An efficient and clean collection system for industrial fly ash dust

By circulating water in the collection cylinder and using the motor to drive the gear system and vibration device, the contact between fly ash and water is enhanced, and the problem of poor contact between sprayed water and fly ash is solved, and the efficient fly ash removal effect is achieved.

CN116966701BActive Publication Date: 2025-08-15JIANGSU XIMA ENVIRONMENTAL TECH CO LTD
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Patent Information

Application Number
CN202311106151.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-08-30
Publication Date
2025-08-15
Estimated Expiration
2043-08-30

AI Technical Summary

Technical Problem

In the prior art, the contact effect between spray water and fly ash is poor, resulting in poor fly ash treatment effect.

Method used

By expelling water in the collection cylinder and using a suction pump to enter the cleaning water, the air is discharged from the water surface and adhered to the water. The motor drive gear system drives the filter plate to rotate and vibrating device to enhance the contact between fly ash and water, and spraying clean water through the nozzle to further treat the fly ash.

Benefits of technology

The contact effect between fly ash and water is improved, the removal effect of fly ash is enhanced, ensuring that fly ash is effectively adhered and discharged, and reducing residual in the air.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the field of dust collection, and discloses a high-efficiency clean collection system for industrial fly ash dust, which effectively solves the current problem that the contact effect between spray water and fly ash is poor, resulting in poor treatment effect of fly ash. The system comprises a base, a collection barrel is installed on the top of the base, a top pipe is installed on the top of the collection barrel, an air intake disk is installed on the top of the top pipe, an air intake pipe is installed at an equal angle on the outside of the air intake disk, an air suction pump is installed on the top pipe, a drain pipe is provided on one side of the base, one end of the drain pipe is connected to the bottom end of the collection barrel, a drain ring is installed on the top of the drain pipe, and the drain ring is sleeved on the outside of the top of the collection barrel. According to the present invention, water is passed through the collection barrel, the air suction pump is turned on, and external air is driven into clean water. The air is discharged from the top of the clean water surface, and the fly ash adheres to the clean water and remains in the water, thereby improving the contact effect between the fly ash and water and improving the cleaning effect.
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Description

Technical Field

[0001] The invention belongs to the field of dust collection, and in particular relates to a high-efficiency clean collection system for industrial fly ash dust. Background Art

[0002] According to the patent document with the authorization announcement number "CN213314088U" and the invention name "A high-efficiency and clean fly ash collection system", its description states: when working, the fly ash is first transported from the flue to the first funnel in the middle of the collection box by the fan, and the fly ash is lifted upward, and the inclined plate acts as a buffer, and then is intercepted by the mesh plate. Part of the fly ash moves to the top of the collection box, and is then intercepted by the first filter. The intercepted fly ash falls to the bottom of the collection box through the first funnel for collection. Under the action of the protrusion, the fly ash can be prevented from flowing back. Then the airflow enters the top of the front cavity of the processing box through the connecting pipe. Under the action of the second filter, the mesh size of the second filter is smaller than that of the first The mesh size of the filter is such that the fly ash with smaller particles enters the bottom of the front cavity through the second funnel for collection, and then the airflow passes through the second filter and enters the top of the rear cavity, where water is sucked in by a water pump and then sprayed out through the nozzle on the nozzle, and the dust remaining in the airflow is treated by spraying. The water containing dust falls into the interior of the filter element under the action of the third funnel, and the filter element purifies the water, and then the purified water enters the bottom of the rear cavity for recycling, saving water resources. After multiple treatments, the airflow enters the external purification device through the air valve for purification, and is finally discharged to the outside to avoid air pollution. A water inlet is provided on the surface of the treatment box, but the following defects still exist:

[0003] When fly ash is treated by spraying, due to poor contact between the spray water and the fly ash, some fly ash does not come into contact with the spray water, resulting in poor treatment effect on the fly ash. Summary of the Invention

[0004] In view of the above situation, in order to overcome the defects of the prior art, the present invention provides a high-efficiency clean collection system for industrial fly ash dust, which effectively solves the current problem of poor contact between spray water and fly ash, resulting in poor treatment effect on fly ash.

[0005] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an efficient cleaning collection system for industrial fly ash dust, comprising a base, a collection cylinder is installed on the top of the base, a top pipe is installed on the top of the collection cylinder, an air intake disk is installed on the top of the top pipe, an air intake pipe is installed at an equal angle on the outside of the air intake disk, an air suction pump is installed on the top pipe, a drainage pipe is provided on one side of the base, one end of the drainage pipe is connected to the bottom end of the collection cylinder, a drainage ring is installed on the top of the drainage pipe, the drainage ring is sleeved on the outside of the top of the collection cylinder, a nozzle is installed at an equal angle on the outside of the drainage ring, and a water A pump is provided, and a water inlet pipe is installed on the top of the side of the collecting cylinder away from the drain pipe, a bottom pipe is installed on the bottom end of the top pipe, the bottom pipe passes through the interior of the collecting cylinder, a mounting groove is provided inside the base, the collecting cylinder is connected to the mounting groove, one end of the mounting groove passes through the outside of one end of the base, an ash discharge box is installed inside the mounting groove, an ash discharge groove is provided on the top of the ash discharge box, the inner diameter of the ash discharge groove is the same as the inner diameter of the collecting cylinder, the axis of the ash discharge groove coincides with the axis of the collecting cylinder, the bottom end of the bottom pipe is located above the ash discharge groove, a fly ash filter assembly is installed inside the collecting cylinder, and moving wheels are installed at the four corners of the bottom end of the base;

[0006] The fly ash filtering assembly includes a top ring arranged above the collecting barrel, the top ring is sleeved on the outside of the top pipe, side ears are symmetrically installed on both sides of the top ring, the bottom ends of the side ears are fixedly connected to the output end of the cylinder, the cylinder is fixedly installed on the top of the collecting barrel, and a hanger is provided at an equal angle at the bottom end of the top ring, the hanger passes through the interior of the collecting barrel, a filter plate is installed at the bottom end of the hanger, and filter holes are evenly opened on the filter plate. The outer wall of the filter plate is tightly attached to the inner wall of the collecting barrel, and the inner wall of the filter plate is tightly attached to the outer wall of the bottom pipe. A rotating crushing unit is installed between the filter plate and the hanger, a rotating drive unit is installed between the hanger and the top ring, and a vibrating ash discharge unit is installed on the hanger.

[0007] Preferably, the rotating crushing unit includes a limiting rotation groove opened at an equal angle inside the filter plate, and end grooves are symmetrically opened at the top and bottom ends of the limiting rotation groove, and the ends of the two end grooves that are away from each other respectively penetrate the top and bottom ends of the filter plate.

[0008] Preferably, the bottom end of the suspension rod passes through the upper end slot and enters the interior of the limit rotation slot, and a limit rotation block is rotatably installed inside the limit rotation slot. The limit rotation block is fixedly connected to the suspension rod, and a bottom rod is installed at the bottom end of the limit rotation block. The bottom end of the bottom rod passes through the lower end slot and enters the bottom of the filter plate. A stirring plate is installed at an equal angle on the outside of the bottom rod, and a crushing cone is evenly installed on the surface of the stirring plate.

[0009] Preferably, the rotation drive unit includes a gear groove opened at an equal angle inside the top ring, the top end of the boom passes through the inside of the gear groove, a driven gear is installed inside the gear groove, the axis of the driven gear coincides with the axis of the gear groove, and the top end of the boom is fixedly connected to the driven gear.

[0010] Preferably, an annular groove is provided inside the top ring, which is provided on the side of the gear groove away from the top pipe. The annular groove is connected to each gear groove. An annular plate is rotatably installed inside the annular groove. Tooth grooves are provided on the inner and outer sides of the annular plate at equal angles, and each driven gear is engaged with the tooth grooves on the inner wall of the annular plate.

[0011] Preferably, a driving gear is provided on the side of the annular plate away from the top pipe, the driving gear is engaged with the tooth groove on the outer wall of the annular plate, the driving gear is fixedly connected to the output shaft of the motor, and the motor is fixedly installed on the top of the top ring.

[0012] Preferably, the vibrating dust removal unit includes a fixed plate fixedly mounted on the suspension rod, rod grooves are opened at equal angles inside the fixed plate, a movable rod is movably mounted inside the rod groove, a top plate is mounted on the top end of the movable rod, a spring is mounted on the bottom end of the top plate, and the bottom end of the spring is fixedly connected to the top wall of the fixed plate.

[0013] Preferably, the bottom end of the movable rod is located above the filter plate, and a pressure block is installed on the top end of the top plate, and the top end of the pressure block is arranged in a hemispherical shape.

[0014] Preferably, a top plate is sleeved on the outer side of the suspension rod, the top plate is located above the pressure block, a support rod is installed at an equal angle at the bottom end of the top plate, the bottom end of the support rod is fixedly installed on the top wall of the filter plate, and a fixed pressure block is installed at an equal angle at the bottom end of the top plate, and the fixed pressure block is arranged in a hemispherical shape.

[0015] Compared with the prior art, the present invention has the following beneficial effects:

[0016] (1) The present invention allows water to flow into the collection tube, starts the air suction pump, drives the outside air into the clean water, and discharges the air from the top of the clean water surface. The fly ash adheres to the clean water and remains in the water, thereby improving the contact effect between the fly ash and the water and improving the cleaning effect. After the treatment is completed, the water pump is turned on to spray the clean water in the collection tube outward from the nozzle, so that the clean water is sprayed into the air, further treating the fly ash and improving the fly ash treatment effect in the air;

[0017] (2) When the air continuously passes through the clean water, the motor is turned on to make the driving gear rotate, and then the hanging rod is driven to rotate through the annular plate and the driven gear, and then the bottom rod is driven to rotate, so that the stirring plate stirs the clean water and the crushing cone crushes the bubbles in the clean water, so that the fly ash in the bubble air can contact with the clean water, thereby improving the fly ash removal effect;

[0018] (3) This invention starts the air cylinder to drive the top ring to move downward, causing the filter plate to move downward. Since the fly ash adheres to each other in the clean water to form larger particles, during the downward movement of the filter plate, the clean water moves to the top of the filter plate through the filter holes, while the fly ash is always located below the filter plate. After the clean water is sprayed outward and reduced, the fly ash is pressed into the ash discharge trough, facilitating the discharge of the fly ash.

[0019] (4) When the filter plate moves downward, the suspension rod continues to rotate. When the pressure block continuously passes through the fixed pressure block, it is pushed downward, causing the movable rod to move downward and continuously strike the filter plate, shaking the fly ash stuck to the bottom of the filter plate into the ash discharge trough, making it easier to clean and improving the fly ash discharge effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The accompanying drawings are used to provide further understanding of the present invention and constitute a part of the specification. They are used to explain the present invention together with the embodiments of the present invention and do not constitute a limitation of the present invention.

[0021] In the attached figure:

[0022] Figure 1 This is a schematic structural diagram of a high-efficiency clean collection system for industrial fly ash and dust according to the present invention;

[0023] Figure 2 This is a schematic diagram of the collecting tube structure of the present invention;

[0024] Figure 3 This is a schematic diagram of the internal structure of the collecting tube of the present invention;

[0025] Figure 4 This is a schematic structural diagram of the fly ash filter assembly of the present invention;

[0026] Figure 5 This is a schematic diagram of the filter plate structure of the present invention;

[0027] Figure 6 For the present invention Figure 5 Enlarged view of point A in the middle;

[0028] Figure 7 For the present invention Figure 5 Enlarged view of point B in the middle;

[0029] Figure 8 This is a structural diagram of the vibration dust removal unit of the present invention;

[0030] In the figure: 1. Base; 2. Moving wheel; 3. Collecting cylinder; 4. Top pipe; 5. Air inlet plate; 6. Air inlet pipe; 7. Suction pump; 8. Drain pipe; 9. Drain ring; 10. Nozzle; 11. Water pump; 12. Bottom pipe; 13. Water inlet pipe; 14. Mounting groove; 15. Ash discharge box; 16. Ash discharge groove; 17. Fly ash filter assembly; 1701. Top ring; 1702. Hanging rod; 1703. Filter plate; 1704. Filter hole; 1705. Rotating crushing unit; 17051. Limiting rotating groove; 17052. End groove; 17053. Limiting rotating block; 17054. Bottom rod; 17055. Mixing plate ;17056, crushing cone;1706, rotation drive unit;17061, gear groove;17062, driven gear;17063, annular groove;17064, annular plate;17065, tooth groove;17066, driving gear;17067, motor;1707, vibration ash removal unit;17071, fixed plate;17072, rod groove;17073, movable rod;17074, top plate;17075, spring;17076, pressure block;17077, top plate;17078, fixed pressure block;17079, support rod;1708, side ear;1709, cylinder. DETAILED DESCRIPTION

[0031] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only 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 ordinary technicians in this field without making creative work are within the scope of protection of the present invention.

[0032] Embodiment 1, by Figures 1-8The present invention includes a base 1, a collecting cylinder 3 is installed on the top of the base 1, a top pipe 4 is installed on the top of the collecting cylinder 3, an air intake disk 5 is installed on the top of the top pipe 4, an air intake pipe 6 is installed at an equal angle on the outside of the air intake disk 5, an air suction pump 7 is installed on the top pipe 4, a drain pipe 8 is provided on one side of the base 1, one end of the drain pipe 8 is connected with the bottom end of the inside of the collecting cylinder 3, a drain ring 9 is installed on the top of the drain pipe 8, the drain ring 9 is sleeved on the outside of the top of the collecting cylinder 3, a nozzle 10 is installed at an equal angle on the outside of the drain ring 9, a water pump 11 is installed on the drain pipe 8, a water inlet pipe 13 is installed on the top of the side of the collecting cylinder 3 away from the drain pipe 8, a bottom pipe 12 is installed on the bottom end of the top pipe 4, the bottom pipe 12 passes through the interior of the collecting cylinder 3, a mounting groove 14 is opened inside the base 1, the collecting cylinder 3 is connected to the mounting groove 14, and one end of the mounting groove 14 passes through one end of the base 1 On the outside, an ash discharge box 15 is installed inside the mounting groove 14, and an ash discharge groove 16 is opened on the top of the ash discharge box 15. The inner diameter of the ash discharge groove 16 is the same as the inner diameter of the collecting cylinder 3, and the axis of the ash discharge groove 16 coincides with the axis of the collecting cylinder 3. The bottom end of the bottom pipe 12 is located above the ash discharge groove 16, and a fly ash filter assembly 17 is installed inside the collecting cylinder 3. Moving wheels 2 are installed at the four corners of the bottom end of the base 1. Water is passed through the collecting cylinder 3, and the air suction pump 7 is turned on to drive the outside air into the clean water. The air is discharged from the top of the clean water surface, and the fly ash adheres to the clean water and remains in the water, thereby improving the contact effect between the fly ash and the water and improving the cleaning effect. After the treatment is completed, the water pump 11 is turned on to spray the clean water in the collecting cylinder 3 outward from the nozzle 10, so that the clean water is sprayed in the air, further treating the fly ash and improving the fly ash treatment effect in the air;

[0033] The fly ash filter assembly 17 includes a top ring 1701 provided above the collecting tube 3. The top ring 1701 is sleeved on the outside of the top pipe 4. Side ears 1708 are symmetrically installed on both sides of the top ring 1701. The bottom ends of the side ears 1708 are fixedly connected to the output end of the cylinder 1709. The cylinder 1709 is fixedly installed on the top of the collecting tube 3. The bottom end of the top ring 1701 is provided with a suspension rod 1702 at an equal angle. The suspension rod 1702 penetrates the interior of the collecting tube 3. A filter plate 1703 is installed at the bottom end, and filter holes 1704 are evenly opened on the filter plate 1703. The outer wall of the filter plate 1703 is in close contact with the inner wall of the collecting tube 3, and the inner wall of the filter plate 1703 is in close contact with the outer wall of the bottom tube 12. A rotating crushing unit 1705 is installed between the filter plate 1703 and the suspension rod 1702, a rotating driving unit 1706 is installed between the suspension rod 1702 and the top ring 1701, and a vibrating ash removal unit 1707 is installed on the suspension rod 1702.

[0034] The rotating crushing unit 1705 includes a limiting rotation groove 17051 opened at an equal angle inside the filter plate 1703, and end grooves 17052 are symmetrically opened at the top and bottom ends of the limiting rotation groove 17051. The ends of the two end grooves 17052 that are away from each other respectively penetrate the top and bottom ends of the filter plate 1703, and the bottom end of the suspension rod 1702 passes through the upper end groove 17052 and enters the interior of the limiting rotation groove 17051. The internal rotation is installed with a limit swivel block 17053, which is fixedly connected to the suspension rod 1702. The bottom end of the limit swivel block 17053 is installed with a bottom rod 17054. The bottom end of the bottom rod 17054 passes through the end groove 17052 below and enters the bottom of the filter plate 1703. The outside of the bottom rod 17054 is installed with a stirring plate 17055 at an equal angle, and the surface of the stirring plate 17055 is evenly installed with a crushing cone 17056.

[0035] The rotation drive unit 1706 includes a gear groove 17061 opened at an equal angle inside the top ring 1701, the top of the suspension rod 1702 passes through the inside of the gear groove 17061, and a driven gear 17062 is installed inside the gear groove 17061. The axis of the driven gear 17062 coincides with the axis of the gear groove 17061, and the top of the suspension rod 1702 is fixedly connected to the driven gear 17062. An annular groove 17063 is opened inside the top ring 1701. The annular groove 17063 is opened on the side of the gear groove 17061 away from the top pipe 4. The annular groove 17063 is connected to each gear groove 17061, and an annular plate 17064 is rotatably installed inside the annular groove 17063. The inner and outer sides of the annular plate 17064 are provided with tooth grooves 17065 at equal angles. Each driven gear 17062 is connected to the annular plate 1 The teeth grooves 17065 on the inner wall of 7064 are meshed with each other, and a driving gear 17066 is provided on the side of the annular plate 17064 away from the top pipe 4. The driving gear 17066 is meshed with the teeth grooves 17065 on the outer wall of the annular plate 17064. The driving gear 17066 is fixedly connected to the output shaft of the motor 17067. The motor 17067 is fixedly installed on the top of the top ring 1701. When air continuously passes through the clean water, the motor 17067 is turned on to make the driving gear 17066, and then drive the boom 1702 to rotate through the annular plate 17064 and the driven gear 17062, and then drive the bottom rod 17054 to rotate, so that the stirring plate 17055 stirs the clean water, and the crushing cone 17056 breaks the bubbles inside the clean water, so that the fly ash in the bubble air contacts with the clean water, thereby improving the fly ash removal effect.

[0036] The vibration dust removal unit 1707 includes a fixed plate 17071 fixedly mounted on the suspension rod 1702, a rod groove 17072 is opened at an equal angle inside the fixed plate 17071, a movable rod 17073 is movably mounted inside the rod groove 17072, a top plate 17074 is mounted on the top of the movable rod 17073, a spring 17075 is mounted on the bottom end of the top plate 17074, and the bottom end of the spring 17075 is fixedly connected to the top wall of the fixed plate 17071. The bottom end of 073 is located above the filter plate 1703, and a pressure block 17076 is installed on the top of the top plate 17074. The top of the pressure block 17076 is set in a hemispherical shape. The outer side of the suspension rod 1702 is provided with a top plate 17077. The top plate 17077 is located above the pressure block 17076. The bottom end of the top plate 17077 is installed with a support rod 17079 at an equal angle. The bottom end of the support rod 17079 is fixedly installed on the top wall of the filter plate 1703. The bottom of the plate 17077 is provided with a fixed pressing block 17078 at equal angles. The fixed pressing block 17078 is set in a hemispherical shape. The cylinder 1709 is turned on to drive the top ring 1701 to move downward, so that the filter plate 1703 moves downward. Since the fly ash adheres to each other in the clean water to form larger particles, during the downward movement of the filter plate 1703, the clean water moves to the top of the filter plate 1703 through the filter hole 1704, while the fly ash is always located below the filter plate 1703. After the clean water is sprayed outward and reduced, the fly ash is pressed into the ash discharge trough 16 to facilitate the discharge of the fly ash. When the filter plate 1703 moves downward, the suspension rod 1702 continues to rotate. When the pressure block 17076 continuously passes through the fixed pressure block 17078, it is pushed downward, causing the movable rod 17073 to move downward and continuously knock on the filter plate 1703, shaking the fly ash stuck to the bottom of the filter plate 1703 into the ash discharge trough 16, which is convenient for cleaning and improves the fly ash discharge effect.

[0037] Working principle: When in use, clean water is introduced into the collecting tube 3 from the bottom pipe 12. The clean water enters the collecting tube 3 and submerges the ash discharge trough 16 until the water surface reaches the top of the filter plate 1703.

[0038] Turn on the suction pump 7 to drive the outside air into the clean water directly through the air inlet pipe 6, the air inlet plate 5, the top pipe 4 and the bottom pipe 12. The fly ash comes into contact with the clean water and adheres to the clean water. After the air is discharged from the water surface, it is directly discharged to the outside through the bottom pipe 12.

[0039] When air enters the clean water, the motor 17067 is turned on to rotate the driving gear 17066. Since the driving gear 17066 is engaged with the tooth groove 17065 on the outer wall of the annular plate 17064, the annular plate 17064 is driven to rotate, and the tooth groove 17065 on the inner wall of the annular plate 17064 is engaged with each driven gear 17062, thereby driving the suspension rod 1702 to rotate, and then driving the bottom rod 17054 to rotate, so that the stirring plate 17055 stirs the clean water, and the crushing cone 17056 crushes the bubbles inside the clean water, so that the fly ash in the bubble air comes into contact with the clean water, thereby improving the fly ash removal effect;

[0040] After the air is introduced into the clean water for a period of time, the fly ash enters the clean water. Then, the suction pump 7 is turned off and the cylinder 1709 is turned on to drive the top ring 1701 to move downward, causing the filter plate 1703 to move downward. Since the fly ash adheres to each other in the clean water, forming larger particles, during the downward movement of the filter plate 1703, the clean water moves to the top of the filter plate 1703 through the filter holes 1704, and the fly ash is pressed into the ash discharge trough 16. Then, the water pump 11 is turned on to spray the clean water in the collection tube 3 outward from the nozzle 10, further reducing the fly ash in the air.

[0041] After the fly ash enters the ash discharge chute 16, the clean water is discharged. At this time, after the suspension rod 1702 rotates, the pressure block 17076 is pushed downward when passing the fixed pressure block 17078, causing the movable rod 17073 to move downward and knock on the filter plate 1703, shaking the fly ash stuck to the bottom of the filter plate 1703 into the ash discharge chute 16, making it easier to clean.

[0042] Finally, the ash discharge box 15 is directly drawn out to process the fly ash and water in the ash discharge trough 16 .

Claims

1. An efficient clean collection system for industrial fly ash dust, comprising a base (1), characterized in that: The top of the base (1) is provided with a collecting cylinder (3), the top of the collecting cylinder (3) is provided with a top pipe (4), the top of the top pipe (4) is provided with an air inlet disk (5), an air inlet pipe (6) is provided at an equal angle on the outside of the air inlet disk (5), an air suction pump (7) is provided on the top pipe (4), a drainage pipe (8) is provided on one side of the base (1), one end of the drainage pipe (8) is connected with the bottom end of the inside of the collecting cylinder (3), a drainage ring (9) is provided on the top of the drainage pipe (8), the drainage ring (9) is sleeved on the outside of the top of the collecting cylinder (3), a nozzle (10) is provided at an equal angle on the outside of the drainage ring (9), a water pump (11) is provided on the drainage pipe (8), a water inlet pipe (13) is provided on the top of the collecting cylinder (3) away from the drainage pipe (8), the top pipe (4) is provided with a water inlet disk (5), an air inlet pipe (6) is provided on the outside of the collecting cylinder (3), an air suction pump (7) is provided on the top pipe (4), a drainage pipe (8) is provided on one side of the base (1), one end of the drainage pipe (8) is connected with the bottom end of the inside of the collecting cylinder (3), a drainage ring (9) is provided on the top of the drainage pipe (8), a drainage ring (9) is sleeved on the outside of the top of the collecting cylinder (3), a nozzle (10) is provided at an equal angle on the outside of the drainage ring (9), a water pump (11) is provided on the drainage pipe (8), a water inlet pipe (13) is provided on the top of the collecting cylinder (3) away from the drainage pipe (8), A bottom pipe (12) is installed at the bottom end of the base (1), and the bottom pipe (12) passes through the interior of the collecting tube (3). A mounting groove (14) is provided inside the base (1), and the collecting tube (3) is connected to the mounting groove (14). One end of the mounting groove (14) passes through the outside of one end of the base (1). An ash discharge box (15) is installed inside the mounting groove (14), and an ash discharge groove (16) is provided at the top of the ash discharge box (15). The inner diameter of the ash discharge groove (16) is the same as the inner diameter of the collecting tube (3), and the axis of the ash discharge groove (16) coincides with the axis of the collecting tube (3). The bottom end of the bottom pipe (12) is located above the ash discharge groove (16). A fly ash filter assembly (17) is installed inside the collecting tube (3). Moving wheels (2) are installed at the four corners of the bottom end of the base (1). The fly ash filter assembly (17) includes a top ring (1701) arranged above the collecting tube (3), the top ring (1701) is sleeved on the outside of the top pipe (4), and side ears (1708) are symmetrically installed on both sides of the top ring (1701), the bottom ends of the side ears (1708) are fixedly connected to the output end of the cylinder (1709), and the cylinder (1709) is fixedly installed on the top of the collecting tube (3). The bottom end of the top ring (1701) is provided with a suspension rod (1702) at an equal angle, and the suspension rod (1702) penetrates into the interior of the collecting tube (3). The suspension rod (1702) A filter plate (1703) is installed at the bottom end, and filter holes (1704) are evenly opened on the filter plate (1703). The outer wall of the filter plate (1703) is in close contact with the inner wall of the collecting cylinder (3), and the inner wall of the filter plate (1703) is in close contact with the outer wall of the bottom tube (12). A rotating crushing unit (1705) is installed between the filter plate (1703) and the suspension rod (1702), a rotating driving unit (1706) is installed between the suspension rod (1702) and the top ring (1701), and a vibrating ash removal unit (1707) is installed on the suspension rod (1702).

2. The efficient clean collection system for industrial fly ash dust according to claim 1, characterized in that: The rotating crushing unit (1705) includes a limiting rotation groove (17051) opened at an equal angle inside the filter plate (1703), and end grooves (17052) are symmetrically opened at the top and bottom ends of the limiting rotation groove (17051), and the ends of the two end grooves (17052) that are away from each other respectively penetrate the top and bottom ends of the filter plate (1703).

3. The efficient clean collection system for industrial fly ash dust according to claim 2, characterized in that: The bottom end of the suspension rod (1702) passes through the upper end groove (17052) and enters the interior of the limit rotation groove (17051); the limit rotation block (17053) is rotatably installed inside the limit rotation groove (17051); the limit rotation block (17053) is fixedly connected to the suspension rod (1702); the bottom end of the limit rotation block (17053) is installed with a bottom rod (17054); the bottom end of the bottom rod (17054) passes through the lower end groove (17052) and enters the bottom of the filter plate (1703); the outer side of the bottom rod (17054) is installed with a stirring plate (17055) at an equal angle, and the surface of the stirring plate (17055) is evenly installed with a crushing cone (17056).

4. The efficient clean collection system for industrial fly ash dust according to claim 1, characterized in that: The rotation drive unit (1706) includes a gear groove (17061) opened at an equal angle inside the top ring (1701), the top end of the suspension rod (1702) penetrates into the interior of the gear groove (17061), and a driven gear (17062) is installed inside the gear groove (17061). The axis of the driven gear (17062) coincides with the axis of the gear groove (17061), and the top end of the suspension rod (1702) is fixedly connected to the driven gear (17062).

5. The efficient clean collection system for industrial fly ash dust according to claim 4, characterized in that: An annular groove (17063) is provided inside the top ring (1701). The annular groove (17063) is provided on the side of the gear groove (17061) away from the top tube (4). The annular groove (17063) is connected to each gear groove (17061). An annular plate (17064) is rotatably installed inside the annular groove (17063). Tooth grooves (17065) are provided on the inner and outer sides of the annular plate (17064) at equal angles. Each driven gear (17062) is meshed with the tooth grooves (17065) on the inner wall of the annular plate (17064).

6. The efficient clean collection system for industrial fly ash dust according to claim 5, characterized in that: A driving gear (17066) is provided on a side of the annular plate (17064) away from the top tube (4). The driving gear (17066) is meshed with a tooth groove (17065) on the outer wall of the annular plate (17064). The driving gear (17066) is fixedly connected to the output shaft of the motor (17067). The motor (17067) is fixedly installed on the top of the top ring (1701).

7. The efficient clean collection system for industrial fly ash dust according to claim 1, characterized in that: The vibrating dust removal unit (1707) includes a fixed plate (17071) fixedly mounted on the suspension rod (1702), a rod groove (17072) is provided at equal angles inside the fixed plate (17071), a movable rod (17073) is movably mounted inside the rod groove (17072), a top plate (17074) is mounted at the top end of the movable rod (17073), a spring (17075) is mounted at the bottom end of the top plate (17074), and the bottom end of the spring (17075) is fixedly connected to the top wall of the fixed plate (17071).

8. The high-efficiency clean collection system for industrial fly ash dust according to claim 7, characterized in that: The bottom end of the movable rod (17073) is located above the filter plate (1703), and a pressure block (17076) is installed on the top end of the top plate (17074), and the top end of the pressure block (17076) is set in a hemispherical shape.

9. The high-efficiency clean collection system for industrial fly ash dust according to claim 8, characterized in that: The outer side of the suspension rod (1702) is provided with a top plate (17077), which is located above the pressure block (17076), and the bottom end of the top plate (17077) is installed with a support rod (17079) at an equal angle, and the bottom end of the support rod (17079) is fixedly installed on the top wall of the filter plate (1703), and the bottom end of the top plate (17077) is installed with a fixed pressure block (17078) at an equal angle, and the fixed pressure block (17078) is arranged in a hemispherical shape.

Citation Information

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