An air filtering device for industrial air conditioning

By combining preliminary filtration and deep filtration, the air filtration device solves the problem of increased energy consumption caused by increased air circulation resistance, achieves smooth air circulation and high cleanliness, reduces maintenance costs, and improves the operating efficiency and air quality of the air conditioning system.

CN120593388BActive Publication Date: 2025-10-10HONGZHU CONSTRUCTION ENGINEERING (SHANXI) CO LTD
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Patent Information

Application Number
CN202511093357.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-08-06
Publication Date
2025-10-10
Estimated Expiration
2045-08-06

AI Technical Summary

Technical Problem

In existing industrial air-conditioning systems, the pursuit of high filtration accuracy in air filtration devices leads to increased air flow resistance, affecting the temperature and humidity regulation effects, increasing energy consumption and causing energy waste.

Method used

The air is filtered and processed in two ways, combining preliminary filtration and deep filtration. Intelligent exhaust adjustment of the air is achieved through the transmission component and the push component. The filter is easily replaced by permanent magnets, and the gear transmission structure realizes efficient power transmission and multi-task collaborative operation.

Benefits of technology

Ensure smooth air circulation, reduce energy consumption, extend equipment life, reduce maintenance costs, improve operating efficiency and air cleanliness, and provide a stable and clean indoor environment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an air filtering device for industrial air conditioning, and relates to the technical field of filtering devices, which comprises an air conditioner main body, a mounting assembly, two high-efficiency filtering assemblies, a transmission assembly, six pushing assemblies and two exhaust assemblies. In the application, after the air conditioner is started, the transmission assembly inhales air into the mounting assembly for preliminary filtering and cleaning, meanwhile, the transmission assembly drives the pushing assemblies to link the exhaust assemblies, so that the internal exhaust speed is always less than the air inlet speed, a pressure difference is formed, a small part of air is branched to the two side deep filtering layers, and the small particles and peculiar smell are removed, the synergistic operation of "high-efficiency primary filtering + deep precision filtering" is realized, the air inlet of the air conditioner is ensured smooth, the energy consumption is reduced, the high-cleanliness requirement is met, the intelligent exhaust regulation is combined with the deep filtering, the equipment dust accumulation and component wear are reduced, the service life of the air conditioner is prolonged, the maintenance cost is reduced, the operation efficiency is improved, the indoor air is provided with continuous stability and cleanliness, and the performance and economy are considered.
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Description

Technical Field

[0001] The present invention relates to the technical field of filter devices, in particular to an air filter device for industrial air conditioners. Background Art

[0002] A filtration device is a device or system used to separate different components in a mixture. Its core function is to separate solid particles, suspended matter, impurities, etc. in liquid or gas from the main fluid through physical, chemical or biological methods to achieve the purpose of purification, refining or recovery.

[0003] In industrial production environments, air filters in industrial air-conditioning systems generally use materials such as glass fiber and synthetic fiber to achieve efficient interception of tiny particles in the air. While these materials pursue high filtration accuracy, they also bring about the problem of increased resistance to air passage. In order to increase the filtration area and improve the filtration effect, the filter materials are generally thicker, which requires the air to take a longer detour when passing through, further hindering the smooth circulation of air, thereby seriously affecting the industrial air-conditioning's effect on regulating indoor temperature and humidity. Since the air cannot circulate quickly, the temperature and humidity in different areas of the room will be unevenly distributed, bringing instability to the industrial production environment. When air circulation is blocked, in order to maintain the required temperature and humidity conditions indoors, the industrial air-conditioning has to consume more energy to increase the air circulation speed and cooling and heating capacity, which directly leads to a significant increase in air-conditioning operating costs and causes serious waste of energy. Summary of the Invention

[0004] The purpose of the present invention is to provide an air filter device for industrial air conditioning, which effectively ensures the filtering effect by filtering the inhaled air in two ways and allows the air to circulate smoothly, so as to solve the problems raised in the above background.

[0005] To achieve the above-mentioned object, the present invention provides the following technical solution: an air filter device for an industrial air conditioner, comprising: an air conditioner main body, a mounting assembly, two high-efficiency filter assemblies, a transmission assembly, six push assemblies, and two exhaust assemblies;

[0006] The installation components include:

[0007] Two baffles and two sets of one-way valves (II), each of the two baffles being fixedly provided with a set of one-way valves (I) for diverting and filtering part of the gas;

[0008] The pushing component includes:

[0009] A water cylinder, a flexible rubber block, and a buoyancy block. The inner surface wall of the water cylinder is provided with a connecting groove. The edge of the flexible rubber block is adhered to one side of the inner wall of the connecting groove. When the flexible rubber block is pulled, the water generates waves of different heights according to the frequency of pulling. The outer surface wall of the buoyancy block is movably inserted into the interior of the water cylinder. A group of push rods are adhered to the top of the buoyancy block. Three mounting holes are provided on the top of the water cylinder. The buoyancy block always floats on the water surface due to buoyancy. The ups and downs of the waves push the buoyancy block to reciprocate up and down, and the push rod connected to the top of the buoyancy block slides in the mounting holes.

[0010] The exhaust assembly comprises:

[0011] There are three fixed bases and three mounting columns. The bottoms of the three fixed bases are fixedly installed with fixing parts. The three mounting columns are fixedly installed on the bottoms of the fixing parts. A sealing arc plate is fixedly installed between the bottoms of the three mounting columns. After the sealing arc plate rises, the preliminarily filtered air is discharged.

[0012] Preferably, two mounting components are fixedly installed on the top of the air-conditioning body, a protective cover is fixedly sleeved between the outer walls of the two baffles, two ultraviolet lamps are arranged between the inner walls of the protective cover, two groups of one-way valves 2 are fixedly inserted at the bottom of the protective cover, two air outlet channels are provided at the bottom of the protective cover, two groups of mounting grooves are provided on one side of the inner wall of the protective cover, and permanent magnets 1 are fixedly inserted on the inner walls of the two groups of mounting grooves.

[0013] Preferably, two high-efficiency filter components are movably inserted inside the mounting assembly, and the high-efficiency filter component includes a mounting frame, the outer wall of the mounting frame is movably inserted inside the protective cover, a handle is adhered to one side of the outer wall of the mounting frame, and two groups of threaded holes are opened on the outer wall of the mounting frame, the inner walls of the two groups of threaded holes are threadedly connected with fixing bolts, and a connecting base is threadedly connected between the outer walls of the two groups of fixing bolts.

[0014] Preferably, a medium-efficiency filter screen is fixedly installed on one side of the outer wall of one of the two connecting bases, an activated carbon adsorption screen is fixedly installed on one side of the outer wall of the other of the two connecting bases, a high-efficiency filter screen is fixedly installed on one side of the outer wall of the mounting frame, and a permanent magnet 2 is fixedly installed on one side of the outer walls of the medium-efficiency filter screen, the activated carbon adsorption screen and the high-efficiency filter screen. The outer walls of the medium-efficiency filter screen, the activated carbon adsorption screen and the high-efficiency filter screen are movably inserted into the interior of the mounting groove, and the outer walls of the three permanent magnets 2 are connected to the outer wall of the permanent magnet 1 by magnetic force.

[0015] Preferably, a transmission assembly is fixedly inserted inside the mounting assembly, and the transmission assembly includes a fan. The outer wall of the fan is fixedly inserted inside the protective cover, and the output end inside the fan is connected to a transmission shaft, and the outer wall of the transmission shaft is movably sleeved with a primary filter, a photocatalyst filter and a driving gear.

[0016] Preferably, the outer walls of the primary filter and the photocatalyst filter are fixedly inserted inside the protective cover, the outer wall of the driving gear is meshedly connected with six driven gears, and a rotating shaft 1 is fixedly inserted inside the six driven gears.

[0017] Preferably, the outer wall of the transmission assembly is fixedly sleeved with multiple pushing assemblies, the top of the inner wall of the protective cover is fixedly connected to the bottom of the water cylinder, a second rotating shaft is movably inserted into the interior of the water cylinder, the outer wall of the second rotating shaft is sleeved with a reduction gear set and a sealing cover, the bottom of the reduction gear set is fixedly installed on the top of the water cylinder, the bottom of the sealing cover is fixedly installed on the top of the reduction gear set, the outer wall of the first rotating shaft is inserted into the interior of the reduction gear set and the sealing cover, three mounting holes are opened on the top of the water cylinder, and a rotating top seat is fixedly installed on the bottom of the second rotating shaft.

[0018] Preferably, the inner surface wall of the flexible rubber block is provided with two ear blocks, a connecting force arm is movably inserted between the inner surface walls of the two ear blocks, a connecting rod is movably inserted between the inner surface walls of the two connecting force arms, the top of the connecting rod is fixedly connected to the bottom of the rotating top seat, a rotating base is fixedly installed on the bottom of the connecting rod, and the outer wall of the rotating base is movably inserted inside the water cylinder.

[0019] Preferably, the outer walls of the three push rods are fixedly sleeved with sealing rings, the outer walls of the three push rods are movably inserted into the interior of the mounting hole, the outer walls of the three sealing rings are fixedly inserted into the interior of the mounting hole, four one-way valves three and one-way valve four are fixedly inserted into the interior of the three sealing rings, the three push rods are fixedly installed with springs, and the bottoms of the three springs are fixedly connected to the top of the water cylinder.

[0020] Preferably, two exhaust assemblies are fixedly sleeved between the outer walls of the plurality of pushing assemblies, a pushing rod is fixedly inserted into the interior of the three fixed bases, and the outer walls of the sealing arc plates are movably inserted into the interior of the air outlet channel.

[0021] Compared with the prior art, the present invention has the following beneficial effects:

[0022] 1. In the present invention, after the air conditioner is started, the transmission component draws air into the installation component for preliminary filtration and cleaning. At the same time, the transmission component drives the push component to link the exhaust component, maintaining the internal exhaust speed always lower than the intake speed, forming a pressure difference, so that a small part of the air is diverted to the deep filtration layers on both sides to remove tiny particles and odors, realizing the coordinated operation of "high-efficiency primary filtration + deep fine filtration", which not only ensures smooth air intake of the air conditioner and reduces energy consumption, but also meets high cleanliness requirements. The combination of intelligent exhaust regulation and deep filtration reduces equipment dust accumulation and component wear, extends the life of the air conditioner, reduces maintenance costs, and improves operating efficiency, providing continuous, stable, and clean air for the room, taking into account both performance and economy;

[0023] 2. In the present invention, the high-efficiency filter assembly is firmly fixed by the magnetic attraction between the second permanent magnet and the first permanent magnet. When the user needs to clean or replace it, he only needs to hold the handle and gently pull to separate the magnets and withdraw the assembly. By unscrewing the fixing bolts, the medium-efficiency filter, activated carbon adsorption network and high-efficiency filter can be separated one by one, which is convenient for individual cleaning to maintain filtering performance. In addition, only some of the filter screens can be replaced according to actual wear and tear, significantly reducing replacement costs. This design not only improves cleaning efficiency and reduces maintenance time, but also optimizes resource utilization through flexible replacement methods, making the use of the filter assembly more economical and efficient, and taking into account both user experience and long-term cost-effectiveness.

[0024] 3. In the present invention, the device realizes efficient power transmission and multi-task coordinated operation through a gear transmission structure: after the fan is running, it drives the transmission shaft to rotate, and with the help of related structures, it synchronously drives the push rod to rise to dynamically adjust the opening of the air outlet channel. By driving multiple components in linkage through a single power source, it not only simplifies the equipment structure and reduces energy consumption, but also ensures that the opening of the air outlet channel is adjusted in real time with the operating status of the system, maintains internal pressure balance, improves air treatment efficiency and stability, and at the same time reduces the demand for additional power devices, realizing compact design and functional integration. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 This is a perspective view of the main structure of an air filter device for industrial air conditioning of the present invention;

[0026] Figure 2 This is a sectional perspective view of an installation component in an air filter device for an industrial air conditioner according to the present invention;

[0027] Figure 3 This is a cross-sectional schematic diagram of an installation component in an air filter device for industrial air conditioning according to the present invention;

[0028] Figure 4 This is a cross-sectional exploded view of an installation component and a high-efficiency filter component in an air filter device for industrial air conditioning according to the present invention;

[0029] Figure 5It is a sectional view of a transmission assembly in an air filtering device for industrial air conditioner according to the present application;

[0030] Figure 6 It is a top view of a transmission assembly and an exhaust assembly in an air filtering device for industrial air conditioner according to the present application;

[0031] Figure 7 It is an enlarged view of structure A in an air filtering device for industrial air conditioner according to the present application;

[0032] Figure 8 It is a bottom view of an exhaust assembly in an air filtering device for industrial air conditioner according to the present application;

[0033] Figure 9 It is an enlarged view of structure B in an air filtering device for industrial air conditioner according to the present application.

[0034] In the figure: 1, air conditioner main body; 2, installation assembly; 21, protective cover; 22, baffle; 23, one-way valve one; 24, ultraviolet light; 25, one-way valve two; 26, air outlet passage; 27, installation groove; 28, permanent magnet one; 3, high-efficiency filtering assembly; 31, installation frame; 32, handle; 33, threaded hole; 34, fixing bolt; 35, connecting base body; 36, medium-efficiency filtering screen; 37, activated carbon adsorption screen; 38, high-efficiency filtering screen; 39, permanent magnet two; 4, transmission assembly; 41, fan; 42, transmission shaft; 43, primary efficiency filtering screen; 44, photocatalyst filtering screen; 45, driving gear; 46, driven gear; 47, rotating shaft one; 5, pushing assembly; 51, sealing cover; 52, deceleration gear set; 53, rotating shaft two; 54, water cylinder; 55, installation hole; 56, rotating top base; 57, connecting groove; 58, flexible rubber block; 59, ear block; 510, connecting force arm; 511, connecting rod; 512, rotating bottom base; 513, buoyancy block; 514, pushing rod; 515, sealing ring; 516, one-way valve three; 517, one-way valve four; 518, spring; 6, exhaust assembly; 61, fixed base body; 62, fixing piece; 63, installation column; 64, sealing arc-shaped plate. DETAILED DESCRIPTION

[0035] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0036] REFERENCE Figure 1 - Figure 9As shown, the present invention provides an air filtration device for industrial air conditioners, comprising: an air conditioner main body 1, a mounting assembly 2, two high-efficiency filter assemblies 3, a transmission assembly 4, six push assemblies 5 and two exhaust assemblies 6;

[0037] After the air conditioner main body 1 is started, the transmission component 4 responds immediately and starts to operate, and the outside air is quickly sucked into the device through the negative pressure effect generated. The air then enters the installation component 2. In the installation component 2, the air first encounters the primary filter, and its efficient interception effect will quickly remove large-volume pollutants in the air, such as dust, pollen, fiber, etc. At the same time, the built-in sterilization and disinfection module is synchronously started to deeply purify the air, thereby effectively killing bacteria, viruses and other microorganisms to ensure air cleanliness. While filtering and disinfecting the air, the transmission component 4 drives the push component 5 to move smoothly through a precise mechanical linkage mechanism, and the push component 5 then drives the exhaust component 6 to rise and open the exhaust port, so that the air that has been preliminarily filtered and disinfected can be smoothly discharged from the installation component 2 and smoothly enter the interior of the air conditioner main body 1 for subsequent circulation processing. The rising distance of the push component 5 is closely related to the intake speed of the transmission component 4. The faster the intake speed, the greater the rise of the push component 5, and the higher the opening degree of the exhaust component 6. This ensures that the exhaust speed can intelligently follow the changes in the intake speed, maintaining a stable pressure environment inside the device and ensuring a smooth and unobstructed exhaust process. The exhaust speed is always controlled within a reasonable range less than the intake speed, so that a pressure difference is formed inside the installation component 2, prompting a small amount of air to be diverted to the two side areas. The air will pass through a finer filter layer for deep filtering and cleaning to remove tiny particles, harmful gases and odor molecules, further improving the air quality. The device uses a collaborative operation mode of preliminary filtration of most air and deep filtration of a small part of air, which not only ensures the efficient and smooth air intake of the air-conditioning system and avoids the increase in energy consumption due to excessive air resistance, but also meets high standards of air cleanliness requirements through deep filtration, providing a continuous, stable and clean air supply for the indoor environment. At the same time, the combination of the intelligent exhaust adjustment mechanism and the deep filtration design effectively extends the service life of the air-conditioning system, reduces maintenance costs and improves overall operating efficiency.

[0038] In some instances, reference Figure 1 - Figure 4 As shown,

[0039] Installation Kit 2 includes:

[0040] Two baffles 22 and two sets of one-way valves 25. A set of one-way valves 23 are fixedly inserted inside the two baffles 22 for diverting and filtering part of the gas. Two mounting components 2 are fixedly installed on the top of the air conditioner body 1. A protective cover 21 is fixedly sleeved between the outer walls of the two baffles 22. Two purple lamps 24 are set between the inner walls of the protective cover 21. Two sets of one-way valves 25 are fixedly inserted at the bottom of the protective cover 21. Two air outlet channels 26 are opened at the bottom of the protective cover 21.

[0041] When air enters the protective cover 21, most of the air will flow to the preliminary filtration area to complete preliminary purification. The ultraviolet lamp 24 can sterilize the air. Then the air after preliminary filtration is discharged along the air outlet channel 26, ensuring smooth air flow. Since the exhaust speed is less than the intake speed, a pressure difference is formed in the protective cover 21, which becomes the driving force for the flow of a small part of the air. Afterwards, under the action of pressure, a small part of the air passes through the one-way valve 23 to the side of the two baffles 22, where the air is deeply filtered to remove pollutants such as tiny particles and harmful gases. Then, the clean air after deep filtration is discharged through the one-way valve 25. The one-way valve ensures one-way air flow to prevent unfiltered air from flowing back. Most of the air is quickly discharged after preliminary filtration to maintain continuous air flow and avoid increased resistance and energy consumption; a small part of the air is deeply filtered to improve air cleanliness and meet high standards of air quality.

[0042] In some instances, reference Figure 1 - Figure 2 as well as Figure 4 As shown, two high-efficiency filter components 3 are movably inserted into the interior of the mounting assembly 2. The high-efficiency filter component 3 includes a mounting frame 31. The outer wall of the mounting frame 31 is movably inserted into the interior of the protective cover 21. A handle 32 is adhered to one side of the outer wall of the mounting frame 31. Two groups of threaded holes 33 are opened on the outer wall of the two groups of threaded holes 33. The inner walls of the two groups of threaded holes 33 are threadedly connected with fixing bolts 34. The outer walls of the two groups of fixing bolts 34 are threadedly connected with a connecting base 35. One side of the outer wall of one of the two connecting bases 35 is fixedly installed with a middle High-efficiency filter 36, an activated carbon adsorption net 37 is fixedly installed on one side of the outer wall of the other of the two connecting bases 35, a high-efficiency filter 38 is fixedly installed on one side of the outer wall of the mounting frame 31, and a permanent magnet 2 39 is fixedly installed on one side of the outer walls of the medium-efficiency filter 36, the activated carbon adsorption net 37 and the high-efficiency filter 38. The outer walls of the medium-efficiency filter 36, the activated carbon adsorption net 37 and the high-efficiency filter 38 are all movably inserted into the interior of the mounting groove 27, and the outer walls of the three permanent magnets 2 39 are all connected to the outer wall of the permanent magnet 1 28 by magnetic force.

[0043] When the diverted air enters the area where the high-efficiency filter component 3 is located, the air will come into direct contact with the medium-efficiency filter 36. The medium-efficiency filter 36 uses its own structural characteristics to perform secondary filtration on the air, thereby accurately intercepting particles in the air with a diameter of 1-5 microns, such as pollen and some dust, effectively improving the cleanliness of the air and reducing the burden on subsequent filtration. Then, the air that has been preliminarily purified by the medium-efficiency filter 36 will meet the activated carbon adsorption net 37. The activated carbon adsorption net 37 exerts a powerful adsorption effect, which can not only perform secondary sterilization and deodorization on the air, effectively kill or inhibit some microorganisms in the air, but also absorb odor molecules and excess water vapor in the air, making the air fresher and drier. Then, the air comes to the high-efficiency filter 38. The high-efficiency filter 38 uses its high-precision filtration capability to intercept particles of 0.3 microns and above, and remove bacteria, virus carriers, smoke and other harmful substances. Block it outside to ensure that the air discharged from the component reaches an extremely high cleanliness standard. The entire high-efficiency filter component 3 is installed in the installation component 2 in a movable plug-in manner and is firmly fixed by magnetism. When the user needs to clean or replace the component, the operation is very convenient. Just hold the handle 32 and gently pull out the component. At this time, the multiple permanent magnets 2 39 on the component will naturally separate from the permanent magnet 1 28 in the installation component 2. The user can also unscrew the fixing bolts 34 to separate the three filters: the medium-efficiency filter 36, the activated carbon adsorption net 37 and the high-efficiency filter 38. This is not only convenient for cleaning each filter separately to ensure its filtering performance; it can also replace only some filters that are worn or have degraded performance according to actual usage, greatly reducing replacement costs. This design not only improves cleaning efficiency and reduces maintenance costs, but also makes the use of filter components more flexible and economical.

[0044] In some instances, reference Figure 1 - Figure 2 as well as Figure 5-Figure 7 As shown, a transmission assembly 4 is fixedly inserted into the interior of the mounting assembly 2, and the transmission assembly 4 includes a fan 41. The outer wall of the fan 41 is fixedly inserted into the interior of the protective cover 21, and the output end inside the fan 41 is connected to a transmission shaft 42. The outer wall of the transmission shaft 42 is movably sleeved with a primary filter 43, a photocatalyst filter 44 and a driving gear 45. The outer walls of the primary filter 43 and the photocatalyst filter 44 are fixedly inserted into the interior of the protective cover 21. The outer wall of the driving gear 45 is meshed with six driven gears 46, and the interiors of the six driven gears 46 are fixedly inserted with a rotating shaft 47.

[0045] When the fan 41 is started, the outside air is sucked into the equipment through the negative pressure. The primary filter 43 immediately intercepts large particles of pollutants with a diameter of ≥5 microns, effectively reducing the entry of large particles into the deep layer of the equipment. Then, the air that has passed the primary filtration enters the photocatalyst filter 44 area. At this time, the ultraviolet lamp 24 continuously irradiates the surface of the photocatalyst filter, stimulating its nano-scale titanium dioxide coating to produce electron-hole pairs, generating hydroxyl free radicals and superoxide ions with strong oxidizing properties. These active substances catalyze the reaction with volatile organic compounds such as formaldehyde and benzene in the air, completely decomposing the pollutants into non-toxic substances. The fan 41 removes harmful carbon dioxide and water, eliminates odors and harmful chemicals from the source, and avoids the risk of secondary pollution that may be caused by traditional adsorption filters. Afterwards, the continuous operation of the fan 41 drives the transmission shaft 42 to rotate synchronously, and the driving gear 45 on the outer wall of the transmission shaft 42 rotates at high speed. Through the gear meshing transmission mechanism, it drives the driven gear 46 that is precisely engaged with it to rotate synchronously, and the rotating shaft 47 nested inside the driven gear 46 begins to rotate. This design realizes the mechanical energy transmission of the fan 41 power to other functional modules, so that the equipment can perform other auxiliary functions synchronously while filtering the air.

[0046] In some instances, reference Figure 1 - Figure 2 、 Figure 5 - Figure 9As shown, the outer wall of the transmission assembly 4 is fixedly sleeved with a plurality of push assemblies 5, the push assembly 5 comprises: a water cylinder 54, a flexible rubber block 58 and a buoyant block 513, the inner wall of the water cylinder 54 is provided with a connecting groove 57, the edge of the flexible rubber block 58 is adhered to one side of the inner wall of the connecting groove 57, after the flexible rubber block 58 is pulled, different height waves of water are generated according to the frequency of pulling, the outer wall of the buoyant block 513 is movably inserted into the water cylinder 54, a group of push rods 514 are adhered to the top of the buoyant block 513, the buoyant block 513 always floats on the water surface due to the buoyancy, the buoyant block 513 reciprocates up and down due to the fluctuation of the waves, the push rod 514 connected to the top of the buoyant block 513 slides in the mounting hole 55, the inner wall top of the protective cover 21 is fixedly connected with the bottom of the water cylinder 54, a rotating shaft 53 is movably inserted into the water cylinder 54, a speed reduction gear set 52 and a sealing cover 51 are sleeved on the outer wall of the rotating shaft 53, the bottom of the speed reduction gear set 52 is fixedly installed on the top of the water cylinder 54, the bottom of the sealing cover 51 is fixedly installed on the top of the speed reduction gear set 52, the outer wall of the rotating shaft 47 is inserted into the speed reduction gear set 52 and the sealing cover 51, three mounting holes 55 are formed in the top of the water cylinder 54, a rotating top seat 56 is fixedly installed on the bottom of the rotating shaft 53, two ear blocks 59 are arranged on the inner wall of the flexible rubber block 58, a connecting force arm 510 is movably inserted between the inner walls of the two ear blocks 59, a connecting rod 511 is movably inserted between the inner walls of the two connecting force arms 510, the top of the connecting rod 511 is fixedly connected with the bottom of the rotating top seat 56, a rotating base 512 is fixedly installed on the bottom of the connecting rod 511, the outer wall of the rotating base 512 is movably inserted into the water cylinder 54, a sealing ring 515 is fixedly sleeved on the outer wall of each of the three push rods 514, the outer wall of each of the three push rods 514 is movably inserted into the mounting hole 55, the outer wall of each of the three sealing rings 515 is fixedly inserted into the mounting hole 55, four one-way valves three 516 and one-way valves four 517 are fixedly inserted into the interiors of the three sealing rings 515, springs 518 are fixedly installed on the three push rods 514, the bottoms of the three springs 518 are fixedly connected with the top of the water cylinder 54;

[0047] The exhaust assembly 6 comprises:

[0048] Three fixed base bodies 61 and three mounting columns 63, the bottom of each of the three fixed base bodies 61 is fixedly installed with a fixed part 62, the three mounting columns 63 are fixedly installed on the bottom of the fixed part 62, the bottom of each of the three mounting columns 63 is fixedly installed with a sealing arc-shaped plate 64, the sealing arc-shaped plate 64 is lifted to discharge the preliminarily filtered air, the outer walls of the plurality of push assemblies 5 are fixedly sleeved with two exhaust assemblies 6, the interiors of the three fixed base bodies 61 are fixedly inserted with the push rods 514, the outer walls of the sealing arc-shaped plates 64 are movably inserted into the air outlet channel 26.

[0049] When the shaft 1 47 rotates at high speed under the action of the gear transmission, its power is transmitted to the reduction gear set 52 through the internal mechanical structure. The reduction gear set 52 converts the high-speed rotation into a low-speed, high-torque output through multi-stage gear meshing, driving the shaft 2 53 to rotate stably at a speed lower than that of the shaft 1 47. The rotation of the shaft 2 53 drives the rotating top seat 56 connected to the bottom to rotate synchronously. The connecting rod 511 at the bottom of the rotating top seat 56 makes a circular motion with the shaft, and its end is hinged to one end of the connecting arm 510, converting the circular motion into the reciprocating linear motion of the ear block 59 at the other end of the connecting arm 510. The surface of the flexible rubber block 58 is tightly adhered, and the flexible rubber block 58 is fixed to the inner wall of the water cylinder 54 on all sides. Therefore, the linear motion of the ear block 59 continuously stretches the middle area of ​​the flexible rubber block 58, causing it to periodically swell and shrink in the water cylinder 54. Then, the water filled in the water cylinder 54 generates waves under the instigation of the flexible rubber block 58. The buoyancy block 513 always floats on the water surface due to the buoyancy. The ups and downs of the waves push the buoyancy block 513 to move up and down. The push rod 514 connected to the top of the buoyancy block 513 slides in the mounting hole 55. When it rises, it squeezes the air in the sealed chamber at the top of the water cylinder 54, forcing the air The air is quickly discharged through the four one-way valves 516, and the spring 518 is stretched to store energy. When the crest of the wave passes, the push rod 514 descends under the action of the spring 518 rebound and gravity. When descending, the descent speed is significantly slowed down due to the air intake resistance of the one-way valve 4 517. Before the push rod 514 is completely lowered, the next wave crest has pushed it up again, forming a "fast rise, slow descent" reciprocating motion mode. This asymmetric motion ensures that the sealing arc plate 64 always maintains a high position and is fully reset only when the air intake volume is extremely low, thereby dynamically adjusting the opening of the air outlet channel 26 and the push rod 514. The rise drives the fixed base 61 to move upward synchronously, and the fixed base 61 drives the sealing arc plate 64 to be gradually withdrawn from the air outlet channel 26 through the fixing part 62 and the mounting column 63. When the sealing arc plate 64 is partially withdrawn, the air outlet channel 26 only discharges air through the gap between the sealing arc plate 64 and the inner wall of the channel, and the air outlet volume is small. When the air intake of the equipment increases or the speed of the rotating shaft 2 53 increases, the vibration frequency of the flexible rubber block 58 is accelerated, and the rising amplitude of the push rod 514 increases. The sealing arc plate 64 is further withdrawn or even completely separated from the air outlet channel 26. At this time, the air outlet channel 26 is fully open and the air outlet volume is significantly increased.

[0050] The wiring diagram of the air-conditioning main body 1, the ultraviolet lamp 24 and the fan 41 in the present invention is common knowledge in the field, and its working principle is a well-known technology. The model is selected according to the actual use, so the control method and wiring arrangement of the air-conditioning main body 1, the ultraviolet lamp 24 and the fan 41 are no longer explained in detail.

[0051] Although the present invention has been described in detail with reference to the aforementioned embodiments, it is still possible for those skilled in the art to modify the technical solutions described in the aforementioned embodiments, or to make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. An air filter device for industrial air conditioning, characterized in that: include: Air conditioner main body (1), mounting assembly (2), two high-efficiency filter assemblies (3), transmission assembly (4), six propulsion assemblies (5) and two exhaust assemblies (6); The installation component (2) comprises: Two baffles (22) and two sets of one-way valves (25), wherein a set of one-way valves (23) is fixedly inserted inside the two baffles (22) for conveying part of the gas for diversion and filtration; The pushing component (5) comprises: A water cylinder (54), a flexible rubber block (58) and a buoyancy block (513), wherein the inner surface wall of the water cylinder (54) is provided with a connection groove (57), the edge of the flexible rubber block (58) is adhered to one side of the inner wall of the connection groove (57), and when the flexible rubber block (58) is pulled, the water generates waves of different heights according to the pulling frequency, the outer surface wall of the buoyancy block (513) is movably inserted into the interior of the water cylinder (54), a group of push rods (514) are adhered to the top of the buoyancy block (513), and three mounting holes (55) are provided on the top of the water cylinder (54). The buoyancy block (513) always floats on the water surface due to buoyancy, and the ups and downs of the waves push the buoyancy block (513) to reciprocate up and down, and the push rod (514) connected to the top of the buoyancy block (513) slides in the mounting hole (55); The exhaust assembly (6) comprises: Three fixed bases (61) and three mounting columns (63), the bottoms of the three fixed bases (61) are fixedly mounted with fixing members (62), the three mounting columns (63) are fixedly mounted on the bottoms of the fixing members (62), and a sealing arc plate (64) is fixedly mounted between the bottoms of the three mounting columns (63), and after the sealing arc plate (64) rises, the preliminarily filtered air is discharged.

2. The air filter device for industrial air conditioning according to claim 1, characterized in that: Two mounting assemblies (2) are fixedly mounted on the top of the air conditioner main body (1); a protective cover (21) is fixedly sleeved between the outer surfaces of the two baffles (22); two ultraviolet lamps (24) are arranged between the inner surfaces of the protective cover (21); two groups of one-way valves (25) are fixedly inserted at the bottom of the protective cover (21); two air outlet channels (26) are provided at the bottom of the protective cover (21); two groups of mounting grooves (27) are provided on one side of the inner wall of the protective cover (21); and permanent magnets (28) are fixedly inserted into the inner surfaces of the two groups of mounting grooves (27).

3. The air filter device for industrial air conditioning according to claim 2, characterized in that: Two high-efficiency filter assemblies (3) are movably inserted into the interior of the mounting assembly (2), and the high-efficiency filter assembly (3) includes a mounting frame (31). The outer wall of the mounting frame (31) is movably inserted into the interior of the protective cover (21), and a handle (32) is adhered to one side of the outer wall of the mounting frame (31). The outer wall of the mounting frame (31) is provided with two groups of threaded holes (33), and the inner walls of the two groups of threaded holes (33) are both threadedly connected to fixing bolts (34), and the outer walls of the two groups of fixing bolts (34) are both threadedly connected to a connecting base (35).

4. The air filter device for industrial air conditioning according to claim 3, characterized in that: A medium-efficiency filter (36) is fixedly mounted on one side of the outer wall of one of the two connecting bases (35), an activated carbon adsorption net (37) is fixedly mounted on one side of the outer wall of the other of the two connecting bases (35), a high-efficiency filter (38) is fixedly mounted on one side of the outer wall of the mounting frame (31), and a second permanent magnet (39) is fixedly mounted on one side of the outer walls of the medium-efficiency filter (36), the activated carbon adsorption net (37) and the high-efficiency filter (38). The outer walls of the medium-efficiency filter (36), the activated carbon adsorption net (37) and the high-efficiency filter (38) are all movably inserted into the interior of the mounting groove (27), and the outer walls of the three second permanent magnets (39) are all connected to the outer wall of the first permanent magnet (28) through magnetic force.

5. The air filter device for industrial air conditioning according to claim 4, characterized in that: A transmission assembly (4) is fixedly inserted into the interior of the mounting assembly (2), and the transmission assembly (4) includes a fan (41). The outer wall of the fan (41) is fixedly inserted into the interior of the protective cover (21), and the output end of the fan (41) is connected to a transmission shaft (42). The outer wall of the transmission shaft (42) is movably sleeved with a primary filter (43), a photocatalyst filter (44), and a driving gear (45).

6. The air filter device for industrial air conditioning according to claim 5, characterized in that: The outer walls of the primary filter (43) and the photocatalyst filter (44) are fixedly inserted inside the protective cover (21), and the outer wall of the driving gear (45) is meshedly connected with six driven gears (46), and a rotating shaft (47) is fixedly inserted inside each of the six driven gears (46).

7. The air filter device for industrial air conditioning according to claim 6, characterized in that: The outer wall of the transmission assembly (4) is fixedly sleeved with a plurality of push assemblies (5), the top of the inner wall of the protective cover (21) is fixedly connected to the bottom of the water cylinder (54), the interior of the water cylinder (54) is movably inserted with a second rotating shaft (53), the outer wall of the second rotating shaft (53) is sleeved with a reduction gear group (52) and a sealing cover (51), the bottom of the reduction gear group (52) is fixedly mounted on the top of the water cylinder (54), the bottom of the sealing cover (51) is fixedly mounted on the top of the reduction gear group (52), the outer wall of the first rotating shaft (47) is inserted into the interior of the reduction gear group (52) and the sealing cover (51), and the bottom of the second rotating shaft (53) is fixedly mounted with a rotating top seat (56).

8. The air filter device for industrial air conditioning according to claim 7, characterized in that: The inner surface wall of the flexible rubber block (58) is provided with two ear blocks (59), a connecting arm (510) is movably inserted between the inner surface walls of the two ear blocks (59), a connecting rod (511) is movably inserted between the inner surface walls of the two connecting arms (510), the top of the connecting rod (511) is fixedly connected to the bottom of the rotating top seat (56), a rotating base (512) is fixedly installed on the bottom of the connecting rod (511), and the outer surface wall of the rotating base (512) is movably inserted inside the water cylinder (54).

9. The air filter device for industrial air conditioning according to claim 8, characterized in that: The outer walls of the three push rods (514) are all fixedly sleeved with sealing rings (515), the outer walls of the three push rods (514) are all movably inserted into the interior of the mounting hole (55), the outer walls of the three sealing rings (515) are all fixedly inserted into the interior of the mounting hole (55), four one-way valves (3) (516) and one-way valves (4) (517) are all fixedly inserted into the interior of the three sealing rings (515), the three push rods (514) are all fixedly installed with springs (518), and the bottoms of the three springs (518) are fixedly connected to the top of the water cylinder (54).

10. The air filter device for industrial air conditioning according to claim 9, characterized in that: Two exhaust assemblies (6) are fixedly sleeved between the outer walls of the plurality of push assemblies (5), a push rod (514) is fixedly inserted into the interior of each of the three fixed bases (61), and the outer walls of the sealing arc plate (64) are movably inserted into the interior of the air outlet channel (26).

Citation Information

Patent Citations

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