Filter cartridge cleaning equipment

By designing a filter cartridge cleaning device, which utilizes a vibrating shaft and suction port to achieve automated cleaning of the filter cartridge, the problems of incomplete cleaning caused by dust clogging and high manual labor intensity are solved, achieving a highly efficient and low-pollution filter cartridge cleaning effect.

CN224086342UActive Publication Date: 2026-04-07CHANGSHA JITIAN ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-30
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing cartridge dust collectors suffer from incomplete cleaning due to dust clogging during use. Manual cleaning is labor-intensive and can easily cause secondary pollution. Replacing the cartridges is also a waste of resources.

Method used

Design a filter cartridge cleaning device that uses a vibrating shaft to drive the filter cartridge to vibrate, combined with a suction port and a dust collection hopper to achieve automated cleaning, reduce manual labor intensity and reduce secondary pollution.

Benefits of technology

It enables rapid cleaning of filter cartridges, reduces manual labor intensity, minimizes secondary pollution, and improves cleaning efficiency and resource utilization.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to filter cartridge cleaning equipment. The filter cartridge cleaning equipment comprises a cleaning box, a dust collecting hopper, a dust removing mechanism, a vibrating shaft, a vibrating mechanism and a driving mechanism. According to the filter cartridge cleaning equipment, the filter cartridge is rapidly cleaned in a mode of vibrating the filter cartridge, and in the whole filter cartridge cleaning process, a worker only needs to participate in the operations of putting the filter cartridge into the cleaning box and taking the filter cartridge out of the cleaning box and does not need to participate in the specific cleaning work of the filter cartridge, so that the labor intensity of manpower for cleaning the filter cartridge is greatly reduced; and the suction port is used for quickly sucking dust falling from the filter cartridge into the dust collecting hopper, so that the probability of site pollution caused by secondary dust raising in the cleaning process of the filter cartridge is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of filter cartridge cleaning technology, and in particular to a filter cartridge cleaning device. Background Technology

[0002] With the rapid development of industry and increasingly stringent requirements for environmental protection, cartridge dust collectors are being used more and more widely in dust removal projects due to their obvious advantages: high filtration accuracy, large filtration area, compact structure, small footprint, and convenient installation and maintenance. However, the dense pleats of the filter cartridges lead to significant dust buildup after a period of use, making it difficult to clean them effectively using only the dust collector's own back-flushing function. Previously, some manufacturers removed the filter cartridges and cleaned them manually (using compressed air back-flushing and manual vibration) before reinstalling them in the dust collector. This method is labor-intensive, creates a dusty and unsanitary environment that harms worker health, and causes secondary pollution. Other manufacturers discard the clogged filter cartridges (which can actually be cleaned and reused) and install new ones, which is wasteful. Utility Model Content

[0003] Therefore, it is necessary to provide a filter cartridge cleaning device that can quickly clean the filter cartridge, reduce manual labor intensity, and avoid polluting the cleaning site.

[0004] A filter cartridge cleaning device, comprising:

[0005] The cleaning box has a passage hole at the top and a dust collection port at the bottom; the side wall of the cleaning box has vibration guide holes.

[0006] The ash collection hopper has its large end installed at the bottom of the cleaning box and connected to the ash discharge port; the side wall of the ash collection hopper is provided with an exhaust port; the exhaust port is used to connect to the exhaust pipe of an external dust collector, fan or dust removal system.

[0007] The dust removal mechanism includes a mounting structure with positioning mounting holes and a flexible lifting component; the mounting structure is housed within the cleaning box; both ends of the flexible lifting component are respectively connected to the top of the mounting structure and the top of the cleaning box.

[0008] A vibration shaft is slidably inserted through the vibration guide hole; one end of the vibration shaft is movably connected to the mounting structure, and the other end extends to the outside of the cleaning box;

[0009] A vibration mechanism is connected to one end of the vibration shaft located outside the cleaning box;

[0010] A drive mechanism is connected to the vibration mechanism and is used to drive the vibration mechanism to reciprocate the vibration shaft in the direction of the central axis of the vibration guide hole.

[0011] In one embodiment, the flexible lifting component includes a plurality of flexible lifting ropes; the plurality of flexible lifting ropes are spaced apart circumferentially along the mounting structure, and the two ends of each flexible lifting rope are respectively connected to the top of the mounting structure and the top of the cleaning box.

[0012] In one embodiment, the vibration mechanism includes a rotating shaft and a cam; the cam has spaced-apart rotating connection holes and an eccentric portion; the rotating shaft is rotatably mounted on the outside of the cleaning box; the rotating shaft passes through the rotating connection holes and is drivenly connected to the cam; the eccentric portion is movably connected to one end of the vibration shaft located outside the cleaning box; the drive mechanism is drivenly connected to the rotating shaft and is used to drive the rotating shaft to rotate.

[0013] In one embodiment, the driving mechanism is a drive motor; the filter cartridge cleaning device further includes a transmission mechanism; the transmission mechanism includes a driving wheel, a driven wheel, and a transmission belt; the driving wheel and the driven wheel are respectively connected to the output shaft of the drive motor and the rotating shaft; the transmission belt is tensioned on the driving wheel and the driven wheel.

[0014] In one embodiment, the outer wall of the cleaning box is provided with two mounting portions; the vibration guide hole is located between the two mounting portions; the two ends of the rotating shaft are rotatably mounted on the two mounting portions respectively, and the cam is located between the two mounting portions.

[0015] In one embodiment, the system further includes a first elastic member and a second elastic member; the first elastic member is used to provide an elastic force to the mounting structure away from the direction of the vibration guide hole; the second elastic member is used to provide an elastic force to the mounting structure toward the vibration guide hole.

[0016] In one embodiment, the first elastic element includes a first spring steel plate and a first rigid fixing member; one end of the first spring steel plate is fixed to the top of the cleaning box; one end of the first rigid fixing member is fixedly connected to the side of the mounting structure facing the vibration guide hole; the other end of the first rigid fixing member is connected to the other end of the first spring steel plate.

[0017] The second elastic element includes a second spring steel plate and a second rigid fixing member; one end of the second spring steel plate is fixed to the top of the cleaning box; one end of the second rigid fixing member is fixedly connected to the side of the mounting structure facing the vibration guide hole; the other end of the second rigid fixing member is connected to the other end of the second spring steel plate.

[0018] In one embodiment, the mounting structure has a vibration point, a first mounting point, and a second mounting point; the vibration point, the first mounting point, and the second mounting point are arranged in a triangular pattern, and the vibration point is located between the first mounting point and the second mounting point; the vibration point is rotatably connected to one end of the vibration shaft located inside the cleaning box; the first mounting point and the second mounting point are respectively fixedly connected to the end of the first rigid fastener away from the first spring steel plate and the end of the second rigid fastener away from the second spring steel plate.

[0019] In one embodiment, it further includes a frame, a gate valve, and an ash bucket; the cleaning box is mounted on the frame, and the small end of the ash hopper is suspended; the gate valve is installed at the small end opening of the ash hopper; the ash bucket is configured to be placed inside the frame and communicate with the small end opening of the ash hopper; and / or

[0020] It also includes an operating platform and a staircase; the operating platform is located on one side of the cleaning box and is adjacent to the cleaning box; the operating platform has an operating surface for people to stand on; one end of the staircase is connected to the edge of the operating surface and is inclined relative to the operating surface.

[0021] In one embodiment, a controller is also included; the drive mechanism is a drive motor; the controller is connected to the drive motor and can generate instructions to control the operation of the drive motor in response to user operations.

[0022] In use, the filter cartridge cleaning equipment described above involves inserting the filter cartridge to be cleaned through the through hole into the positioning mounting hole, positioning the open end of the filter cartridge at the edge of the positioning mounting hole, and placing the other end of the filter cartridge on the side of the mounting structure facing the dust collection hopper. Then, the drive mechanism is activated, causing the vibrating shaft to slide back and forth along the central axis of the vibration guide hole. This causes the mounting structure and the filter cartridge on it to vibrate back and forth in the direction of the vibration guide hole, causing the dust adhering to the filter cartridge to fall off. The fallen dust then falls out of the housing through the dust collection hopper under its own gravity. Therefore, this filter cartridge cleaning equipment achieves rapid cleaning of the filter cartridge by vibrating it. Throughout the cleaning process, workers only need to place and remove the filter cartridges from the cleaning housing, without needing to participate in the actual cleaning work, greatly reducing the manual labor intensity of filter cartridge cleaning. Furthermore, the suction port quickly extracts the dust shaken off the filter cartridges into the dust collection hopper, reducing the probability of secondary dust generation and on-site pollution during the cleaning process. Attached Figure Description

[0023] Figure 1This is a schematic diagram of the filter cartridge cleaning device in a preferred embodiment of the present invention;

[0024] Figure 2 for Figure 1 A magnified view of a portion of the filter cartridge cleaning equipment shown.

[0025] Explanation of reference numerals in the detailed embodiments: 100, filter cartridge cleaning equipment; 110, cleaning box; 111, through hole; 112, ash discharge port; 113, mounting part; 120, ash collection hopper; 121, exhaust port; 130, dust removal mechanism; 131, mounting structure; 1311, vibration point; 1312, first mounting point; 1313, second mounting point; 132, flexible lifting component; 1321, flexible lifting rope; 140, vibration shaft; 150, vibration mechanism; 151, rotating shaft; 152, cam; 1521 1522 Rotary connecting hole; 160 Eccentric part; 170 Drive mechanism; 171 Transmission mechanism; 172 Drive wheel; 173 Driven wheel; 181 First elastic element; 1811 First spring steel plate; 1812 First rigid fixing element; 182 Second elastic element; 1821 Second spring steel plate; 1822 Second rigid fixing element; 190 Frame; 201 Slide valve; 202 Ash bucket; 203 Operating platform; 204 Step ladder; 205 Controller; 10 Filter element. Detailed Implementation

[0026] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. Preferred embodiments of this utility model are shown in the drawings. However, this utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to provide a more thorough and complete understanding of the disclosure of this utility model.

[0027] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items.

[0028] When describing positional relationships, unless otherwise specified, when an element is referred to as being "on" another element, it may be directly on the other element or there may be intermediate elements. It is also understood that when an element is referred to as being "between" two elements, it may be the only one between the two elements, or there may be one or more intermediate elements.

[0029] When using the terms “including,” “having,” and “comprising” as described herein, another component may be added unless explicitly qualifying terms such as “only,” “consisting of,” etc. are used. Unless otherwise stated, singular terms may include plural forms and should not be construed as having a quantity of one.

[0030] Figure 1 The diagram illustrates the structure of a filter cartridge cleaning device according to one embodiment of the present invention. For ease of explanation, the accompanying drawings only show structures relevant to the embodiments of the present invention.

[0031] Please see Figure 1 and Figure 2 The filter cartridge cleaning device 100 in the preferred embodiment of this utility model includes a cleaning box 110, a dust collection hopper 120, a dust removal mechanism 130, a vibration shaft 140, a vibration mechanism 150, and a drive mechanism 160.

[0032] The cleaning box 110 has a through hole 111 at its top and a dust collection port 112 at its bottom. The cleaning box 110 has vibration guide holes (not shown in the figure) on its side wall.

[0033] The larger end of the dust collection hopper 120 is installed at the bottom of the cleaning box 110 and is connected to the dust discharge port 112. An exhaust port 121 is formed on the side wall of the dust collection hopper 120. The exhaust port 121 is used to connect to the exhaust pipe of an external dust collector, fan or dust collection system.

[0034] The dust removal mechanism 130 includes a mounting structure 131 with positioning mounting holes (not shown) and a flexible lifting member 132. The mounting structure 131 is housed within the cleaning box 110. The two ends of the flexible lifting member 132 are connected to the top of the mounting structure 131 and the top of the cleaning box 110, respectively. Thus, the mounting structure 131 is suspended from the top of the cleaning box 110 and can swing left and right.

[0035] The vibration shaft 140 is slidably inserted through the vibration guide hole. One end of the vibration shaft 140 is movably connected to the mounting structure 131, and the other end extends to the outside of the cleaning box 110.

[0036] The vibration mechanism 150 is connected to the vibrating shaft 140 at one end outside the cleaning box 110. The drive mechanism 160 is connected to the vibration mechanism 150 and is used to drive the vibration mechanism 150 to drive the vibrating shaft 140 to slide back and forth in the direction of the central axis of the vibration guide hole.

[0037] When using the above-mentioned filter cartridge cleaning device 100, the filter cartridge 10 to be cleaned is inserted into the positioning mounting hole through the through hole 111, and the open end of the filter cartridge 10 is positioned at the edge of the positioning mounting hole. The other end of the filter cartridge 10 is located on the side of the mounting structure 131 facing the dust collection hopper 120. Then, the drive mechanism 160 is started, so that the vibration shaft 140 slides back and forth along the central axis of the vibration guide hole under the drive of the drive mechanism 160, so as to drive the mounting structure 131 and the filter cartridge 10 on the mounting structure 131 to vibrate back and forth in the direction of the vibration guide hole, thereby causing the dust adhering to the filter cartridge 10 to fall off. The fallen dust falls out of the cleaning box 110 through the dust collection hopper 120 under its own gravity.

[0038] To explain "the mounting structure 131 vibrates back and forth in the direction of the vibration guide hole", in practical applications, the vibration direction of the mounting structure 131 can be the direction of the central axis of the vibration guide hole, or it can be a direction that is slightly inclined relative to the central axis of the vibration guide hole.

[0039] Therefore, the aforementioned filter cartridge cleaning equipment 100 achieves rapid cleaning of the filter cartridge 10 by vibrating it. Throughout the entire cleaning process, workers only need to place the filter cartridge 10 into the cleaning box 110 and remove it from the cleaning box 110; they do not need to participate in the actual cleaning work, greatly reducing the manual labor intensity of cleaning the filter cartridge 10. Furthermore, the suction port quickly draws the dust shaken off the filter cartridge 10 into the dust collection hopper 120, reducing the probability of secondary dust generation and on-site pollution during the cleaning process.

[0040] In some embodiments, the flexible lifting component 132 includes a plurality of flexible lifting ropes 1321. The plurality of flexible lifting ropes 1321 are spaced apart circumferentially along the mounting structure 131, and both ends of each flexible lifting rope 1321 are connected to the top of the mounting structure 131 and the top of the cleaning box 110, respectively. The flexible lifting ropes 1321 can be steel wire ropes, chains, strong braided ropes, cables, etc. Specifically, positioning mounting holes are located between the plurality of flexible lifting ropes 1321. Specifically, the plurality of flexible lifting ropes 1321 are evenly distributed circumferentially along the mounting structure 131.

[0041] Setting the flexible lifting component 132 as multiple flexible lifting ropes 1321 not only simplifies the structure of the flexible lifting component 132 and reduces the manufacturing cost of the filter cartridge cleaning equipment 100, but also ensures a high level of the installation structure 131 after hoisting because the multiple flexible lifting ropes 1321 are spaced apart along the circumference of the installation structure 131.

[0042] Of course, in other embodiments, the flexible lifting component 132 can also be a hook, a lifting ring, or other customized lifting connectors that can lift the installation structure 131 onto the top of the cleaning box 110 and allow the installation structure 131 to swing left and right.

[0043] In some embodiments, the vibration mechanism 150 includes a rotating shaft 151 and a cam 152. The cam 152 has a spaced-apart rotating connection hole 1521 and an eccentric portion 1522. The rotating shaft 151 is rotatably mounted on the outside of the cleaning box 110. The rotating shaft 151 passes through the rotating connection hole 1521 and is drivenly connected to the cam 152. The eccentric portion 1522 is movably connected to one end of the vibration shaft 140 located outside the cleaning box 110. The drive mechanism 160 is drivenly connected to the rotating shaft 151 and is used to drive the rotating shaft 151 to rotate.

[0044] Thus, during use, the drive mechanism 160 drives the rotating shaft 151 to drive the cam 152 to rotate rapidly. At this time, the eccentric part 1522 drives the vibration shaft 140 to make eccentric movements around the rotating connection hole 1521, so as to realize the reciprocating sliding of the vibration shaft 140 in the direction of the central axis of the vibration guide hole, thereby providing vibration force for the installation structure 131.

[0045] Furthermore, in some embodiments, the drive mechanism 160 is a drive motor. The filter cartridge cleaning device 100 also includes a transmission mechanism 170. The transmission mechanism 170 includes a drive pulley 171, a driven pulley 172, and a transmission belt 173. The drive pulley 171 and the driven pulley 172 are respectively connected to the output shaft and the rotating shaft 151 of the drive motor. The transmission belt 173 is tensioned on the drive pulley 171 and the driven pulley 172. Thus, the drive motor and the rotating shaft 151 are connected by a belt transmission mechanism 170. The belt transmission mechanism 170 has advantages such as low processing cost, smooth transmission, simple structure, low noise during operation, and low maintenance cost. Therefore, setting the transmission mechanism 170 as a drive pulley 171, a driven pulley 172, and a transmission belt 173 can improve the smoothness of operation of the filter cartridge cleaning device 100, reduce the manufacturing cost, noise during operation, and maintenance cost of the filter cartridge cleaning device 100, and make the structure of the filter cartridge cleaning device 100 more compact.

[0046] Of course, in other embodiments, the drive mechanism 160 can also be connected to the rotating shaft 151 via gear transmission, chain transmission, etc.

[0047] Furthermore, in some embodiments, the outer wall of the cleaning box 110 is provided with two mounting portions 113. A vibration guide hole is located between the two mounting portions 113. The two ends of the rotating shaft 151 are rotatably mounted on the two mounting portions 113 respectively, and the cam 152 is located between the two mounting portions 113.

[0048] Thus, the cleaning box 110 provides two-point support for the rotating shaft 151 through two mounting parts 113, and the two support points are located on both sides of the cam 152, which greatly improves the structural stability of the rotating shaft 151 and the cam 152, and improves the smoothness of the cam 152 when rotating.

[0049] In some embodiments, the filter cartridge cleaning device 100 further includes a first elastic element 181 and a second elastic element 182. The first elastic element 181 provides an elastic force to the mounting structure 131 away from the direction of the vibration guide hole. The second elastic element 182 provides an elastic force to the mounting structure 131 toward the vibration guide hole. The first elastic element 181 and the second elastic element 182 can be metal springs, compression springs, tension springs, etc.

[0050] Thus, under the action of the vibration mechanism 150, when the vibration shaft 140 drives the mounting structure 131 to vibrate back and forth in the direction of the vibration guide hole, the elastic force provided by the first elastic element 181 and the second elastic element 182 can increase the rebound force of the mounting structure 131 during vibration, thereby increasing the vibration force of the mounting structure 131, so as to further improve the cleaning effect and cleaning efficiency of the filter cartridge 10.

[0051] Furthermore, in some embodiments, the first elastic member 181 includes a first spring steel plate 1811 and a first rigid fixing member 1812. One end of the first spring steel plate 1811 is fixed to the top end inside the cleaning box 110. One end of the first rigid fixing member 1812 is fixedly connected to the side of the mounting structure 131 facing the vibration guide hole. The other end of the first rigid fixing member 1812 is connected to the other end of the first spring steel plate 1811.

[0052] The second elastic element 182 includes a second elastic steel plate 1821 and a second rigid fixing element 1822. One end of the second elastic steel plate 1821 is fixed to the top of the cleaning box 110. One end of the second rigid fixing element 1822 is fixedly connected to the side of the mounting structure 131 facing the vibration guide hole. The other end of the second rigid fixing element 1822 is connected to the other end of the second elastic steel plate 1821.

[0053] Thus, when the mounting structure 131 swings left and right under the action of the vibration mechanism 150, one of the first spring steel plate 1811 and the second spring steel plate 1821 is in a bending and storing state, while the other is in an energy releasing state. The elastic force is transmitted to the mounted structure 131 through the first rigid fixing member 1812 and the second rigid fixing member 1822, respectively, thereby strengthening the vibration force on the mounting structure 131. Moreover, compared to other elastic components (such as compression springs, metal spring sheets, etc.), the first spring steel plate 1811 and the second spring steel plate 1821 have a stronger energy storage capacity, resulting in a better vibration strengthening effect on the mounting structure 131.

[0054] Furthermore, in some embodiments, the mounting structure 131 has a vibration point 1311, a first mounting point 1312, and a second mounting point 1313. The vibration point 1311, the first mounting point 1312, and the second mounting point 1313 are arranged in a triangular pattern, with the vibration point 1311 located between the first mounting point 1312 and the second mounting point 1313. The vibration point 1311 is rotatably connected to one end of the vibration shaft 140 located inside the cleaning box 110. The first mounting point 1312 and the second mounting point 1313 are respectively fixedly connected to the end of the first rigid fastener 1812 away from the first spring steel plate 1811 and the end of the second rigid fastener 1822 away from the second spring steel plate 1821.

[0055] Thus, the points of action of the vibration shaft 140, the first spring steel plate 1811, and the second spring steel plate 1821 on the mounting structure 131 are distributed in a triangular pattern. In the height direction of the mounting structure 131, the mounting points are located above or below the first mounting point 1312 and the second mounting point 1313. This ensures that the first and second elastic steel plates can counteract the tendency of the mounting structure 131 to flip under the action of the vibration shaft 140, reducing the probability of the bottom of the filter cartridge 10 colliding with the inner wall of the cleaning box 110 or other components inside the cleaning box 110 due to the flipping of the mounting structure 131, thereby improving the safety of filtration and cleaning.

[0056] In some embodiments, the filter cartridge cleaning device 100 further includes a frame 190, a gate valve 201, and an ash bucket 202. A cleaning box 110 is mounted on the frame 190, and the small end of the ash hopper 120 is suspended. The gate valve 201 is installed at the small end opening of the ash hopper 120. The ash bucket 202 is configured to be placed inside the frame 190 and communicate with the small end opening of the ash hopper 120.

[0057] In practical applications, by opening the slide valve 201, dust and debris in the dust collection hopper 120 are collected into the dust bin 202. By closing the slide valve 201, dust and debris can be collected in the dust collection hopper 120. When the dust bin 202 is full, it can be pulled out from the bottom of the dust collection hopper 120 for easy removal of dust and debris.

[0058] In some embodiments, the filter cartridge cleaning device 100 further includes an operating platform 203 and a ladder 204. The operating platform 203 is disposed on one side of the cleaning box 110 and adjacent to the cleaning box 110. The operating platform 203 has an operating surface (not shown) for standing. One end of the ladder 204 is connected to the edge of the operating surface and is inclined relative to the operating surface.

[0059] The step ladder 204 is provided to facilitate workers' access to and from the operating platform, which serves as the standing position for workers when placing the filter cartridges 10 to be cleaned into the cleaning box 110 and removing the cleaned filter cartridges 10 from the cleaning box 110. Therefore, the step ladder 204 and the operating platform 203 improve the ease of operation of the filter cartridge cleaning equipment 100, making the work of placing and removing the filter cartridges 10 into the cleaning box 110 more convenient and simple, and further reducing the intensity of manual labor.

[0060] In some embodiments, the filter cartridge cleaning device 100 further includes a controller 205. The drive mechanism 160 is a drive motor. The controller 205 is connected to the drive motor and can generate commands to control the operation of the drive motor in response to user operations. The controller 205 can interact with the user via a touchscreen, control buttons, rotary knobs, etc. Thus, the controller 205 can generate corresponding control commands based on received user operations, and then control the start and stop of the drive motor according to the control commands, thereby enabling the filter cartridge cleaning device 100 to start and stop, greatly improving the ease of use of the filter cartridge cleaning device 100.

[0061] In some embodiments, a quick-clamping structure (not shown) is provided on the side of the mounting structure 131 opposite to the ash collection hopper 120. This quick-clamping structure can be a quick clamp, a quick-pressing plate, or similar structure. In actual use, after the filter cartridge 10 passes through the through hole 111 into the positioning mounting hole, the quick-clamping structure secures the open end of the filter cartridge 10 to the mounting structure 131, thus positioning the filter cartridge 10 on the mounting structure 131. This ensures that the filter cartridge 10 remains stable on the mounting structure 131 throughout the entire vibration cleaning process, improving the safety of the filter cartridge 10 cleaning operation and enhancing the cleaning effect. When it is necessary to remove the filter cartridge 10 from the mounting structure 131, simply open the quick-clamping structure to easily remove the filter cartridge 10 from the cleaning box 110.

[0062] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0063] The above-described embodiments are merely illustrative of several implementations of this utility model, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the utility model patent. It should be noted that those skilled in the art can make various modifications and improvements without departing from the inventive concept, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model patent should be determined by the appended claims.

Claims

1. A filter cartridge cleaning device, characterized in that, include: The cleaning box has a passage hole at the top and a dust collection port at the bottom; the side wall of the cleaning box has vibration guide holes. The ash collection hopper has its large end installed at the bottom of the cleaning box and connected to the ash discharge port; the side wall of the ash collection hopper is provided with an exhaust port; the exhaust port is used to connect to the exhaust pipe of an external dust collector, fan or dust removal system. The dust removal mechanism includes a mounting structure with positioning mounting holes and a flexible lifting component; the mounting structure is housed within the cleaning box; both ends of the flexible lifting component are respectively connected to the top of the mounting structure and the top of the cleaning box. A vibration shaft is slidably inserted through the vibration guide hole; one end of the vibration shaft is movably connected to the mounting structure, and the other end extends to the outside of the cleaning box; A vibration mechanism is connected to one end of the vibration shaft located outside the cleaning box; A drive mechanism is connected to the vibration mechanism and is used to drive the vibration mechanism to reciprocate the vibration shaft in the direction of the central axis of the vibration guide hole.

2. The filter cartridge cleaning device according to claim 1, characterized in that, The flexible lifting component includes multiple flexible lifting ropes; the multiple flexible lifting ropes are arranged at intervals along the circumference of the mounting structure, and the two ends of each flexible lifting rope are respectively connected to the top of the mounting structure and the top of the cleaning box.

3. The filter cartridge cleaning device according to claim 1, characterized in that, The vibration mechanism includes a rotating shaft and a cam; the cam has a rotating connecting hole and an eccentric part arranged at intervals; the rotating shaft is rotatably mounted on the outside of the cleaning box; the rotating shaft passes through the rotating connecting hole and is drivenly connected to the cam; the eccentric part is movably connected to one end of the vibration shaft located outside the cleaning box; the drive mechanism is drivenly connected to the rotating shaft and is used to drive the rotating shaft to rotate.

4. The filter cartridge cleaning device according to claim 3, characterized in that, The driving mechanism is a drive motor; the filter cartridge cleaning device also includes a transmission mechanism; the transmission mechanism includes a drive wheel, a driven wheel, and a transmission belt; the drive wheel and the driven wheel are respectively connected to the output shaft of the drive motor and the rotating shaft; the transmission belt is tensioned on the drive wheel and the driven wheel.

5. The filter cartridge cleaning device according to claim 3, characterized in that, The outer wall of the cleaning box is provided with two mounting parts; the vibration guide hole is located between the two mounting parts; the two ends of the rotating shaft are rotatably mounted on the two mounting parts respectively, and the cam is located between the two mounting parts.

6. The filter cartridge cleaning device according to claim 1, characterized in that, It also includes a first elastic element and a second elastic element; the first elastic element is used to provide an elastic force to the mounting structure away from the direction of the vibration guide hole; the second elastic element is used to provide an elastic force to the mounting structure toward the vibration guide hole.

7. The filter cartridge cleaning device according to claim 6, characterized in that, The first elastic element includes a first spring steel plate and a first rigid fixing member; one end of the first spring steel plate is fixed to the top of the cleaning box; one end of the first rigid fixing member is fixedly connected to the side of the mounting structure facing the vibration guide hole; the other end of the first rigid fixing member is connected to the other end of the first spring steel plate. The second elastic element includes a second spring steel plate and a second rigid fixing member; one end of the second spring steel plate is fixed to the top of the cleaning box; one end of the second rigid fixing member is fixedly connected to the side of the mounting structure facing the vibration guide hole; the other end of the second rigid fixing member is connected to the other end of the second spring steel plate.

8. The filter cartridge cleaning device according to claim 7, characterized in that, The installation structure has a vibration point, a first installation point, and a second installation point; the vibration point, the first installation point, and the second installation point are arranged in a triangle, and the vibration point is located between the first installation point and the second installation point; the vibration point is rotatably connected to one end of the vibration shaft located inside the cleaning box; the first installation point and the second installation point are respectively fixedly connected to the end of the first rigid fastener away from the first spring steel plate and the end of the second rigid fastener away from the second spring steel plate.

9. The filter cartridge cleaning device according to claim 1, characterized in that, It also includes a frame, a gate valve, and an ash bucket; the cleaning box is mounted on the frame, and the small end of the ash hopper is suspended; the gate valve is installed at the small end opening of the ash hopper; the ash bucket is configured to be placed inside the frame and communicate with the small end opening of the ash hopper; and / or It also includes an operating platform and a staircase; the operating platform is located on one side of the cleaning box and is adjacent to the cleaning box; the operating platform has an operating surface for people to stand on; one end of the staircase is connected to the edge of the operating surface and is inclined relative to the operating surface.

10. The filter cartridge cleaning device according to claim 1, characterized in that, It also includes a controller; the drive mechanism is a drive motor; the controller is connected to the drive motor and can generate instructions to control the operation of the drive motor in response to user operations.