Cleaning device for activated carbon adsorption box

The integrated wiping and blowing mechanism for active carbon adsorption boxes addresses the inefficiencies of traditional cleaning methods by ensuring thorough surface coverage and reducing labor intensity, thereby enhancing cleaning effectiveness.

CN120305801AActive Publication Date: 2025-07-15LIAOCHENG AGILE ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202510715808.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-30
Publication Date
2025-07-15
Estimated Expiration
2045-05-30

AI Technical Summary

Technical Problem

In the prior art, the cleaning method of activated carbon adsorption box cannot effectively remove the cleaning dead corners in the box, and it is difficult to completely remove dust by jetting or water, resulting in poor cleaning effect and high labor intensity.

Method used

A cleaning device for activated carbon adsorption box is designed, which integrates a detachable blowing mechanism and a wiping mechanism. The blowing mechanism achieves full blowing through multi-directional blowing components and linkage components. The wipe mechanism achieves full wipe through open-closed wipe components, combining spraying and wiping methods to improve the cleaning effect.

Benefits of technology

It significantly improves the cleaning effect, reduces cleaning blind spots, reduces labor intensity, meets usage needs, and has reasonable design, simple structure and strong functionality.

✦ Generated by Eureka AI based on patent content.

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    Figure CN120305801A_ABST
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Abstract

The invention belongs to the technical field of box body cleaning, and particularly relates to a cleaning device for an activated carbon adsorption box, the cleaning device comprises a box body used for carrying out an adsorption function on activated carbon, the cleaning device comprises a detachable blowing mechanism and a wiping mechanism, and a multi-direction blowing assembly capable of being adjusted in a swinging mode is arranged at the moving end of a lead screw adjusting assembly. A forward blowing assembly is arranged on the mounting frame, a linkage assembly for adjusting the position of the forward blowing assembly is further arranged on the outer side of the moving end of the lead screw adjusting assembly, the wiping mechanism comprises a second moving lifting assembly, and a placing frame designed in a pi shape is arranged below the second moving lifting assembly. A horizontal adjusting assembly is arranged on the outer side of the containing frame, and a wiping assembly for achieving the wiping action in an opening and closing mode is arranged on the outer side of the horizontal adjusting assembly. The device integrates multiple cleaning modes of wiping and blowing, the use functionality of the device is improved, cleaning dead corners are reduced, the cleaning effect is improved, and the use requirement is met.
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Description

Technical Field

[0001] The present invention belongs to the technical field of box cleaning, and particularly relates to a cleaning device for an activated carbon adsorption box. Background Art

[0002] An activated carbon adsorption box is a purification device that uses activated carbon as an adsorption medium to effectively remove pollutants in the air. It mainly consists of a box body, an activated carbon layer, air inlets and outlets, a fan, and a control system, etc. 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 will adsorb and lock a large number of gas molecules, so as to achieve the purpose of purifying the air.

[0003] Currently, for the cleaning process of the activated carbon adsorption box, mostly the activated carbon is taken out of the adsorption box, and a large amount of dust and other impurities remain on the inner wall of the adsorption box. For the conventional means in the prior art, mostly the inside of the box is cleaned by means of jetting or water. However, although the above cleaning methods can play a certain cleaning role, there are inevitably cleaning dead corners in the box, and it is impossible to rely on workers to clean its interior. In addition, considering the dust adhesion on the outer surface of the activated carbon component loaded in the box, relying solely on jetting or water cannot ensure that the dust can be fully cleaned off, and the cleaning effect is poor, making it difficult to meet the use requirements. Summary of the Invention

[0004] In view of the technical problems existing in the cleaning process of the above-mentioned activated carbon adsorption box, the present invention provides a cleaning device for an activated carbon adsorption box that is reasonably designed, simple in structure, convenient to process, and can integrate multiple cleaning methods such as wiping and blowing. On the one hand, it improves the use functionality of the device and equipment, on the other hand, it can reduce the cleaning dead corners in the box, improve its cleaning effect, reduce the labor intensity, and effectively meet the use requirements.

[0005] To achieve the above object, the technical solution adopted by the present invention is a cleaning device for an activated carbon adsorption box, including a box body for the activated carbon to perform the adsorption function. A carrier shell for carrying the activated carbon is arranged in the box body. A cleaning device is arranged in the box body. The cleaning device includes a detachable blowing mechanism and a wiping mechanism. The blowing mechanism includes a first moving and lifting assembly. A carrier plate is arranged at the lower end of the first moving and lifting assembly. A screw rod adjusting assembly with a built-in positive and reverse bidirectional screw rod is arranged below the carrier plate. A multi-directional blowing assembly that can be swing-adjusted is arranged at the moving end of the screw rod adjusting assembly. An installation frame is arranged on one side of the carrier plate. A forward blowing assembly is arranged on the installation frame. A linkage assembly for adjusting the position of the forward blowing assembly is also arranged outside the moving end of the screw rod adjusting assembly. The wiping mechanism includes a second moving and lifting assembly. A placement frame designed in a π shape is arranged below the second moving and lifting assembly. A horizontal adjusting assembly is arranged outside the placement frame. A wiping assembly that realizes the wiping action in an opening and closing manner is arranged outside the horizontal adjusting assembly.

[0006] Preferably, the first moving and lifting assembly includes a placement plate. A moving and adjusting plate is arranged above the placement plate. A slide rail is arranged above the placement plate. A slide plate is arranged above the slide rail and is connected to the lower side of the moving and adjusting plate. A telescopic cylinder is arranged above the moving and adjusting plate. A key-shaped groove is formed in the placement plate.

[0007] Preferably, an installation plate designed in a T shape is arranged at the moving end of the screw rod adjusting assembly. The multi-directional blowing assembly includes a rotating seat rotatably connected to one side of the lower part of the installation plate. A first nozzle is arranged below the rotating seat. A resisting rod designed in an obtuse angle shape is arranged on one side of the rotating seat. One ends of the resisting rods on the two rotating seats are hinged. A driving cylinder is arranged on one side of the installation plate. A push rod is arranged at the output end of the driving cylinder and is movably connected to the connection part of the two resisting rods.

[0008] Preferably, the forward blowing assembly includes a rotating rod arranged in the installation frame. A plurality of connecting frames designed in an L shape are evenly arranged on the outer side of the rotating rod. A second nozzle is arranged on one side of the connecting frame.

[0009] Preferably, the linkage assembly includes a limiting strip connected to one side of the lower part of the installation plate. A rack is arranged in the limiting strip. A support seat is arranged on one side of the installation frame. A rotating shaft is arranged in the support seat. A rotating gear is arranged on one side of the rotating shaft and meshes with the rack. A driving bevel gear is arranged on the other side of the rotating shaft. A driven bevel gear is arranged on the outer side of the rotating rod and meshes with the driving bevel gear.

[0010] Preferably, the wiping assembly includes a connecting seat. A sliding rod is arranged between the two connecting seats. A moving plate designed in an L shape is arranged on the sliding rod. A folding plate designed in a V shape is arranged on one side of the moving plate. A concave seat is arranged at the connection of the folding plates. A wiping plate is arranged on one side of the folding plate. A sliding strip is arranged on the inner side of the folding plate. A sliding seat is arranged on the sliding strip. A hinge seat is arranged on the outer side of the sliding seat and is connected to the outer end face of the moving plate. A connecting plate is arranged on the other side of the folding plate. The two connecting plates are arranged in a finger-jointed manner, and the other ends thereof are rotatably connected to the inner side of the folding plate.

[0011] Preferably, the horizontal adjustment assembly includes a rotating rod. A driving disk is arranged on one side of the rotating rod. A moving assembly is arranged on one side of the driving disk. The moving assembly includes a mounting seat. A limiting rod is arranged between the two mounting seats. A moving seat is arranged on the limiting rod. An adjusting plate is arranged on the outer side of the moving seat and is connected to the concave seat. A driving rod is arranged above the adjusting plate and abuts against the driving disk. A linkage wheel is arranged between the rotating rods of the two horizontal adjustment assemblies.

[0012] Preferably, an air inlet is arranged on one side of the box body. An air outlet is arranged on the other side of the box body. A feeding port is arranged above the bearing shell. A discharging port is arranged below the bearing shell. An aggregate bin is arranged in the box body below the bearing shell. A discharging pipe is arranged on one side of the aggregate bin.

[0013] Preferably, a filter screen assembly is arranged in the box body near the air inlet. The filter screen assembly includes filter plates. Filter cotton is arranged between adjacent two filter plates. A detachable door panel is arranged on the outer side of the box body corresponding to the filter screen assembly.

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

[0015] 1. A cleaning device for an activated carbon adsorption box provided by the present invention utilizes the established wiping mechanism to wipe the outer surfaces of the internal components of the box body in an opening and closing manner, reducing the adhesion of dust and the like, so as to improve its cleaning effect. By using the established blowing mechanism, on the one hand, it can cooperate with the wiping mechanism to blow the outer surface of the equipment after cleaning, and on the other hand, it can be put into use in advance, that is, first blow the dust and the like, and then use the wiping mechanism to assist in dealing with stubborn dust, fully improving the use functionality of the device and equipment. Moreover, the blowing and cleaning ranges are comprehensive, the cleaning effect is remarkable, greatly reducing the labor intensity of people and meeting the use requirements; this device is reasonably designed, simple in structure, convenient to process, and can integrate various cleaning methods such as wiping and blowing. On the one hand, it improves the use functionality of the device and equipment, on the other hand, it can reduce the cleaning dead corners in the box body, improve its cleaning effect, reduce the labor intensity, and effectively meet the use requirements. Brief Description of the Drawings

[0016] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required for the description of the embodiments will be briefly introduced below. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0017] Figure 1 It is a schematic structural diagram of a cleaning device for an activated carbon adsorption box;

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

[0019] Figure 3 It is a side view of a partial internal structure of a cleaning device for an activated carbon adsorption box;

[0020] Figure 4 It is a schematic structural diagram of a partial structure of a blowing mechanism;

[0021] Figure 5 It is a bottom view of a partial structure of a blowing mechanism;

[0022] Figure 6 It is a side view of a partial structure of a blowing mechanism;

[0023] Figure 7 It is a schematic structural diagram of a wiping mechanism;

[0024] Figure 8 It is a side view of a partial structure of a wiping mechanism;

[0025] Figure 9 It is a schematic structural diagram of a horizontal adjustment component;

[0026] Figure 10 It is a schematic structural diagram of a wiping component;

[0027] Figure 11 For Figure 10 A partial enlarged structural diagram of the structure at A in

[0028] In the above figures, 1 is the box body; 1a is the air inlet; 1b is the air outlet; 1c is the feed inlet; 1d is the discharge outlet; 2 is the bearing shell; 3 is the first moving and lifting assembly; 31 is the placing plate; 311 is the key-shaped groove; 32 is the moving and adjusting plate; 33 is the slide rail; 34 is the slide plate; 35 is the telescopic cylinder; 4 is the carrier plate; 5 is the screw rod adjusting assembly; 51 is the mounting plate; 6 is the multi-directional blowing assembly; 61 is the rotating seat; 62 is the first nozzle; 63 is the abutting rod; 64 is the driving cylinder; 65 is the ejector rod; 7 is the mounting frame; 8 is the forward blowing assembly; 81 is the rotating rod; 82 is the connecting frame; 83 is the second nozzle; 9 is the linkage assembly; 91 is the limiting strip; 92 is the rack; 93 is the supporting seat; 94 is the rotating shaft; 95 is the rotating gear; 96 is the driving bevel gear; 97 is the driven bevel gear; 10 is the second moving and lifting assembly; 11 is the placing rack; 12 is the horizontal adjusting assembly; 121 is the rotating rod; 122 is the driving disk; 123 is the moving assembly; 1231 is the mounting seat; 1232 is the limiting rod; 1233 is the moving seat; 1234 is the adjusting plate; 1235 is the driving rod; 124 is the linkage wheel; 13 is the wiping assembly; 131 is the connecting seat; 132 is the sliding rod; 133 is the moving plate; 134 is the folding plate; 1341 is the sliding strip; 1342 is the sliding seat; 1343 is the hinge seat; 135 is the concave seat; 136 is the wiping plate; 137 is the connecting plate; 14 is the aggregate bin; 141 is the discharge pipe; 15 is the filter screen assembly; 151 is the filter plate; 152 is the filter cotton; 153 is the door panel. Detailed implementation mode

[0029] In order to more clearly understand the above objects, features and advantages of the present invention, the present invention will be further described below with reference to the drawings and embodiments. It should be noted that, without conflict, the embodiments of the present application and the features in the embodiments can be combined with each other.

[0030] In the following description, many specific details are set forth in order to fully understand the present invention. However, the present invention can also be implemented in other ways different from those described herein. Therefore, the present invention is not limited by the specific embodiments disclosed in the following specification.

[0031] Embodiment, as Figures 1 to 11As shown in the figure, a cleaning device for an activated carbon adsorption box includes a box body 1 for the activated carbon to perform the adsorption function. Inside the box body 1, there is a bearing shell 2 for carrying the activated carbon. Among them, the activated carbon is placed inside the bearing shell 2, which plays the main cleaning function to ensure the good usability of the equipment. In order to carry out the cleaning work inside the equipment and ensure its cleanliness, a cleaning device is provided inside the box body 1. It should be further noted that the cleaning device is detachably installed inside the box body 1. That is to say, when the box body 1 is performing the adsorption work, the cleaning device is placed in the external environment. When the cleaning work needs to be carried out, the cleaning device is lifted and placed on the box body 1, and according to different usage requirements, the cleaning device is placed at different application positions to ensure the usability. Specifically, the cleaning device includes a detachable blowing mechanism and a wiping mechanism. The blowing mechanism includes a first moving and lifting component 3. At the lower end of the first moving and lifting component 3, there is a carrier plate 4. Below the carrier plate 4, there is a screw rod adjusting component 5 with a built-in positive and reverse bidirectional screw rod. The moving end of the screw rod adjusting component 5 is provided with a multi-directional blowing component 6 that can be swing-adjusted. On one side of the carrier plate 4, there is a mounting frame 7. On the mounting frame 7, there is a forward blowing component 8. Outside the moving end of the screw rod adjusting component 5, there is also a linkage component 9 for adjusting the position of the forward blowing component 8. Among them, the established screw rod adjusting component 5 is a conventional screw rod moving component 123 in the prior art, and its specific working principle will not be elaborated. What is different from the prior art is that in this embodiment, the screw rod in the screw rod adjusting component 5 is selected as a positive and reverse bidirectional screw rod. That is to say, there are two groups of moving ends, which respectively drive two groups of multi-directional blowing components 6 to move and adjust. In the standby state, the two groups of multi-directional blowing components 6 are placed in the middle position and do not protrude out to reduce the possibility of their damage. During use, control the screw rod adjusting component 5 to operate, driving the two groups of multi-directional blowing components 6 to move out from the middle position to both sides to increase their blowing range. During the operation of the screw rod adjusting component 5, its driving power will also act 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, to be set perpendicular to the surface of the position to be cleaned, ensuring the smooth progress of the cleaning work. At the same time, the established multi-directional blowing component 6 can freely adjust its blowing direction according to different usage requirements to achieve blowing in multiple directions, increasing the blowing range and improving the usability of the device and equipment;Furthermore, the wiping mechanism includes a second moving and lifting component 10. A placement rack 11 designed in a π shape is arranged below the second moving and lifting component 10. A horizontal adjustment component 12 is arranged on the outer side of the placement rack 11. A wiping component 13 that realizes the wiping action in an opening and closing manner is arranged on the outer side of the horizontal adjustment component 12. The structure and working mode of the second moving and lifting component 10 are the same as those of the first moving and lifting component 3, which can drive the device to be conveniently adjusted at different positions to ensure the comprehensiveness of the wiping range. Furthermore, the established horizontal adjustment component 12 can provide driving power for the wiping component 13, enabling the wiping component 13 to wipe the outer surface of the device in a reciprocating opening and closing manner. At the same time, it can also be adjusted and moved at multiple positions to ensure the comprehensiveness of the cleaning range. At the same time, the wiping mechanism can cooperate with the blowing mechanism. One is responsible for cleaning stubbornly attached dust, and the other assists in blowing dust, effectively improving the cleaning effect inside the box body 1 and ensuring the work process;

[0032] In the above process: By using the established wiping mechanism, it wipes the outer surface of the internal components of the box body 1 in an opening and closing manner to reduce the attachment of dust and the like, so as to improve its cleaning effect. By using the established blowing mechanism, on the one hand, it can cooperate with the wiping mechanism to blow the outer surface of the device after cleaning. On the other hand, it can also be put into use in advance, that is, first blow the dust and the like, and then use the wiping mechanism to assist in dealing with stubborn dust, fully improving the use functionality of the device and equipment. Moreover, the blowing and cleaning ranges are comprehensive, and the cleaning effect is remarkable, greatly reducing the labor intensity of people and meeting the use requirements; The design of this device is reasonable, the structure is simple, the processing is convenient, and it can integrate multiple cleaning methods such as wiping and blowing. On the one hand, it improves the use functionality of the device and equipment. On the other hand, it can reduce the cleaning dead corners inside the box body 1, improve its cleaning effect, reduce the labor intensity, and effectively meet the use requirements.

[0033] In order to improve the rationality of the installation of the device and equipment, enable the injection mechanism to be adjusted vertically and horizontally, ensure the effective development of the injection work, and reduce the cleaning dead corners. The first moving and lifting component 3 includes a placement plate 31. Above the placement plate 31, there is a moving and adjusting plate 123432. Above the placement plate 31, there is a slide rail 33. Above the slide rail 33, there is a slide plate 34, which is connected to the lower part of the moving and adjusting plate 123432. Above the moving and adjusting plate 123432, there is a telescopic cylinder 35. A key-shaped groove 311 is formed in the placement plate 31. Specifically described as follows: The injection mechanism can be removably taken out or put into the box body 1. When the cleaning work is not carried out, a groove is formed in the box body 1 at the position of the placement plate 31, and a sealing plate is provided at this groove to ensure the sealing performance inside the box body 1 and ensure the smooth development of the adsorption work. When the cleaning work is carried out, the sealing plate at this place is removed, and the first moving and lifting component 3 is placed at this place. The slide plate 34 and the slide rail 33 provided can enable the device to be adjusted horizontally, especially drive the injection mechanism to be at different positions horizontally. Further, by using the telescopic cylinder 35 provided, its telescopic movement can drive the carrier plate 4 and the corresponding equipment components to be adjusted vertically. In this way, combined with the horizontal movement adjustment, it ensures the comprehensiveness of the injection position of the injection mechanism and improves the use functionality of the device and equipment. In addition, it should be further explained that: The second moving and lifting component 10 provided is similar to the first moving and lifting component 3 in the setting method and components, and the specific working principle is also the same. Its function is to drive the wiping mechanism to carry out wiping work at different positions, ensure the smooth development of the cleaning work, and meet the use requirements.

[0034] To ensure the smooth progress of the injection work and increase its functionality during the injection process, the mobile end of the screw rod adjustment component 5 is provided with a mounting plate 51 designed in a T shape. It can be moved and adjusted along with the operation of the screw rod adjustment component 5 to drive the multi-directional injection component 6 to move to the outermost position, thus providing convenient conditions for the subsequent injection and cleaning work. Further: The multi-directional injection component 6 includes a rotating seat 61 rotatably connected to one side below the mounting plate 51. A first nozzle 62 is provided below the rotating seat 61. One side of the rotating seat 61 is provided with a resisting rod 63 designed in an obtuse angle shape. One ends of the resisting rods 63 on the two rotating seats 61 are hinged. One side of the mounting plate 51 is provided with a driving cylinder 64. The output end of the driving cylinder 64 is provided with a push rod 65, which is movably connected to the connection part of the two resisting rods 63. Specifically described as: To ensure the smooth progress of the multi-directional injection work, especially to facilitate the adjustment of the position of the first nozzle 62, the provided rotating seat 61 can rotate relative to one side of the mounting plate 51. To achieve convenient adjustment at multiple angles, the resisting rod 63 is provided on one side of the rotating seat 61, and the upper parts of the two resisting rods 63 are hinged. When the position needs to be adjusted, control the driving cylinder 64 to operate. Its output end acts on the push rod 65, and the push rod 65 moves downward and applies the driving force on the resisting rod 63. Affected by the shape of the resisting rod 63, the rotating seat 61 can rotate and adjust relative to the mounting plate 51 to achieve injection at different angles, improve the use functionality of the device and meet the use requirements.

[0035] To further improve the rationality of the device, the forward injection component 8 includes a rotating rod 81 provided in the mounting frame 7. A plurality of connecting frames 82 designed in an L shape are evenly arranged on the outer side of the rotating rod 81. A second nozzle 83 is provided on one side of the connecting frame 82. Specifically described as: When the multi-directional injection component 6 is in a non-working state, it is stored below the carrier plate 4, and the orientation of the second nozzle 83 is in the vertical direction, that is, it is stored in the mounting frame 7. When the multi-directional injection component 6 is put into use and is opened and transported to the outer position, under the setting of the linkage component 9, the forward injection component 8 will be transformed from a vertical placement to a horizontal placement. That is to say, the second nozzle 83 can be perpendicular to the bearing shell 2, so as to ensure its injection effect and guarantee the cleanliness.

[0036] In order to fully improve the rationality of the device and equipment and achieve the rational utilization of the driving power, the linkage component 9 includes a limiting strip 91 connected to one side below the mounting plate 51. A rack 92 is arranged in the limiting strip 91. A support seat 93 is arranged on one side of the mounting frame 7. A rotating shaft 94 is arranged in the support seat 93. A rotating gear 95 is arranged on one side of the rotating shaft 94 and meshes with the rack 92. A driving bevel gear 96 is arranged on the other side of the rotating shaft 94. A driven bevel gear 97 is arranged on the outer side of the rotating rod 81 and meshes with the driving bevel gear 96. Specifically described as follows: During the operation of the multi-directional blowing component 6, it will move from the middle to the outside to increase its blowing range. When the mounting plate 51 moves with the former, the established limiting strip 91 and rack 92 can move with it and act on the rotating gear 95. The rotation of the rotating gear 95 will drive the driving bevel gear 96 to rotate, and then drive the rotating shaft 94 and the driven bevel gear 97 to rotate. At this time, the connecting frame 82 and the second nozzle 83 will change from the vertical state to the horizontal state and be perpendicular to the outer end face of the bearing shell 2. The subsequent blowing effect is remarkable. When the multi-directional blowing component 6 is adjusted to different positions, its blowing range is different, which can increase its blowing range to a certain extent and improve the working process.

[0037] In order to fully clean the dust in the box body 1 and provide convenient conditions for the operation of the subsequent blowing mechanism, the wiping assembly 13 includes a connecting seat 131. A sliding rod 132 is arranged between the two connecting seats 131. A moving plate 133 designed in an L shape is arranged on the sliding rod 132. A folding plate 134 designed in a V shape is arranged on one side of the moving plate 133. A concave seat 135 is arranged at the connection of the folding plate 134. A wiping plate 136 is arranged on one side of the folding plate 134. A sliding strip 1341 is arranged on the inner side of the folding plate 134. A sliding seat 1342 is arranged on the sliding strip 1341. A hinge seat 1343 is arranged on the outer side of the sliding seat 1342 and is connected to the outer end face of the moving plate 133. A connecting plate 137 is arranged on the other side of the folding plate 134. The two connecting plates 137 are arranged in a finger-like hinge manner, and the other ends thereof are rotatably connected to the inner side of the folding plate 134. The two arranged connecting plates 137 are respectively connected to the inner side of the folding plate 134, which can limit the opening and closing direction to a certain extent, ensure the smoothness during its operation, and on the other hand, also improve the stability of the device. It has strong use functionality. For the arranged moving plate 133, on the one hand, it can slide and adjust vertically relative to the sliding rod 132, and on the other hand, it can move and adjust relative to the inner side of the folding plate 134. The specific moving process is described as follows: The concave seat 135 can move horizontally along with the horizontal adjustment assembly 12 and apply driving force to the folding plate 134, first causing the folding plate 134 to move in a folding and telescoping manner. At the same time, the moving plate 133 also slides relative to the sliding rod 132. For the wiping plate 136 arranged on the folding plate 134, when the folding plate 134 operates in an opening and closing manner, the wiping plate 136 can act on the outer surface of the bearing shell 2 to exert its wiping function, so as to clean the dust attached to the bearing shell 2. Subsequently, it is blown and cleaned by the blowing assembly, which provides convenient conditions for the centralized collection of dust, improves the use functionality of the device, and the wiping assembly 13 with an opening and closing wiping action can not only complete the cleaning of dust but also ensure the cleaning range. At the same time, its horizontal and vertical movement adjustments ensure the comprehensiveness of the cleaning and meet the use requirements.

[0038] To ensure the effective implementation of the wiping action of the wiping component 13 and provide it with effective driving power, the horizontal adjustment component 12 includes a rotating rod 121. On one side of the rotating rod 121, there is a driving disk 122. On one side of the driving disk 122, there is a moving component 123. The moving component 123 includes a mounting seat 1231. Between the two mounting seats 1231, there is a limiting rod 1232. On the limiting rod 1232, there is a moving seat 1233. On the outer side of the moving seat 1233, there is an adjusting plate 1234, which is connected to the concave seat 135. Above the adjusting plate 1234, there is a driving rod 1235, which abuts against the driving disk 122. Between the rotating rods 121 of the two horizontal adjustment components 12, there is a linkage wheel 124. For the established linkage wheel 124, a motor can be established in the placement rack 11, and the output end of the motor can be connected to the linkage wheel 124 by a belt. When the linkage wheel 124 rotates, its acting force will act on the rotating rods 121 of the two horizontal adjustment components 12 respectively, enabling them to operate synchronously, reducing the investment in driving equipment to a certain extent and providing convenient conditions for the development of cleaning work. The specific description is as follows: For the established driving disk 122 and driving rod 1235, when the rotating rod 121 receives external driving power, the rotation of the driving disk 122 can act on the driving rod 1235, causing the driving rod 1235 to perform a reciprocating linear motion. Of course, for the establishment between the two, the driving disk 122 can be a driving gear, and the driving rod 1235 is a rack 92 structure with teeth. The meshing between the two ensures the effective transmission of driving power. When the driving rod 1235 moves under the action of the driving disk 122, it will drive the adjusting plate 1234 and the moving seat 1233 to slide and adjust relative to the limiting rod 1232, and then act on the concave seat 135. In this way, the wiping component 13 has variable power and can realize the wiping action in an opening and closing manner. Of course, when the driving rod 1235 moves in the reverse direction, the wiping component 13 can move in the reverse direction. Repeating this way, the wiping component 13 can clean the outer surface of the carrying shell 2, greatly improving the use functionality of the device and meeting the use requirements.

[0039] To ensure the rationality of the adsorption box, an air inlet 1a is provided on one side of the box body 1 to facilitate the entry of waste gas. An air outlet 1b is provided on the other side of the box body 1 to facilitate the discharge of the waste gas after adsorption and cleaning. A feed inlet 1c is provided above the bearing shell 2 to facilitate people to send activated carbon materials into the bearing shell 2 through the feed inlet 1c. A discharge port 1d is provided below the bearing shell 2 to facilitate people to smoothly discharge the activated carbon materials, so as to facilitate the addition of subsequent new materials. An aggregate bin 14 is provided in the box body 1 below the bearing shell 2. A discharge pipe 141 is provided on one side of the aggregate bin 14. The aggregate bin 14 is used to collect dust impurities and the like cleaned from the outer surface of the bearing shell 2. The discharge pipe 141 is connected to an external suction component to complete the convenient discharge of the dust received in the aggregate bin 14, reduce the operation difficulty, and meet the use requirements.

[0040] To further improve the adsorption effect in the adsorption box, a filter screen assembly 15 is provided in the box body 1 near the air inlet 1a. The filter screen assembly 15 includes filter plates 151, and filter cotton 152 is provided between adjacent two filter plates 151. A detachable door panel 153 is provided on the outer side of the box body 1 corresponding to the filter screen assembly 15. Among them, for the established door panel 153, it is detachably separated from the box body 1, which facilitates people to take and place the filter screen assembly 15 and ensure its filtering performance. When the waste gas enters through the air inlet 1a, it first passes through the filter screen assembly 15 for primary filtration to remove larger impurities, and in the equipment shutdown state, it can fall into the aggregate bin 14, which is convenient for subsequent centralized discharge. When it is necessary to clean this part, the door panel 153 is removed, then taken out from the box body 1, and then put back after the cleaning work is completed, which greatly improves the use function of the device and is simple and convenient to operate.

[0041] The above is only the preferred embodiment of the present invention, and it is not a limitation to the present invention in other forms. Any person skilled in the art may use the disclosed technical content to make changes or modifications into equivalent embodiments with equivalent changes and apply them to other fields. However, as long as it does not depart from the technical solution content of the present invention, any simple modification, equivalent change and modification made to the above embodiments according to the technical essence of the present invention still belong to the protection scope of the technical solution of the present invention.

Claims

1. A cleaning device for an activated carbon adsorption box, including a box body for the activated carbon to carry out the adsorption function, wherein a bearing shell for carrying the activated carbon is arranged in the box body, and is characterized in that, A cleaning device is provided inside the box. The cleaning device includes a detachable blowing mechanism and a wiping mechanism. The blowing mechanism includes a first moving and lifting component. A carrier plate is provided at the lower end of the first moving and lifting component. A screw rod adjusting component with an internal positive and reverse bidirectional screw rod is provided below the carrier plate. A multi-directional blowing component that can be swing-adjusted is provided at the mobile end of the screw rod adjusting component. An installation frame is provided on one side of the carrier plate. A forward blowing component is provided on the installation frame. A linkage component for adjusting the position where the forward blowing component is located is also provided outside the mobile end of the screw rod adjusting component. The wiping mechanism includes a second moving and lifting component. A placement frame designed in a π shape is provided below the second moving and lifting component. A horizontal adjusting component is provided outside the placement frame. A wiping component that realizes the wiping action in an opening and closing manner is provided outside the horizontal adjusting component.

2. The cleaning device for the activated carbon adsorption box according to claim 1, characterized in that, The first moving and lifting component includes a placement plate. A moving and adjusting plate is provided above the placement plate. A slide rail is provided above the placement plate. A slide plate is provided above the slide rail and is connected to the lower side of the moving and adjusting plate. A telescopic cylinder is provided above the moving and adjusting plate. A key-shaped groove is formed inside the placement plate.

3. The cleaning device for the activated carbon adsorption box according to claim 2, characterized in that, A T-shaped installation plate is provided at the mobile end of the screw rod adjusting component. The multi-directional blowing component includes a rotating seat rotatably connected to one side of the lower part of the installation plate. A first nozzle is provided below the rotating seat. A resisting rod designed in an obtuse angle shape is provided on one side of the rotating seat. The resisting rods at one ends of the two rotating seats are hinged. A driving cylinder is provided on one side of the installation plate. A ejector rod is provided at the output end of the driving cylinder and is movably connected to the connection part of the two resisting rods.

4. The cleaning device for the activated carbon adsorption box according to claim 3, characterized in that, The forward blowing component includes a rotating rod provided inside the installation frame. A plurality of L-shaped connecting frames are evenly arranged on the outer side of the rotating rod. A second nozzle is provided on one side of the connecting frame.

5. The cleaning device for the activated carbon adsorption box according to claim 4, characterized in that, The linkage component includes a limiting strip connected to one side of the lower part of the installation plate. A rack is provided inside the limiting strip. A support seat is provided on one side of the installation frame. A rotating shaft is provided inside the support seat. A rotating gear is provided on one side of the rotating shaft and meshes with the rack. A driving bevel gear is provided on the other side of the rotating shaft. A driven bevel gear is provided on the outer side of the rotating rod and meshes with the driving bevel gear.

6. The cleaning device for the activated carbon adsorption box according to claim 5, wherein, The wiping component includes a connecting seat. A slide rod is provided between the two connecting seats. An L-shaped moving plate is provided on the slide rod. A folding plate designed in a V shape is provided on one side of the moving plate. A concave seat is provided at the connection part of the folding plate. A wiping plate is provided on one side of the folding plate. A slide bar is provided inside the folding plate. A slide seat is provided on the slide bar. A hinge seat is provided on the outer side of the slide seat and is connected to the outer end face of the moving plate. A connecting plate is provided on the other side of the folding plate. The two connecting plates are finger-hinged and the other ends thereof are rotatably connected to the inner side of the folding plate.

7. The cleaning device for the activated carbon adsorption box according to claim 6, wherein, The horizontal adjustment assembly includes a rotating rod, a driving disk is arranged on one side of the rotating rod, a moving assembly is arranged on one side of the driving disk, the moving assembly includes a mounting seat, a limiting rod is arranged between two mounting seats, a moving seat is arranged on the limiting rod, an adjusting plate is arranged on the outer side of the moving seat and is connected to the concave seat, a driving rod is arranged above the adjusting plate and abuts against the driving disk, and a linkage wheel is arranged between the rotating rods of the two horizontal adjustment assemblies.

8. The cleaning device for the activated carbon adsorption box according to claim 1, characterized in that An air inlet is arranged on one side of the box body, an air outlet is arranged on the other side of the box body, a feed inlet is arranged above the bearing shell, a discharge port is arranged below the bearing shell, an aggregate bin is arranged in the box body below the bearing shell, and a discharge pipe is arranged on one side of the aggregate bin.

9. The cleaning device for the activated carbon adsorption box according to claim 9, characterized in that, A filter screen assembly is arranged in the box body near the air inlet, the filter screen assembly includes filter plates, filter cotton is arranged between adjacent two filter plates, and a detachable door panel is arranged on the outer side of the box body corresponding to the filter screen assembly.

Citation Information

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