Cleaning device for activated carbon adsorption box

The activated carbon adsorption box cleaning device, which integrates blowing and wiping mechanisms, solves the problems of cleaning dead corners and incomplete dust removal, achieving efficient cleaning and low-intensity cleaning results.

CN120305801BActive Publication Date: 2025-10-28LIAOCHENG AGILE ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202510715808.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-05-30
Publication Date
2025-10-28
Estimated Expiration
2045-05-30

AI Technical Summary

Technical Problem

Existing cleaning methods for activated carbon adsorption boxes cannot effectively remove cleaning dead corners inside the box, and air jet or water cleaning methods cannot completely remove dust, resulting in poor cleaning effect and high labor intensity.

Method used

Design a cleaning device for activated carbon adsorption boxes, integrating a detachable blowing mechanism and a wiping mechanism. The blowing mechanism achieves comprehensive blowing through multi-directional blowing components and linkage components, while the wiping mechanism achieves comprehensive wiping through horizontal adjustment components and opening and closing wiping components. Combining blowing and wiping methods improves the cleaning effect.

Benefits of technology

It significantly improves cleaning efficiency, reduces cleaning dead spots, lowers labor intensity, meets usage requirements, and features a reasonable design, simple structure, and easy processing.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention belongs to the field of box cleaning technology, and particularly relates to a cleaning device for activated carbon adsorption boxes. The device includes a box for activated carbon to perform adsorption functions. The cleaning device includes a detachable blowing mechanism and a wiping mechanism. A multi-directional blowing component with adjustable swingability is provided at the moving end of the screw adjusting assembly. A forward blowing component is provided on the mounting frame. A linkage component for adjusting the position of the forward blowing component is also provided on the outer side of the moving end of the screw adjusting assembly. The wiping mechanism includes a second moving lifting component. A π-shaped placement frame is provided below the second moving lifting component. A horizontal adjustment component is provided on the outer side of the placement frame. A wiping component that performs the wiping action by opening and closing is provided on the outer side of the horizontal adjustment component. This invention integrates multiple cleaning methods, including wiping and blowing, improving the functionality of the equipment, reducing cleaning dead spots, enhancing cleaning effect, and meeting user needs.
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Description

Technical Field

[0001] This invention belongs to the field of box cleaning technology, and particularly relates to a cleaning device for activated carbon adsorption boxes. Background Technology

[0002] An activated carbon adsorption box is a purification device that uses activated carbon as an adsorption medium to effectively remove pollutants from the air. It mainly consists of a box body, an activated carbon layer, air inlet and outlet, a fan, and a control system. It has a compact structure and is easy to operate. Its operation is based on the principle of physical adsorption; when air containing pollutants passes through the device, the porous structure of the activated carbon adsorbs and locks in a large number of gas molecules, thereby achieving the purpose of air purification.

[0003] Currently, the cleaning process inside activated carbon adsorption boxes usually involves removing the activated carbon from the box, leaving a large amount of dust and other impurities on the inner walls. Conventional methods in existing technologies often involve cleaning the inside of the box using air jets or water. While these methods can achieve some cleaning effect, there are inevitably blind spots inside the box, and it is impossible to rely on personnel to clean the interior. Furthermore, considering the adhesion of dust to the outer surface of the activated carbon components inside the box, relying solely on air jets or water cannot ensure that the dust is thoroughly removed, resulting in poor cleaning performance and failing to meet usage requirements. Summary of the Invention

[0004] This invention addresses the technical problems existing in the cleaning process of activated carbon adsorption boxes mentioned above, and proposes a cleaning device for activated carbon adsorption boxes that is reasonably designed, simple in structure, easy to process, and integrates multiple cleaning methods such as wiping and blowing. On the one hand, it improves the functionality of the device, and on the other hand, it reduces cleaning dead corners inside the box, enhances its cleaning effect, reduces labor intensity, and effectively meets the usage requirements.

[0005] To achieve the above objectives, the present invention provides a cleaning device for an activated carbon adsorption box, comprising a box for activated carbon to perform adsorption functions, a support shell for supporting the activated carbon inside the box, and a cleaning device inside the box. The cleaning device includes a detachable blowing mechanism and a wiping mechanism. The blowing mechanism includes a first movable lifting assembly, a carrier plate at the lower end of the first movable lifting assembly, a screw adjusting assembly with built-in positive and negative bidirectional screws below the carrier plate, a swingable multi-directional blowing assembly at the movable end of the screw adjusting assembly, a mounting frame on one side of the carrier plate, a positive blowing assembly on the mounting frame, and a linkage assembly for adjusting the position of the positive blowing assembly on the outer side of the movable end of the screw adjusting assembly. The wiping mechanism includes a second movable lifting assembly, a π-shaped placement frame below the second movable lifting assembly, a horizontal adjusting assembly on the outer side of the placement frame, and a wiping assembly for wiping by opening and closing on the outer side of the horizontal adjusting assembly.

[0006] Preferably, the first movable lifting assembly includes a placement plate, a movable adjustment plate is provided above the placement plate, a slide rail is provided above the placement plate, a sliding plate is provided above the slide rail and connected to the lower part of the movable adjustment plate, a telescopic cylinder is provided above the movable adjustment plate, and a keyway is provided inside the placement plate.

[0007] Preferably, the movable end of the lead screw adjusting assembly is provided with a T-shaped mounting plate, the multi-directional jetting assembly includes a rotating seat rotatably connected to one side of the mounting plate, a first nozzle is provided below the rotating seat, a stop rod with an obtuse angle is provided on one side of the rotating seat, the two stop rods on the rotating seats are hinged together at one end, a driving cylinder is provided on one side of the mounting plate, and a push rod is provided at the output end of the driving cylinder, which is movably connected to the connection point of the two stop rods.

[0008] Preferably, the forward spray assembly includes a rotating rod disposed within a mounting frame, and a plurality of L-shaped connecting frames are evenly distributed on the outer side of the rotating rod, with a second nozzle disposed on one side of each connecting frame.

[0009] Preferably, the linkage component includes a limiting strip connected to one side of the mounting plate, a rack inside the limiting strip, a support base on one side of the mounting frame, a rotating shaft inside the support base, a rotating gear on one side of the rotating shaft that meshes with the rack, a driving bevel gear on the other side of the rotating shaft, and a driven bevel gear on the outer side of the rotating rod that meshes with the driving bevel gear.

[0010] Preferably, the wiping assembly includes connecting seats, a slide rod between the two connecting seats, an L-shaped movable plate on the slide rod, a V-shaped folding plate on one side of the movable plate, a concave seat at the connection of the folding plates, a wiping plate on one side of the folding plate, a slide bar on the inner side of the folding plate, a slide seat on the slide bar, a hinge seat on the outer side of the slide seat and connected to the outer end face of the movable plate, a connecting plate on the other side of the folding plate, the two connecting plates being hinged together and their other ends being rotatably connected to the inner side of the folding plate.

[0011] Preferably, the horizontal adjustment assembly includes a rotating rod, a drive disk is provided on one side of the rotating rod, and a moving assembly is provided on one side of the drive disk. The moving assembly includes a mounting base, a limit rod is provided between the two mounting bases, a moving seat is provided on the limit rod, an adjustment plate is provided on the outer side of the moving seat and connected to a concave seat, a drive rod is provided above the adjustment plate and abuts against the drive disk, and a linkage wheel is provided between the rotating rods of the two horizontal adjustment assemblies.

[0012] Preferably, an air inlet is provided on one side of the box body, an air outlet is provided on the other side of the box body, a feed inlet is provided on the top of the support shell, a discharge outlet is provided on the bottom of the support shell, a collection bin is provided inside the box body located below the support shell, and a discharge pipe is provided on one side of the collection bin.

[0013] Preferably, a filter assembly is provided inside the housing near the air inlet. The filter assembly includes filter plates, with filter cotton placed between two adjacent filter plates. A detachable door panel is provided on the outer side of the housing corresponding to the filter assembly.

[0014] Compared with the prior art, the advantages and positive effects of the present invention are as follows:

[0015] 1. This invention provides a cleaning device for an activated carbon adsorption box. Utilizing a wiping mechanism, it wipes the outer surfaces of internal components in an openable manner, reducing dust adhesion and improving cleaning efficiency. A blowing mechanism works in conjunction with the wiping mechanism to blow air onto the cleaned outer surfaces. Alternatively, it can be used pre-emptively, blowing away dust before using the wiping mechanism to treat stubborn dust. This significantly enhances the device's functionality, providing comprehensive cleaning and significantly reducing labor intensity, thus meeting user needs. The device is rationally designed, simple in structure, easy to manufacture, and integrates wiping and blowing cleaning methods. This improves the device's functionality, reduces cleaning dead zones within the box, enhances cleaning efficiency, reduces labor intensity, and effectively meets user requirements. Attached Figure Description

[0016] 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 some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0017] Figure 1 A schematic diagram of the cleaning device for an activated carbon adsorption box;

[0018] Figure 2 This is a front view of the structure of a cleaning device for an activated carbon adsorption box.

[0019] Figure 3 A partial internal structural side view of the cleaning device for the activated carbon adsorption box;

[0020] Figure 4 This is a partial structural diagram of the jetting mechanism;

[0021] Figure 5 A bottom view of part of the jetting mechanism;

[0022] Figure 6 This is a partial side view of the jetting mechanism;

[0023] Figure 7 This is a schematic diagram of the wiping mechanism;

[0024] Figure 8 This is a partial side view of the wiping mechanism;

[0025] Figure 9 This is a schematic diagram of the horizontal adjustment component.

[0026] Figure 10 This is a schematic diagram of the wiping assembly.

[0027] Figure 11 for Figure 10 A magnified view of a portion of the structure at point A in the middle;

[0028] In the above figures, 1. Box body; 1a. Air inlet; 1b. Air outlet; 1c. Feed inlet; 1d. Discharge outlet; 2. Support shell; 3. First moving lifting assembly; 31. Placement plate; 311. Keyway; 32. Moving adjustment plate; 33. Slide rail; 34. Slide plate; 35. Telescopic cylinder; 4. Carrier plate; 5. Screw adjustment assembly; 51. Mounting plate; 6. Multi-directional spray assembly; 61. Rotating seat; 62. First nozzle; 63. Support rod; 64. Drive cylinder; 65. Top rod; 7. Mounting bracket; 8. Forward spray assembly; 81. Rotating rod; 82. Connecting bracket; 83. Second nozzle; 9. Linkage assembly; 91. Limiting strip; 92. Rack; 93. Support base; 94. Rotating shaft; 95. Rotating gear; 96. Active bevel gear 97. Driven bevel gear; 10. Second moving lifting assembly; 11. Placement rack; 12. Horizontal adjustment assembly; 121. Rotating rod; 122. Drive disc; 123. Moving assembly; 1231. Mounting base; 1232. Limiting rod; 1233. Moving base; 1234. Adjusting plate; 1235. Drive rod; 124. Linkage wheel; 13. Wiping assembly; 131. Connecting base; 132. Slide rod; 133. Moving plate; 134. Folding plate; 1341. Slide bar; 1342. Slide seat; 1343. Hinge seat; 135. Concave seat; 136. Wiping plate; 137. Connecting plate; 14. Collection bin; 141. Discharge pipe; 15. Filter assembly; 151. Filter plate; 152. Filter cotton; 153. Door panel. Detailed Implementation

[0029] To better understand the above-mentioned objectives, features, and advantages of the present invention, the present invention will be further described below in conjunction with the accompanying drawings and embodiments. It should be noted that, unless otherwise specified, the embodiments and features described in these embodiments can be combined with each other.

[0030] Numerous 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 than those described herein, and therefore the invention is not limited to the specific embodiments disclosed in the following specification.

[0031] Examples, such as Figures 1 to 11As shown, a cleaning device for an activated carbon adsorption box includes a box 1 for activated carbon to perform adsorption. A support shell 2 for holding the activated carbon is provided inside the box 1. The activated carbon is placed inside the support shell 2, which performs the main cleaning function to ensure the equipment has good usability. To achieve cleaning and maintain the cleanliness of the equipment, a cleaning device is provided inside the box 1. It should be further noted that the cleaning device is detachably installed inside the box 1. That is, when the box 1 is performing adsorption, the cleaning device is placed in the external environment; when cleaning is required... Then, the cleaning device is suspended on the housing 1, and placed in different application positions according to different usage needs to ensure functionality. Specifically, the cleaning device includes a detachable blowing mechanism and a wiping mechanism. The blowing mechanism includes a first moving lifting assembly 3, with a carrier plate 4 at the lower end of the first moving lifting assembly 3. Below the carrier plate 4 is a screw adjusting assembly 5 with built-in positive and negative bidirectional screws. The moving end of the screw adjusting assembly 5 is equipped with a swingable multi-directional blowing assembly 6. A mounting bracket 7 is provided on one side of the carrier plate 4, and a positive blowing assembly 8 is provided on the mounting bracket 7. The screw adjusting assembly 5... The movable end is also equipped with a linkage component 9 for adjusting the position of the forward blowing component 8. The screw adjustment component 5 is a conventional screw moving component 123 as described in the prior art; its specific working principle will not be elaborated here. However, it differs from the prior art in that the screw in the screw adjustment component 5 in this embodiment is a bidirectional screw, meaning that its movable end has two sets, each driving two sets of multi-directional blowing components 6 for movement and adjustment. In standby mode, the two sets of multi-directional blowing components 6 are positioned in the middle and do not protrude to reduce the possibility of damage. During use, the screw adjustment is controlled... When component 5 operates, it drives the two sets of multi-directional blowing components 6 to move from the middle position to both sides to increase the blowing range. During the operation of the screw adjustment component 5, its driving power also acts on the linkage component 9. With the help of the linkage component 9, the forward blowing component 8 can be driven from the storage state to the working state, that is, set up perpendicular to the surface to be cleaned, to ensure the smooth progress of the cleaning work. At the same time, the multi-directional blowing components 6 can be freely adjusted according to different usage needs to achieve blowing in multiple positions, increase the blowing range, and improve the functionality of the device.Furthermore, the wiping mechanism includes a second movable lifting component 10. Below the second movable lifting component 10 is a π-shaped placement rack 11. A horizontal adjustment component 12 is provided on the outside of the placement rack 11. A wiping component 13, which performs the wiping action by opening and closing, is provided on the outside of the horizontal adjustment component 12. The structure and operation of the second movable lifting component 10 are the same as those of the first movable lifting component 3. It can drive the equipment to be conveniently adjusted in different positions to ensure the comprehensiveness of the wiping range. Furthermore, the horizontal adjustment component 12 can provide driving power for the wiping component 13, so that the wiping component 13 wipes the outer surface of the equipment in a reciprocating opening and closing manner. At the same time, it can also be moved and adjusted in multiple positions to ensure the comprehensiveness of the cleaning range. In addition, the wiping mechanism can cooperate with the blowing mechanism, one is responsible for cleaning stubborn dust, and the other assists in blowing dust, which effectively improves the cleaning effect inside the box 1 and ensures the work process.

[0032] In the above process: the established wiping mechanism wipes the outer surface of the internal components of the housing 1 in an open-close manner, reducing the adhesion of dust and other contaminants to improve the cleaning effect. The established blowing mechanism can work in conjunction with the wiping mechanism to blow cleaned outer surfaces of the equipment, or it can be used in advance, i.e., first blowing away dust and other contaminants, and then using the wiping mechanism to assist in treating stubborn dust. This fully improves the functionality of the device, and the blowing and cleaning range is comprehensive, resulting in significant cleaning effects, greatly reducing labor intensity and meeting usage requirements. This device is reasonably designed, simple in structure, easy to process, and integrates multiple cleaning methods such as wiping and blowing. On the one hand, it improves the functionality of the device, and on the other hand, it reduces cleaning dead corners inside the housing 1, improves the cleaning effect, reduces labor intensity, and effectively meets usage requirements.

[0033] To improve the rationality of the device setup and enable the blowing mechanism to move and adjust vertically and horizontally, ensuring effective blowing operations and reducing cleaning dead spots, the first moving lifting assembly 3 includes a placement plate 31. A moving adjustment plate 32 is positioned above the placement plate 31, and a slide rail 33 is positioned above the placement plate 31. A sliding plate 34 is positioned above the slide rail 33 and connected to the lower part of the moving adjustment plate 32. A telescopic cylinder 35 is positioned above the moving adjustment plate 32. A keyway 311 is provided inside the placement plate 31. Specifically, the blowing mechanism can be detachably removed or placed into the housing 1. When not cleaning, a groove is provided on the housing 1 at the location of the placement plate 31, and a sealing plate is placed in this groove to ensure the airtightness of the housing 1 and ensure smooth adsorption operations. When cleaning is being performed, the keyway 311 is removed from the housing 1. The sealing plate at the location is removed, and the first movable lifting assembly 3 is placed there. The device can be moved and adjusted laterally using the established slide plate 34 and slide rail 33, especially moving the blowing mechanism to different positions laterally. Furthermore, the extension and retraction of the established telescopic cylinder 35 can drive the carrier plate 4 and corresponding equipment components to be adjusted vertically. In this way, in conjunction with the lateral movement adjustment, the comprehensiveness of the blowing position of the blowing mechanism is ensured, and the functionality of the device is improved. In addition, it should be further explained that the second movable lifting assembly 10 is similar to the first movable lifting assembly 3 in terms of its establishment method and components, and its specific working principle is also the same. Its function is to drive the wiping mechanism to carry out wiping work at different positions, ensuring the smooth progress of the cleaning work and meeting the usage requirements.

[0034] To ensure smooth operation of the purging process and enhance its functionality, the moving end of the screw adjusting assembly 5 is equipped with a T-shaped mounting plate 51. This plate 51 moves and adjusts with the operation of the screw adjusting assembly 5, moving the multi-directional purging assembly 6 to its outermost position. This facilitates subsequent purging cleaning operations. Furthermore, the multi-directional purging assembly 6 includes a rotating seat 61 rotatably connected to one side of the mounting plate 51. A first nozzle 62 is located below the rotating seat 61. One side of the rotating seat 61 has an obtuse-angled abutment rod 63. The abutment rods 63 on the two rotating seats 61 are hinged together at one end. A drive cylinder 64 is located on one side of the mounting plate 51, and a push rod 65 is located at the output end of the drive cylinder 64. Furthermore, it is movably connected to the connection of the two abutment rods 63. Specifically, in order to achieve the smooth operation of multi-directional spraying, especially to facilitate the adjustment of the position of the first nozzle 62, the rotating seat 61 can rotate relative to one side of the mounting plate 51. In order to achieve convenient adjustment at multiple angles, the abutment rod 63 is set on one side of the rotating seat 61, and the two abutment rods 63 are hinged together at the top. When it is necessary to adjust its position, the drive cylinder 64 is controlled to run, and its output end acts on the push rod 65. The push rod 65 moves down and applies driving force to the abutment rod 63. Due to the influence of the shape of the abutment rod 63, the rotating seat 61 can rotate and adjust relative to the mounting plate 51 to achieve spraying at different angles, improve the functionality of the device, and meet the usage requirements.

[0035] To further improve the rationality of the device setup, the forward blowing assembly 8 includes a rotating rod 81 housed within the mounting frame 7. Multiple L-shaped connecting frames 82 are evenly distributed on the outer side of the rotating rod 81. A second nozzle 83 is provided on one side of each connecting frame 82. Specifically, when the multi-directional blowing assembly 6 is not in operation, it is stored below the carrier plate 4, and the second nozzle 83 is oriented vertically, i.e., stored within the mounting frame 7. When the multi-directional blowing assembly 6 is put into use and opened to be transported to the outer position, the forward blowing assembly 8 will change from a vertical to a horizontal orientation under the linkage component 9. In other words, the second nozzle 83 can be perpendicular to the carrier shell 2, thus ensuring its blowing effect and guaranteeing cleanliness.

[0036] To fully improve the rationality of the device setup and achieve reasonable utilization of driving power, the linkage component 9 includes a limiting strip 91 connected to one side of the mounting plate 51 below, with a rack 92 inside the limiting strip 91. A support base 93 is provided on one side of the mounting bracket 7, with a rotating shaft 94 inside the support base 93. A rotating gear 95 is provided on one side of the rotating shaft 94 and meshes with the rack 92. A driving bevel gear 96 is provided on the other side of the rotating shaft 94. A driven bevel gear 97 is provided on the outer side of the rotating rod 81 and meshes with the driving bevel gear 96. Specifically, during use, the multi-directional jetting component 6 will move from the center outwards towards the outer position... The multi-directional spraying assembly 6 moves to increase its spraying range. When the mounting plate 51 moves with the former, the set limit strip 91 and rack 92 can move together and act on the rotating gear 95. The rotation of the rotating gear 95 will drive the driving bevel gear 96 to rotate, which in turn drives the rotating shaft 94 and the driven bevel gear 97 to move and rotate. At this time, the connecting frame 82 and the second nozzle 83 will change from a vertically placed state to a horizontal state and be perpendicular to the outer end face of the bearing shell 2. The subsequent spraying effect is significant. The multi-directional spraying assembly 6 can have different spraying ranges when adjusted to different positions, which can increase its spraying range to a certain extent and improve the working process.

[0037] To ensure thorough cleaning of the dust inside the housing 1 and facilitate the operation of the subsequent blowing mechanism, the wiping assembly 13 includes a connecting seat 131. A slide rod 132 is positioned between the two connecting seats 131. An L-shaped movable plate 133 is mounted on the slide rod 132. A V-shaped folding plate 134 is mounted on one side of the movable plate 133. A concave seat 135 is provided at the connection point of the folding plate 134. A wiping plate 136 is mounted on one side of the folding plate 134. A slide bar 1341 is mounted on the inner side of the folding plate 134. A wiping plate 136 is mounted on the slide bar 134. The slide 1342 has a hinge seat 1343 on its outer side, which is connected to the outer end face of the moving plate 133. A connecting plate 137 is provided on the other side of the folding plate 134. The two connecting plates 137 are hinged together, and their other ends are rotatably connected to the inner side of the folding plate 134. The two connecting plates 137 are respectively connected to the inner side of the folding plate 134, which can limit its opening and closing direction to a certain extent, ensuring smooth operation. Furthermore, it improves the stability of the device and enhances its functionality. Regarding the movable plate 133, it can slide vertically relative to the slide rod 132 and move relative to the inner side of the folding plate 134. The specific movement process is described as follows: the concave seat 135 moves laterally with the horizontal adjustment component 12, applying driving force to the folding plate 134. Firstly, the folding plate 134 moves in a folding and extending manner. Simultaneously, the movable plate 133 also slides relative to the slide rod 132. For the wiping plate 136 mounted on the folding plate 134… When the folding plate 134 is in the opening and closing mode, the wiping plate 136 can act on the outer surface of the carrier shell 2 to perform its wiping function, thereby cleaning the dust attached to the carrier shell 2. Subsequently, the dust can be cleaned by the blowing assembly, which provides convenient conditions for the centralized collection of dust and improves the functionality of the device. The wiping assembly 13, with its opening and closing wiping action, can not only clean the dust but also ensure the cleaning range. At the same time, its horizontal and vertical movement adjustment ensures the comprehensiveness of the cleaning and meets the usage requirements.

[0038] To ensure the effective wiping action of the wiping assembly 13 and provide it with effective driving power, the horizontal adjustment assembly 12 includes a rotating rod 121. A drive disk 122 is provided on one side of the rotating rod 121, and a moving assembly 123 is provided on one side of the drive disk 122. The moving assembly 123 includes a mounting base 1231, a limit rod 1232 is provided between the two mounting bases 1231, a moving seat 1233 is provided on the limit rod 1232, and an adjusting plate 1234 is provided on the outer side of the moving seat 1233 and connected to the concave seat 135. A drive rod 1235 is provided above the adjusting plate 1234 and abuts against the drive disc 122. A linkage wheel 124 is provided between the rotating rods 121 of the two horizontal adjusting components 12. For the linkage wheel 124, a motor can be installed in the placement frame 11, and the output end of the motor is connected to the linkage wheel 124 by a belt. When the linkage wheel 124 rotates, its force will act on the rotating rods 121 of the two horizontal adjusting components 12 respectively, so that they can run synchronously. This reduces the investment in drive equipment to a certain extent and also makes cleaning easier. This provides convenient conditions for the implementation of the driving operation. Specifically, regarding the established drive disc 122 and drive rod 1235, when the rotating rod 121 receives external driving power, the rotation of the drive disc 122 can apply force to the drive rod 1235, causing the drive rod 1235 to perform reciprocating linear motion. Of course, the drive disc 122 can be a drive gear, and the drive rod 1235 can be a rack 92 structure with teeth. The meshing between the two ensures the effective transmission of driving power. When the drive rod 1235 is in the driving position... When the moving plate 122 moves, it drives the adjusting plate 1234 and the moving seat 1233 to slide relative to the limiting rod 1232, which in turn acts on the concave seat 135. In this way, the wiping assembly 13 has changing power, so as to realize the wiping action in the manner of opening and closing. Of course, when the driving rod 1235 moves in the opposite direction, the wiping assembly 13 can move in the opposite direction. By repeating this process, the wiping assembly 13 can clean the outer surface of the carrier shell 2, which greatly improves the functionality of the device and meets the usage requirements.

[0039] To ensure the rationality of the adsorption box design, an air inlet 1a is provided on one side of the box body 1 to facilitate the introduction of waste gas, and an air outlet 1b is provided on the other side of the box body 1 to facilitate the exhaust of waste gas after adsorption and cleaning. A feed inlet 1c is provided on the top of the support shell 2 to facilitate the feeding of activated carbon material into the support shell 2. A discharge outlet 1d is provided on the bottom of the support shell 2 to facilitate the smooth discharge of activated carbon material for subsequent addition of new material. A collection bin 14 is provided inside the box body 1 located below the support shell 2. A discharge pipe 141 is provided on one side of the collection bin 14. The collection bin 14 is used to collect dust and impurities cleaned off the outer surface of the support shell 2. The discharge pipe 141 is connected to an external suction component to facilitate the convenient discharge of dust collected in the collection bin 14, reduce the difficulty of operation, and meet the usage requirements.

[0040] To further improve the adsorption effect in the adsorption box, a filter assembly 15 is installed in the box 1 near the air inlet 1a. The filter assembly 15 includes filter plates 151, and filter cotton 152 is installed between two adjacent filter plates 151. A detachable door panel 153 is installed on the outside of the box 1 corresponding to the filter assembly 15. The door panel 153 is detachable from the box 1, which makes it easy to put in and take out the filter assembly 15 and ensure its filtration performance. When the exhaust gas enters through the air inlet 1a, it is first filtered by the filter assembly 15 to remove larger impurities. When the equipment is stopped, it can fall into the collection bin 14 for easy collection and discharge. When it is necessary to clean this part, the door panel 153 is removed and taken out of the box 1. After cleaning, it is put back in, which greatly improves the functionality of the device and makes the operation simple and convenient.

[0041] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention in any other way. Any person skilled in the art may make changes or modifications to the above-disclosed technical content to create equivalent embodiments for application in other fields. However, any simple modifications, equivalent changes, and modifications made to the above embodiments based on the technical essence of the present invention without departing from the scope of the present invention shall still fall within the protection scope of the present invention.

Claims

1. A cleaning device for an activated carbon adsorption box, comprising a box for activated carbon to perform adsorption function, wherein a support shell for supporting the activated carbon is provided inside the box, characterized in that, The housing contains a cleaning device, which includes a detachable blowing mechanism and a wiping mechanism. The blowing mechanism includes a first movable lifting assembly, with a carrier plate at its lower end. Below the carrier plate is a screw adjusting assembly with a built-in bidirectional screw. The movable end of the screw adjusting assembly has a swing-adjustable multidirectional blowing assembly. A mounting bracket is located on one side of the carrier plate, and a forward blowing assembly is mounted on the mounting bracket. A linkage assembly for adjusting the position of the forward blowing assembly is also located on the outer side of the movable end of the screw adjusting assembly. The wiping mechanism includes a second movable lifting assembly... The components include a second movable lifting assembly with a π-shaped placement frame below it, a horizontal adjustment assembly on the outside of the placement frame, and a wiping assembly on the outside of the horizontal adjustment assembly that performs the wiping action by opening and closing. The moving end of the screw adjustment assembly has a T-shaped mounting plate. The multi-directional blowing assembly includes a rotating seat rotatably connected to one side of the mounting plate. A first nozzle is located below the rotating seat. One side of the rotating seat has an obtuse-angled abutment. The abutments on the two rotating seats are hinged together at one end. A drive cylinder is located on one side of the mounting plate. The cylinder's output end is equipped with a push rod, which is movably connected to the connection point of two push rods. The forward spray assembly includes a rotating rod housed within a mounting bracket. Multiple L-shaped connecting brackets are evenly distributed on the outer side of the rotating rod. A second nozzle is located on one side of each connecting bracket. The linkage assembly includes a limiting strip connected to the lower side of the mounting plate, within which a rack is housed. A support base is located on one side of the mounting bracket, within which a rotating shaft is housed. A rotating gear is located on one side of the rotating shaft and meshes with the rack. A driving bevel gear is located on the other side of the rotating shaft, and a driven bevel gear is located on the outer side of the rotating rod. The wiping assembly includes a connecting seat, a slide rod between two connecting seats, an L-shaped movable plate on the slide rod, a V-shaped folding plate on one side of the movable plate, a concave seat at the connection of the folding plate, a wiping plate on one side of the folding plate, a slide bar on the inner side of the folding plate, a slide seat on the slide bar, a hinge seat on the outer side of the slide seat and connected to the outer end face of the movable plate, a connecting plate on the other side of the folding plate, the two connecting plates are hinged together and their other ends are rotatably connected to the inner side of the folding plate.

2. The cleaning device for the activated carbon adsorption box according to claim 1, characterized in that, The first movable lifting assembly includes a placement plate, a movable adjustment plate is provided above the placement plate, a slide rail is provided above the placement plate, a sliding plate is provided above the slide rail and connected to the lower part of the movable adjustment plate, a telescopic cylinder is provided above the movable adjustment plate, and a keyway is provided inside the placement plate.

3. The cleaning device for the activated carbon adsorption box according to claim 2, characterized in that, The horizontal adjustment assembly includes a rotating rod, a drive disc is provided on one side of the rotating rod, and a moving assembly is provided on one side of the drive disc. The moving assembly includes a mounting base, a limit rod is provided between the two mounting bases, a moving seat is provided on the limit rod, an adjustment plate is provided on the outside of the moving seat and connected to a concave seat, a drive rod is provided above the adjustment plate and abuts against the drive disc, and a linkage wheel is provided between the rotating rods of the two horizontal adjustment assemblies.

4. The cleaning device for the activated carbon adsorption box according to claim 1, characterized in that, An air inlet is provided on one side of the box, and an air outlet is provided on the other side of the box. A feed inlet is provided on the top of the bearing shell, and a discharge outlet is provided on the bottom of the bearing shell. A collection bin is provided inside the box located below the bearing shell, and a discharge pipe is provided on one side of the collection bin.

5. The cleaning device for the activated carbon adsorption box according to claim 4, characterized in that, A filter assembly is installed inside the housing near the air inlet. The filter assembly includes filter plates, and filter cotton is placed between two adjacent filter plates. A detachable door panel is installed on the outside of the housing corresponding to the filter assembly.

Citation Information

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