An AMC water wash humidifier and method of use thereof

By combining three rows of oscillating and blowing wide-angle nozzles with an interlaced labyrinthine wet film packing, the problems of high wind resistance and insufficient purification in AMC water-washing humidifiers are solved, achieving efficient humidification and wastewater recycling, and improving air cleanliness and energy saving and emission reduction effects.

CN121474659BActive Publication Date: 2026-03-31ZHONGJING AIR SYST (SUZHOU) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2026-01-07
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing AMC water-washing humidifiers suffer from problems such as excessive wind resistance, insufficient humidification and purification during the air humidification and purification process, and the wastewater cannot be effectively recycled, resulting in poor energy-saving and emission-reduction effects.

Method used

The system employs a wide-angle nozzle that combines three rows of oscillating and blowing for prolonged humidification, and uses an interlaced labyrinthine wet film packing to extend the mixing time between air and water mist. Combined with a recovery component, the system purifies and recycles wastewater.

Benefits of technology

It reduces air intake resistance, improves air humidification and purification efficiency, and enables wastewater recycling, thus saving energy and reducing emissions.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses an AMC water washing humidifier and a use method thereof, relates to the technical field of humidifiers, and discloses the AMC water washing humidifier which comprises a frame and a mounting base, a water tank is fixed on the frame, the frame and the water tank are reinforced and protected by an external armor frame, and a side cover is fixed to the outer side of the frame; a water distribution assembly for water supply and drainage of clean water in the water tank is arranged on the mounting base and comprises a clean water chamber arranged in the lower layer of the water tank; an atomization assembly for air humidification is arranged on the air inlet of the frame and comprises a reciprocating electric push rod embedded in the top of the frame; a washing assembly for humidified air purification is arranged in the frame and comprises AMC washing filler which slides in the frame; and a recycling assembly matched with the water distribution assembly is arranged on the upper layer of the water tank. The wide-angle nozzle combining three rows of swinging and blowing is adopted to perform long-time humidification treatment on air and water mist, and waste water is reused, thereby achieving the energy-saving and emission-reducing effects.
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Description

Technical Field

[0001] This invention relates to the field of humidifier technology, and in particular to an AMC water-washable humidifier and its usage method. Background Technology

[0002] In semiconductor processing workshops, based on the characteristics and requirements of semiconductor processing, the humidity of the air in the processing workshop needs to meet the standards. Therefore, water-washing humidifiers are installed in the processing workshop to force the air humidity in the processing workshop to meet the requirements of the semiconductor processing environment through water mist humidification.

[0003] During the use of water-washing humidifiers, traditional humidifiers basically adopt a structure of air distribution plate + double-row spray + washing filler + water baffle to humidify the air. This method not only leads to excessively high wind resistance at the air inlet of the water-washing humidifier and insufficient air intake, but also easily causes the air to flow too fast through the filler area, resulting in insufficient humidification and purification of the air. Summary of the Invention

[0004] The purpose of this section is to outline some aspects of embodiments of the present invention and to briefly describe some preferred embodiments. Simplifications or omissions may be made in this section, as well as in the abstract and title of this application, to avoid obscuring the purpose of these documents; however, such simplifications or omissions should not be construed as limiting the scope of the invention.

[0005] In view of the problems existing in the above and / or existing AMC water-washing humidifiers and their usage methods, the present invention is proposed.

[0006] Therefore, the problem to be solved by this invention is how to solve the problem of long-term humidification of air and water mist by using a wide-angle nozzle that combines three rows of oscillation and blowing, and the problem of wastewater not being reused, thus failing to achieve energy conservation and emission reduction.

[0007] To solve the above-mentioned technical problems, the present invention provides the following technical solution: an AMC water-washing humidifier, comprising a frame and a mounting base, wherein a water tank is fixed on the frame and the frame and water tank are reinforced and protected by an external armor frame, and a side cover is fixed on the outside of the frame; and, a water distribution component for supplying and discharging clean water in the water tank is provided on the mounting base, and includes a clean water chamber opened in the lower layer of the water tank, and an atomizing component for air humidification is provided at the air inlet of the frame, and includes a reciprocating electric push rod embedded in the top of the frame; and a washing component for humidifying and purifying air is provided inside the frame, including AMC washing packing material sliding in the frame, and a recycling component for use in conjunction with the water distribution component is provided on the upper layer of the water tank, including a wastewater chamber opened in the upper layer of the water tank, which is not interconnected with the clean water chamber.

[0008] As a preferred embodiment of the AMC water-washing humidifier and its usage method described in this invention, the water distribution assembly further includes a water inlet pipe connected to the water inlet of the clean water chamber, and a vertical multi-stage circulation pump fixed to the mounting base connected to the outer end of the water inlet pipe. The drain outlet of the vertical multi-stage circulation pump is connected to a manifold frame, and a filter fixed to the mounting base is connected to the drain outlet of the manifold frame. A water supply pipe is connected to the drain outlet of the filter and is connected to the clean water chamber.

[0009] As a preferred embodiment of the AMC water-washing humidifier and its usage method described in this invention, a UV lamp sterilizer is provided on the water supply pipe between the filter and the water purification chamber, and the drain outlet of the water supply pipe is connected to a water distribution pipe frame embedded in the middle of the water tank, and the connection end of the vertical multi-stage circulation pump and the manifold frame is provided with a clamp with a sealing ring.

[0010] As a preferred embodiment of the AMC water-washing humidifier and its usage method described in this invention, the atomizing component further includes a pusher frame fixed on a reciprocating electric pusher piston rod, and rack plates are fixedly arranged in an array at equal intervals on the pusher frame, with three rows of sector gears meshing on the three rack plates, and a spray pipe embedded in the three rows of sector gears.

[0011] As a preferred embodiment of the AMC water-washing humidifier and its usage method described in this invention, wherein: the three rows of spray pipes are arrayed with nozzles at equal intervals, and the three rows of spray pipes are fixed with turbulence vanes that are staggered with the nozzles, and adopt a wide-angle spray nozzle design, and the bottom end of the three rows of spray pipes is connected to a connecting end, and the three connecting ends are rotatably connected to a water distribution pipe frame, and are in an interconnected state.

[0012] As a preferred embodiment of the AMC water-washing humidifier and its usage method described in this invention, the washing assembly further includes cams sleeved on a row of spray pipes and connecting ends near the AMC washing filler, and connecting seats with fixed rollers sliding on the three sets of cams and fixed to the AMC washing filler. The AMC washing filler is composed of a wet film, and the wet film at the outer end of the AMC washing filler is designed as a single piece, while the wet film at the inner end is staggered and forms a maze pattern.

[0013] As a preferred embodiment of the AMC water washing humidifier and its usage method described in this invention, the wet film inside the AMC washing filler adopts a W-shaped design and has a sliding groove opened near the side cover of the frame. A sliding sleeve that slides with the sliding groove is fixed on the outside of the AMC washing filler, and a smooth rod fixed to the frame slides in the sliding sleeve. A compression spring is sleeved on the outside of the smooth rod. A grid groove communicating with the sewage chamber is opened on the side of the frame near the water tank.

[0014] As a preferred embodiment of the AMC water washing humidifier and its usage method described in this invention, the recovery component further includes a fixed filter plate horizontally placed in the sewage chamber, and a return pipe connected to the manifold frame on the outer side of the water tank near the sewage chamber. A guide rail groove is provided on the side of the frame near the sewage chamber, and a guide rail seat fixed to the AMC washing packing is slidably placed therein. A moving filter plate with a turbulence impeller and scraper is fixed at the bottom of the two sets of guide rail seats and slides in close contact with the fixed filter plate. A baffle plate with a flow equalization hole is fixed at the exhaust port of the frame and adopts a wave-shaped design.

[0015] As a preferred embodiment of the AMC water-washing humidifier and its usage method described in this invention, wherein: an L-shaped slide rail with positioning screw holes is horizontally placed on the outer side of the armored frame near the water tank, and U-shaped slide blocks slide on the two L-shaped slide rails, and positioning screws matching the positioning screw holes are threadedly connected to the two sets of U-shaped slide blocks, and mounting plates are fixed at the bottom of the two sets of U-shaped slide blocks, and mounting beams are threadedly fixed to the inner side of the two sets of mounting plates by anti-loosening bolts.

[0016] A method of using an AMC water-washing humidifier, based on the aforementioned AMC water-washing humidifier, includes the following steps: Step 1: First, control the vertical multi-stage circulation pump to start and supply purified water from the lower purification chamber of the water tank into the manifold through the water inlet pipe. Then, after being filtered and sterilized by the filter and UV lamp sterilizer in sequence, the purified water is pressurized through the water supply pipe and supplied into the water distribution pipe rack. The purified water supplied into the water distribution pipe rack passes through the three-row connecting end and the rotating end in sequence to the nozzles on the three-row spray pipes, and the purified water is pressurized and sprayed to form water mist, thereby humidifying the air.

[0017] Step 2: The reciprocating electric push rod is opened synchronously and drives the three rack plates to push back and forth through the push frame. The three rack plates drive the nozzles on the three rows of sector gears to swing back and forth, and drive the nozzles on them to swing in frequency and angle, and also drive the three sets of turbulence blades to follow the movement.

[0018] Step 3: The three rows of nozzles are forced to spray water mist in a swinging wide-angle manner. The three rows of turbulence blades, which move in sync, carry the water mist sprayed from the three rows of nozzles forward and blow it to the AMC washing packing area for washing. The wet film with an interlaced labyrinth design inside the AMC washing packing extends the discharge time of the humidified air.

[0019] Step 4: After the air is fully mixed with moisture to purify the water-soluble harmful substances in the air, the humidified and purified air is discharged to the site through the equalization holes on the baffle plate. At the same time, the three nozzles in the innermost row drive the AMC washing packing on the three sets of connecting seats to push back and forth through the three sets of cams, forcing the water droplets suspended on the wet film inside the AMC washing packing to fall into the sewage chamber.

[0020] Step 5: During this period, the wastewater dripping from the three rows of nozzles and the wastewater dynamically falling off the wet film are initially filtered by the bar screen and then flow into the sewage chamber. At the same time, the AMC washing packing material pushed back and forth drives the turbulence impeller and scraper on the moving filter plate to move synchronously through the guide rail seat. The moving filter plate, which moves back and forth, works in conjunction with the fixed filter plate to perform secondary filtration of the wastewater in the sewage chamber.

[0021] Step Six: The impeller on the filter is forced to mix the wastewater and pre-added purifying agent in the sewage chamber under the impact of the water flow, and the wastewater undergoes a purification reaction. Then, the scraper removes the impurities attached to the fixed filter plate. The purified wastewater is then discharged into the manifold through the return pipe. After being filtered and sterilized by the filter and UV lamp sterilizer in sequence, it is pressurized through the water supply pipe and supplied into the water distribution pipe rack to provide a circulating water supply for the nozzles on the three rows of spray pipes.

[0022] The beneficial effects of this invention are as follows: First, the purified water in the purification chamber is pressurized, filtered, and sterilized through the water distribution component and the atomization component. Then, the air and water mist are humidified for a long time by the wide-angle nozzles that combine three rows of oscillating and blowing. Compared with the traditional structure of a wind distribution plate + double-row spray + washing filler + baffle plate with large particles and small angle nozzles, the wind distribution plate is eliminated and replaced with a three-row spray + washing filler + three-row spray + baffle plate with small diameter and wide angle nozzles. This reduces the wind resistance at the air inlet, resulting in better, stronger and faster humidification.

[0023] Furthermore, by using a washing and recycling component, an interlaced labyrinthine wet film packing material is adopted to replace the traditional stainless steel wire mesh packing material. This extends the mixing time between air and water mist, forcing the water mist to purify water-soluble harmful substances in the air for a longer period of time while meeting the demand for sufficient air humidification. This improves the cleanliness of the air at the humidification site, while also preventing water from clogging the wet film packing material. It also facilitates the rapid discharge of humidifying water mist and the recycling of wastewater generated by spraying, thus saving energy and reducing emissions. Attached Figure Description

[0024] To more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings used in the following description of the embodiments will be briefly introduced. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0025] Figure 1 This is a scene illustration of an AMC water-washable humidifier.

[0026] Figure 2 This is a partial rear view of the AMC water-washable humidifier.

[0027] Figure 3This is a partial side view of the AMC water-washable humidifier.

[0028] Figure 4 An exploded view of the water distribution and atomizing components of the AMC water-washable humidifier.

[0029] Figure 5 This is a partial exploded view of the water distribution assembly and atomizing assembly of the AMC water-washable humidifier.

[0030] Figure 6 This is a front view of the nozzle of an AMC water-washable humidifier.

[0031] Figure 7 An exploded view of the atomizing and washing components of the AMC water-washable humidifier.

[0032] Figure 8 A partial exploded view of the washing and recycling components of the AMC water-washing humidifier.

[0033] Figure 9 An exploded view of the recycling components of the AMC water-washing humidifier.

[0034] Figure 10 This is a partial exploded view of the water distribution assembly of the AMC water-washing humidifier.

[0035] Figure 11 This is a partial exploded side view of the AMC water-washable humidifier.

[0036] In the diagram: 1. Frame; 2. Armored frame; 3. Water tank; 4. Side cover; 5. Mounting base; 61. Clean water chamber; 62. Water inlet pipe; 63. Vertical multistage circulating pump; 64. Manifold rack; 65. Filter; 66. Water delivery pipe; 67. UV lamp sterilizer; 68. Water distribution pipe rack; 71. Reciprocating electric actuator; 72. Pusher frame; 73. Rack plate; 74. Sector gear; 75. Spray pipe; 76. Nozzle; 77. Baffle vane; 81. Cam; 82. Connecting seat; 83. AMC washing filler; 84. 85. Wet film; 86. Sliding sleeve; 87. Polished rod; 98. Compression spring; 99. Wastewater chamber; 90. Fixed filter plate; 91. Return pipe; 92. Guide rail seat; 93. Moving filter plate; 94. Turbulent impeller; 95. Scraper; 10. Clamp; 11. Sealing ring; 12. Slide groove; 13. Connecting end; 14. Rotating end; 15. Grille groove; 16. Guide rail groove; 17. Water baffle; 18. L-shaped slide rail; 19. U-shaped slide seat; 20. Positioning screw; 21. Mounting plate; 22. Mounting beam; 23. Anti-loosening bolt. Detailed Implementation

[0037] To make the above-mentioned objects, features and advantages of the present invention more apparent and understandable, the specific embodiments of the present invention will be described in detail below with reference to the accompanying drawings.

[0038] Many specific details are set forth in the following description in order to provide a full understanding of the invention. However, the invention may also be practiced in other ways different from those described herein, and those skilled in the art can make similar extensions without departing from the spirit of the invention. Therefore, the invention is not limited to the specific embodiments disclosed below.

[0039] Secondly, the term "one embodiment" or "embodiment" as used herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The phrase "in one embodiment" appearing in different places in this specification does not necessarily refer to the same embodiment, nor is it a single or selective embodiment that is mutually exclusive with other embodiments.

[0040] Example 1, referring to Figures 1 to 11 This is the first embodiment of the present invention. This embodiment provides an AMC water-washing humidifier, including a frame 1 and a mounting base 5. A water tank 3 is fixed on the frame 1. The rear side of the water tank 3 is provided with plugs for the water inlet and the drain outlet. A liquid level sensor is embedded on the outer side of the water tank 3 near the clean water chamber 61 and the wastewater chamber 91 for monitoring the water level changes in the clean water chamber 61 and the wastewater chamber 91. The frame 1 and the water tank 3 are reinforced and protected by an external armor frame 2. A side cover 4 is fixed on the outer side of the frame 1. A PLC control cabinet is fixed on the mounting base 5 through a platform. A side door with an observation window is provided on the side of the frame 1 near the mounting base 5 to facilitate regular maintenance of the internal components of the frame 1.

[0041] Furthermore, the mounting base 5 is equipped with a water distribution assembly for supplying and discharging purified water into the water tank 3, including a purified water chamber 61 located in the lower layer of the water tank 3, and a water inlet pipe 62 connected to the water inlet of the purified water chamber 61. A vertical multi-stage circulation pump 63 fixed to the mounting base 5 is connected to the outer end of the water inlet pipe 62. The vertical multi-stage circulation pump 63 is used to pressurize and transport the purified water in the purified water chamber 61. The drain outlet of the vertical multi-stage circulation pump 63 is connected to a manifold 64 with a pressure gauge to display the water pressure reaching the manifold 64. A filter 65 fixed to the mounting base 5 is connected to the drain outlet of the manifold 64, and a water supply pipe 66 is connected to the drain outlet of the filter 65 and connected to the purified water chamber 61. The filter 65 then filters the purified water during transportation to keep the water source clean and prevent air pollution during humidification.

[0042] Specifically, a UV lamp sterilizer 67 is installed on the water supply pipe 66 between the filter 65 and the water purification chamber 61 to sterilize the purified water after it has been filtered by the filter 65. This prevents bacteria-laden purified water from adhering to and multiplying with the packing material for an extended period after humidification, thereby further improving the cleanliness of the purified water. The drain outlet of the water supply pipe 66 is connected to a water distribution pipe frame 68 embedded in the middle of the water tank 3. The connection end between the vertical multistage circulation pump 63 and the manifold frame 64 is equipped with a clamp 10 with a sealing ring 11. This not only ensures a sealed connection between the vertical multistage circulation pump 63 and the manifold frame 64, but also facilitates quick assembly and disassembly using the clamp 10, replacing the cumbersome assembly and disassembly steps of traditional multiple bolts.

[0043] Specifically, the air inlet of frame 1 is equipped with an atomizing component for air humidification, and includes a reciprocating electric push rod 71 embedded in the top of frame 1, and a pusher frame 72 fixed on the piston rod of the reciprocating electric push rod 71. The pusher frame 72 has a guide rail fixed to frame 1 that slides on it, which limits the sliding of the pusher frame 72 as it moves back and forth, thus improving its displacement stability. The pusher frame 72 is also equipped with rack plates 73 that are fixed at equal intervals in an array, and three rows of sector gears 74 mesh on the three rack plates 73. The three rows of sector gears 74 are embedded with nozzles 75. The three pusher frames 72 drive the nozzles 75 in the three rows of sector gears 74 to swing at an angle.

[0044] The three rows of nozzles 75 are connected to the nozzles 76 at equal intervals and adopt a wide-angle spray design, replacing the traditional large-particle and small-angle nozzle design. At the same time, the three rows of nozzles 75 drive the three rows of nozzles 76 to adopt a wide-angle swinging method, so that the water mist can fully mix and contact with the air, expanding the coverage area of ​​the water mist. Furthermore, the three rows of nozzles 75 are fixed with baffles 77 that are staggered with the nozzles 76. The baffles 77 swing synchronously with the three rows of nozzles 75, which blow the water mist sprayed from the wide-angle nozzles 76 more quickly, so as to prevent the air and water mist from being delayed, resulting in a good humidification effect. The bottom of the three rows of nozzles 75 is connected to the connecting end 13, and the three rows of connecting end 13 are connected to the rotating end 14 that is connected to the water distribution pipe frame 68. They are in an interconnected state, which not only meets the continuous water supply needs of the three rows of nozzles 75, but also realizes the angle swinging effect of the three rows of nozzles 75.

[0045] Example 2, refer to Figures 7-9 This is the second embodiment of the present invention, which is based on the previous embodiment.

[0046] Specifically, the frame 1 is equipped with a washing component for humidifying and purifying air, including an AMC washing filler 83 that slides within the frame 1, and cams 81 fitted onto a row of nozzles 75 near the AMC washing filler 83 and the connecting end 13. Connecting seats 82 with fixed rollers slide on the three sets of cams 81 and are fixed to the AMC washing filler 83. The three innermost nozzles 75 drive the AMC washing filler 83 on the three sets of connecting seats 82 to push back and forth through the three sets of cams 81, dynamically dropping the water droplets condensed on the wet film 84 inside the AMC washing filler 83 to prevent water from hanging and to facilitate the effective entry of air into the AMC washing filler 83 for humidification.

[0047] Furthermore, the AMC washing packing 83 is composed of a wet membrane 84. The wet membrane 84, moistened by water mist, performs water-soluble filtration of harmful gaseous molecular pollutants such as sulfate ions, ammonium ions, chloride ions, and nitrate ions, improving the cleanliness of the humidified air. The outer wet membrane 84 of the AMC washing packing 83 is designed as a single piece, while the inner wet membrane 84 is staggered and forms a maze pattern. This allows the water mist entrained in the air to stay within the staggered maze-like wet membrane 84 for a longer period, extending the humidification time and making the humidification effect better and more complete. At the same time, it also fully filters and absorbs harmful substances dissolved in water in the air. Compared with traditional stainless steel wire mesh packing, the AMC washing packing 83 with wet membrane 84 is less prone to deformation under stress, resulting in better humidification and purification effects.

[0048] Specifically, the wet membrane 84 inside the AMC washing packing 83 adopts a W-shaped design to expand the contact area between air and water mist, prolong their mixing time, and further enhance the humidification effect of the air. A sliding groove 12 is opened on the frame 1 near the side cover 4, and a sliding sleeve 85 that slides with the sliding groove 12 is fixed on the outside of the AMC washing packing 83. A smooth rod 86 fixed to the frame 1 slides in the sliding sleeve 85, and a compression spring 87 is sleeved on the outside of the smooth rod 86. The sliding sleeve 85, the smooth rod 86 and the compression spring 87 play an elastic buffering and energy storage and reset role for the back-and-forth pushing of the AMC washing packing 83. A grid groove 15 connected to the sewage chamber 91 is opened on the side of the frame 1 near the water tank 3, so that the wastewater that falls from the three rows of nozzles 76 onto the wet membrane 84 can be pre-filtered by the grid groove 15 and then collected into the sewage chamber 91 for recycling.

[0049] Specifically, the upper layer of the water tank 3 is equipped with a recycling component that works in conjunction with the water distribution component. It includes a wastewater chamber 91 located on the upper layer of the water tank 3, which is not interconnected with the clean water chamber 61. It also includes a fixed filter plate 92 placed horizontally in the wastewater chamber 91 to filter the wastewater that accumulates in the wastewater chamber 91. A return pipe 93 connected to the manifold 64 is located on the outer side of the water tank 3 near the wastewater chamber 91, so that the filtered and purified wastewater flows into the manifold 64 through the return pipe 93 for recycling.

[0050] A guide rail groove 16 is provided on the side of the frame 1 near the sewage chamber 91, and a guide rail seat 94 fixed to the AMC washing packing 83 slides in it. The bottom of the two sets of guide rail seats 94 is fixed with a moving filter plate 95 with a turbulence impeller 96 and a scraper 97, and slides in close contact with the fixed filter plate 92. The AMC washing packing 83 pushed back and forth drives the moving filter plate 95 and the turbulence impeller 96 and scraper 97 on it to move through the guide rail seat 94. The scraper 97 scrapes off the impurities attached to the fixed filter plate 92. The turbulence impeller 96 rotates under the impact of water flow, turbulently mixing the wastewater in the sewage chamber 91 with the pre-added purification agent, so that a purification reaction occurs. After the wastewater is filtered in two stages by the moving filter plate 95 and the fixed filter plate 92, the wastewater clear liquid is obtained.

[0051] Furthermore, the exhaust port of frame 1 is fixed with a baffle plate 17 with flow equalization holes and adopts a wave-shaped design to increase the contact area between the humidified air and the baffle plate 17, so that the humidified air is discharged more evenly to prevent turbulence. At the same time, it also expands the discharge angle range of the humidified air, so that the humidified air is distributed over a larger area and a wider range on site.

[0052] Example 3, referring to Figures 10-11 This is the third embodiment of the present invention, which is based on the first two embodiments.

[0053] Specifically, the armor frame 2 has an L-shaped slide rail 18 with positioning screw holes horizontally placed on the outer side near the water tank 3, and U-shaped slide blocks 19 slide on the two L-shaped slide rails 18. The two sets of U-shaped slide blocks 19 are threaded with positioning screws 20 that match the positioning screw holes. According to the design of the installation pit, the two sets of U-shaped slide blocks 19 first slide back and forth on the L-shaped slide rails 18 for adjustment. After the two sets of U-shaped slide blocks 19 have slid into place, the positioning screws 20 are screwed to position them.

[0054] Mounting plates 21 are fixed to the bottom of the two sets of U-shaped slides 19, and mounting beams 22 are threadedly fixed to the inner side of the two sets of mounting plates 21 by anti-loosening bolts 23. After the mounting plates 21 slide back and forth with the two sets of U-shaped slides 19 reach the two mounting beams 22, the two sets of mounting plates 21 and mounting beams 22 are screwed and fixed by anti-loosening bolts 23 to complete the installation of the water washing humidifier and the pit. It is suitable for different pit installation scenarios, without the need for additional pit modification, and is flexible and quick.

[0055] Working principle, a method of using an AMC water-washing humidifier, includes the following steps: Step 1: First, control the vertical multi-stage circulation pump 63 to start and supply the purified water in the lower purification chamber 61 of the water tank 3 into the manifold rack 64 through the water inlet pipe 62. Then, after being filtered and sterilized by the filter 65 and the UV lamp sterilizer 67, the purified water is pressurized through the water supply pipe 66 and supplied into the water distribution rack 68. The purified water supplied into the water distribution rack 68 passes through the three-row connecting end 13 and the rotating end 14 to the nozzles 76 on the three-row spray pipes 75, and the purified water is pressurized and sprayed to form water mist, which humidifies the air.

[0056] Step 2: The reciprocating electric push rod 71 is opened synchronously and drives the three rack plates 73 to push back and forth through the push frame 72. The three rack plates 73 drive the nozzles 75 on the three rows of sector gears 74 to swing back and forth, and drive the nozzles 76 on them to swing in frequency and angle, and also drive the three sets of turbulence vanes 77 to follow the movement.

[0057] Step 3: The three rows of nozzles 76 are forced to spray water mist in a swinging wide-angle manner, and the three rows of turbulence vanes 77, which move in sync, carry the water mist sprayed by the three rows of nozzles 76 forward and blow it to the AMC washing packing 83 area for washing. The wet film 84 with an interlaced labyrinth design inside the AMC washing packing 83 extends the exhaust time of the humidified air.

[0058] Step 4: After the air is fully mixed with moisture to purify the water-soluble harmful substances in the air, the humidified and purified air is discharged to the site through the equalization holes on the baffle plate 17. At the same time, the three nozzles 75 in the innermost row drive the AMC washing packing 83 on the three sets of connecting seats 82 to push back and forth through the three sets of cams 81, forcing the water droplets suspended on the wet film 84 inside the AMC washing packing 83 to fall into the sewage chamber 91.

[0059] During the back-and-forth pushing of the AMC washing filler 83 on the three sets of connecting seats 82 driven by the three sets of cams 81, the sliding sleeve 85 is simultaneously driven to slide back and forth on the smooth rod 86, and the compression spring 87 on it is compressed at a frequency. The compression spring 87 elastically buffers the AMC washing filler 83 through the sliding sleeve 85 and stores its energy. The released spring 87 elastically resets the AMC washing filler 83 through the sliding sleeve 85. In this way, the sliding limit and reset compensation of the AMC washing filler 83 that moves back and forth are achieved.

[0060] Step 5: During this period, the wastewater dripping from the three rows of nozzles 76 and the wastewater dynamically falling off the wet membrane 84 are initially filtered by the grid channel 15 and then flow into the sewage chamber 91. At the same time, the AMC washing packing material 83, which is pushed back and forth, drives the turbulence impeller 96 and scraper 97 on the moving filter plate 95 to move synchronously through the guide rail seat 94. The moving filter plate 95, which moves back and forth, works in conjunction with the fixed filter plate 92 to perform secondary filtration of the wastewater in the sewage chamber 91.

[0061] Step Six: The impeller 96 on the impeller is forced to mix the wastewater and pre-added purifying agent in the sewage chamber 91 under the impact of the water flow, and the wastewater is purified. Then, the scraper 97 scrapes the impurities attached to the fixed filter plate 92 back and forth. The purified wastewater is discharged into the manifold 64 through the return pipe 93. After being filtered and sterilized by the filter 65 and the UV lamp sterilizer 67, it is pressurized through the water supply pipe 66 and supplied into the water distribution pipe rack 68 to provide a circulating water supply for the nozzles 76 on the three rows of spray pipes 75.

[0062] Step 7: According to the requirements of the pit at the installation site, slide the two sets of U-shaped slide blocks 19 inward and outward on the two sets of L-shaped slide rails 18 until the two sets of L-shaped slide rails 18 drive the two sets of mounting plates 21 to the installation position of the two mounting beams 22 in the pit. First, tighten the positioning screws 20 to position the two sets of U-shaped slide blocks 19 that have slid into place. Then, tighten the anti-loosening bolts 23 to fix the mounting plates 21 and the mounting beams 22, thus completing the quick installation work between the frame 1 protected by the armored frame 2 and the pit.

[0063] 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 it. Although the present invention has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of the present invention without departing from the spirit and scope of the technical solutions of the present invention, and all such modifications or substitutions should be covered within the scope of the claims of the present invention.

Claims

1. An AMC wash humidifier characterised in that: Including frame (1) and mounting seat (5), the frame (1) is fixed with water tank (3), and the frame (1) and water tank (3) are strengthened and protected by external armor frame (2), and the outer side of frame (1) is fixed with side cover (4); And, the mounting seat (5) is provided with water distribution assembly for water supply and drainage of clean water in the water tank (3), and includes clean water chamber (61) opened in the lower layer of water tank (3), and the air inlet of frame (1) is provided with atomization assembly for air humidification, and includes reciprocating electric push rod (71) embedded in the top of frame (1), the atomization assembly further includes push frame (72) fixed on the piston rod of reciprocating electric push rod (71), and rack plate (73) is fixed on push frame (72) in array, three rack plates (73) are engaged with three rows of sector gears (74), and three rows of sector gears (74) are embedded with spray pipes (75), three rows of spray pipes (75) are communicated with spray heads (76) in array, three rows of spray pipes (75) are fixed with turbulence blades (77) staggered with spray heads (76), and wide-angle spray port design is adopted, and the bottom end of three rows of spray pipes (75) is communicated with communication end (13); And, the frame (1) is provided with washing assembly for humidifying and purifying air, and includes AMC washing filler (83) sliding in the frame (1), the washing assembly further includes cam (81) sleeved on one row of spray pipes (75) and communication end (13) close to AMC washing filler (83), three groups of cams (81) are slidingly provided with link seats (82) with fixed rollers, and are fixed with AMC washing filler (83), and AMC washing filler (83) is composed of wet film (84), the wet film (84) at the outer end of AMC washing filler (83) adopts integral design, the wet film (84) at the inner end of AMC washing filler (83) adopts staggered distribution and forms a labyrinth pattern, the wet film (84) in the AMC washing filler (83) adopts W-shaped design, and the slide groove (12) is opened in the frame (1) close to side cover (4), the outer side of AMC washing filler (83) is fixed with sliding sleeve (85) sliding with slide groove (12), the sliding sleeve (85) is slidingly provided with light rod (86) fixed with frame (1), and compression spring (87) is sleeved on the outer side of light rod (86), and the side of frame (1) close to water tank (3) is provided with grating groove (15) communicated with sewage chamber (91), and the upper layer of water tank (3) is provided with recovery assembly used in conjunction with water distribution assembly, and includes sewage chamber (91) opened in the upper layer of water tank (3), which is not communicated with clean water chamber (61).

2. The AMC wash humidifier of claim 1, wherein: The water distribution assembly further comprises a water receiving pipe (62) connected to the water receiving port of the clean water chamber (61), a vertical multi-stage circulating pump (63) fixed to the mounting base (5) and connected to the outer end of the water receiving pipe (62), a manifold frame (64) connected to the water outlet of the vertical multi-stage circulating pump (63), a filter (65) fixed to the mounting base (5) and connected to the water outlet of the manifold frame (64), and a water delivery pipe (66) connected to the water outlet of the filter (65) and connected to the clean water chamber (61).

3. The AMC wash humidifier of claim 2, wherein: A UV lamp sterilizer (67) is arranged on the water delivery pipe (66) between the filter (65) and the clean water chamber (61), the water outlet of the water delivery pipe (66) is connected to a water distribution pipe frame (68) embedded in the middle of the water tank (3), and the connecting end of the vertical multi-stage circulating pump (63) and the manifold frame (64) is provided with a clamp (10) with a sealing ring (11).

4. The AMC wash humidifier of claim 3, wherein: Three rows of the connecting end portions (13) rotate with the rotating end portions (14) connected to the water distribution pipe frame (68) and are in communication.

5. The AMC wash humidifier of claim 4, wherein: The recovery assembly further comprises a fixed filter plate (92) horizontally arranged in the sewage chamber (91), a backflow pipe (93) connected to the manifold frame (64) and arranged on the outer side of the water tank (3) close to the sewage chamber (91), a guide rail groove (16) formed on one side of the frame (1) close to the sewage chamber (91), a guide rail seat (94) fixed to the AMC washing filler (83) and slidingly arranged in the guide rail groove (16), a movable filter plate (95) fixed to the guide rail seat (94) and provided with turbulence impellers (96) and scraping strips (97), and a water baffle (17) provided with flow uniformizing holes and fixed to the air outlet of the frame (1) and designed in a wavy shape.

6. The AMC wash humidifier of claim 5, wherein: The outer side of the armored frame (2) close to the water tank (3) is horizontally provided with L-shaped sliding rails (18) provided with positioning screw holes, U-shaped sliding seats (19) slidingly arranged on the two L-shaped sliding rails (18), positioning screws (20) threadedly connected to the two groups of U-shaped sliding seats (19) and matched with the positioning screw holes, mounting plates (21) fixed to the bottom of the two groups of U-shaped sliding seats (19), and mounting beams (22) threadedly fixed to the inner sides of the two groups of mounting plates (21) by anti-coming-off bolts (23).

7. A method of using an AMC wash humidifier according to any one of the preceding claims, characterised in that: The method comprises the following steps: Step one, the vertical multi-stage circulating pump (63) supplies clean water in the clean water chamber (61) into the manifold frame (64), and then to the nozzles (76) on the three rows of spray pipes (75) to form water mist for air humidification; Step two, the reciprocating electric push rod (71) controls the three rack plates (73) to drive the spray pipes (75) and the nozzles (76) on the three rows of sector gears (74) to swing at a frequency angle; Step three, the three rows of nozzles (76) spray water mist in a swinging wide-angle, and the three rows of turbulence fins (77) synchronously move to blow the water mist to the wet film (84) in the AMC washing filler (83) area for washing and harmful substance purification. Step four, the three groups of AMC washing fillers (83) on the three groups of adapter seats (82) are driven back and forth by the three groups of cams (81) through the three nozzles (75) in the innermost row, so as to force the water droplets on the suspended wet film (84) to fall into the sewage chamber (91); Step five, the waste water flowing into the sewage chamber (91) is subjected to secondary filtration by the synchronous action of the turbulence impeller (96) and the scraping strip (97) on the moving filter plate (95) following the action of the AMC washing filler (83); Step six, the impurities adhering to the fixed filter plate (92) are scraped back and forth by the scraping strip (97), and the purified waste water is discharged into the manifold frame (64) through the return pipe (93) to provide a circulating water source.

Citation Information

Patent Citations

  • Indoor air purification and humidification device

    CN212987488U

  • Novel indoor washing humidifier

    CN213514245U