Oxygen-purifying and humidifying balanced air conditioning purifier

Through the innovative design of the oxygen-purifying and humidifying balanced air conditioning purifier, the problem of functional fragmentation of existing equipment has been solved, and efficient air purification, humidification and oxygenation have been achieved, which has improved the convenience and spatial adaptability of the equipment.

CN120521259BActive Publication Date: 2025-09-23SHANDONG LEKANG ELECTRONICS IND RES INST CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202511020627.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-07-24
Publication Date
2025-09-23
Estimated Expiration
2045-07-24

AI Technical Summary

Technical Problem

Existing air-conditioning equipment has problems such as functional fragmentation, poor coordination, low energy efficiency, large equipment size, and inconvenient mobility, making it difficult to achieve efficient and balanced air purification and humidification.

Method used

It adopts a balanced air conditioning purifier with oxygen purification and humidification. Through the design of integrated base, external adjustment cylinder and internal purification cylinder, combined with rotating air inlet pipe, dynamic zoning adjustment, dual-mode adaptive humidification and negative ion/low-concentration ozone generator, it can achieve efficient air purification, humidification and oxygen purification functions, and has omnidirectional movement capability.

Benefits of technology

It achieves deep air treatment, improves purification efficiency, humidification effect and equipment convenience, optimizes the air treatment path, reduces equipment footprint, and improves user experience and space adaptability.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120521259B_ABST
    Figure CN120521259B_ABST
Patent Text Reader

Abstract

The oxygen-purifying and humidifying balanced air conditioning purifier relates to the field of air conditioning technology, and includes an integrated base, an outer regulating cylinder is fixedly provided on the upper surface of the integrated base, and an inner purification cylinder is rotatably provided inside the outer regulating cylinder; a horizontal circular end cap is welded to the upper end of the outer regulating cylinder, a gas transfer box is welded to the middle of the upper surface of the circular end cap, the upper end of the gas transfer box is connected to a compressed air pump, and an air intake valve connected to the gas transfer box is fixed at the center of the lower surface of the circular end cap; an air intake pipe is provided through a rotating sleeve at the lower end of the air intake valve; four centrally symmetrical air outlet slots are provided on the air intake pipe, and four rotationally symmetrical arc-shaped fan blades are also welded to the air intake pipe; four centrally symmetrical purification connecting ports are provided on the inner purification cylinder, and a honeycomb composite filter is fixed in each purification connecting port. The present invention solves the problems of limited effect of single-function equipment, need for coordination of multiple equipment, and inconvenience in movement when performing air conditioning purification in traditional technologies.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the technical field of air conditioning, in particular to an oxygen-purifying and humidifying balanced air conditioning purifier. Background Art

[0002] With rising environmental pollution and health awareness, the need for comprehensive indoor air quality management is becoming increasingly prominent. Traditional solutions rely on a combination of single-function devices: air purifiers absorb particulate matter and pollutants, humidifiers alleviate dryness, and negative ion / ozone generators provide freshness and sterilization. However, operating multiple devices in parallel presents significant drawbacks: fragmented functionality leads to poor synergy, high space utilization, low energy efficiency, and complex user operation.

[0003] In terms of purification technology, while high-efficiency filters (such as HEPA) can intercept fine particulate matter, their high wind resistance forces them to increase fan power, which still makes it difficult to prevent airflow from escaping the filter edges and reducing single-pass purification efficiency. This is particularly true for particles below PM0.3, which have limited capture capabilities. Furthermore, the static air duct design prevents the humidification and oxygen purification modules from distributing airflow as needed, resulting in uneven treatment efficiency.

[0004] Humidification technology also faces bottlenecks: Ultrasonic humidification easily forms scale, forming a "white powder" that threatens respiratory health; cold evaporation humidification is slow and requires frequent refilling. Existing equipment lacks the ability to automatically switch between two modes based on water levels, making it difficult to balance efficiency and safety.

[0005] More importantly, multifunctional integrated devices are often bulky due to structural redundancy. While integrated purifiers and humidifiers are now available, their modular design leads to lengthy and turbulent airflow, and their fixed placement limits their use cases. Users must manually move the device to accommodate changing spaces, resulting in a poor user experience.

[0006] In summary, the existing technology has obvious inconveniences and defects in actual use, so it is necessary to improve it. Summary of the Invention

[0007] In response to the defects in the existing technology, the present invention provides an oxygen-purifying and humidifying balanced air conditioning purifier to solve the problems in traditional technology when performing air conditioning purification, such as limited effect of single-function equipment, need for coordination of multiple devices, and inconvenience in movement.

[0008] To achieve the above object, the present invention provides the following technical solutions:

[0009] The oxygen-purifying, humidifying and balanced air-conditioning purifier includes an integrated base, which is a cylindrical base with a closed upper end and a hollow interior. An outer adjustment cylinder is fixedly provided on the upper surface of the integrated base, and an inner purification cylinder is rotatably provided inside the outer adjustment cylinder. The outer adjustment cylinder is a cylindrical cylinder with upper and lower openings, and the inner purification cylinder is a cylindrical cylinder with an upper end open and a lower end closed.

[0010] As an optimized solution, a horizontal circular end cover is welded to the upper end of the outer regulating cylinder, a gas storage transfer box is welded to the middle of the upper surface of the circular end cover, a compressed air pump is connected to the upper end of the gas storage transfer box, and an air intake valve connected to the gas storage transfer box is fixed at the center of the lower surface of the circular end cover.

[0011] As an optimized solution, the lower end of the air inlet valve is rotated with a sleeve to form an air inlet pipe, and the lower end of the air inlet pipe is closed and extends downward into the inner purification cylinder.

[0012] As an optimized solution, four centrally symmetrical air outlet slots are provided on the outer peripheral wall of the air inlet pipe, and four rotationally symmetrical arc-shaped fan blades are welded on the outer peripheral wall of the air inlet pipe.

[0013] As an optimized solution, four centrally symmetrical purification communication ports are opened on the circumferential side wall of the inner purification cylinder, and a honeycomb composite filter is fixed in each of the purification communication ports.

[0014] As an optimized solution, two symmetrical inner partitions are welded on the vertical side walls of each purification connecting port, and eight outer partitions are welded on the inner circumferential wall of the outer adjustment cylinder. The ends of the outer partitions are arranged close to the ends of the inner partitions. The outer partitions and the inner partitions divide the area between the outer adjustment cylinder and the inner purification cylinder into four exhaust areas and four adjustment areas that are alternately distributed.

[0015] As an optimized solution, two laterally opposite adjustment zones are respectively provided with oxygen purification modules, and the oxygen purification modules include a negative ion generator and a low-concentration ozone generator.

[0016] As an optimized solution, a humidification module is respectively provided in the two longitudinally opposite adjustment zones, and the humidification module includes a cold evaporation water tank and an ultrasonic atomizer.

[0017] As an optimized solution, a steering control module is fixed on the inner top surface of the integrated base. The steering control module is connected to an external output shaft. The end of the output shaft passes upward through the integrated base and is fixedly connected to the center of the outer bottom surface of the inner purification cylinder.

[0018] As an optimized solution, four centrally symmetrical movable rollers are rotatably mounted on the inner circumferential wall of the integrated base, the lower ends of the movable rollers are grounded, and a movable drive module is fixed on the circumferential outer wall of the integrated base corresponding to each of the movable rollers.

[0019] As an optimized solution, a coaxial central transmission wheel is welded on the outer peripheral wall of the air inlet pipe near the upper end, and a horizontal limit seat is welded on the inner peripheral wall of the inner purification cylinder near the upper end opening. The limit seat is hollow inside, and the central transmission wheel is constrained within the limit seat.

[0020] As an optimized solution, three centrally symmetrical transmission drive modules are fixed on the upper surface of the limit seat, each of the transmission drive modules is connected to a side transmission wheel, and the side transmission wheels are arranged in the limit seat and are in contact with the central transmission wheel for transmission.

[0021] As an optimized solution, the upper end of the outer partition extends to the lower surface of the circular end cover, and the lower end extends to the upper surface of the integrated base, and the upper and lower ends of the inner partition extend to the upper and lower end surfaces of the purification connecting port respectively.

[0022] As an optimized solution, two symmetrical annular clamping plates are welded on the inner circumferential wall of the outer adjustment cylinder. The two annular clamping plates are respectively arranged on the upper and lower sides of the inner partition plate, and the inner ring of the annular clamping plate is arranged tightly against the outer circumferential wall of the inner purification cylinder.

[0023] As an optimized solution, four centrosymmetrical exhaust ports are provided on the outer peripheral wall of the outer regulating cylinder, the exhaust ports are connected to the exhaust area, and a plurality of guide grilles are rotatably provided in each exhaust port.

[0024] As an optimized solution, the negative ion generator is fixed on the inner peripheral wall of the outer regulating cylinder.

[0025] As an optimized solution, the low-concentration ozone generator and the negative ion generator are correspondingly arranged and fixed on the outer peripheral wall of the outer adjustment cylinder. The low-concentration ozone generator is connected to an external delivery pipe, and the end of the delivery pipe passes through the outer adjustment cylinder and extends into the adjustment area.

[0026] As an optimized solution, the cold evaporation water tank is a square box with an open upper end, and the cold evaporation water tank is fixedly mounted on the inner peripheral wall of the outer regulating cylinder.

[0027] As an optimized solution, four ultrasonic atomizers are provided and are respectively fixed on the inner side walls of the two cold evaporation water tanks near the upper end openings.

[0028] As an optimized solution, an external water supply tank connected to the cold evaporation water tank is fixed on the outer peripheral wall of the outer regulating cylinder.

[0029] Compared with the prior art, the present invention has the following beneficial effects:

[0030] The present invention realizes the three-in-one deep air treatment of "purification-oxygen purification-humidification", comprehensively improving the air quality; through innovative designs such as rotary intake pipe pressurization, dynamic zoning adjustment, and dual-mode adaptive humidification, the efficiency of each core function is significantly improved; the highly integrated design and omnidirectional mobility improve the convenience and spatial adaptability of the equipment while ensuring powerful functions.

[0031] Specifically:

[0032] 1. The present invention can achieve efficient composite purification.

[0033] The present invention achieves comprehensive and in-depth purification of solid particulate matter, harmful gases, odors, and microorganisms in the air through the comprehensive application of multiple purification methods, including:

[0034] Physical filtration: The rotating air intake pipe and the curved blades create an air pressure difference, forcing air to penetrate the honeycomb composite filter at high speed, effectively intercepting solid pollutants such as PM2.5, pollen, and large dust particles;

[0035] Chemical adsorption: Honeycomb composite filter simultaneously adsorbs harmful gases and odors such as formaldehyde, benzene, TVOC, etc.

[0036] Electrostatic precipitation: The negative ion generator releases negative ions, actively adsorbing smaller particles such as dust and smoke in the air, causing them to settle with charge, thereby enhancing the depth of purification;

[0037] Highly efficient sterilization and disinfection: The ozone produced by the low-concentration ozone generator has strong oxidizing properties and can effectively kill bacteria, viruses and other microorganisms in the air, making up for the shortcomings of physical filtration and adsorption.

[0038] 2. The present invention can realize intelligent humidification regulation.

[0039] Dual-mode self-adaptation: When the water level is low, it relies on natural evaporation for gentle humidification, saving energy and avoiding over-humidification, thus achieving low-level natural cooling evaporation;

[0040] When the water level rises and touches the atomizer, it automatically starts to produce ultra-fine water mist of 1-5 microns, with fast humidification speed, high efficiency and uniform distribution, thus achieving high-grade ultrasonic atomization.

[0041] Supply on demand: The two modes automatically switch according to the water level in the water tank to meet the humidity requirements of different environments and avoid the trouble of manual adjustment;

[0042] Effect: Provides comfortable humidity, relieves dryness, and avoids the "white powder" pollution (cold evaporation mode) and uneven humidification problems that may occur in traditional ultrasonic humidifiers.

[0043] 3. The present invention has the function of purifying oxygen.

[0044] Negative ion freshness: Negative ions not only settle particulate matter, but also simulate the natural environment, making the air feel fresher and more comfortable;

[0045] Low-concentration ozone assistance: At a safe concentration, ozone not only kills bacteria but also helps decompose some odors, further improving air quality;

[0046] Effect: On the basis of purification, it improves the "freshness" of the air and the breathing comfort.

[0047] 4. The present invention can realize dynamic partition processing and efficient circulation.

[0048] Adjustable zone division: The steering control module drives the inner purification cylinder to rotate, precisely controls the docking state of the inner and outer partitions, and dynamically forms and switches multiple adjustment zones (clean oxygen zone / humidification zone) and exhaust zones;

[0049] Airflow distribution on demand: The purified air can be precisely directed to different oxygen purification zones or humidification zones for treatment according to preset or required proportions, achieving flexible configuration of the air treatment process;

[0050] Effect: The air treatment path is optimized, the utilization efficiency and synergy of different functional modules (oxygen purification, humidification) are improved, and the balanced treatment effect is ensured.

[0051] 5. The present invention can realize active pressurization and forced filtration.

[0052] Rotating blade supercharging: The rotation of the intake pipe drives the arc-shaped blades to rotate synchronously, forming a local negative pressure (or positive pressure) in the intake pipe outlet area, actively "pushing / sucking" the air through the honeycomb composite filter;

[0053] Effect: It significantly improves the flow rate and penetration of air through the filter, overcomes the filter resistance more effectively, and improves the single filtration efficiency, especially for high-resistance and high-efficiency filters, reducing air retention.

[0054] 6. The present invention has flexible and controllable air outlet.

[0055] Adjustment of guide grille: The rotatable guide grille in the exhaust vent allows the user to manually or automatically adjust the air outlet angle as needed;

[0056] Effect: Achieve directional air supply or wide-angle diffusion, improve user experience, and avoid discomfort from direct blowing.

[0057] 7. The present invention is highly integrated and compact in structure.

[0058] Integrated design: Multiple functional modules such as air intake, filtration, oxygen purification, humidification, exhaust, drive, control, and movement are highly integrated into the core structure consisting of an integrated base, an external adjustment cylinder, and an internal purification cylinder;

[0059] Optimize space utilization: For example, use the cylinder wall space to install partitions, filters, and modules, and use the annular space between the inner purification cylinder and the outer regulating cylinder for partitioned treatment;

[0060] Effect: Accommodate complex functions within a limited volume, reduce equipment footprint, and improve aesthetics and practicality.

[0061] 8. The present invention has the ability to move autonomously.

[0062] Omnidirectional movement: Four independently driven mobile rollers can realize the device's forward and backward, left and right linear movement and in-situ rotation by controlling the start, stop and turn of different mobile drive modules;

[0063] Effect: The flexibility and convenience of the equipment are greatly improved, making it easier for users to adjust the equipment position according to their needs (such as following people, avoiding obstacles, and finding the best purification point) without manual lifting. BRIEF DESCRIPTION OF THE DRAWINGS

[0064] To more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following briefly describes the drawings required for the specific embodiments or the description of the prior art. Similar elements or parts are generally identified by similar reference numerals throughout the drawings. Elements or parts in the drawings are not necessarily drawn to scale.

[0065] Figure 1 Schematic diagram of the external overall structure of the present invention in the main viewing direction;

[0066] Figure 2 Schematic diagram of the external overall structure of the present invention when viewed from above;

[0067] Figure 3 For the present invention Figure 2 Schematic diagram of the internal structure cut along the AA line;

[0068] Figure 4 For the present invention Figure 1 Schematic diagram of the internal structure cut through the midline BB;

[0069] Figure 5 For the present invention Figure 1 Schematic diagram of the internal structure cut through the CC line;

[0070] Figure 6 For the present invention Figure 1 Schematic diagram of the internal structure cut along the mid-DD line;

[0071] Figure 7 For the present invention Figure 1 A half-section diagram of the three-dimensional structure cut along the midline FF;

[0072] Figure 8 is a schematic diagram of the overall exterior of the present invention when viewed from above;

[0073] Figure 9 It is a schematic diagram of the three-dimensional structure of the present invention.

[0074] In the figure: 1-integrated base, 2-external adjustment cylinder, 3-inner purification cylinder, 4-steering control module, 5-movable roller, 6-movable drive module, 7-circular end cover, 8-gas storage transfer box, 9-compressed air pump, 10-inlet valve, 11-inlet pipe, 12-outlet slot, 13-arc-shaped fan blade, 14-center transmission wheel, 15-limit seat, 16-transmission drive module, 17-side transmission wheel, 18-purification connection port, 19-honeycomb composite filter, 20-inner partition, 21-outer partition, 22-exhaust area, 23-adjustment area, 24-annular card plate, 25-exhaust port, 26-guide grille, 27-negative ion generator, 28-low-concentration ozone generator, 29-delivery pipe, 30-cold evaporation water tank, 31-ultrasonic atomizer, 32-external water supply tank. DETAILED DESCRIPTION

[0075] The following embodiments of the technical solution of the present invention will be described in detail with reference to the accompanying drawings. The following embodiments are only used to more clearly illustrate the technical solution of the present invention and are therefore only examples and are not intended to limit the scope of protection of the present invention.

[0076] like Figures 1 to 9 As shown, the oxygen-purifying and humidifying balanced air-conditioning purifier includes an integrated base 1, which is a cylindrical base with a closed upper end and a hollow interior. An outer adjustment cylinder 2 is fixedly provided on the upper surface of the integrated base 1, and an inner purification cylinder 3 is rotatably provided inside the outer adjustment cylinder 2. The outer adjustment cylinder 2 is a cylindrical cylinder with upper and lower openings, and the inner purification cylinder 3 is a cylindrical cylinder with an upper end opening and a closed lower end.

[0077] A steering control module 4 is fixed on the inner top surface of the integrated base 1 . The steering control module 4 is externally connected to an output shaft. The end of the output shaft passes upward through the integrated base 1 and is fixedly connected to the center of the outer bottom surface of the inner purification cylinder 3 .

[0078] Four centrosymmetrical moving rollers 5 are rotatably mounted on the inner circumferential wall of the integrated base 1 , and the lower ends of the moving rollers 5 are grounded. A moving drive module 6 is fixed to each moving roller 5 on the circumferential outer wall of the integrated base 1 .

[0079] A horizontal circular end cover 7 is welded to the upper end of the outer regulating cylinder 2, and a gas storage transfer box 8 is welded to the middle of the upper surface of the circular end cover 7. The upper end of the gas storage transfer box 8 is connected to a compressed air pump 9, and an air intake valve 10 is fixed at the center of the lower surface of the circular end cover 7. The air intake valve 10 is connected to the gas storage transfer box 8.

[0080] An air inlet pipe 11 is clamped at the lower end of the air inlet valve 10 . The air inlet pipe 11 is a round-mouthed pipe with a closed lower end. The distal end of the air inlet pipe 11 extends downward into the inner purification cylinder 3 .

[0081] Four centrally symmetrical air outlet slots 12 are formed on the outer peripheral wall of the air inlet pipe 11 .

[0082] Four rotationally symmetrical arc-shaped blades 13 are welded to the outer peripheral wall of the air inlet pipe 11 , and the four arc-shaped blades 13 and the four air outlet slots 12 are alternately arranged.

[0083] A coaxial central transmission wheel 14 is welded on the outer peripheral wall of the air inlet pipe 11 near the upper end, and a horizontal limit seat 15 is welded on the inner peripheral wall of the inner purification cylinder 3 near the upper end opening. The limit seat 15 is hollow inside and the central transmission wheel 14 is constrained in the limit seat 15.

[0084] Three centrally symmetrical transmission drive modules 16 are fixed to the upper surface of the limiting seat 15 . Each transmission drive module 16 is externally connected to a side transmission wheel 17 . The side transmission wheels 17 are arranged in the limiting seat 15 and contact with the central transmission wheel 14 for transmission.

[0085] Four centrosymmetrical purification communication ports 18 are provided on the circumferential side wall of the inner purification cylinder 3 , and a honeycomb composite filter 19 is fixed in each purification communication port 18 .

[0086] Two symmetrical inner partitions 20 are welded on the vertical side walls of each purification communication port 18, and eight outer partitions 21 are welded on the inner circumferential wall of the outer adjustment cylinder 2. The outer partitions 21 correspond to the inner partitions 20 one by one, and the ends of the outer partitions 21 are arranged close to the ends of the inner partitions 20. The outer partitions 21 and the inner partitions 20 divide the area between the outer adjustment cylinder 2 and the inner purification cylinder 3 into eight parts, four of which are exhaust areas 22, and the other four parts are adjustment areas 23. The steering control module 4 drives the inner purification cylinder 3 to rotate around the output shaft (the shaft connecting the steering control module and the inner purification cylinder), so as to realize the circulation and transfer of air between different areas.

[0087] The upper end of the outer partition 21 extends to the lower surface of the circular end cover 7 and the lower end extends to the upper surface of the integrated base 1 . The upper and lower ends of the inner partition 20 extend to the upper and lower end surfaces of the purification communication port 18 respectively.

[0088] Two symmetrical annular clamping plates 24 are welded to the inner circumferential wall of the outer regulating cylinder 2 . The two annular clamping plates 24 are respectively arranged on the upper and lower sides of the inner partition plate 20 . The inner rings of the annular clamping plates 24 are arranged closely to the outer circumferential wall of the inner purification cylinder 3 .

[0089] Four centrosymmetrical exhaust ports 25 are provided on the outer peripheral wall of the outer regulating cylinder 2 . The exhaust ports 25 are connected to the exhaust area 22 . A plurality of guide grilles 26 are rotatably provided in each exhaust port 25 .

[0090] An oxygen purification module is respectively provided in the two transversely opposite adjustment areas 23 . The oxygen purification module includes a negative ion generator 27 . The negative ion generator 27 is fixed on the inner peripheral wall of the outer adjustment cylinder 2 .

[0091] The oxygen purification module also includes a low-concentration ozone generator 28, which is arranged corresponding to the negative ion generator 27 and fixed on the outer peripheral wall of the outer adjustment cylinder 2. The low-concentration ozone generator 28 is externally connected to a delivery pipe 29, and the end of the delivery pipe 29 passes through the outer adjustment cylinder 2 and extends into the adjustment area 23.

[0092] A humidification module is respectively provided in the two longitudinally opposite adjustment areas 23. The humidification module includes a cold evaporation water tank 30. The cold evaporation water tank 30 is a square box with an open upper end. The cold evaporation water tank 30 is fixedly installed on the inner peripheral wall of the outer adjustment cylinder 2.

[0093] Two symmetrical ultrasonic atomizers 31 are fixed on the inner side wall of each cold evaporation water tank 30 near the upper end opening.

[0094] An external water supply tank 32 connected to the cold evaporation water tank 30 is fixed on the outer peripheral wall of the outer regulating cylinder 2.

[0095] When the present invention is used:

[0096] First, the compressed air pump 9 is activated to draw outside air into the air storage transfer box 8. After the air inlet valve 10 is opened, air enters the air inlet pipe 11 through the air inlet valve 10. Then, the three transmission drive modules 16 are activated, driving the three side transmission wheels 17 to rotate, which in turn drives the central transmission wheel 14 to rotate around its axis, thereby driving the entire air inlet pipe 11 to rotate. The air is discharged through the air outlet notch 12 on the air inlet pipe 11 into the inner purification cylinder 3.

[0097] When the air intake pipe 11 rotates, it drives the arc-shaped fan blades 13 to rotate synchronously, generating an air pressure difference, forcing the air to pass through the honeycomb composite filter 19; this process can filter out large particles of dust, PM2.5, pollen and other fine particles in the air, and adsorb harmful gases and odors such as formaldehyde, benzene, TVOC; then the steering control module 4 is started, driving the inner purification cylinder 3 to rotate slowly, so that the inner partition 20 and the outer partition 21 are periodically docked to form multiple adjustment zones 23; the air is then discharged through the purification connecting port 18 and enters each adjustment zone 23 for oxygen purification and humidification treatment.

[0098] Oxygen purification process: The negative ion generator 27 and the low-concentration ozone generator 28 are turned on at the same time; the negative ion generator 27 releases a large amount of negative ions to absorb dust, smoke and other particulate matter in the air and cause them to settle; the low-concentration ozone generator 28 uses the high-frequency electric field to decompose oxygen molecules and recombine them to generate ozone; low-concentration ozone has strong oxidizing properties and can effectively kill bacteria, viruses and other microorganisms in the air.

[0099] Humidification process: clean water is injected into the external water supply tank 32, and the clean water flows into the cold evaporation water tank 30; when the liquid level in the cold evaporation water tank 30 is low, the water evaporates naturally, achieving low-level humidification; when the water level rises and reaches the ultrasonic atomizer 31, the ultrasonic atomizer 31 automatically turns on, breaking water molecules through high-frequency vibration to achieve high-level humidification: the ultrasonic generator outputs a high-frequency electrical signal, driving the atomizer to generate high-frequency vibrations tens of thousands of times per second; this vibration is transmitted to the water in the water tank, causing tension waves on the water surface; when the vibration energy is large enough, the water surface tension is broken, forming tiny droplets with a diameter of about 1-5 microns; these droplets mix with the air to increase the air humidity;

[0100] The air that has been purified and humidified by oxygen is discharged to the outside environment through the exhaust port 25;

[0101] During the exhaust process, the air outlet angle can be adjusted by controlling the rotation of the guide grille 26;

[0102] In addition, by turning on different mobile drive modules 6 and controlling the rotation of the corresponding mobile rollers 5, the entire device can be moved horizontally, vertically and circumferentially.

[0103] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the above embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the above embodiments, or make equivalent replacements for some or all of the technical features therein, and these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present invention, and they should all be covered by the scope of the claims and description of the present invention.

Claims

1. Oxygen purification and humidification balanced air conditioning purifier, characterized by: The integrated base is a cylindrical base with a closed upper end and a hollow interior. An outer adjustment cylinder is fixedly provided on the upper surface of the integrated base. An inner purification cylinder is rotatably provided inside the outer adjustment cylinder. The outer adjustment cylinder is a cylindrical cylinder with upper and lower openings, and the inner purification cylinder is a cylindrical cylinder with an upper end opening and a closed lower end. A horizontal circular end cap is welded to the upper end of the outer regulating cylinder, a gas transfer box is welded to the middle of the upper surface of the circular end cap, a compressed air pump is connected to the upper end of the gas transfer box, and an air inlet valve connected to the gas transfer box is fixed at the center of the lower surface of the circular end cap; The lower end of the air inlet valve is provided with an air inlet pipe through a rotating sleeve, and the lower end of the air inlet pipe is closed and extends downward into the inner purification cylinder; Four centrally symmetrical air outlet slots are provided on the outer peripheral wall of the air inlet pipe, and four rotationally symmetrical arc-shaped fan blades are welded to the outer peripheral wall of the air inlet pipe; The circumferential side wall of the inner purification cylinder is provided with four centrally symmetrical purification communication ports, each of which is respectively fixed with a honeycomb composite filter; Two symmetrical inner baffles are welded to the vertical side walls of each purification communication port, and eight outer baffles are welded to the inner circumferential wall of the outer adjustment cylinder. The ends of the outer baffles are arranged closely to the ends of the inner baffles. The outer baffles and the inner baffles divide the area between the outer adjustment cylinder and the inner purification cylinder into four exhaust areas and four adjustment areas that are alternately distributed. An oxygen purification module is respectively provided in the two laterally opposite adjustment zones, and the oxygen purification module includes a negative ion generator and a low-concentration ozone generator; A humidification module is respectively provided in the two longitudinally opposite adjustment areas, and the humidification module includes a cold evaporation water tank and an ultrasonic atomizer.

2. The oxygen-purifying and humidifying balanced air conditioning purifier according to claim 1, characterized in that: A steering control module is fixed on the inner top surface of the integrated base, and the steering control module is externally connected to an output shaft, the end of which passes through the integrated base upward and is fixedly connected to the center of the outer bottom surface of the inner purification cylinder; Four centrosymmetrical moving rollers are rotatably mounted on the inner circumferential wall of the integrated base, the lower ends of the moving rollers are grounded, and a moving drive module is fixed on the circumferential outer wall of the integrated base corresponding to each of the moving rollers.

3. The oxygen-purifying and humidifying balanced air conditioning purifier according to claim 1, characterized in that: A central transmission wheel coaxial with the air inlet pipe is welded on the outer peripheral wall near the upper end, and a horizontal limit seat is welded on the inner peripheral wall of the inner purification cylinder near the upper end opening. The limit seat is hollow inside, and the central transmission wheel is constrained in the limit seat. Three centrally symmetrical transmission drive modules are fixed on the upper surface of the limit seat. Each of the transmission drive modules is externally connected to a side transmission wheel. The side transmission wheels are arranged in the limit seat and contact with the central transmission wheel for transmission.

4. The oxygen-purifying and humidifying balanced air conditioning purifier according to claim 1, characterized in that: The upper end of the outer partition extends to the lower surface of the circular end cover, and the lower end extends to the upper surface of the integrated base, and the upper and lower ends of the inner partition extend to the upper and lower end surfaces of the purification communication port respectively; Two symmetrical annular clamping plates are welded on the inner circumferential wall of the outer regulating cylinder. The two annular clamping plates are respectively arranged on the upper and lower sides of the inner layer partition plate. The inner rings of the annular clamping plates are arranged tightly against the outer circumferential wall of the inner purification cylinder.

5. The oxygen-purifying and humidifying balanced air conditioning purifier according to claim 1, characterized in that: Four centrosymmetrical air outlets are provided on the outer peripheral wall of the outer regulating cylinder. The air outlets are connected to the air exhaust area. A plurality of guide grilles are rotatably provided in each of the air outlets.

6. The oxygen-purifying and humidifying balanced air conditioning purifier according to claim 1, characterized in that: The negative ion generator is fixed on the inner peripheral wall of the outer adjustment cylinder; The low-concentration ozone generator and the negative ion generator are correspondingly arranged and fixed on the outer peripheral wall of the outer regulating cylinder. The low-concentration ozone generator is externally connected to a delivery pipe, and the end of the delivery pipe passes through the outer regulating cylinder and extends into the regulating area.

7. The oxygen-purifying and humidifying balanced air conditioning purifier according to claim 1, characterized in that: The cold evaporation water tank is a square box with an open upper end, and the cold evaporation water tank is fixedly mounted on the inner peripheral wall of the outer regulating cylinder; There are four ultrasonic atomizers, which are respectively fixed on the inner side walls of the two cold evaporation water tanks close to the upper end openings.

8. The oxygen-purifying and humidifying balanced air conditioning purifier according to claim 7, characterized in that: An external water supply tank connected to the cold evaporation water tank is fixed on the outer peripheral wall of the outer regulating cylinder.

Citation Information

Patent Citations

  • Novel indoor air purifying and sterilizing system

    CN111795449A

  • Air purification device for textile production workshop

    CN114146523A