Wall-mounted indoor air purification and sterilization sterilizer
Technical Field
The utility model relates to an indoor air purification sterilizing equipment.
Background
At present, in the prior art, the existing indoor sterilization and disinfection machine generally adopts ultraviolet rays or ozone to perform sterilization and disinfection by air circulation or direct irradiation. Most of the ultraviolet light of mercury lamps is also used, and the mercury lamps have secondary pollution and large power consumption; the effective space of the direct ultraviolet radiation sterilization and disinfection mode is limited; the sterilization and disinfection work can be completed by singly utilizing the circulating air to pass through the ultraviolet irradiation area, and the purpose can be achieved by repeatedly circulating the indoor air for a long time.
SUMMERY OF THE UTILITY MODEL
The utility model aims at: the wall-mounted indoor air purifying and sterilizing machine can sterilize and disinfect indoor air and purify and remove dust of the indoor air.
The utility model discloses a realize like this: a wall-mounted indoor air purification and sterilization sterilizer is characterized in that: it comprises a machine base, a front shell with a rear opening, a front panel arranged on the front shell, a cross-flow wind wheel, an air primary filter element, an air secondary filter element, an ultraviolet lamp, an electrostatic dust collection device, an angular support net seat plate and a negative ion generator or an ozone generator,
the top plate of the front shell is provided with an air inlet hole, a fence grid frame is arranged in the air inlet hole, the bottom plate is provided with an air outlet hole, the air outlet hole is pivoted with an air deflector, and the front plate is provided with a loading and unloading orifice of the electrostatic dust collection device;
the cross-flow wind wheel is arranged at the lower part of the base, the angular support net seat plate covers the cross-flow wind wheel, the air secondary filter piece is arranged on the surface of the horizontal net plate, the electrostatic dust collection device is arranged on the air secondary filter piece, the ultraviolet lamp is arranged above the electrostatic dust collection device in a covering mode, ultraviolet rays of the ultraviolet lamp can also irradiate the air secondary filter piece through holes of a negative electrode electrostatic adsorption cylinder of the electrostatic dust collection device, and the negative ion generator or the ozone generator is arranged on the front surface of the longitudinal net plate of the angular support net seat plate; the air primary filter element covers the fence grillwork on the front shell and the loading and unloading hole of the electrostatic dust collection device and is detachably matched with the fence grillwork on the front shell; the front shell is buckled and fixed with the base; the front panel covers the loading and unloading hole and is detachably matched with the front shell, and the size of the loading and unloading hole is matched with that of the electrostatic dust collection device.
Preferably: the ultraviolet lamp is a deep ultraviolet UVC-LED.
Preferably: the electrostatic dust collection device assembly comprises a frame, a plurality of negative electrostatic adsorption cylinders with upper and lower openings, a negative insulation support frame and a positive assembly with a plurality of discharge needles,
the negative electrostatic adsorption cylinder is arranged in the frame, the frame is fixed on the negative insulation support frame, the positive assembly with a plurality of discharge needles is also fixed on the negative insulation support frame, each positive discharge needle is respectively aligned with the center of each negative electrostatic adsorption cylinder, and the needle point of each positive discharge needle is close to the upper opening of the cylinder.
Preferably: the electrostatic dust collection device is characterized by further comprising a support frame plate, the two ends of the electrostatic dust collection device are detachably connected with the support frame plate, the support frame plate is fixed on the horizontal screen plate of the angular support screen seat plate, and the ultraviolet lamp is fixed with the support frame plate.
Preferably: the negative electrode electrostatic adsorption cylinder is made of copper materials or copper plating of other materials.
The utility model relates to a wall-hanging indoor air purification sterilizer that disinfects, owing to adopt such structure, hang on the wall, the air just gets into electrostatic dust collection device after the primary filter piece, the dust particle of taking positive charge just adsorbs in a section of thick bamboo and the dust particle of taking the negative charge is then released to the secondary filter piece of air, it disinfects the air after the disinfection and arrange indoor after the anion disappears again to finely filter and disinfect once more through dark ultraviolet UVC-LED collection dirt, disinfection and air-purifying have been disinfected effectively, electrostatic dust collection device easy dismounting, can conveniently clean.
Drawings
Figure 1 is one of the perspective views of the present invention,
fig. 2 is a second perspective view of the present invention.
Fig. 3 is one of the exploded perspective views of the present invention.
Fig. 4 is a second exploded perspective view of the present invention.
Fig. 5 is a perspective view of the electrostatic precipitator of the present invention.
Fig. 6 is a second perspective view of the electrostatic precipitator of the present invention.
Fig. 7 is one of the exploded perspective views of the electrostatic precipitator of the present invention.
Fig. 8 is a second exploded perspective view of the electrostatic precipitator of the present invention.
Fig. 9 is a front view of the present invention with the front cover removed.
Detailed Description
The present invention will be further described with reference to the accompanying drawings.
As shown in fig. 1, 2, 3 and 4, a wall-mounted indoor air purifying and sterilizing machine comprises a machine base 1, a front shell 2 with a rear opening, a front panel 2A arranged on the front shell, a cross-flow wind wheel 3, an air primary filter element (not shown in the figure), an air secondary filter element (not shown in the figure), an ultraviolet lamp 4, an electrostatic dust collecting device 5, an angular support net seat plate 6 and a negative ion generator or an ozone generator 8,
an air inlet hole 21 is arranged on the top plate of the front shell 2, a fence grid 22 is arranged in the air inlet hole 21, an air outlet hole is arranged on the bottom plate, an air deflector 23 is pivoted on the air outlet hole, and a loading and unloading hole 24 which can uncover the front panel 2A and is convenient for loading and unloading the electrostatic dust collection device is arranged on the front plate of the front shell 2;
the cross-flow wind wheel 3 is arranged at the lower part of the machine base 1, the angular support net seat plate 6 covers the cross-flow wind wheel 3, the air secondary filter piece is arranged on the surface of a horizontal screen 61 of the angular support net seat plate 6, the electrostatic dust collection device 5 is arranged on the air secondary filter piece, the ultraviolet lamp 4 is arranged above the irradiation electrostatic dust collection device 5, the ultraviolet rays can also irradiate on the air secondary filter piece through the holes of a negative electrostatic adsorption cylinder 52 of the electrostatic dust collection device 5, and the negative ion generator or the ozone generator 8 is arranged on the front surface of a longitudinal screen 62 of the angular support net seat plate 6; the primary air filter element covers the fence grids 22 of the front shell 2 and the loading and unloading holes 24 of the loading and unloading electrostatic dust collecting device 5 and is detachably matched with the same; the front shell 2 is buckled and fixed with the base 1; the front panel 2A covers the loading and unloading hole 24 and is detachably matched with the front shell; the size of the loading and unloading hole opening 24 is adapted to the size of the electrostatic dust collection device 5;
the front panel 2A is detachably engaged with the housing 2, and as shown in fig. 9, the electrostatic dust collecting device 5 can be accessed from the loading/unloading opening 24 to facilitate cleaning of the electrostatic dust collecting device 5.
The ultraviolet lamp 4 is a deep ultraviolet UVC-LED.
As shown in fig. 5, 6, 7, and 8, the electrostatic dust collector 5 includes a frame 51, a plurality of negative electrostatic adsorption cylinders 52 with upper and lower openings, a negative insulation support base plate 54, and a positive electrode assembly 53 with a plurality of discharge needles, wherein the negative electrostatic adsorption cylinders 52 are hexagonal, and the negative electrostatic adsorption cylinders 52 are distributed in a honeycomb shape; the positive electrode assembly 53 includes a needle frame and positive electrode discharge needles;
the negative electrostatic adsorption cylinder 52 is arranged in the frame 51, two ends of the frame 51 are fixed with the negative insulation support frame 54, the needle frame is fixed on the negative insulation support base plate 54, each positive discharge needle is aligned with the center of the negative electrostatic adsorption cylinder 52, and the needle point is close to the upper opening of the negative electrostatic adsorption cylinder 52; the micro-particles with positive charges in the air as virus and bacteria carriers are adsorbed in the negative electrostatic adsorption cylinder 52, and the micro-particles with negative charges are pushed out to the air secondary filter element, so that the deep ultraviolet UVC-LED can effectively capture and kill the virus and bacteria; the electrostatic dust collector 5 can be periodically detached for cleaning.
The electrostatic dust collector further comprises a support frame plate 7, the support frame plate 7 is fixedly connected with the horizontal screen plate 61 of the angular support screen seat plate 6, two ends of the electrostatic dust collector 5 are detachably connected with the support frame plate 7, and the ultraviolet lamp 4 is fixed with the support frame plate 7.
The negative electrode electrostatic dust collection cylinder 52 is made of copper material or copper plating of other materials. Copper has antimicrobial properties, and its surface charged particles, i.e., ions, attack bacteria and viruses, including destroying their DNA, so that viruses and bacteria adsorbed on the copper surface can be more effectively killed; the honeycomb electrostatic adsorption device can also adsorb and capture microparticles in the primarily filtered air, so that the air purifying device plays a role in air purification.
The utility model discloses the during operation, indoor air gets into electrostatic precipitator 5 after the primary filter piece in, shines through ultraviolet lamp 4 again, filters through secondary filter piece of air once more, and it is indoor to arrange back through the hole of airing exhaust of preceding shell 2 in the anion emergence district at last.
The utility model discloses when needing the negative pole electrostatic dust collection section of thick bamboo 52 of clean electrostatic dust collection device 5, under the state of fig. 1, take off front panel 2A from preceding shell 2, the primary filter piece of air separates with preceding shell 2, then separates electrostatic dust collection device 5 and support frame plate 7, takes out electrostatic dust collection device 5 from loading and unloading drill way 24 promptly, carries out clean maintenance to negative pole electrostatic dust collection section of thick bamboo 52, and the secondary filter piece of air also can be clean or change.
What has been described above is only a preferred embodiment of the present invention. It should be noted that, for a person skilled in the art, several modifications and variations can be made without departing from the principle of the invention, which is also considered as the protection scope of the invention.