Water medium atomization disinfection and purification machine
By designing a water medium atomization disinfection and purification machine installed above the product cabinet, the rotating mechanism and anti-fall device are used to achieve 360-degree disinfection and drying and blowing air without dead angles, the problem of manual operation in the prior art is solved, and efficient and safe disinfection effect is achieved.
Patent Information
- Application Number
- CN202510249803.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-04
- Publication Date
- 2025-05-30
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing water medium atomization disinfection and purification machine requires manual operation during large-scale disinfection, which is time-consuming and labor-intensive, and it is inconvenient to replace the water source and disinfectant.
A water medium atomization disinfection and purification machine is designed, installed above the product cabinet, and the spindle and countershaft rotating mechanism is driven by the lead screw module to achieve 360-degree disinfection and drying and blowing air without dead angles. The machine is equipped with an anti-fall mechanism, a distance sensor and a multi-layer partition structure. It uses an interlaced layout of ultrasonic atomizer and a fan to expand the diameter range of the disinfection spray, and achieve full mixing of water and disinfectant through multiple water pumps.
It greatly saves manual disinfection time, realizes 360-degree disinfection and drying and blowing air without dead corners, ensures safety and efficiency, and simplifies the replacement process of water sources and disinfectant.
Smart Images

Figure CN120053716A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of disinfection and purification equipment, and particularly to a water medium atomization disinfection and purification machine. Background Art
[0002] Disinfection and purification equipment is very common both in life and in industrial production. The working principle of the water medium atomization disinfection and purification machine is mainly to use atomization technology to convert disinfectants or purifying agents into tiny droplets, and through air flow, these droplets are evenly dispersed in the indoor space. These tiny droplets can reach every corner of the room, including hard-to-reach places such as ventilation systems and furniture gaps, so as to achieve the disinfection and purification of the entire indoor environment.
[0003] Existing atomization disinfection and purification machines are like household vacuum cleaners. Generally, the atomization output part is manually taken to carry out large-scale disinfection, which is extremely labor-consuming and time-consuming, and the atomization range is extremely limited. It is necessary for people to walk back and forth. For places such as cloth and clothing specialty stores and libraries, atomization disinfection is time-consuming and laborious because products are stored (or hung) in tall cabinets; and it is also extremely inconvenient to replace the water source and disinfectant in conventional water medium atomization disinfection and purification machines, and many components need to be disassembled.
[0004] In view of this, there is an urgent need for a water atomization disinfection and purification machine that can be applied to the above-mentioned places to save the inefficiency of manual disinfection. Summary of the Invention
[0005] In order to make up for the deficiencies in the prior art and achieve the above functions, the present invention provides a water medium atomization disinfection and purification machine.
[0006] The present invention is realized through the following technical solutions: A water medium atomization disinfection and purification machine includes a lead screw module fixed on the top of a product cabinet. A main shaft rotating mechanism is installed on the slider of the lead screw module. The main shaft rotating mechanism is connected to a secondary shaft rotating mechanism through an extended plate extending outwards. The secondary shaft rotating mechanism includes a fall prevention mechanism at the top and an atomization disinfection mechanism at the bottom; The main shaft rotating mechanism includes a base fixed on the slider. A vertical main shaft is rotatably installed on the base. A bevel gear a is arranged on the main shaft and meshes with a bevel gear b on the output shaft of the adjacent main motor. Six photoelectric switches are arranged on the base, with a total of 180 degrees; the bottom of the "Z"-shaped calibration piece fixed on the main shaft passes through the sensing parts of each photoelectric switch; The auxiliary shaft rotating mechanism includes a "convex"-shaped fixing block b fixed to the top of the outer end of the extension plate. An angle sensor is installed on the top of the fixing block b. The input shaft of the angle sensor is the auxiliary rotating shaft. The auxiliary rotating shaft is fixedly connected to the output shaft of the lower auxiliary motor through a through hole on the extension plate by means of a coupling. A circular tray seat is arranged at the bottom of the auxiliary motor. A number of outwardly inclined distance sensors b are arrayed on one side of the tray seat away from the main rotating shaft. The atomization disinfection mechanism includes a multi-layer partition board and a heat conduction plate installed at the bottom of the tray seat. A void partition layer is provided between the multi-layer partition board and the heat conduction plate, and a U-shaped material pipe is fixed in the partition layer. Water pumps are respectively arranged on both sides of the top of the partition layer. A disinfectant placement box is fixed below one of the water pumps, and a water medium dilution placement box is fixed below the other. The input ports of the water pumps extend into the placement boxes on both sides through suction pipes, and the output ports of the water pumps are communicated with the inlets of the middle fixed mixing chamber. The output port at the bottom of the mixing chamber is communicated with the single inlet of the lower small water pump. The small water pump has two output ports and is respectively communicated with the openings of the lower material pipes. On one side of the single material pipe, a number of transverse side pipes are provided, and each side pipe is communicated with an ultrasonic atomizer. The ultrasonic atomizers are all fixed on the multi-layer partition board, and a blower is fixed beside each ultrasonic atomizer. A number of hot air blowers are installed on the outer side of the heat conduction plate.
[0007] Further, the main rotating shaft passes through a "convex"-shaped fixing block a fixed on the base. A bearing seat capable of cooperating with the added main rotating shaft is arranged on the top of the fixing block a. The main motor is a servo motor and is internally provided with an encoder.
[0008] Further, the top of the main rotating shaft is fixedly connected to the extension plate, and the two are strengthened by support ribs. An electric control box for controlling the whole machine is arranged at the top of one side of the extension plate close to the lead screw module, and a counterweight block is installed at the bottom of this side. An anti-breaking triangular brace is installed at the position between the main shaft rotating mechanism and the auxiliary shaft rotating mechanism on the extension plate. The triangular prism structure of the anti-breaking triangular brace intersects with the support ribs.
[0009] Further, the anti-falling mechanism includes four steel wire ropes passing through the extension plate and the tray seat and connecting the two. The bottom ends of the steel wire ropes are fixedly connected to the gasket a at the bottom of the tray seat. The upper ends of the steel wire ropes are connected to the rope buckle blocks above the extension plate. Springs are arranged below each rope buckle block, and gaskets b are arranged at the bottom of each spring. The gasket b is a cylindrical rubber pad with a central through hole. A number of threaded holes are arranged at the bottom of the extension plate, and distance sensors a are installed in the threaded holes. The distance sensors a face downward and are directly opposite to the upper end face of the tray seat.
[0010] Further, the disinfection solution placement box and the water medium dilution placement box are both provided with bottle cavities capable of accommodating bottles, and grasping grooves communicating with the bottle cavities are arranged on both the left and right sides of each bottle cavity. The suction pipe passes through the tops of the disinfection solution placement box and the water medium dilution placement box and extends from the top of the bottle cavity to the lower half part.
[0011] Further, a plurality of adjusting grooves penetrating up and down are arranged on the tray seat. The distance sensors b are all located in the adjusting grooves. Each distance sensor b is fixed in an adjusting block on the outside. The adjusting block is rotatably connected to the inner wall of the adjusting groove. The arc angle of the distance sensor b on the tray seat is 240 degrees. One side of the tray seat close to the lead screw module is provided with a rectangular groove. A ventilation net cover is arranged at the top of the rectangular groove, and a plurality of exhaust fans facing downwards are installed in the rectangular groove.
[0012] Further, the water pump, the disinfection solution placement box, the water medium dilution placement box, the mixing cavity and the small water pump are all fixed on multi-layer partition boards and heat conducting plates. A plurality of heat conducting plates and fastening blocks are arranged in a vertical row from top to bottom on the pipe body of the material pipe. The heat conducting plates and the fastening blocks are both fixedly connected to the multi-layer partition boards and heat conducting plates on both sides.
[0013] Further, the air suction cavities of the respective blowers communicate with the vertical suction pipes a on the side. A muffling filter a is installed at the top opening of the suction pipe a. The air suction ports of the two side hot air blowers are respectively communicated with the suction pipes b on one side, and a muffling filter b is installed at the top opening of the suction pipe b.
[0014] Further, a mask is sleeved and installed outside the atomizing disinfection mechanism. The top of the mask is open, and through holes are provided at positions corresponding to each blower, hot air blower and ultrasonic atomizer.
[0015] Further, the multi-layer partition board has a three-layer structure. The middle interlayer is a sponge, and the inner and outer layers are stainless steel plates. A spacer is fixed in the middle of the material pipe, and the sides of the heat conducting plate and the fastening block can be fixed on the spacer.
[0016] The beneficial effects of the present invention are: The present invention is installed above the product cabinet and can surround the product cabinet 360 degrees without dead angles to perform disinfection, purification, drying and blowing, which greatly saves labor; the added anti-fall mechanism and inclined distance sensor can effectively ensure safety; the downward exhaust fan adopted can not only solve the problem of atomized water molecules evaporating upward during the disinfection process, but also effectively dissipate heat for the auxiliary motor; the ultrasonic atomizer and the fan are staggered to achieve the effect of expanding the diameter range of the disinfection spray during the displacement operation of the machine; the present invention can use multiple water pumps to extract water and disinfectant to achieve the purpose of sufficient mixing. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 The overall structure of the present invention is shown in FIG. Figure 1 , Figure 2 The overall structure of the present invention is shown in FIG. Figure 2 Figure 3 This is a schematic diagram of the spindle rotation mechanism of the present invention. Figure 4 Schematic diagram of the structure of the anti-drop mechanism in the secondary shaft rotation mechanism of the present invention. Figure 5 This is a schematic diagram of the structure after removing the heat conduction plate from the anti-fall mechanism. Figure 6 This is a schematic diagram of the atomization disinfection mechanism after removing the multi-layer partitions and heat conduction plates. Figure 7 It is a partially enlarged three-dimensional schematic diagram of the bottom of the tray seat; Figure 8 It is a schematic diagram of the working operation of the present invention. Figure 9 This is a schematic diagram of the structure of one side of the hot air blower in the atomization disinfection mechanism.
[0018] In the figure: 1. Screw module, 101. Slider, 102. Base, 2. Main shaft, 201, bevel gear a, 202, bevel gear b, 203, main motor, 3. Fixing block a, 301. Bearing seat, 302. Calibration sheet, 303. Sheet metal block, 304. Photoelectric switch, 4. Extension plate, 401. Support ribs, 402. Anti-break triangle support, 403. Counterweight, 404. Electric control box, 5. Fixed block b, 501. Angle sensor, 502. Auxiliary shaft, 503. Coupling, 504. Auxiliary motor, 6. Tray seat, 601. Steel wire rope, 602. Gasket a, 603. Rope buckle block, 604. Spring, 605. Gasket b, 606. Distance sensor a, 7. Spacer, 701. Multi-layer spacer, 702. Heat conducting plate, 703. Clamping plate, 8. Water pump, 801. Disinfectant solution placement box, 802. Water medium dilution placement box, 8021. Bottle cavity, 8022. Gripping groove, 8023. Suction pipe, 803. Mixing cavity, 804. Small water pump, 805. Material pipe, 806. Fastening block, 807. Side pipe, 9. Ultrasonic atomizer, 10. Fan, 1001. Fan air suction cavity, 1002. Air suction pipe a, 1003. Noise elimination filter a, 1004. Air suction pipe b, 1005. Noise elimination filter b, 1006. Hot air blower, 11. Ventilation grille, 1101. Exhaust fan, 12. Adjustment groove, 1201. Adjustment block, 1202. Distance sensor b, 13. Mask, 14. Product cabinet. Detailed implementation manners
[0019] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Usually, the components of the embodiments of the present invention described and shown in the accompanying drawings here can be arranged and designed in various different configurations.
[0020] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed present invention, but merely represents the selected embodiments of the present invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without creative efforts fall within the scope of protection of the present invention.
[0021] As Figures 1 to 9 shown, referring to Figure 8 , the present invention includes a lead screw module 1 fixed on the top of the product cabinet 14 to drive related components to displace along the length direction of the product cabinet. A main shaft rotation mechanism is installed on the slider 101 of the lead screw module 1 to provide rotational support. The main shaft rotation mechanism is connected to a secondary shaft rotation mechanism through an outwardly extending extension plate 4. The secondary shaft rotation mechanism includes a fall prevention mechanism at the top and an atomization disinfection mechanism at the bottom; Referring to Figure 3, the main shaft rotation mechanism includes a base 102 fixed on the slider 101. A vertically upward main rotating shaft 2 is rotatably installed on the base 102. A bevel gear a201 is provided on the main rotating shaft 2 and meshes with a bevel gear b202 on the output shaft of the adjacent main motor 203. The main motor 203 rotates to control the overall rotation of the atomization disinfection mechanism (denoted as the "revolution" function). Six photoelectric switches 304 are provided on the base 102, with a total of 180 degrees, and the angle can be calibrated every 30 degrees. The bottom of the "Z"-shaped calibration piece 302 fixed on the main rotating shaft 2 passes through the sensing parts of each photoelectric switch 304, which is the calibration unit after rotating a certain angle; Reference Figure 4 , the auxiliary shaft rotation mechanism includes a "convex"-shaped fixed block b5 fixed on the top of the outer end of the extension plate 4. An angle sensor 501 is installed on the top of the fixed block b5. The input shaft of the angle sensor 501 is the auxiliary rotating shaft 502. The auxiliary rotating shaft 502 is fixedly connected to the output shaft of the lower auxiliary motor 504 through a through hole on the extension plate 4 by a coupling 503. When the output shaft of the auxiliary motor 504 rotates, the related components below rotate accordingly (denoted as the "rotation" function). A circular tray seat 6 is provided at the bottom of the auxiliary motor 504. A number of outwardly inclined distance sensors b1202 are arrayed on one side of the tray seat 6 away from the main rotating shaft 2 to avoid collisions with passers-by; Reference Figure 5 , the atomization disinfection mechanism includes a multi-layer partition 701 and a heat conducting plate 702 installed at the bottom of the tray seat 6. There is a void interlayer between the multi-layer partition 701 and the heat conducting plate 702, and a U-shaped material pipe 805 is fixed in the interlayer for storing atomized liquid raw materials. Water pumps 8 are respectively provided on both sides of the top of the interlayer. A disinfectant placement box 801 is fixed below one of the water pumps 8, and a water medium dilution placement box 802 is fixed below the other; the input port of the water pump 8 extends into the placement boxes on both sides through a suction pipe 8023, and the output port of the water pump 8 is connected to the inlet of the middle fixed mixing chamber 803. The output port at the bottom of the mixing chamber 803 is connected to the single inlet of the lower small water pump 804. The small water pump 804 has two output ports and is respectively connected to the openings of the lower material pipe 805. The water pumps in the present invention can adopt peristaltic pumps or conventional water pumps, and the main function is to suck the disinfection and purification raw materials with water as the medium. The small water pump 804 can also play a role in mixing water and disinfectant during the extraction process; The material tube 805 is provided with a plurality of transverse side tubes 807 on one side of the single tube, and each side tube 807 is connected to the ultrasonic atomizer 9. The ultrasonic atomizer 9 is fixed on the multi-layer partition 701, and can atomize and spray the disinfectant liquid in the side tube 807. A fan 10 is fixed on the side between each ultrasonic atomizer 9. Since the liquid molecules fall downward after atomization and the ultrasonic spray distance is limited, the layout between each ultrasonic atomizer 9 is conducive to blowing the falling liquid molecules to a distance to increase the diffusion distance. At the same time, the machine is also running forward, and the fan 10 is located at the rear side of the ultrasonic atomizer 9 in the forward direction, which can just blow the atomized disinfectant falling obliquely in front. A plurality of hot air blowers 1006 are installed on the outer side of the heat conducting plate 702. The atomizing and disinfecting mechanism is rotated 180 degrees by a secondary shaft rotating mechanism, so that the atomized product can be dried and blown.
[0022] The main shaft 2 passes through a "convex"-shaped fixing block a3 fixed on the base 102. A bearing seat 301 is provided on the top of the fixing block a3, which can cooperate with the bearing seat 301 installed on the main shaft 2 to achieve a supporting effect and prevent long-term wear and distortion. The main motor 203 is a servo motor with a built-in encoder to achieve the effect of accurately controlling the rotation angle.
[0023] The top of the main shaft 2 is fixedly connected to the extension plate 4, and the two are connected by a support rib 401. The top of the extension plate 4 close to the screw module 1 is provided with an electric control box 404 for controlling the whole machine, and a counterweight 403 is installed at the bottom of this side. Both are located on this side of the extension plate 4, and are used to press down the inner side of the extension plate 4 to balance the load inside and outside. An anti-breakage triangular support 402 is installed on the extension plate 4 between the main shaft rotation mechanism and the secondary shaft rotation mechanism. The triangular prism structure of the anti-breakage triangular support 402 is staggered with the support rib 401 to prevent the extension plate 4 from breaking.
[0024] refer to Figure 4 The anti-fall mechanism includes four steel wire ropes 601 that pass through the extension plate 4 and the tray seat 6 and connect the two. The bottom end of the steel wire rope 601 is fixedly connected to the gasket a602 at the bottom of the tray seat 6 for bottom limiting. The upper end of the steel wire rope 601 is connected to the rope buckle block 603 above the extension plate 4 for top elastic limiting. A spring 604 is arranged under each rope buckle block 603 and a gasket b605 is arranged at the bottom of each spring 604. The gasket b605 is a cylindrical rubber pad with a central through hole. The function of the gasket b605 is to play a role of abutment and collision when the upper rope buckle block 603 drops rapidly. Of course, the steel wire rope 601 is not in a straight state but in a certain degree of relaxation, that is, a margin is retained to prevent interference with the rotation of the auxiliary motor 504.
[0025] A plurality of threaded holes are provided at the bottom of the extension plate 4, and distance sensors a606 are installed in the threaded holes. The distance sensors a606 face downward and are directly opposite to the upper end surface of the tray seat 6, so as to monitor in real time whether a break occurs between the secondary shaft rotating mechanism and the extension plate 4.
[0026] Both the disinfectant placement box 801 and the water medium dilution placement box 802 are provided with bottle cavities 8021 capable of accommodating bottles, for clamping the disinfectant bottle and the water bottle. The function of the water medium dilution placement box 802 is to perform dilution with water as the medium. And on both the left and right sides of each bottle cavity 8021, there are grasping grooves 8022 communicated with the bottle cavity 8021. The suction pipe 8023 passes through the tops of the disinfectant placement box 801 and the water medium dilution placement box 802 and extends from the top of the bottle cavity 8021 to the lower half, so as to ensure that the liquids in the disinfectant bottle and the water bottle are completely sucked into the machine.
[0027] A plurality of vertically penetrating adjustment grooves 12 are provided on the tray seat 6. The distance sensors b1202 are all located in the adjustment grooves 12. Each distance sensor b1202 is fixed in the outer adjustment block 1201. The adjustment block 1201 is rotatably connected to the inner wall of the adjustment groove 12. The arc angle of the distance sensor b1202 on the tray seat 6 is 240 degrees. Exceeding 180 degrees also ensures the recognition of petite passers-by close to the product cabinet 14. On one side of the tray seat 6 close to the lead screw module 1, there is a rectangular groove. A ventilation grille 11 is provided at the top of the rectangular groove. A plurality of exhaust fans 1101 facing downward are installed in the rectangular groove, which can not only blow downward to promote the accelerated flow of the air around the upper secondary motor 504 to accelerate heat dissipation, but also prevent the atomized liquid droplet molecules below from floating too much and affecting the upper mechanical components.
[0028] The water pump 8, the disinfectant placement box 801, the water medium dilution placement box 802, the mixing chamber 803 and the small water pump 804 are all fixed on the multi-layer partition 701 and the heat conducting plate 702. A plurality of heat conducting plates 702 and fastening blocks 806 are arranged in a vertical row from top to bottom on the pipe body of the material pipe 805. The heat conducting plates 702 and the fastening blocks 806 are both fixedly connected to the multi-layer partition 701 and the heat conducting plate 702 on both sides.
[0029] The fan suction chambers 1001 of each fan 10 are communicated with the vertical suction pipe a1002 on the side. A muffling filter a1003 is installed at the top opening of the suction pipe a1002 to reduce the suction noise. The suction ports of the two side hot air blowers 1006 are respectively communicated with the suction pipe b1004 on one side, and a muffling filter b1005 is installed at the top opening of the suction pipe b1004, which can also reduce the suction wind noise.
[0030] A mask 13 is sleeved and installed on the outside of the auxiliary shaft rotating mechanism. The top of the mask 13 is open, and through holes are provided at positions corresponding to each fan 10, hot air blower 1006, and ultrasonic atomizer 9 in the mask 13.
[0031] The multi-layer partition 701 has a three-layer structure. The middle interlayer is made of sponge for noise reduction and earthquake resistance, and the inner and outer layers are made of stainless steel plates.
[0032] A spacer 7 is fixed in the middle of the material pipe 805 to play a role in connection and fixation. The sides of the heat conducting plate 702 and the fastening block 806 can be fixed on the spacer 7.
[0033] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit them. Any other modifications or equivalent replacements made by those of ordinary skill in the art to the technical solutions of the present invention should be covered within the scope of the claims of the present invention as long as they do not depart from the spirit and scope of the technical solutions of the present invention.
Claims
1. A water-based atomizing disinfection and purification machine, characterized in that: It comprises a screw module (1) fixed on the top of a product cabinet (14), a main shaft rotation mechanism being installed on a slider (101) of the screw module (1), the main shaft rotation mechanism being connected to a secondary shaft rotation mechanism via an extension plate (4) extending outwards, the secondary shaft rotation mechanism comprising a top anti-fall mechanism and a bottom atomization disinfection mechanism; The spindle rotation mechanism comprises a base (102) fixed on a slider (101), a main rotating shaft (2) vertically facing upward is rotatably mounted on the base (102), a bevel gear a (201) is provided on the main rotating shaft (2) and meshes with a bevel gear b (202) on an output shaft of a main motor (203) adjacent thereto, and six photoelectric switches (304) are provided on the base (102), with a total of 180 degrees; the bottom of a "Z"-shaped calibration sheet (302) fixed on the main rotating shaft (2) passes through the sensing part of each photoelectric switch (304); The secondary shaft rotation mechanism comprises a "convex"-shaped fixed block b (5) fixed to the top of the outer end of the extension plate (4); an angle sensor (501) is installed on the top of the fixed block b (5); the input shaft of the angle sensor (501) is a secondary rotating shaft (502); the secondary rotating shaft (502) is fixedly connected to the output shaft of the secondary motor (504) below through a through hole on the extension plate (4) by means of a coupling (503); a circular tray seat (6) is provided at the bottom of the secondary motor (504); a plurality of distance sensors b (1202) inclined outwardly are installed in an array on a side of the tray seat (6) away from the main rotating shaft (2); The atomization disinfection mechanism comprises a multi-layer partition (701) and a heat conducting plate (702) installed at the bottom of the tray seat (6); a gap partition is formed between the multi-layer partition (701) and the heat conducting plate (702), and a U-shaped material pipe (805) is fixed in the partition; water pumps (8) are respectively arranged on both sides of the top of the partition; a disinfectant placement box (801) is fixed under one of the water pumps (8), and a water medium dilution placement box (802) is fixed under the other; the input port of the water pump (8) extends into the placement boxes on both sides through a material suction pipe (8023); the output port of the water pump (8) is connected to the inlet of the mixing chamber (803) fixed in the middle; the output port at the bottom of the mixing chamber (803) is connected to a single inlet of a small water pump (804) below; the small water pump (804) has two output ports, which are respectively connected to the opening of the material pipe (805) below; The material tube (805) has a plurality of transverse side tubes (807) disposed on one side of the single tube, and each side tube (807) is connected to an ultrasonic atomizer (9). The ultrasonic atomizers (9) are all fixed on the multi-layer partition (701), and fans (10) are fixed on the sides between the ultrasonic atomizers (9); A plurality of heat blowers (1006) are installed on the outer side of the heat conducting plate (702).
2. The water-based atomizing disinfection and purification machine according to claim 1, characterized in that: The main rotating shaft (2) passes through a "convex"-shaped fixing block a (3) fixed on the base (102); a bearing seat (301) capable of cooperating with a bearing seat mounted on the main rotating shaft (2) is arranged on the top of the fixing block a (3); and the main motor (203) is a servo motor with a built-in encoder.
3. The water-based atomizing disinfection and purification machine according to claim 1, characterized in that: The top of the main rotating shaft (2) is fixedly connected to the extension plate (4), and the two are connected in a reinforced manner by a supporting rib (401); an electric control box (404) for controlling the entire machine is arranged at the top of one side of the extension plate (4) close to the lead screw module (1), and a counterweight (403) is installed at the bottom of this side; An anti-breaking triangle support (402) is installed at a position between the main shaft rotation mechanism and the secondary shaft rotation mechanism on the extension plate (4), wherein the anti-breaking triangle support (402) has a triangular prism structure that is staggered with the support rib (401).
4. The water-based atomizing disinfection and purification machine according to claim 1, characterized in that: The anti-fall mechanism comprises four steel wire ropes (601) passing through the extension plate (4) and the tray seat (6) and connecting the two, the bottom ends of the steel wire ropes (601) are fixedly connected to the gasket a (602) at the bottom of the tray seat (6), the upper ends of the steel wire ropes (601) are connected to the rope lock blocks (603) above the extension plate (4), a spring (604) is arranged below each rope lock block (603), and a gasket b (605) is arranged at the bottom of each spring (604), and the gasket b (605) is a cylindrical rubber pad with a central through hole; The bottom of the extension plate (4) is provided with a plurality of threaded holes, and distance sensors a (606) are installed in the threaded holes, and the distance sensor a (606) faces downwards and directly faces the upper end surface of the tray seat (6).
5. The water-based atomizing disinfection and purification machine according to claim 1, characterized in that: The disinfectant placement box (801) and the water-medium dilution placement box (802) are both provided with a bottle cavity (8021) capable of accommodating a bottle, and each bottle cavity (8021) is provided with a gripping groove (8022) on the left and right sides thereof, which is connected to the bottle cavity (8021), and the suction pipe (8023) passes through the top of the disinfectant placement box (801) and the water-medium dilution placement box (802), and extends from the top of the bottle cavity (8021) to the lower part.
6. The water-based atomizing disinfection and purification machine according to claim 1, characterized in that: The tray seat (6) is provided with a plurality of adjustment slots (12) penetrating vertically, the distance sensors b (1202) are all located in the adjustment slots (12), each distance sensor b (1202) is fixed in an outer adjustment block (1201), the adjustment block (1201) is rotatably connected to the inner wall of the adjustment slot (12), and the arc angle of the distance sensor b (1202) on the tray seat (6) is 240 degrees; A rectangular groove is provided on one side of the tray seat (6) close to the lead screw module (1), a ventilation mesh cover (11) is provided on the top of the rectangular groove, and a plurality of exhaust fans (1101) facing downwards are installed in the rectangular groove.
7. The water-based atomizing disinfection and purification machine according to claim 1, characterized in that: The water pump (8), disinfectant placement box (801), water medium dilution placement box (802), mixing chamber (803) and small water pump (804) are all fixed on the multi-layer partition (701) and the heat conduction plate (702); the tube body of the material tube (805) is provided with a plurality of heat conduction plates (702) and fastening blocks (806) from top to bottom; the heat conduction plates (702) and fastening blocks (806) are fixedly connected to the multi-layer partition (701) and the heat conduction plates (702) on both sides.
8. The water-based atomizing disinfection and purification machine according to claim 1, characterized in that: The fan suction chamber (1001) of each fan (10) is connected to a vertical suction pipe a (1002) on the side, and a silencer filter a (1003) is installed at the top opening of the suction pipe a (1002); The air suction ports of the hot air blowers (1006) on both sides are connected to the air suction pipe b (1004) on each side, and a silencer filter b (1005) is installed at the top opening of the air suction pipe b (1004).
9. The water-based atomizing disinfection and purification machine according to claim 1, characterized in that: A shield (13) is sleeved and installed on the outer side of the atomizing disinfection mechanism. The top of the shield (13) is open. The shield (13) is provided with through holes at positions corresponding to the positions of each fan (10), hot air blower (1006) and ultrasonic atomizer (9).
10. The water-based atomizing disinfection and purification machine according to claim 7, characterized in that: The multi-layer partition (701) is a three-layer structure, the middle layer is sponge, and the inner and outer layers are stainless steel plates; A spacer plate (7) is fixed in the middle of the material tube (805), and the side edges of the heat conducting plate (702) and the fastening block (806) can be fixed on the spacer plate (7).