the dust is blocked when the air passes through the filter disc, and clean air is discharged from the outlet; the aperture of the filter disc can be (20 meshes to 6000 meshes) as required, when the filter disc needs to be cleaned, the sealing plate assembly at the bottom of the upper filter box is started, the sealing plate body is driven to move through the transmission of the second gear and the second rack to open the cleaning inlet, then the transmission assembly is started, the upper filter disc is driven to move to the lower clean area through the meshing of the first gear and the first rack, the water layer is stirred by the rotating cleaning brush to clean the filter disc in a dedusting way, the rotating cleaning brush is contacted and abutted with the surface of the filter disc to carry out rotating cleaning, water or other cleaning solution and cleaning agent can be contained in the cleaning box, and the cleaning box is arranged into a transparent box, so that a user can observe the state of the internal cleaning liquid to conveniently judge whether the filter disc needs to be replaced; in addition, the cleaning time and the cleaning interval of the filter disc can be set through a time controller electrically connected with the second driving motor and the first driving motor, and the time controller can select the existing products on the market to realize a control function; when the cleaning is finished, the filter disc returns to the upper layer original position through the transmission assembly belt, the sealing plate assembly at the bottom of the upper layer filter box is started, the sealing plate body is driven to move to cover the cleaning inlet through the transmission of the second gear and the second rack, and water vapor is prevented from reaching the upper layer air filter layer.
The present invention and the embodiments thereof have been described above, but the description is not limited thereto, and the embodiment shown in the drawings is only one of the embodiments of the present invention, and the actual structure is not limited thereto. In summary, those skilled in the art should understand that they should not be limited to the embodiments described above, and that they can design the similar structure and embodiments without departing from the spirit of the invention.