An aluminum dust collector with a fully automatic continuous cleaning device

Through the aluminum dust collector with a fully automatic continuous cleaning device, the filter is automatically and efficiently cleaned and water flushed with pulse components and cleaning components, solving the problems of large filter cleaning workload and low dust removal efficiency in the prior art, and achieving efficient and continuous operation of the dust collector.

CN116747634BActive Publication Date: 2025-07-18ANHUI HUACHUANG ENVIRONMENTAL PROTECTION EQUIP TECH CO LTD
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Patent Information

Application Number
CN202310854224.8
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-07-13
Publication Date
2025-07-18
Estimated Expiration
2043-07-13

AI Technical Summary

Technical Problem

The existing aluminum dust collectors work a lot, are dirty and easy to damage when cleaning the filter, and the uncleaning of the cleaning affects the dust removal efficiency in time. The compressed air pulsed backblown device has poor effect on adhesion or blockage dust cleaning.

Method used

Design an aluminum dust collector with fully automatic continuous cleaning device, which automatically and efficiently cleans the filter through pulse components and cleaning components, and combines water flushing to achieve continuous replacement and maintenance of the filter.

Benefits of technology

It significantly improves the cleaning effect of dust and impurities on the filter, improves the dust removal efficiency of the dust collector, avoids shutdown operations, and ensures the continuous operation of the dust collector.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to the technical field of dust collectors, and specifically relates to an aluminum dust collector with a fully automatic continuous cleaning device, including a dust removal box, an air inlet pipe, an air outlet pipe, and an aggregate hopper. The aggregate hopper is arranged at the bottom of the dust removal box. In the present invention, pulsed air is introduced into the interior of the filter through the pulse assembly at the top of the mounting frame, and the dust and impurities attached to the outer peripheral surface of the filter are blown out by the pulsed air. The cleaning assembly arranged on the outer peripheral surface of the filter is used to synchronously clean the outer peripheral surface of the filter, significantly improving the cleaning effect of the dust and impurities on the filter. At the same time, the cleaning assembly is used to seal the filter, enabling the filter to be rinsed with water solution, further improving the filtering effect of the filter on the dust in the gas. In addition, the filter inside the dust removal box can be individually taken out for replacement and maintenance, and it is not necessary to control the dust collector to stop operating, thereby effectively improving the dust removal efficiency of the dust collector for the gas.
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Description

Technical Field

[0001] The present invention relates to the technical field of dust collectors, and specifically to an aluminum dust collector with a fully automatic continuous cleaning device. Background Art

[0002] In the field of dust control, aluminum dust collection, as a mature dust collection technology, has extremely high dust collection efficiency and simple dust collection methods, making it a classic dust collection method for dust control in various industries and under various working conditions. The filter inside the dust collector is the core part of the dust collector, which is used to filter dust and particulate matter in the air. The filter is generally made of materials such as high-efficiency filter paper, filter elements, and filter meshes.

[0003] When cleaning the filter inside the aluminum dust collector, manual cleaning is generally adopted, that is, the filter is removed and manually cleaned. This not only has a large workload, is dirty and tiring, but also easily damages the filter and affects the continuous operation of the dust collector. If the cleaning is not timely, it will seriously affect the dust collection efficiency. Second, a compressed air pulsed reverse blowing device is installed. Compressed air is blown out inside the filter in an extremely short time. Under the action of the reverse air flow scour, the dust attached to the outer surface of the filter is blown off and falls into the ash hopper. This method has a certain cleaning effect on the dust adsorbed on the surface, but for some adhesion or blockage situations, effective cleaning cannot be achieved, seriously affecting the dust collection efficiency of the aluminum dust collector.

[0004] Therefore, we have proposed an aluminum dust collector with a fully automatic continuous cleaning device. Summary of the Invention

[0005] Aiming at the deficiencies of the prior art, the present invention provides an aluminum dust collector with a fully automatic continuous cleaning device, which is used to realize the automatic, efficient and continuous cleaning of the filter inside the dust collector, and can replace and maintain the filter without stopping the machine, improving the dust collection efficiency of the aluminum dust collector.

[0006] To achieve the above objectives, the present invention is realized through the following technical solutions: An aluminum dust collector with a fully automatic continuous cleaning device includes a dust collection box, an air inlet pipe, an air outlet pipe, and an aggregate hopper. The aggregate hopper is arranged at the bottom of the dust collection box, and a top cover is further arranged at the top of the dust collection box. The air inlet pipe is arranged below one side of the dust collection box, and the air outlet pipe is arranged on one side of the top cover. The bottom of the inner wall of the top cover is provided with a mounting rack, and several filters are arranged inside the mounting rack. The bottom ends of several filters extend into the interior of the dust collection box. A pulse assembly is further arranged inside the top cover and is arranged above the mounting rack. Several cleaning assemblies are arranged at the top of the mounting rack, and several cleaning assemblies are respectively arranged on the outer circumferential surfaces of several filters. A discharge pipe is arranged at the bottom of the aggregate hopper, and a control assembly is arranged inside the discharge pipe;

[0007] When using a dust collector for gas filtration, gas is sent into the interior of the dust removal box through the intake pipe. A number of filters provided inside the dust removal box are used to filter and remove dust and impurities in the gas. The gas after filtration and dust removal enters the interior of the top cover, and finally the filtered and dust-removed gas is sent out through the outlet pipe, achieving efficient dust removal of the gas. After the dust collector has been working for a period of time, in order to ensure the dust removal effect of the filter on the gas, pulse air is introduced into the interior of the filter by the pulse component at the top of the mounting frame. The dust and impurities attached to the outer peripheral surface of the filter are blown out by the pulse air, and the cleaning component provided on the outer peripheral surface of the filter is used to synchronously clean the outer peripheral surface of the filter, significantly improving the cleaning effect of the dust and impurities on the filter. At the same time, the filter can be closed by the cleaning component, enabling the filter to be washed with a water solution, further improving the dust filtration effect of the filter on the gas. In addition, the filters inside the dust removal box can be individually removed, replaced, and maintained without the need to control the dust collector to stop operating, thereby effectively improving the dust removal efficiency of the dust collector for gas.

[0008] The pulse component includes an air tank. An air tank is provided on one side of the dust removal box, and a number of air pumps are provided on the top of the air tank. A connecting sleeve is provided on one side of the inner wall of the top cover, and a movable sleeve is slidably provided on one side of the connecting sleeve. A second air duct is provided on one side of the movable sleeve. One end of the second air duct is slidably connected to one side of the inner wall of the top cover, and a number of pulse nozzles are provided on the surface of the second air duct.

[0009] The cleaning component includes a connecting frame and a cleaning frame. A connecting frame is provided at the bottom of the mounting frame and on the outer peripheral surface of the filter, and a support frame is provided at the bottom of the connecting frame. A cleaning frame is provided inside the connecting frame through an electric sliding table, and the inner wall of the cleaning frame is in sliding contact with the outer peripheral surface of the filter.

[0010] Preferably, a number of material taking cylinders are provided on the top of the top cover, and the number of material taking cylinders are respectively located directly above the number of filters.

[0011] Preferably, the bottom ends of the number of pulse nozzles are respectively directed towards the interiors of the number of filters. A micro electric cylinder is provided on the top of the connecting sleeve, and the driving end of the micro electric cylinder is connected to the top of the movable sleeve.

[0012] Preferably, a placement groove is provided on the top of the support frame, and a rotating frame is provided inside the placement groove.

[0013] Preferably, one end of the air pump is provided with a first air duct, and one end of the first air duct extends into the interior of the top cover. The end of the first air duct extending into the interior of the top cover is communicated with the interior of the connecting sleeve.

[0014] Preferably, a water delivery frame is provided at the top of the mounting frame, and a water inlet frame is provided on one side of the top cover. The inside of the water inlet frame is communicated with the inside of the water delivery frame. A water guide pipe is provided inside the connecting frame, and one end of the water guide pipe is communicated with the inside of the water delivery frame. The other end of the water guide pipe is communicated with the inside of the cleaning frame.

[0015] Preferably, a fixing frame is provided on the surface of the cleaning frame, and a closing frame is movably arranged inside the fixing frame. A plurality of discharge holes are provided inside the support frame, and one-way valves are provided inside the discharge holes.

[0016] Preferably, the control assembly includes a control frame and a control motor. The control frame is rotatably arranged inside the discharge pipe, and a control motor is provided on one side of the discharge pipe. One end of the output shaft of the control motor is connected to one side of the control frame.

[0017] Preferably, a working method of an aluminum dust collector with a full-automatic continuous cleaning device specifically includes the following steps:

[0018] Step 1: When using the dust collector to filter gas, gas is sent into the inside of the dust removal box through the intake pipe. A plurality of filters arranged inside the dust removal box are used to filter and remove dust and impurities in the gas. The gas after filtering and dust removal enters the inside of the top cover, and finally the gas after filtering and dust removal is sent out through the outlet pipe.

[0019] Step 2: When performing pulse cleaning on the inside of the filter, the gas inside the gas tank is sent into the inside of the connecting sleeve through the first air guide pipe by the air pump, and then the gas is sent into the inside of the second air guide pipe through the movable sleeve. Finally, the gas is sprayed into the inside of the filter in a pulsed manner by the pulse nozzles arranged on the surface of the second air guide pipe, and the dust and impurities on the outer peripheral surface of the filter are cleaned by the pulsed gas.

[0020] Step 3: When cleaning the dust and impurities attached to the surface of the filter, the closing frame inside the fixing frame is rotated out through control. The outer peripheral surface of the filter is fully enclosed by the cooperation of the closing frame, the fixing frame and the support frame. The electric sliding table inside the connecting frame drives the cleaning frame to slide up and down on the surface of the filter. At the same time, the water delivery frame cooperates with the water guide pipe to send liquid into the inside of the cleaning frame. Finally, the cleaning frame sprays the liquid onto the surface of the filter to automatically wash the surface of the filter.

[0021] Step 4: When removing a single filter inside the dust removal box, control the closing frame inside the fixing frame to rotate out. The closing frame, fixing frame, and support frame cooperate to fully enclose the outer peripheral surface of the filter. Then, push down the corresponding material extraction cylinder above it so that the bottom end of the material extraction cylinder contacts the top of the mounting frame. Use the material extraction cylinder to enclose the top end of the filter, open the top end of the material extraction cylinder, extract the filter inside the material extraction cylinder, and then reset the material extraction cylinder to remove a single filter inside the dust collector.

[0022] Step 5: When sending out the dust and impurities inside the aggregate hopper, control the output shaft of the motor to drive the control frame to rotate inside the discharge pipe to automatically discharge the dust and impurities inside the aggregate hopper.

[0023] Compared with the prior art, the following beneficial effects are achieved:

[0024] 1. Pulse air is introduced into the filter through the pulse component at the top of the mounting frame. The dust and impurities attached to the outer peripheral surface of the filter are blown out by the pulse air. The cleaning component arranged on the outer peripheral surface of the filter synchronously cleans the outer peripheral surface of the filter, significantly improving the cleaning effect of the dust and impurities on the filter. At the same time, the cleaning component is used to enclose the filter, enabling the filter to be washed with water solution, further improving the filtering effect of the filter on the dust in the gas. In addition, a single filter inside the dust removal box can be removed, replaced, and maintained without shutting down the dust collector, thereby effectively improving the dust removal efficiency of the dust collector for gas.

[0025] 2. By arranging a cleaning component on the peripheral surface of the filter, the electric sliding table inside the connecting frame drives the cleaning frame to slide up and down on the surface of the filter. At the same time, the water supply frame cooperates with the water guide pipe to send water solution into the cleaning frame, and finally the cleaning frame sprays the water solution onto the surface of the filter to automatically wash the surface of the filter, further improving the cleaning effect of the dust and impurities on the filter.

[0026] 3. By arranging a fixing frame and a closing frame inside the connecting frame, when flushing and removing the filter, control the closing frame inside the fixing frame to rotate out. The closing frame, fixing frame, and support frame cooperate to fully enclose the outer peripheral surface of the filter, and the flushing wastewater flows out through the discharge hole, avoiding affecting the normal operation of other filters when flushing a single filter. Brief Description of the Drawings

[0027] Figure 1 It is a schematic diagram of the structure of an aluminum dust collector with a fully automatic continuous cleaning device according to an embodiment of the present invention;

[0028] Figure 2Schematic diagram of the pulse nozzle and mounting bracket structure according to an embodiment of the present invention;

[0029] Figure 3 Schematic diagram of the connection sleeve and movable sleeve structure according to an embodiment of the present invention;

[0030] Figure 4 Schematic diagram of the mounting bracket and fixed bracket structure according to an embodiment of the present invention;

[0031] Figure 5 Schematic diagram of the support frame and connection frame structure according to an embodiment of the present invention;

[0032] Figure 6 Schematic diagram of the support frame and rotating frame structure according to an embodiment of the present invention;

[0033] Figure 7 Schematic diagram of the aggregate hopper and discharge pipe structure according to an embodiment of the present invention.

[0034] In the figure, 1, dust removal box; 2, intake pipe; 3, outlet pipe; 4, aggregate hopper; 5, top cover; 6, mounting bracket; 7, filter; 8, discharge pipe; 9, material taking cylinder; 11, gas tank; 12, air pump; 13, first air duct; 14, connection sleeve; 15, movable sleeve; 16, second air duct; 17, pulse nozzle; 18, micro electric cylinder; 21, connection frame; 22, cleaning frame; 23, support frame; 24, rotating frame; 25, water supply frame; 26, water inlet frame; 27, water conduit; 31, fixed bracket; 32, closed bracket; 33, discharge hole; 41, control frame; 42, control motor. Detailed implementation manners

[0035] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.

[0036] Embodiment 1

[0037] Please refer to Figures 1 to 7As shown, an aluminum dust collector with a fully automatic continuous cleaning device includes a dust box 1, an air inlet pipe 2, an air outlet pipe 3 and a collecting hopper 4. The collecting hopper 4 is arranged at the bottom of the dust box 1, and a top cover 5 is also arranged on the top of the dust box 1. An air inlet pipe 2 is arranged below one side of the dust box 1, and an air outlet pipe 3 is arranged on one side of the top cover 5. A mounting frame 6 is arranged at the bottom of the inner wall of the top cover 5, and a plurality of filters 7 are arranged inside the mounting frame 6, wherein the bottom ends of the plurality of filters 7 extend to the interior of the dust box 1, a pulse component is also arranged inside the top cover 5, and the pulse component is arranged above the mounting frame 6, a plurality of cleaning components are also arranged on the top of the mounting frame 6, and the plurality of cleaning components are respectively arranged on the outer peripheral surfaces of the plurality of filters 7, a discharge pipe 8 is arranged at the bottom of the collecting hopper 4, and a control component is arranged inside the discharge pipe 8.

[0038] It should be noted that when the dust collector is used for gas filtering, gas is fed into the dust box 1 through the air inlet pipe 2, and the dust and impurities in the gas are filtered and dust-removed by using a plurality of filters 7 arranged inside the dust box 1. The gas after filtering and dust removal enters the interior of the top cover 5, and finally the gas after filtering and dust removal is sent out through the air outlet pipe 3, so as to realize efficient dust removal treatment of the gas. After the dust collector has been working for a period of time, in order to ensure the dust removal effect of the filter 7 on the gas, pulse air is introduced into the filter 7 by using the pulse assembly on the top of the mounting frame 6, and the pulse air is used to pass the filtered gas into the filter 7. The dust and impurities attached to the outer surface of the filter 7 are blown out, and the outer surface of the filter 7 is cleaned synchronously with the cleaning component arranged on the outer surface of the filter 7, which significantly improves the cleaning effect of the dust and impurities on the filter 7. At the same time, the filter 7 is sealed by the cleaning component, and the filter 7 can be flushed with water, which further improves the filtering effect of the filter 7 on the dust in the gas. In addition, the filter 7 inside the dust removal box 1 can be taken out, replaced and maintained individually, and there is no need to control the dust collector to stop, thereby effectively improving the dust removal efficiency of the dust collector on the gas.

[0039] As a further explanation of this embodiment, a plurality of material taking barrels 9 are provided on the top of the top cover 5, and the plurality of material taking barrels 9 are respectively located directly above the plurality of filters 7. When taking out a single filter 7 inside the dust collector, the corresponding material taking barrel 9 above it is pushed downward so that the bottom end of the material taking barrel 9 contacts the top of the mounting frame 6, and the top end of the filter 7 is sealed by the material taking barrel 9. At the same time, the cleaning assembly on the peripheral surface of the filter 7 is controlled to seal the outer peripheral surface of the filter 7. Finally, the top end of the material taking barrel 9 is opened, the filter 7 inside the material taking barrel 9 is pulled out, and then the material taking barrel 9 is reset, so as to realize the taking out of a single filter 7 inside the dust collector, and there is no need to control the dust collector to stop, thereby improving the dust removal efficiency of the dust collector for gas.

[0040] As a further illustration in this embodiment, the pulse assembly includes an air tank 11. The air tank 11 is disposed on one side of the dust removal box 1, and a plurality of air pumps 12 are arranged on the top of the air tank 11. One end of the air pump 12 is provided with a first air duct 13, and one end of the first air duct 13 extends into the interior of the top cover 5. One side of the inner wall of the top cover 5 is provided with a connecting sleeve 14, and a movable sleeve 15 is slidably arranged on one side of the connecting sleeve 14. One end of the first air duct 13 extending into the interior of the top cover 5 is communicated with the interior of the connecting sleeve 14, and one side of the movable sleeve 15 is provided with a second air duct 16. One end of the second air duct 16 is slidably connected to one side of the inner wall of the top cover 5, and a plurality of pulse spray nozzles 17 are arranged on the surface of the second air duct 16. The bottom ends of the plurality of pulse spray nozzles 17 respectively face the interiors of the plurality of filters 7. A micro electric cylinder 18 is arranged on the top of the connecting sleeve 14, and the driving end of the micro electric cylinder 18 is connected to the top of the movable sleeve 15.

[0041] It should be noted that when the interior of the filter 7 is pulse cleaned, the gas inside the air tank 11 is sent into the interior of the connecting sleeve 14 through the first air duct 13 by the air pump 12. Then, the gas is sent into the interior of the second air duct 16 through the movable sleeve 15. Finally, the gas is sprayed into the interior of the filter 7 in a pulse manner by the pulse spray nozzles 17 arranged on the surface of the second air duct 16, and the dust and impurities on the outer peripheral surface of the filter 7 are cleaned by the pulsed gas. Additionally, when the filter 7 is taken out, the micro electric cylinder 18 drives the movable sleeve 15 to push to one side, driving the second air duct 16 to slide to one side, thereby preventing the second air duct 16 from blocking the material taking cylinder 9.

[0042] As a further illustration in this embodiment, the cleaning assembly includes a connecting frame 21 and a cleaning frame 22. The connecting frame 21 is disposed at the bottom of the mounting frame 6 and on the outer peripheral surface of the filter 7, and a support frame 23 is arranged at the bottom of the connecting frame 21. The cleaning frame 22 is arranged inside the connecting frame 21 through an electric slide table, and the inner wall of the cleaning frame 22 is in sliding contact with the outer peripheral surface of the filter 7. A placement groove is arranged on the top of the support frame 23, and a rotating frame 24 is arranged inside the placement groove. The interior of the rotating frame 24 is driven by a servo motor, and the servo motor is arranged at the bottom of the support frame 23. The filter 7 is driven to rotate inside the connecting frame 21 by the rotating frame 24, so that the surface of the filter 7 can more comprehensively remove dust from the gas. A water supply frame 25 is arranged on the top of the mounting frame 6, and a water inlet frame 26 is arranged on one side of the top cover 5. The interior of the water inlet frame 26 is communicated with the interior of the water supply frame 25. A water guide pipe 27 is arranged inside the connecting frame 21, one end of the water guide pipe 27 is communicated with the interior of the water supply frame 25, and the other end of the water guide pipe 27 is communicated with the interior of the cleaning frame 22.

[0043] It should be noted that when flushing the surface of the filter 7, the cleaning frame 22 is driven by the electric slide table inside the connecting frame 21 to slide up and down on the surface of the filter 7. At the same time, the water supply frame 25 is used in cooperation with the water guide pipe 27 to send the liquid into the inside of the cleaning frame 22. Finally, the cleaning frame 22 sprays the liquid onto the surface of the filter 7 to automatically flush the surface of the filter 7, further improving the cleaning effect of the dust and impurities on the filter 7.

[0044] A fixing frame 31 is arranged on the surface of the cleaning frame 22, and a closing frame 32 is movably arranged inside the fixing frame 31. A plurality of discharge holes 33 are arranged inside the support frame 23, and a one-way valve is arranged inside the discharge holes 33. The bottom of the closing frame 32 is rotationally driven by a micro motor. When flushing and removing the filter 7, the closing frame 32 inside the fixing frame 31 is controlled to rotate out, and the outer peripheral surface of the filter 7 is fully enclosed by the cooperation of the closing frame 32, the fixing frame 31 and the support frame 23, and the flushing wastewater flows out through the discharge holes 33, avoiding affecting the normal operation of other filters 7 when flushing a single filter 7.

[0045] As a further illustration in this embodiment, the control assembly includes a control frame 41 and a control motor 42. The control frame 41 is rotatably arranged inside the discharge pipe 8, and a control motor 42 is arranged on one side of the discharge pipe 8. One end of the output shaft of the control motor 42 is connected to one side of the control frame 41. The control frame 41 is driven by the output shaft of the control motor 42 to rotate inside the discharge pipe 8, realizing the automatic discharge of the dust and impurities inside the aggregate hopper 4, and effectively avoiding the blockage of the dust and impurities inside the discharge pipe 8.

[0046] Embodiment 2

[0047] This embodiment also discloses a working method of an aluminum dust collector with a fully automatic continuous cleaning device, which specifically includes the following steps:

[0048] Step 1: When using the dust collector for gas filtration, gas is sent into the inside of the dust removal box 1 through the air inlet pipe 2. A plurality of filters 7 arranged inside the dust removal box 1 are used to filter and remove the dust and impurities in the gas. The gas after filtration and dust removal enters the inside of the top cover 5, and finally the gas after filtration and dust removal is sent out through the air outlet pipe 3.

[0049] Step 2: When performing pulse cleaning on the inside of the filter 7, the gas inside the gas tank 11 is sent into the inside of the connecting sleeve 14 through the first guide pipe 13 by the air pump 12, and then the gas is sent into the inside of the second guide pipe 16 through the movable sleeve 15. Finally, the gas is sprayed into the inside of the filter 7 in a pulsed manner by the pulse nozzles 17 arranged on the surface of the second guide pipe 16, and the dust and impurities on the outer peripheral surface of the filter 7 are cleaned by the pulsed gas.

[0050] Step 3: When cleaning the dust and impurities attached to the surface of the filter 7, the closing frame 32 inside the fixing frame 31 is controlled to rotate out, and the outer peripheral surface of the filter 7 is fully closed by the closing frame 32, the fixing frame 31 and the supporting frame 23, and the cleaning frame 22 is driven to slide up and down on the surface of the filter 7 by the electric slide inside the connecting frame 21, and water is fed into the cleaning frame 22 by the water supply frame 25 and the water pipe 27, and finally the water is sprayed onto the surface of the filter 7 through the cleaning frame 22, so that the surface of the filter 7 is automatically washed;

[0051] Step 4: When taking out a single filter 7 inside the dust removal box 1, the closing frame 32 inside the fixing frame 31 is controlled to rotate out, and the outer peripheral surface of the filter 7 is fully closed by the closing frame 32, the fixing frame 31 and the supporting frame 23, and then the corresponding material taking barrel 9 above it is pushed downward, so that the bottom end of the material taking barrel 9 contacts the top of the mounting frame 6, and the top of the filter 7 is closed by the material taking barrel 9. The top of the material taking barrel 9 is opened, and the filter 7 inside the material taking barrel 9 can be drawn out, and then the material taking barrel 9 is reset to achieve the removal of the single filter 7 inside the dust collector;

[0052] Step 5: When the dust and impurities in the collecting hopper 4 are sent out, the output shaft of the control motor 42 drives the control frame 41 to rotate inside the discharge pipe 8 to realize automatic discharge of the dust and impurities in the collecting hopper 4.

[0053] Meanwhile, the contents not described in detail in this specification belong to the prior art known to those skilled in the art.

[0054] It should be noted that, in this article, relational terms such as first and second, etc. are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a process, method, article or device including a series of elements includes not only those elements, but also other elements not explicitly listed, or also includes elements inherent to such process, method, article or device.

[0055] Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and spirit of the present invention, and that the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An aluminum dust collector with a fully automatic continuous cleaning device, comprising a dust removal box (1), an air inlet pipe (2), an air outlet pipe (3) and an aggregate hopper (4). The aggregate hopper (4) is arranged at the bottom of the dust removal box (1), and a top cover (5) is further arranged at the top of the dust removal box (1). The air inlet pipe (2) is arranged below one side of the dust removal box (1), and the air outlet pipe (3) is arranged on one side of the top cover (5), and it is characterized in that: At the bottom of the inner wall of the top cover (5), there is an installation frame (6), and several filters (7) are arranged inside the installation frame (6). The bottom ends of several filters (7) extend into the dust removal box (1). A pulse assembly is also arranged inside the top cover (5), and the pulse assembly is arranged above the installation frame (6). Several cleaning assemblies are also arranged on the top of the installation frame (6), and several cleaning assemblies are respectively arranged on the outer peripheral surfaces of several filters (7). A discharge pipe (8) is arranged at the bottom of the aggregate hopper (4), and a control assembly is arranged inside the discharge pipe (8); The pulse assembly includes an air tank (11). An air tank (11) is arranged on one side of the dust removal box (1), and several air pumps (12) are arranged on the top of the air tank (11). A connecting sleeve (14) is arranged on one side of the inner wall of the top cover (5), and a movable sleeve (15) is slidably arranged on one side of the connecting sleeve (14). A second air duct (16) is arranged on one side of the movable sleeve (15). One end of the second air duct (16) is slidably connected to one side of the inner wall of the top cover (5), and several pulse nozzles (17) are arranged on the surface of the second air duct (16); The cleaning assembly includes a connecting frame (21) and a cleaning frame (22). A connecting frame (21) is arranged at the bottom of the installation frame (6) and on the outer peripheral surface of the filter (7), and a support frame (23) is arranged at the bottom of the connecting frame (21). A cleaning frame (22) is arranged inside the connecting frame (21) through an electric sliding table, and the inner wall of the cleaning frame (22) is in sliding contact with the outer peripheral surface of the filter (7). Several material taking cylinders (9) are arranged on the top of the top cover (5), and several material taking cylinders (9) are respectively located directly above several filters (7). A fixing frame (31) is arranged on the surface of the cleaning frame (22), and a closing frame (32) is movably arranged inside the fixing frame (31). By controlling the closing frame (32) inside the fixing frame (31) to rotate out, the outer peripheral surface of the filter (7) is fully enclosed by the cooperation of the closing frame (32), the fixing frame (31) and the support frame (23). Then, the corresponding material taking cylinder (9) above it is pushed downward so that the bottom end of the material taking cylinder (9) contacts the top of the installation frame (6). The top end of the filter (7) is enclosed by the material taking cylinder (9). By opening the top end of the material taking cylinder (9), the filter (7) inside the material taking cylinder (9) can be taken out.

2. The aluminum dust collector with a full-automatic continuous cleaning device according to claim 1, characterized in that: The bottom ends of several pulse nozzles (17) respectively face the inside of several filters (7). A micro electric cylinder (18) is arranged on the top of the connecting sleeve (14), and the driving end of the micro electric cylinder (18) is connected to the top of the movable sleeve (15).

3. The aluminum dust collector with a fully automatic continuous cleaning device according to claim 1, characterized in that: A placement groove is arranged on the top of the support frame (23), and a rotating frame (24) is arranged inside the placement groove.

4. The aluminum dust collector with a full-automatic continuous cleaning device according to claim 1, characterized in that: One end of the air pump (12) is provided with a first air duct (13), and one end of the first air duct (13) extends into the top cover (5). The end of the first air duct (13) extending into the top cover (5) is communicated with the inside of the connecting sleeve (14).

5. The aluminum dust collector with a fully automatic continuous cleaning device according to claim 1, characterized in that: A water delivery frame (25) is arranged on the top of the mounting frame (6). An inlet water frame (26) is arranged on one side of the top cover (5), and the inside of the inlet water frame (26) is communicated with the inside of the water delivery frame (25). A water guide pipe (27) is arranged inside the connecting frame (21), and one end of the water guide pipe (27) is communicated with the inside of the water delivery frame (25). The other end of the water guide pipe (27) is communicated with the inside of the cleaning frame (22).

6. The aluminum dust collector with a full-automatic continuous cleaning device according to claim 1, wherein: A plurality of discharge holes (33) are arranged inside the support frame (23), and one-way valves are arranged inside the discharge holes (33).

7. The aluminum dust collector with a full-automatic continuous cleaning device according to claim 1, characterized in that: The control assembly includes a control frame (41) and a control motor (42). The control frame (41) is rotatably arranged inside the discharge pipe (8), and a control motor (42) is arranged on one side of the discharge pipe (8). One end of the output shaft of the control motor (42) is connected to one side of the control frame (41).

Citation Information

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