A high-efficiency filter bag dust removal and purification equipment
Through the design of five rows of floating filter parts and magnetic control parts, the problems of dust reflux and uneven use in the filter bag dust removal equipment are solved, uniform filtration and convenient replacement of the filter bag, and the service life and air intake efficiency of the equipment are improved.
Patent Information
- Application Number
- CN202411959144.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-08-08
- Estimated Expiration
- 2044-12-30
AI Technical Summary
Existing filter bag dust removal and purification equipment can easily cause dust reflux when cleaning filter bags with high pressure wind power, poor air intake, poor unevenness in filter bags, resulting in frequent local blockages, short maintenance cycle, and affecting the sustainability of filtration.
Five rows of floating filter parts and magnetic control parts are used to achieve uniform lifting and blockage detection of the filter bag, and the pressure relief part and the closed cover are combined to ensure that the intake air does not rumble, prevent dust from accumulation, and support the consistent use of the filter bag and convenient replacement.
It improves the uniformity and life of the filter bag, reduces the maintenance frequency, ensures air intake efficiency and smooth discharge, and extends the service cycle of the equipment.
Smart Images

Figure CN119565277B_ABST
Abstract
Description
Technical Field
[0001] The invention relates to the technical field of filter bag dust removal equipment, and in particular to a high-efficiency filter bag dust removal and purification equipment. Background Art
[0002] In actual waste gas treatment work, after the waste gas has undergone primary dust removal treatment such as dehumidification, it is often necessary to use a filter bag dust collector to purify and remove dust. The filter bag dust removal and purification equipment mainly uses the filter bag in the dust removal box to perform dust filtration work, and the filter bag can be cleaned by pulse wind pressure. When the current filter bag dust removal and purification equipment uses high-pressure wind to clean the filter bag, the wind pressure will affect the smooth air intake of the dust collector and may even easily cause dust backflow. At the same time, there are a large number of filter bags, and the air intake uniformity of traditional dust collectors is limited, which can easily cause local filter bags to be excessively blocked, making it inconvenient to perform blockage and diversion. Local filter bags often need to be replaced, and the filter bag service life is not good. It is not convenient for staff to replace all filter bags at one time. The equipment maintenance cycle is short, affecting the continuity of filtration, and dust is easy to accumulate, affecting smooth discharge. Summary of the Invention
[0003] The disclosed embodiment relates to a high-efficiency filter bag dust removal and purification equipment, the pressure relief component of which can achieve pulse dust removal without affecting dust intake and causing intake backflow. It can also prevent dust discharge from accumulating and make discharge smoother, so as to solve the problem that current filter bag dust removal and purification equipment is prone to dust backflow and poor filter bag use uniformity.
[0004] The first aspect of the present disclosure provides a high-efficiency filter bag dust removal and purification device, including a purification mounting part, wherein five rows of floating filter parts are installed on the purification mounting part; filter bag dust collection parts are respectively installed on the five rows of floating filter parts; the five rows of floating filter parts are respectively used to lift and adjust the five rows of filter bag dust collection parts; the five rows of filter bag dust collection parts are used to filter exhaust gas; blockage detection parts are respectively installed at the bottom of the five rows of filter bag dust collection parts; the blockage detection parts are used to detect blockage of the filter bag dust collection parts; five magnetic control parts are fixedly installed inside the purification mounting part; the five magnetic control parts are respectively used to magnetically control the lifting and lowering of the five rows of filter bag dust collection parts; five pressure relief parts are installed on the purification mounting part; the five pressure relief parts are used to prevent dust blockage; a discharge part is installed at the bottom of the purification mounting part; an air pressure cleaning part is installed on the top of the purification mounting part; the purification mounting part comprises: a purification box, a discharge shell and an indication light, the discharge shell is installed at the bottom of the purification box, and the bottom of the discharge shell is provided with a through groove; five rows of indication lights are fixedly installed on the side of the purification box; and four support legs are provided at the bottom of the purification box.
[0005] In at least some embodiments, the pressure relief component also includes: a pressure relief spring and an anti-blocking brush. The pressure relief spring is fixedly installed inside the pressure relief shell; the end of the pressure relief spring is fixedly installed on the air pressure slider; the anti-blocking brush is fixedly installed on the end of the traction rope; the anti-blocking brush is set up on the inside of the purification box; and the traction rope passes through the magnetic control mounting rod.
[0006] In at least some embodiments, the filter bag dust removal component includes: a dust filter bracket, a threaded cylinder, a filter bag, a threaded connecting column and an exhaust hood, the dust filter bracket is threadedly connected to the sliding connecting cylinder; the dust filter bracket is provided with a mesh; a filter bag is fixedly installed on the outside of the dust filter bracket; the filter bag is used to filter dust; a threaded cylinder is fixedly installed on the bottom of the dust filter bracket; a threaded connecting column is threadedly connected to the threaded connecting column, and a nut is threadedly connected to the threaded connecting column, and the nut on the threaded connecting column is pressed and fitted against the end of the threaded cylinder; the exhaust hood is fixedly installed on the bottom of the threaded connecting column; the exhaust hood is an umbrella-shaped structure; a rubber ring is provided on the outside of the exhaust hood; the rubber ring on the outside of the exhaust hood is used to seal and fit the airflow through the inner side of the cylinder.
[0007] In at least some embodiments, the floating filter portion includes: a sliding connection tube and a floating spring, the sliding connection tube is slidably mounted on the support plate; a floating spring is sleeved on the sliding connection tube; the floating spring is located at the bottom of the support plate; and a thread is provided on the inner side of the sliding connection tube.
[0008] In at least some embodiments, the discharge member includes: a drive motor, a discharge column and a discharge slot, the drive motor is fixedly mounted on the side of the discharge shell; the discharge column is fixedly mounted on the output shaft of the drive motor, and three discharge slots are provided on the discharge column; the discharge column rotates to fit the inner side of the discharge shell.
[0009] In at least some embodiments, the purification mounting component further includes: an air intake pipe, a support plate, an exhaust isolation plate and an air flow through tube, the air intake pipe is fixedly mounted on the side of the purification box; a support plate is fixedly mounted inside the purification box; an exhaust isolation plate is fixedly mounted on the bottom of the support plate, and both sides of the exhaust isolation plate are fixedly mounted on the inner side of the purification box; five rows of air flow through tubes are fixedly mounted on the bottom of the support plate, and the bottoms of the five rows of air flow through tubes are chamfered respectively; the five rows of air flow through tubes are connected respectively through hoses.
[0010] In at least some embodiments, the blockage detection component includes: a detection sliding cylinder, an upper electromagnet, a micro switch and an anti-accidental touch spring, the detection sliding cylinder is fixedly installed on the bottom of the discharge cover; the upper electromagnet is slidably installed on the detection sliding cylinder; the micro switch is fixedly installed on the upper electromagnet, and the micro switch is squeezed and fits the bottom of the discharge cover; the anti-accidental touch spring is sleeved inside the detection sliding cylinder, the end of the anti-accidental touch spring is connected to the bottom of the discharge cover, and the other end of the anti-accidental touch spring is fixedly installed on the top of the upper electromagnet; the micro switch is electrically connected to the warning light.
[0011] In at least some embodiments, the pressure relief component includes: a pressure relief shell, a traction rope and an air pressure slider. The five air flow passages on the left are respectively fixed with a pressure relief shell; a traction rope is slidably installed on the pressure relief shell; an air pressure slider is slidably sleeved inside the pressure relief shell; the bottom of the air pressure slider is fixedly connected to the traction rope; the pressure relief shell is used for pressure relief.
[0012] In at least some embodiments, the magnetic control component includes: a magnetic control mounting rod, a closed sliding shaft, a closed cover and a lower electromagnet, and the magnetic control mounting rod is fixedly installed inside the purification box; a row of closed sliding shafts is slidably installed on the magnetic control mounting rod, and a row of closed sliding shafts is grouped in pairs, and a closed cover is fixedly installed on the top of each group of closed sliding shafts; the closed cover is used to seal the airflow passing through the bottom of the cylinder; a row of lower electromagnets is fixedly installed on the bottom of the magnetic control mounting rod; the lower electromagnet is used to magnetically repel the upper electromagnet.
[0013] In at least some embodiments, the pneumatic cleaning component includes: an exhaust hood and a pulse exhaust pipe, the top of the exhaust hood is provided with a through hole; the exhaust hood is fixedly mounted on the top of the purification box by bolts; five pulse exhaust pipes are fixedly mounted on the exhaust hood; the five pulse exhaust pipes are respectively provided with nozzles corresponding to five rows of dust filter brackets; the five pulse exhaust pipes are respectively connected to a pulse steam drum; and the five pulse exhaust pipes are respectively provided with a solenoid valve.
[0014] The present invention provides a high-efficiency filter bag dust removal and purification device, which has the following beneficial effects:
[0015] The present invention utilizes a floating filter portion that can be elastically raised and lowered, and cooperates with the filter bag dust removal element to improve the filtration uniformity of each filter bag dust removal element, ensuring that each filter bag dust removal element can be fully utilized. It can control the air intake flow of the filter bag dust removal element with more serious blockage, reduce its filtration utilization rate, and facilitate dust gas to better adhere to the filter bag with lower utilization rate. It can improve the dust adhesion consistency of each filter bag, facilitate the subsequent one-time replacement of all filter bags, reduce the number of maintenance times, and increase the service life.
[0016] In addition, the use of magnetic control parts can use magnetism to control the lifting and lowering of all dust filter brackets, and the closed air flow passes through the bottom of the cylinder, which can ensure the sealing of this structure during pulse dust removal. This structure does not affect the pulse dust removal and does not affect the air intake of the intake pipe, avoiding the strong air pressure of the pulse dust removal causing the intake backflow and blowing up the dust accumulated at the bottom of the purification box.
[0017] In addition, the use of a closed cover allows workers to replace the dust filter bracket without stopping the machine. The closed cover can automatically seal the airflow through the bottom of the cylinder after the dust filter bracket is removed. The micro switch allows workers to understand the blockage status of each filter bag.
[0018] In addition, the use of pressure relief parts can ensure the dust removal effect of this structure during pulse dust removal, avoid the completely sealed airflow passing through the internal cavity of the cylinder to affect the permeability of air pressure on the filter bag, and realize automatic pressure relief. At the same time, the anti-blocking brush can automatically brush the bottom of the purification box during pulse air pressure cleaning to prevent dust accumulation at the bottom of the purification box from causing difficulty in discharging. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings of the embodiments are briefly introduced below.
[0020] The drawings described below only relate to some embodiments of the present invention, but are not intended to limit the present invention.
[0021] In the attached figure:
[0022] Figure 1 A schematic diagram showing the overall structure of the present application;
[0023] Figure 2 A cross-sectional view showing the internal structure of the present application;
[0024] Figure 3 A partial cross-sectional view of the purification installation structure of the present application is shown;
[0025] Figure 4 A schematic diagram showing the bottom structure of the purification installation member of the present application is shown;
[0026] Figure 5 A schematic diagram showing the structure of the filter bag dust removal component of the present application is shown;
[0027] Figure 6 Shows the application Figure 2 A magnified view of the structure of the middle B region;
[0028] Figure 7 Shows the application Figure 5 A magnified view of the structure of the middle C region;
[0029] Figure 8A schematic diagram showing the structure of the magnetic control element of the present application is shown;
[0030] Figure 9 Shows the application Figure 2 A magnified view of the structure of the middle D region;
[0031] Figure 10 A schematic diagram showing the structure of the pressure relief member of the present application is shown;
[0032] Figure 11 Shows the application Figure 3 A magnified view of the structure of the middle E region;
[0033] Figure 12 A schematic diagram showing the structure of the discharge member of the present application is shown.
[0034] List of reference numerals:
[0035] 1. Purification installation parts; 101. Purification box; 1011. Discharge shell; 102. Warning light; 1012. Inlet pipe; 103. Support plate; 104. Discharge isolation plate; 105. Air flow through the cylinder; 2. Floating filter unit; 201. Sliding connection cylinder; 202. Floating spring; 3. Filter bag dust removal parts; 301. Dust filter bracket; 3011. Threaded cylinder; 302. Filter bag; 303. Threaded connection column; 304. Discharge cover; 4. Blockage detection part; 401. Detection sliding cylinder; 402. Upper electromagnet ; 403, micro switch; 404, anti-accidental touch spring; 5, magnetic control component; 501, magnetic control mounting rod; 5011, closed slide shaft; 502, closed cover; 503, lower electromagnet; 6, pressure relief component; 601, pressure relief shell; 6011, traction rope; 602, air pressure slider; 603, pressure relief spring; 604, anti-blocking brush; 7, discharge component; 701, drive motor; 702, discharge column; 7021, discharge trough; 8, air pressure cleaning component; 801, exhaust hood; 802, pulse exhaust pipe. DETAILED DESCRIPTION
[0036] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions of the embodiments of the present invention will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the described embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0037] Example 1: Please refer to Figures 1 to 12 :
[0038] The present invention proposes a high-efficiency filter bag dust removal and purification device, comprising a purification installation part 1, on which five rows of floating filter parts 2 are installed; the five rows of floating filter parts 2 are respectively installed with filter bag dust removal parts 3; the five rows of floating filter parts 2 are respectively used to lift and adjust the five rows of filter bag dust removal parts 3; the five rows of filter bag dust removal parts 3 are used to filter exhaust gas; the bottoms of the five rows of filter bag dust removal parts 3 are respectively installed with blockage detection parts 4; the blockage detection parts 4 are used to detect blockage of the filter bag dust removal parts 3; five magnetic control parts 5 are fixedly installed inside the purification installation part 1; the five magnetic control parts 5 are respectively used to The five-row filter bag dust removal component 3 is raised and lowered by magnetic control; five pressure relief components 6 are installed on the purification mounting component 1; the five pressure relief components 6 are used to prevent dust clogging; a discharge component 7 is installed at the bottom of the purification mounting component 1; an air pressure cleaning component 8 is installed on the top of the purification mounting component 1; the purification mounting component 1 includes: a purification box 101, a discharge shell 1011 and a prompt light 102, the discharge shell 1011 is installed at the bottom of the purification box 101, and a through groove is provided at the bottom of the discharge shell 1011; five rows of prompt lights 102 are fixedly installed on the side of the purification box 101; four supporting legs are provided at the bottom of the purification box 101.
[0039] In the embodiment of the present disclosure, the purification installation part 1 also includes: an air intake pipe 1012, a support plate 103, an exhaust isolation plate 104 and an air flow through tube 105, the air intake pipe 1012 is fixedly installed on the side of the purification box 101; a support plate 103 is fixedly installed inside the purification box 101; an exhaust isolation plate 104 is fixedly installed at the bottom of the support plate 103, and both sides of the exhaust isolation plate 104 are fixedly installed on the inner side of the purification box 101; five exhaust air flow through tubes 105 are fixedly installed at the bottom of the support plate 103, and the bottoms of the five exhaust air flow through tubes 105 are chamfered respectively; the five exhaust air flow through tubes 105 are connected respectively through hoses; the floating filter part 2 includes: a sliding connection tube 201 and a floating spring 202, the sliding connection tube 201 is slidably installed on the support plate 103; the sliding connection tube 201 is sleeved with a floating spring 202; the floating spring 202 is located on the support plate 1 03 bottom; the sliding connecting cylinder 201 is provided with a thread; the filter bag dust removal part 3 includes: a dust filter bracket 301, a threaded cylinder 3011, a filter bag 302, a threaded connecting column 303 and an exhaust cover 304, the dust filter bracket 301 is threadedly connected to the sliding connecting cylinder 201; the dust filter bracket 301 is provided with a mesh; the filter bag 302 is fixedly installed on the outside of the dust filter bracket 301; the filter bag 302 is used to filter dust; the threaded cylinder 3011 is fixedly installed on the bottom of the dust filter bracket 301; the threaded cylinder 3011 at the bottom of the dust filter bracket 301 is internally threadedly connected to the threaded connecting column 303, and the threaded connecting column 303 is threadedly connected with a nut, and the nut on the threaded connecting column 303 is pressed and fits against the end of the threaded cylinder 3011; the exhaust cover 304 is fixedly installed on the bottom of the threaded connecting column 303; the exhaust cover 304 is an umbrella-shaped structure; a rubber ring is provided on the outside of the exhaust cover 304;The rubber ring on the outside of the discharge hood 304 is used to seal the airflow through the inner side of the cylinder 105. The filter bag dust collector 3 can filter dust with high efficiency. At the same time, this structure uses a floating filter part 2 that can be elastically lifted and lowered, in conjunction with the filter bag dust collector 3, and takes advantage of the poor air flow permeability of the filter bag dust collector 3 after clogging. It can improve the filtration uniformity of each filter bag dust collector 3, ensure that each filter bag dust collector 3 can be fully utilized, and avoid the problem of low utilization rate of local filter bag dust collector 3 due to factors such as air intake position. This structure can be used for more serious blockages. The filter bag dust removal part 3 controls the air intake flow rate, which can reduce its filtration utilization rate, making it easier for dust gas to adhere to the filter bag 302 with lower utilization rate. This structure can improve the dust adhesion consistency of each filter bag 302 after long-term use, making it easier to replace each filter bag 302 at one time, reducing the replacement frequency and the number of maintenance. At the same time, this structure can automatically control the dust removal consistency of each filter bag 302 by using the air intake pressure, ensuring the consistency of the service life of each filter bag 302, and preventing the local filter bag 302 from being blocked for a long time and the wind from blowing. The problem is still concentrated on the clogged filter bag 302, which affects the service life of some filter bags 302 and even causes damage. The overall service life of the filter bag 302 is improved. As the use cycle increases, the air permeability of some seriously clogged filter bags 302 becomes worse. Under the action of the air pressure of the intake pipe 1012, the air pressure pushes the filter bag 302, driving the dust filter bracket 301 and the sliding connection cylinder 201 to move upward, compressing the floating spring 202. At this time, as the dust filter bracket 301 moves, it also drives the exhaust cover 304 to move. When the exhaust cover 304 moves upward, it is in contact with the air flow through the bottom of the cylinder 105. The distance between the exhaust hood 304 and the bottom of the airflow tube 105 decreases due to the narrowing of the passage. This reduces airflow and allows more exhaust gas to pass through the filter bags 302 that are not severely clogged. This balances the amount of dust adhering to each filter bag 302 and prevents the filter bags 302 that are severely clogged from continuing to filter under pressure. Rotating the threaded connecting post 303 adjusts the initial distance between the exhaust hood 304 and the bottom of the airflow tube 105. This can be adjusted based on parameters such as the inlet pressure. Then, tighten the nut on the threaded connecting post 303 to press it against the end of the threaded tube 3011 to secure the threaded connecting post 303 in place.
[0040] In the embodiment of the present disclosure, the blockage detection member 4 includes: a detection sliding cylinder 401, an upper electromagnet 402, a micro switch 403 and an anti-accidental touch spring 404. The detection sliding cylinder 401 is fixedly installed at the bottom of the discharge cover 304; the upper electromagnet 402 is slidably installed on the detection sliding cylinder 401; the micro switch 403 is fixedly installed on the upper electromagnet 402, and the micro switch 403 is pressed and fitted to the bottom of the discharge cover 304; the anti-accidental touch spring 404 is sleeved inside the detection sliding cylinder 401, the end of the anti-accidental touch spring 404 is connected to the bottom of the discharge cover 304, and the other end of the anti-accidental touch spring 404 is fixedly installed on the top of the upper electromagnet 402; the micro switch 403 is electrically connected to the prompt light 102; the magnetic control member 5 includes: a magnetic control mounting rod 5 01, closed sliding shaft 5011, closed cover 502 and lower electromagnet 503, the magnetic control mounting rod 501 is fixedly installed inside the purification box 101; a row of closed sliding shafts 5011 are slidably installed on the magnetic control mounting rod 501, and a row of closed sliding shafts 5011 are grouped in pairs, and a closed cover 502 is fixedly installed on the top of each group of closed sliding shafts 5011; the closed cover 502 is used to seal and fit the airflow through the bottom of the cylinder 105; a row of lower electromagnets 503 is fixedly installed on the bottom of the magnetic control mounting rod 501; the lower electromagnet 503 is used to magnetically repel the upper electromagnet 402, and the magnetic control part 5 can use magnetic force to control the lifting and lowering of all dust filter brackets 301, that is, to control the sealing ring outside the exhaust cover 304 to close and fit the plug The airflow passing through the inner side of the cylinder 105 can ensure the sealing of the structure during the pulse dust removal work. The structure does not affect the pulse dust removal and does not affect the air intake of the intake pipe 1012, thereby avoiding the strong air pressure of the pulse dust removal causing the intake backflow and blowing up the dust accumulated at the bottom of the purification box 101. It can avoid the need for traditional pulse dust removal to stop the air intake, that is, offline pulse dust removal. The present structure can ensure the air intake efficiency and is more reasonable. The present structure adopts a closed cover 502 to facilitate the staff to replace the dust filter bracket 301 without stopping the machine, which can further improve the practicality of the present structure. The closed cover 502 can automatically seal the bottom of the cylinder 105 after the dust filter bracket 301 is removed, and the micro switch 403 can be used to facilitate the staff to understand each The filter bag 302 is blocked and replaced or pulse dust removal is performed. After the filter bag 302 is blocked, the upper electromagnet 402 is no longer limited by the closing cover 502. Under the pressure of the anti-mistouch spring 404, the upper electromagnet 402 moves down and no longer presses the micro switch 403. The micro switch 403 will control the corresponding prompt light 102 to light up. When pulse dust removal is needed, first control the lower electromagnet 503 of each row and the upper electromagnet 402 to be energized and repel each other, so as to control the exhaust cover 304 to move up actively. The sealing ring on the outside of the exhaust cover 304 will directly close the inserted air flow through the cylinder 105 to ensure sealing. At this time, the solenoid valves of the five pulse exhaust pipes 802 can be opened, and the nozzles on the pulse exhaust pipes 802 can spray to clean the filter bag 302;Remove the bolts connecting the exhaust hood 801 and the purification box 101, and rotate the dust filter bracket 301 to remove it from the sliding connection cylinder 201. At this point, under the action of the incoming air pressure, the closed slide shaft 5011 slides on the magnetically controlled mounting rod 501. The closed cover 502, under the action of air pressure, fits against the bottom of the airflow tube 105, sealing it and preventing dust leakage.
[0041] In the embodiment of the present disclosure, the pressure relief part 6 includes: a pressure relief shell 601, a traction rope 6011 and an air pressure slider 602. The five air flow passages on the left side are respectively fixedly connected to the pressure relief shell 601; a traction rope 6011 is slidably installed on the pressure relief shell 601; an air pressure slider 602 is slidably sleeved inside the pressure relief shell 601; the bottom of the air pressure slider 602 is fixedly connected to the traction rope 6011; the pressure relief shell 601 is used for pressure relief; the pressure relief part 6 also includes: a pressure relief spring 603 and an anti-blocking brush 604. The pressure relief spring 603 is fixedly installed inside the pressure relief shell 601; the end of the pressure relief spring 603 is fixedly installed on the air pressure slider 602; the anti-blocking brush 604 is fixedly installed at the end of the traction rope 6011; the anti-blocking brush 604 is set up on the purification box 10 1 inside; the traction rope 6011 passes through the magnetic control mounting rod 501; the pressure relief member 6 is used to ensure the dust removal effect of the present structure during pulse dust removal, and to avoid the completely sealed airflow passing through the internal cavity of the cylinder 105 to affect the permeability of the air pressure on the filter bag 302. The present structure can realize automatic pressure relief, and at the same time, the anti-blocking brush 604 can be used to automatically brush the bottom of the purification box 101 during pulse air pressure cleaning to prevent the problem of dust accumulation at the bottom of the purification box 101 causing difficulty in discharging. The present structure can ensure the discharge quality and is more practical. By using five rows of separately connected airflows to pass through the cylinder 105, when the nozzle on the pulse exhaust pipe 802 sprays air, the air pressure penetrates the filter bag 302. At this time, the air pressure can press the air pressure slider 602 upward to retract and relieve the pressure.
[0042] In the embodiment of the present disclosure, the discharge member 7 includes: a driving motor 701, a discharge column 702 and a discharge slot 7021. The driving motor 701 is fixedly mounted on the side of the discharge shell 1011; the discharge column 702 is fixedly mounted on the output shaft of the driving motor 701, and three discharge slots 7021 are opened on the discharge column 702; the discharge column 702 rotates to fit the inner side of the discharge shell 1011; the air pressure cleaning member 8 includes: an exhaust hood 801 and a pulse exhaust pipe 802, and a through hole is provided on the top of the exhaust hood 801; the exhaust hood 801 is fixedly mounted on the top of the purification box 101 by bolts; the exhaust Five pulse exhaust pipes 802 are fixedly installed on the cover 801; the five pulse exhaust pipes 802 are respectively provided with nozzles corresponding to the five rows of dust filter brackets 301; the five pulse exhaust pipes 802 are respectively connected to pulse steam drums; the five pulse exhaust pipes 802 are respectively provided with solenoid valves, and the use of discharge parts 7 can facilitate sealed dust discharge, and can continuously discharge dust without affecting the sealing inside the purification box 101, and does not affect the continuous air intake of this structure. At the same time, this structure can use the pulse exhaust pipes 802 to comprehensively clean the five rows of filter bags 302 respectively, and the pulse air pressure dust removal is mature and efficient.
[0043] The working principle of this embodiment is as follows: First, the exhaust pipe of the air intake fan or the exhaust gas dehumidifier is connected through the air intake pipe 1012, and the exhaust gas is discharged between the bottom of the discharge isolation plate 104 and the purification box 101, and is filtered by the filter bag 302. The through hole on the top of the exhaust hood 801 is connected to the exhaust pipe for conveying the filtered gas. As the use cycle increases, the air permeability of the filter bag 302 that is severely clogged becomes worse. Under the action of the air pressure of the air intake pipe 1012, the air pressure pushes the filter bag 302, driving the dust filter bracket 301 and the sliding connection cylinder 201 to move upward, compressing the floating spring 202. At this time, as the dust filter bracket 301 When the filter bag 302 is blocked, the filter bag 302 is pushed upward by the air pressure, and the discharge hood 304 is driven to move upward, and the micro switch 403 is also controlled to move upward together. At this time, the upper electromagnet 402 is no longer limited by the closed cover 502, and the anti-accidental touch spring 404 is squeezed. 02 moves down, and the micro switch 403 is no longer squeezed. The micro switch 403 will control the corresponding prompt light 102 to light up. When pulse dust removal is needed, first control the lower electromagnet 503 of each row and the upper electromagnet 402 to be energized and repel each other, so as to control the exhaust cover 304 to move up actively. The sealing ring on the outside of the exhaust cover 304 will directly seal the inserted air flow through the cylinder 105 to ensure sealing. At this time, the solenoid valves of the five pulse exhaust pipes 802 can be opened, and the nozzles on the pulse exhaust pipes 802 can spray to clean the filter bags 302; using the five rows of air flow through the cylinders 105 respectively connected, the nozzles on the pulse exhaust pipes 802 When the head jets, the air pressure penetrates the filter bag 302. At this time, the air pressure can push the air pressure slider 602 upward. At this time, the air pressure slider 602 pulls the traction rope 6011, pulling the anti-blocking brush 604 to move, which can play the role of moving the brush to wipe the accumulated dust, avoiding the accumulation of dust in the arch, and achieving the purpose of breaking the arch. After the pulse cleaning jet is completed, the pressure relief spring 603 can squeeze the air pressure slider 602 to reset; the discharge column 702 is driven to rotate by the driving motor 701, and the deposited dust in the discharge trough 7021 can be discharged from the through groove provided at the bottom of the discharge shell 1011, and the discharge shell 1011 can be surrounded on the outside of the discharge column 702 to prevent leakage.
[0044] In this article, there are several points to note:
[0045] 1. The drawings of the embodiments of the present disclosure only relate to the structures related to the embodiments of the present disclosure. Other structures may refer to conventional designs.
[0046] 2. In the absence of conflict, the embodiments of the present disclosure and the features therein may be combined with each other to form new embodiments.
[0047] The above are only specific embodiments of the present disclosure, but the scope of protection of the present disclosure is not limited thereto. Any changes or substitutions that can be easily conceived by a person skilled in the art within the technical scope disclosed in this disclosure should be included in the scope of protection of the present disclosure. Therefore, the scope of protection of the present disclosure should be based on the scope of protection of the claims.
Claims
1. A high-efficiency filter bag dust removal and purification device, comprising a purification mounting member (1), wherein five rows of floating filter parts (2) are mounted on the purification mounting member (1); characterized in that: The five rows of floating filter parts (2) are respectively equipped with filter bag dust removal parts (3); the five rows of floating filter parts (2) are respectively used to lift and lower the five rows of filter bag dust removal parts (3); the five rows of filter bag dust removal parts (3) are used to filter exhaust gas; The bottoms of the five rows of filter bag dust removal elements (3) are respectively provided with clogging detection elements (4); the clogging detection elements (4) are used to detect clogging of the filter bag dust removal elements (3); Five magnetic control components (5) are fixedly installed inside the purification installation component (1); the five magnetic control components (5) are respectively used to magnetically control the lifting and lowering of the five rows of filter bag dust removal components (3); Five pressure relief parts (6) are installed on the purification installation part (1); the five pressure relief parts (6) are used to prevent dust clogging; The bottom of the purification installation part (1) is installed with a discharge part (7); the top of the purification installation part (1) is installed with an air pressure cleaning part (8); The purification installation component (1) comprises: a purification box (101), a discharge shell (1011) and a warning light (102); the discharge shell (1011) is installed on the bottom of the purification box (101), and a through groove is provided at the bottom of the discharge shell (1011); five rows of warning lights (102) are fixedly installed on the side of the purification box (101); and four supporting legs are provided at the bottom of the purification box (101); The floating filter portion (2) comprises: a sliding connection cylinder (201) and a floating spring (202); The filter bag dust removal component (3) comprises: a dust filter bracket (301), a threaded barrel (3011), a filter bag (302), a threaded connection column (303) and an exhaust cover (304); the dust filter bracket (301) is threadedly connected to the sliding connection barrel (201); the dust filter bracket (301) is provided with a mesh; a filter bag (302) is fixedly mounted on the outside of the dust filter bracket (301); the filter bag (302) is used to filter dust; a threaded barrel (3011) is fixedly mounted on the bottom of the dust filter bracket (301); the threaded connection column (303) is internally threadedly connected to the threaded connection column (303), and a nut is threadedly connected to the threaded connection column (303), and the nut on the threaded connection column (303) is pressed against the end of the threaded barrel (3011); and the exhaust cover (304) is fixedly mounted on the bottom of the threaded connection column (303).
2. A high-efficiency filter bag dust removal and purification equipment according to claim 1, characterized in that: The purification installation component (1) further comprises: an air inlet pipe (1012), a support plate (103), a discharge isolation plate (104) and an air flow passage tube (105), wherein the air inlet pipe (1012) is fixedly mounted on the side of the purification box (101); the support plate (103) is fixedly mounted inside the purification box (101); the discharge isolation plate (104) is fixedly mounted on the bottom of the support plate (103), and both sides of the discharge isolation plate (104) are fixedly mounted on the inside of the purification box (101); five rows of air flow passage tubes (105) are fixedly mounted on the bottom of the support plate (103), and the bottoms of the five rows of air flow passage tubes (105) are chamfered respectively; the five rows of air flow passage tubes (105) are connected respectively through hoses.
3. The high-efficiency filter bag dust removal and purification equipment according to claim 2 is characterized in that: The sliding connection tube (201) is slidably mounted on the support plate (103); a floating spring (202) is sleeved on the sliding connection tube (201); the floating spring (202) is located at the bottom of the support plate (103); and a thread is provided on the inner side of the sliding connection tube (201).
4. The high-efficiency filter bag dust removal and purification equipment according to claim 3 is characterized in that: The discharge cover (304) is an umbrella-shaped structure; a rubber ring is provided on the outside of the discharge cover (304); the rubber ring on the outside of the discharge cover (304) is used to seal and fit the inside of the airflow passing through the cylinder (105).
5. The high-efficiency filter bag dust removal and purification equipment according to claim 4 is characterized in that: The blockage detection member (4) comprises: a detection sliding cylinder (401), an upper electromagnet (402), a micro switch (403) and an anti-accidental touch spring (404), wherein the detection sliding cylinder (401) is fixedly mounted on the bottom of the discharge cover (304); the upper electromagnet (402) is slidably mounted on the detection sliding cylinder (401); the micro switch (403) is fixedly mounted on the upper electromagnet (402), and the micro switch (403) is pressed and fitted against the bottom of the discharge cover (304); the anti-accidental touch spring (404) is sleeved inside the detection sliding cylinder (401), the end of the anti-accidental touch spring (404) is connected to the bottom of the discharge cover (304), and the other end of the anti-accidental touch spring (404) is fixedly mounted on the top of the upper electromagnet (402); the micro switch (403) is electrically connected to the warning light (102).
6. The high-efficiency filter bag dust removal and purification equipment according to claim 5, characterized in that: The magnetic control component (5) comprises: a magnetic control mounting rod (501), a closed sliding shaft (5011), a closed cover (502) and a lower electromagnet (503), wherein the magnetic control mounting rod (501) is fixedly mounted inside the purification box (101); a row of closed sliding shafts (5011) are slidably mounted on the magnetic control mounting rod (501), and a row of closed sliding shafts (5011) are grouped in pairs, and a closed cover (502) is fixedly mounted on the top of each group of closed sliding shafts (5011); the closed cover (502) is used to seal and fit the airflow passing through the bottom of the cylinder (105); a row of lower electromagnets (503) are fixedly mounted on the bottom of the magnetic control mounting rod (501); the lower electromagnets (503) are used to magnetically repel the upper electromagnet (402).
7. The high-efficiency filter bag dust removal and purification equipment according to claim 6, characterized in that: The pressure relief component (6) comprises: a pressure relief shell (601), a traction rope (6011) and an air pressure slider (602); the five air flow passages on the left side are respectively fixedly connected to the pressure relief shell (601); the traction rope (6011) is slidably mounted on the pressure relief shell (601); the air pressure slider (602) is slidably sleeved inside the pressure relief shell (601); the bottom of the air pressure slider (602) is fixedly connected to the traction rope (6011); the pressure relief shell (601) is used for pressure relief.
8. The high-efficiency filter bag dust removal and purification equipment according to claim 7, characterized in that: The pressure relief member (6) further comprises: a pressure relief spring (603) and an anti-blocking brush (604); the pressure relief spring (603) is fixedly mounted inside the pressure relief shell (601); the end of the pressure relief spring (603) is fixedly mounted on the air pressure slider (602); the anti-blocking brush (604) is fixedly mounted on the end of the traction rope (6011); the anti-blocking brush (604) is set up inside the purification box (101); and the traction rope (6011) passes through the magnetic control mounting rod (501).
9. The high-efficiency filter bag dust removal and purification equipment according to claim 1, characterized in that: The discharge member (7) comprises: a drive motor (701), a discharge column (702) and a discharge slot (7021); the drive motor (701) is fixedly mounted on the side of the discharge shell (1011); the discharge column (702) is fixedly mounted on the output shaft of the drive motor (701), and three discharge slots (7021) are formed on the discharge column (702); the discharge column (702) rotates to fit the inner side of the discharge shell (1011).
10. The high-efficiency filter bag dust removal and purification equipment according to claim 4, characterized in that: The pneumatic cleaning component (8) comprises: an exhaust hood (801) and a pulse exhaust pipe (802); a through hole is provided on the top of the exhaust hood (801); the exhaust hood (801) is fixedly mounted on the top of the purification box (101) by means of bolts; five pulse exhaust pipes (802) are fixedly mounted on the exhaust hood (801); nozzles corresponding to five rows of dust filter brackets (301) are respectively provided on the five pulse exhaust pipes (802); the five pulse exhaust pipes (802) are respectively externally connected to a pulse steam drum; and the five pulse exhaust pipes (802) are respectively provided with a solenoid valve.
Citation Information
Patent Citations
Air filtering equipment
CN117582749A