Disclosure of Invention
The invention mainly aims to provide a multifunctional air purifier which can effectively solve the problems of poor air filtering effect and high cost of a traditional purifier by using a filter screen.
In order to achieve the above purpose, the technical scheme adopted by the invention is as follows: the utility model provides a multifunctional air purifier, includes the clarifier shell, a plurality of inlet ports have been seted up to the linear distribution of clarifier shell front end lower part, all fixed mounting has the flabellum about clarifier shell internal surface lower part front side, a plurality of ventholes have been seted up to the linear distribution of clarifier shell upper end front portion, clarifier shell front end upper portion fixed mounting has control panel, clarifier shell inner chamber right part is provided with filtering humidification subassembly, clarifier shell inner chamber left part is provided with hydrologic cycle subassembly.
Preferably, the filter humidifying component comprises a baffle fixedly connected with the left side of the lower part of the inner surface of the shell of the purifier, a T-shaped arc plate fixedly connected with the inner surface of the shell of the purifier is fixedly connected with the lower part of the right end of the baffle, a water film mechanism is arranged above the T-shaped arc plate on the inner surface of the shell of the purifier, a water curtain mechanism is arranged above the water film mechanism on the inner surface of the shell of the purifier, a water diversion mechanism is arranged at the upper end of the water film mechanism, an atomization mechanism is arranged at the upper end of the water curtain mechanism, and a cleaning mechanism is arranged at the upper end of the T-shaped arc plate.
Preferably, the water film mechanism comprises a honeycomb screen fixedly connected with the inner surface of the outer shell of the purifier, a limit groove is formed in the rear part of the inner surface of the outer shell of the purifier above the honeycomb screen, a limit block is slidably connected with the inner surface of the limit groove, a round hole block is fixedly connected with the front end of the limit block, a reciprocating screw rod is rotatably connected with the right part of the inner surface of the outer shell of the purifier, a round groove I is formed in the middle side of the upper part of the inner surface of the round hole block, an arc block is rotatably connected with the upper part of the inner surface of the round groove I, a rectangular frame is fixedly connected with a sponge block tightly attached to the upper end of the honeycomb screen, and the outer surface of the arc block is slidably connected with the reciprocating groove of the inner surface of the reciprocating screw rod.
Preferably, the water curtain mechanism comprises a first ponding frame fixedly connected with the upper side of the front part of the inner surface of the outer shell of the purifier, a sloping plate I is fixedly connected with one lower end of the ponding frame, a rectangular hole I communicated with the rear end of the first ponding frame is formed in the upper side of the rear part of the inner surface of the ponding frame, a sloping plate II is fixedly connected with the rear part of the inner surface of the outer shell of the purifier below the sloping plate II, a sloping plate III is fixedly connected with the front part of the upper end of the sloping plate III, a rectangular groove is formed in the front part of the upper end of the sloping plate III, and the middle side of the inner surface of the rectangular groove runs through and extends to the middle part of the lower end of the honeycomb screen to be fixedly connected with a U-shaped pipe.
Preferably, the water diversion mechanism comprises a collecting frame fixedly connected with the upper side of the middle part of the inner surface of the rectangular groove, a connecting hose is fixedly connected with the middle part of the lower end of the inner surface of the collecting frame, penetrates through and extends to the middle side of the upper part of the inner surface of the rectangular frame, and the outer surface of the connecting hose is fixedly connected with the inclined plate.
Preferably, the atomization mechanism comprises a second water accumulating frame fixedly connected with the rear part of the upper end of the inclined plate, a plurality of ultrasonic vibrators are linearly distributed and fixedly connected to the lower part of the inner surface of the second water accumulating frame, a second rectangular hole communicated with the front part of the inner surface of the second water accumulating frame is formed in the lower part of the front end of the second water accumulating frame, and a third rectangular hole communicated with the rear part of the inner surface of the second water accumulating frame is formed in the middle of the rear end of the second water accumulating frame.
Preferably, the cleaning mechanism comprises a connecting rod fixedly connected with the middle part of the lower end of the limiting block, an L-shaped groove communicated with the inner surface of the limiting groove is formed below the rear part of the inner surface of the shell of the purifier, the inner surface of the L-shaped groove is in sliding connection with the outer surface of the connecting rod, the front end of the connecting rod is fixedly connected with a scraping plate tightly attached to the upper part of the outer surface of the T-shaped arc plate, a round groove II is formed in the lower part of the inner surface of the L-shaped groove in a bilateral symmetry mode, round rods are respectively and rotationally connected to the lower part of the inner surface of the round groove II, the upper ends of the round rods are rotationally connected with the upper part of the inner surface of the L-shaped groove, coil springs are respectively and fixedly connected with protection belts at one ends, close to each other, of the protection belts are respectively fixedly connected with the left end and the right end of the connecting rod.
Preferably, the water circulation assembly comprises a water tank fixedly connected with the lower part of the left end of the partition plate, the middle part of the inner surface of the water tank is movably provided with a filter plate, the rear part of the inner cavity of the water tank is provided with a water pumping mechanism, the left end of the partition plate is provided with a transmission mechanism, and a drain hole penetrating the right part of the inner surface of the water tank is formed in the position, above the T-shaped arc plate, of the left part of the inner surface of the outer shell of the purifier.
Preferably, the water pumping mechanism comprises a water pump fixedly arranged at the lower part of the inner surface of the water tank, a first connecting pipe is fixedly connected with the middle part of the upper end of the water pump, a second connecting pipe communicated with the inner surface of the first connecting pipe is fixedly connected with the front side of the right part of the outer surface of the first connecting pipe, and the outer surface of the second connecting pipe is fixedly connected with the partition plate and the first water accumulation frame respectively.
Preferably, the drive mechanism is including running through a connecting pipe internal surface and extending to the impeller that baffle right-hand member rotated and is connected, impeller right-hand member and reciprocating screw left end middle part fixed connection, a connecting pipe internal surface is located impeller below fixedly connected with cambered surface piece, impeller surface fixedly connected with belt pulley group, belt pulley group internal surface fixedly connected with dwang, dwang surface and baffle rotate and are connected, dwang right-hand member and purifier shell internal surface right part rotate and are connected, the dwang surface is located purifier shell inner chamber fixedly connected with puddler, purifier shell internal surface is located puddler top fixedly connected with guide board.
Compared with the prior art, the invention has the following beneficial effects:
1. According to the invention, the filter humidifying assembly and the water circulating assembly are arranged, so that air entering the inner cavity of the outer shell of the purifier can be filtered and purified by water under the cooperation of the water circulating assembly and the filter humidifying assembly, and meanwhile, the purified air can be humidified, so that the traditional filter screen type purification is avoided, the subsequent use cost of the purifier is reduced, and the purifier is convenient for a user to use.
2. According to the invention, the water film mechanism and the water curtain mechanism are arranged, so that air entering the purifier shell can be primarily filtered through the water film formed by the honeycomb screen plate by brushing the sponge block, sundries in the air are primarily treated, water curtains at two ends are formed under the cooperation of the inclined plate I, the inclined plate II and the inclined plate III in the water curtain mechanism, and the air is secondarily filtered and purified again, so that the purifying effect is improved.
3. According to the invention, the atomization mechanism and the cleaning mechanism are arranged, so that the purified air is atomized through the ultrasonic vibrator in the upward movement process, the purified air can be fully mixed with the air, the purified air is further humidified, meanwhile, the scraping plate in the cleaning mechanism can clean sewage accumulated on the T-shaped arc plate, and the sewage enters the water tank, so that the water is convenient to circulate and reuse.
Detailed Description
The invention is further described in connection with the following detailed description, in order to make the technical means, the creation characteristics, the achievement of the purpose and the effect of the invention easy to understand.
First embodiment, as shown in fig. 1 and fig. 2, a multifunctional air purifier, including purifier shell 1, a plurality of inlet ports 2 have been seted up to purifier shell 1 front end lower part linear distribution, all fixed mounting has flabellum 3 about purifier shell 1 internal surface lower part front side, purifier shell 1 upper end front portion linear distribution has seted up a plurality of ventholes 4, purifier shell 1 front end upper portion fixed mounting has control panel 5, purifier shell 1 inner chamber right part is provided with filters humidification subassembly 6, purifier shell 1 inner chamber left part is provided with hydrologic cycle subassembly 7.
In the implementation process of the embodiment, the control panel 5 controls the purifier shell 1 to operate, the air fan blades 3 rotate to enter the inner cavity of the purifier shell 1 through the air inlet holes 2, water is pumped into the inner cavity of the purifier shell 1 through the water circulation assembly 7, meanwhile, air is humidified after being filtered for a plurality of times through the filtering and humidifying assembly 6, and then is discharged into a room through the air outlet holes 4.
The control panel 5 is a mature technical means in the prior art, and the structure and principle of the control panel are not explained any more by utilizing the function of controlling the purifier shell 1.
The middle fan blade 3 is a mature technical means in the prior art, and the structure and principle of the middle fan blade can be not explained by utilizing the function that the air in the suction chamber enters the inner cavity of the purifier shell 1.
Specifically, in order to achieve the purpose of filtering the air entering the inner cavity of the purifier housing 1 with water, referring to fig. 3,4, 7, 11 and 12, in this embodiment, the water circulation assembly 7 includes a water tank 71 fixedly connected to the lower portion of the left end of the partition plate 61, a filter plate 72 is movably mounted in the middle of the inner surface of the water tank 71, a water pumping mechanism 73 is disposed at the rear portion of the inner cavity of the water tank 71, a transmission mechanism 74 is disposed at the left end of the partition plate 61, and a drain hole 68 penetrating the right portion of the inner surface of the water tank 71 is formed above the T-shaped arc plate 62 at the left portion of the inner surface of the purifier housing 1.
Further, referring to fig. 3, 4, 7, 11 and 12, in the present embodiment, the water pumping mechanism 73 includes a water pump 731 fixedly installed on the lower portion of the inner surface of the water tank 71, a first connecting pipe 732 is fixedly connected to the middle portion of the upper end of the water pump 731, a second connecting pipe 733 communicated with the inner surface of the first connecting pipe 732 is fixedly connected to the front side of the right portion of the outer surface of the first connecting pipe 732, and the outer surface of the second connecting pipe 733 is fixedly connected to the partition 61 and the first water accumulating frame 641.
In the implementation process, by starting the water pump 731, the input end of the water pump 731 draws water in the water tank 71 into the first connecting pipe 732, and simultaneously enters the second connecting pipe 733 through the first connecting pipe 732, and then enters the first water accumulating frame 641 through the second connecting pipe 733 for accumulating.
Further, referring to fig. 3,4, 7, 11 and 12, in this embodiment, the transmission mechanism 74 includes an impeller 741 penetrating through an inner surface of a connecting pipe 732 and extending to a right end of the partition plate 61 for rotation connection, the right end of the impeller 741 is fixedly connected with a middle portion of a left end of the reciprocating screw 634, an inner surface of the connecting pipe 732 is fixedly connected with a cambered surface block 742 below the impeller 741, an outer surface of the impeller 741 is fixedly connected with a pulley set 743, an inner surface of the pulley set 743 is fixedly connected with a rotating rod 744, an outer surface of the rotating rod 744 is rotatably connected with the partition plate 61, the right end of the rotating rod 744 is rotatably connected with a right portion of an inner surface of the purifier housing 1, the outer surface of the rotating rod 744 is fixedly connected with a stirring rod 745 within the inner cavity of the purifier housing 1, and the inner surface of the purifier housing 1 is fixedly connected with a guide plate 746 above the stirring rod 745.
In the implementation process, since the cambered surface block 742 is fixedly connected with the inner surface of the first connecting pipe 732, after water enters the first connecting pipe 732 through the water pump 731, the original water flow movement direction is changed under the action of the cambered surface block 742, so that the water flow can impact the impeller 741, and then the impeller 741 is driven to rotate, so that the impeller 741 drives the belt pulley set 743 to drive in the rotating process, and the rotating rod 744 is driven to rotate on the inner surface of the purifier shell 1, and then the stirring rod 745 is driven to rotate.
The pulley set 743 is composed of two driving wheels and a belt.
In the second embodiment, the filter and humidification assembly 6 for filtering and humidifying the air entering the purifier housing 1 is newly added on the basis of the first embodiment, so that the purpose of filtering and humidifying the air entering the purifier housing 1 is achieved.
Specifically, in order to filter and humidify the air entering the purifier housing 1, referring to fig. 3, 4, 5, 6,7, 8, 9 and 10, in this embodiment, the filter humidifying assembly 6 includes a partition plate 61 fixedly connected to the left side of the lower portion of the inner surface of the purifier housing 1, a T-shaped arc plate 62 fixedly connected to the lower portion of the right end of the partition plate 61 and the inner surface of the purifier housing 1, a water film mechanism 63 is disposed above the T-shaped arc plate 62 on the inner surface of the purifier housing 1, a water curtain mechanism 64 is disposed above the water film mechanism 63 on the inner surface of the purifier housing 1, a water diversion mechanism 65 is disposed on the upper end of the water curtain mechanism 64, an atomization mechanism 66 is disposed on the upper end of the T-shaped arc plate 62, and a cleaning mechanism 67 is disposed on the upper end of the T-shaped arc plate 62.
Further, referring to fig. 3,4, 5, 6,7, 8, 9 and 10, in this embodiment, the water curtain mechanism 64 includes a first water accumulation frame 641 fixedly connected to an upper side of an inner surface of the cleaner housing 1, a first inclined plate 643 fixedly connected to a lower end of the first water accumulation frame 641, a first rectangular hole 642 penetrating a rear end of the first water accumulation frame 641 is formed on an upper side of a rear portion of the inner surface of the first water accumulation frame 641, a second inclined plate 644 is fixedly connected to a rear portion of the inner surface of the cleaner housing 1 below the first inclined plate 643, a third inclined plate 645 is fixedly connected to a front portion of an inner surface of the cleaner housing 1 below the second inclined plate 644, a rectangular groove 646 is formed in a front portion of an upper end of the third inclined plate 645, and a U-shaped pipe 647 is fixedly connected to a middle portion of a lower end of the third inclined plate 646.
In the implementation process, when the water in the second connecting pipe 733 enters the first water accumulation frame 641, the water stays in the first water accumulation frame 641, when the water level in the first water accumulation frame 641 is higher than the first water level 642, the water falls to the upper end of the first inclined plate 643 under the action of gravity, the water continuously falls under the action of gravity due to the inclined shape of the first inclined plate 643, forms a first water curtain through the sawteeth at the rear end of the first inclined plate 643, falls onto the second inclined plate 644, forms a second water curtain through the sawteeth at the front end of the second inclined plate 644, enters the rectangular groove 646 under the action of gravity, flows into the upper part of the outer surface of the T-shaped arc plate 62 through the third inclined plate 645, and the U-shaped pipe 647 can prevent air which is not purified from entering the U-shaped pipe 647.
Further, referring to fig. 3, 4, 5,6, 7, 8, 9 and 10, in this embodiment, the water diversion mechanism 65 includes a collecting frame 651 fixedly connected to the upper side of the middle part of the inner surface of the rectangular groove 646, a connecting hose 652 is fixedly connected to the middle part of the lower end of the inner surface of the collecting frame 651 extending through to the middle side of the upper part of the inner surface of the rectangular frame 638, and the outer surface of the connecting hose 652 is fixedly connected to the sloping plate three 645.
In the implementation process, since the collecting frame 651 is located at the upper part of the inner surface of the rectangular groove 646, a part of water passing through the inclined plate three 645 enters the collecting frame 651 and flows into the inner cavity of the connecting hose 652 under the action of gravity.
Further, referring to fig. 3, 4, 5, 6, 7, 8, 9 and 10, in this embodiment, the water film mechanism 63 includes a honeycomb net plate 631 fixedly connected to the inner surface of the purifier housing 1, a limit groove 632 is formed above the honeycomb net plate 631 at the rear part of the inner surface of the purifier housing 1, the limit groove 632 is slidably connected with a limit block 633, the front end of the limit block 633 is fixedly connected with a circular hole 635, the right part of the inner surface of the purifier housing 1 is rotatably connected with a reciprocating screw 634, the middle side of the upper part of the inner surface of the circular hole 635 is provided with a circular groove 636, the upper part of the inner surface of the circular groove 636 is rotatably connected with an arc block 637, the lower end of the circular hole 635 is fixedly connected with a rectangular frame 638, the inner surface of the rectangular frame is fixedly connected with a sponge block 639 tightly attached to the upper end of the honeycomb net plate 631, and the outer surface of the arc block 637 is slidably connected with the reciprocating screw 634.
In the implementation process, water in the inner cavity of the connecting hose 652 can enter the sponge block 639, so that the sponge block 639 is soaked, meanwhile, the rotation of the impeller 741 can drive the reciprocating screw rod 634 to rotate, as the arc-shaped block 637 on the inner surface of the round hole block 635 is in sliding connection with the reciprocating groove on the inner surface of the reciprocating screw rod 634, the rotation of the reciprocating screw rod 634 can drive the round hole block 635 to move left and right, and further drive the sponge block 639 on the rectangular frame 638 to brush on the honeycomb net plate 631, so that a water film is formed on the honeycomb net plate 631, when air enters the inner cavity of the purifier shell 1 through the fan blade 3, under the guiding action of the T-shaped arc plate 62, the air must pass through the honeycomb net plate 631, so that sundries in part of the air can be captured by the water film on the honeycomb net plate 631, and the captured water can fall on the upper part of the outer surface of the T-shaped arc plate 62 under the action of gravity.
Secondly, the air subjected to preliminary purification can continue to move upwards, and the impurities doped in the air can be filtered and purified again through the second water curtain and the first water curtain, so that the air is completely purified.
Further, referring to fig. 3, 4, 5, 6, 7, 8, 9 and 10, in this embodiment, the atomization mechanism 66 includes a second water accumulation frame 661 fixedly connected to the rear portion of the upper end of the inclined plate 643, a plurality of ultrasonic vibrators 664 are linearly and fixedly connected to the lower portion of the inner surface of the second water accumulation frame 661, a second rectangular hole 662 penetrating the front portion of the inner surface of the second water accumulation frame 661 is formed in the lower portion of the front end of the second water accumulation frame 661, and a third rectangular hole 663 penetrating the rear portion of the inner surface of the second water accumulation frame 661 is formed in the middle portion of the rear end of the second water accumulation frame 661.
In the implementation process, as the second water accumulation frame 661 is positioned at the rear part of the upper end of the first inclined plate 643, after the water in the first water accumulation frame 641 falls on the first inclined plate 643, the water enters the second water accumulation frame 661 through the second rectangular hole 662 at the front end of the second water accumulation frame 661, the ultrasonic vibrator 664 atomizes the water, the atomized water mist moves upwards, the air can be fully mixed with the atomized water mist under the rotating action of the stirring rod 745, the air is humidified, the humidified air is discharged through the air outlet hole 4 on the outer shell 1 of the purifier under the action of the guide plate 746, and meanwhile, when the water level in the second water accumulation frame 661 is accumulated to the third rectangular hole 663, the water falls on the first inclined plate 643 again through the third rectangular hole 663, and the air after filtration and purification can be humidified.
The ultrasonic vibrator 664 is a mature technical means in the prior art, and the invention uses the ultrasonic vibrator to generate high-frequency vibration so that water can be atomized, and the structure and principle of the ultrasonic vibrator 664 are not explained.
Further, referring to fig. 3,4, 5, 6, 7, 8, 9 and 10, in this embodiment, the cleaning mechanism 67 includes a connecting rod 672 fixedly connected with the middle part of the lower end of the limiting block 633, an L-shaped groove 671 penetrating the inner surface of the limiting groove 632 is formed below the inner surface of the purifier housing 1 at the rear part of the inner surface of the limiting groove 632, the inner surface of the L-shaped groove 671 is slidably connected with the outer surface of the connecting rod 672, the front end of the connecting rod 672 is fixedly connected with a scraping plate 677 tightly attached to the upper part of the outer surface of the T-shaped arc plate 62, circular grooves 673 are symmetrically formed at the lower part of the inner surface of the L-shaped groove 671, round rods 674 are rotatably connected at the lower parts of the inner surfaces of the two circular grooves 673, round rods 675 are rotatably connected with the upper parts of the L-shaped groove 671, the outer surfaces of the two round rods 674 are fixedly connected with coil springs 675, one ends of the two coil springs 675, which are close to each other, are fixedly connected with a protecting belt 676, and one ends of the two protecting belts 676, which are close to each other, are fixedly connected with the left end and the right end of the connecting rod 672.
During the implementation, along with the filtration of water to air, sewage can be under the effect of gravity, fall on T shape arc board 62 surface upper portion, because connecting rod 672 and stopper 633 fixed connection, the slip of stopper 633 can drive scraper blade 677 on the connecting rod 672 and circulate reciprocating motion on T shape arc board 62 surface upper portion, and then clear up debris and sewage that adhere to T shape arc board 62 surface upper portion, under the cooperation of protection belt 676 and coil spring 675 simultaneously, make the air that is not purified unable entering L-shaped groove 671, make sewage can get into the space inside in water tank 71 front portion through wash port 68, use once more through the filtration of filter 72, realize the hydrologic cycle.
The working flow is as follows: during use, indoor air is sucked into the purifier shell 1 through the fan blades 3, under the action of the water pumping mechanism 73 and the transmission mechanism 74, water can enter the purifier shell 1, the honeycomb net plate 631 is brushed under the action of the water film mechanism 63 and the water diversion mechanism 65 to form a water film, the air is primarily filtered and purified, and along with the continuous upward movement of the air, the air is secondarily filtered and purified under the action of the water curtain mechanism 64 and the atomization mechanism 66, so that the air is completely purified and humidified, sewage generated in the treatment process is concentrated on the T-shaped arc plate 62, enters the front space of the water tank 71 under the scraping action of the cleaning mechanism 67 and is filtered by the filter plate 72 for reuse.
The foregoing has shown and described the basic principles and main features of the present invention and the advantages of the present invention. It will be understood by those skilled in the art that the present invention is not limited to the embodiments described above, and that the above embodiments and descriptions are merely illustrative of the principles of the present invention, and various changes and modifications may be made without departing from the spirit and scope of the invention, which is defined in the appended claims. The scope of the invention is defined by the appended claims and equivalents thereof.