Pilot type electric bag composite electric zone cluster agglomeration, efficiency increasing, bag prolonging life, cost reducing and gathering and transportation technology system

CN117582747BActive Publication Date: 2026-09-08北京中电永昌科技有限公司
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Patent Information

Application Number
CN202311555463.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-11-21
Publication Date
2026-09-08
Estimated Expiration
2043-11-21

AI Technical Summary

Technical Problem

滤袋采用纺织的滤布或非纺织的毡制成,利用纤维织物的过滤作用对含尘气体进行过滤,当含尘气体进入袋式除尘器后,颗粒大、比重大的粉尘,由于重力的作用沉降下来,落入灰斗,含有较细小粉尘的气体在通过滤料时,粉尘被阻留,使气体得到净化,现有的袋式除尘器横截面为矩形形状,会导致在进行过滤的时候一面对着风向,一面背着风向,长时间使用导致一面较容易进行损坏且表面堆积过多灰尘,无法对布袋进行定时清理,增加布袋的使用寿命

Benefits of technology

[0007](1) The cloth bag designed in this scheme can rotate 180 degrees when adjusting, and adjust the cloth bag for a period of time so that the two sides of the cloth bag can change to deal with the wind direction for a period of time. When rotating the cloth bag, the surface of the cloth bag can be cleaned and shaken, so that the cloth bag can be cleaned regularly to complete the dust removal action. During the cleaning process, the cloth bag can also be blown so that the dust removed can fall off under the action of the blown air. During the cleaning process, the surface of the cloth bag can also be continuously patted, which, together with the dust removal action, makes the dust fall off quickly.

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Abstract

The present application relates to the system of the technology of the electric bag composite electric zone cluster agglomeration, the prolongation of the life of the bag, the cost reduction and the gathering and distribution, which effectively solves the problem of not being able to clean the bag regularly, etc.The technical solution includes a shell, a push rod arranged inside the shell, a cleaning mechanism arranged at the extending end of the push rod, the cleaning mechanism including a cleaning frame, a middle rotating mechanism and a side sliding mechanism, the cleaning frame being installed at one end of the push rod, the middle rotating mechanism including a rotating disc, a driving groove, a lifting block and a cross frame, the side sliding mechanism including a side frame, a cross bar and a cleaning plate.The present application can automatically change the surface of the bag by controlling the rotation of the rotating disc, so that both sides can cope with the blowing position, preventing the wind from blowing on one side for a long time, causing the bag filter effect to deteriorate, and wrapping the cleaning bag to remove dust, which does not affect the filtering work of the remaining bags, and can also prevent dust from reaching the inside of the shell during the cleaning process.
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Description

Technical Field

[0001] This invention relates to the field of thermal power generation technology, and in particular to a pilot-type baghouse composite power generation system for improving efficiency, extending service life, and reducing costs through baghouse aggregation. Background Technology

[0002] Baghouse dust collectors are frequently used in thermal power generation. A baghouse dust collector is a dry filtration device suitable for capturing fine, dry, non-fibrous dust. The filter bags are made of woven filter cloth or non-woven felt, utilizing the filtration effect of the fibrous fabric to filter dust-laden gas. When dust-laden gas enters the baghouse dust collector, larger, heavier dust particles settle due to gravity and fall into the ash hopper. Gas containing finer dust particles is purified by trapping the dust as it passes through the filter media. However, existing baghouse dust collectors have a rectangular cross-section, resulting in one side facing the wind direction and the other facing away from it during filtration. Over time, this leads to one side being more prone to damage and accumulating excessive dust, making regular cleaning of the filter bags impossible and increasing their lifespan.

[0003] In view of the above, we provide a pilot-type electrostatic precipitator-bag composite electrostatic precipitator clustering technology system to improve efficiency, extend the service life of bag filters, reduce costs, and improve the collection and transportation technology system to solve the above problems. Summary of the Invention

[0004] To address the above issues, this invention provides a pilot-type electrostatic precipitator-based composite electrostatic precipitator agglomeration system for improving efficiency, extending service life, reducing costs, and improving the collection and transportation technology of filter bags. The filter bags designed in this system can rotate 180 degrees during adjustment, allowing for a period of adjustment so that the two sides of the filter bag can change to adapt to the wind direction over time. Furthermore, the rotation of the filter bag can clean and shake its surface, enabling the filter bag to be cleaned regularly and complete the dust removal process.

[0005] A pilot-type electrostatic precipitator-bag composite agglomeration system for improving efficiency, extending lifespan, and reducing costs of bag collection and transportation includes a housing. The housing is characterized by a push rod inside, with a cleaning mechanism at the extended end of the push rod. The cleaning mechanism includes a cleaning frame, a central rotating mechanism, and a side sliding mechanism. The cleaning frame is mounted on one end of the push rod. The central rotating mechanism includes a rotating disk, a drive groove, a lifting block, and a crossbar. The side sliding mechanism includes a side frame, a crossbar, and a cleaning plate. A drive groove overlaps on one side of the side frame, and a crossbar is slidably mounted on one side of the side frame. Limiting grooves are formed on both sides of the cleaning frame, with a crossbar overlapping the surface of the limiting groove. A cleaning plate is slidably mounted on the surface of the crossbar. An overlapping piece is integrally formed on one side of the cleaning frame, with a cleaning plate overlapping the center of the overlapping piece.

[0006] The beneficial effects of the above technical solution are as follows:

[0007] (1) The cloth bag designed in this scheme can rotate 180 degrees when adjusting, and adjust the cloth bag for a period of time so that the two sides of the cloth bag can change to deal with the wind direction for a period of time. When rotating the cloth bag, the surface of the cloth bag can be cleaned and shaken, so that the cloth bag can be cleaned regularly to complete the dust removal action. During the cleaning process, the cloth bag can also be blown so that the dust removed can fall off under the action of the blown air. During the cleaning process, the surface of the cloth bag can also be continuously patted, which, together with the dust removal action, makes the dust fall off quickly.

[0008] (2) This solution can automatically change the face of the cloth bag by controlling the rotating disk, so that both sides can deal with the blowing part, preventing one side from facing the wind for a long time, which would cause the cloth bag to become less effective in filtering. By cleaning the cloth bag by wrapping it, it does not affect the filtering work of the other cloth bags, and also prevents the dust from reaching the inside of the shell during the cleaning process. The horizontal frame can change the position when moving and squeezing the cloth bag, and can also change the wind direction to cooperate with the horizontal plates on the upper and lower sides for cleaning. Attached Figure Description

[0009] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0010] Figure 2 This is a schematic cross-sectional view of the casing of the present invention;

[0011] Figure 3 This is a schematic diagram of a single-sided cut of the housing of the present invention;

[0012] Figure 4 This is a schematic diagram showing the concealed housing of the present invention;

[0013] Figure 5 This is a schematic diagram of the cleaning frame of the present invention;

[0014] Figure 6 This is a schematic diagram of a single-sided cutting operation of the cleaning frame of the present invention;

[0015] Figure 7 For the present invention Figure 6 Enlarged view of point A in the middle;

[0016] Figure 8 This is a schematic diagram of the cutting on the upper side of the rotating disk of the present invention;

[0017] Figure 9 This is a schematic diagram of the upper side cutting of the cleaning plate of the present invention;

[0018] Figure 10 This is a schematic diagram of the cloth bag of the present invention;

[0019] Figure 11 This is a schematic diagram of the bottom of the bag of the present invention;

[0020] Figure 12 This is a schematic diagram of the fixing frame of the present invention.

[0021] In the diagram: 1. Housing; 2. Push rod; 3. Cleaning frame; 4. Rotary disc; 5. Drive slot; 6. Lifting block; 7. Horizontal frame; 8. Side frame; 9. Crossbar; 10. Cleaning plate; 11. Limiting slot; 12. Overlapping piece; 13. Rotating frame; 14. Cloth bag; 15. Fixing frame; 16. Extension strip; 17. Drive frame; 18. Drive block; 19. Spring No. 2; 20. Spring No. 3; 21. Exhaust hole; 22. Exhaust valve; 23. Pressing plate; 24. Spring No. 4; 25. Spring No. 5; 26. Air supply pipe; 27. Shaking block; 28. Spring No. 6; 29. ​​Drive gear; 30. Sealing plate; 31. Spring No. 7; 32. Matching gear; 33. Ash discharge pipe; 34. Spring No. 1. Detailed Implementation

[0022] The foregoing and other technical contents, features and effects of the present invention are described in conjunction with the appendix below. Figures 1 to 12 As will be clearly shown in the detailed description of the embodiments, all structural contents mentioned in the following embodiments are based on the accompanying drawings.

[0023] This embodiment provides a pilot-type electrostatic precipitator-bag composite electrostatic precipitator clustering system for improving efficiency, extending bag life, and reducing costs, as shown in the attached diagram. Figure 1-4 As shown, this design uses casing 1 as the main body, and the instruction manual is attached. Figure 2 This is a cross-sectional view of the middle section of housing 1, while the instruction manual includes... Figure 3 Included with instruction manual Figure 2 The corresponding 3D diagram shows that housing 1 has two push rods 2 mounted, one on the left and one on the right, as shown in the instruction manual. Figure 2 As shown, the extended end of push rod 2 is fitted with a cleaning frame 3. There are two cleaning frames 3. When the cloth bag 14 rotates, push rod 2 is in the retracted state (the two push rods 2 are in a synchronous state and are linked with the cooperating gear 32. Above the cooperating gear 32 is a motor, which is the power source of the cooperating gear 32. Therefore, the motor and push rod 2 are set up. The motor is a servo motor, which can self-lock when it stops, and push rod 2 will not affect the cloth bag 14 entering between the two cleaning frames 3). The cleaning frame 3 is installed on one side of push rod 2. Push rod 2 is the electric push rod 2 in the prior art. It is to increase the flexibility of cleaning frame 3. This is the structure shown in the above figures. The core structure of this solution is all on the cleaning frame 3.

[0024] As attached Figure 5-9As shown, the previous section introduced the structure of this solution to lead into the cleaning frame 3. These figures show the cleaning frame 3 separately. For example, Appendix 5 of the instruction manual shows the structural diagram of the cleaning frame 3. These figures show the push rod 2, but this does not mean that the cleaning frame 3 of this solution does not have the push rod 2 for pushing. The cleaning frame 3 has a groove design, which corresponds to the position of the cloth bag 14. The two cleaning frames 3 are like a box that wraps the cloth bag 14. A rotating disk 4 is rotatably set in the middle of the cleaning frame 3. The rotating disk 4 is driven by a gear 29 on one side. The drive gear 29 is driven by a motor on one side. This design has two motors. This motor causes the drive gear 29 to rotate. The rotating disk 4 has a drive groove 5 on one side, which is elliptical in shape. One end of the side frame 8 is placed on the drive groove 5, and the side frame 8 is limited and slides on the cleaning frame 3. Therefore, the side frame 8 moves up and down reciprocally. A lifting block 6 is provided on the inner side of the rotating disk 4, integrally formed on one side of the rotating disk 4, and has a chamfer. The horizontal frame 7 slides laterally on the cleaning frame. The surface of the cleaning frame 3 is supported by a third spring 20. In this design, the third spring 20 is always in a compressed state. Therefore, with the lifting block 6 in place, the cleaning frame 3 rotates, causing the horizontal frame 7 to push towards the cloth bag 14. Under the elastic force of the third spring 20, it resets, completing the cyclic action. Thus, the horizontal frame 7 also reciprocates (because one side of the horizontal frame 7 also has a chamfered block, which can move under the pushing action of the lifting block 6). In other words, the rotation of the rotating disk 4 can enable multiple mechanisms to operate, and the horizontal frame 7... The reciprocating movement allows for ventilation of the middle section of the cleaning rack 3 while simultaneously switching channels. Note the exhaust valve 22, which slides on one side of the pressure plate 23, with a No. 5 spring 25 positioned between them. The pressure plate 23 slides on the crossbar 7, where a No. 4 spring 24 is located. The elastic force of the No. 5 spring 25 is significantly greater than that of the No. 4 spring 24. Therefore, when one side is pressing against the side of the cloth bag 14, the No. 4 spring 24 will be compressed first, meaning the pressure plate 23 will slide to the left on the crossbar 7 (as per the instruction manual). Figure 7 As shown), the clamping plate 23 has an opening corresponding to the vent hole 21. When this opening is misaligned, it means that the clamping plate 23 blocks the passage to the crossbeam 7 (the clamping plate 23 slides on the crossbeam 7 in a sealed manner). As the crossbeam 7 moves to the right, it will compress the No. 5 spring 25. (See the attached instruction manual.) Figure 7The diagram shows that the left side of the exhaust valve 22 is directly against the center of the clamping plate 23, preventing air from escaping. However, when the No. 5 spring 25 is compressed, it opens this center, creating a channel. In summary, the horizontal frame 7 moves to the right, first closing the exhaust port 21, then opening the exhaust valve 22. This allows air to blow onto the cloth bag 14 and press against its surface. One side of the horizontal frame 7 is connected to an air supply pipe 26, which can be a flexible hose but requires an external air compressor or fan to supply air. This is the effect of the horizontal frame 7's movement. Next, let's describe the effect of the side frame 8's movement. The side frame 8's up-and-down movement causes the horizontal bar 9 to move diagonally. This diagonal movement of the horizontal bar 9 presses the sides of the cloth bag 14 together, facilitating cleaning with cleaning tools. Because the horizontal bar 9 slides on the side frame 8... The two ends of the crossbar 9 slide on the cleaning frame 3 through the limiting groove 11, so the movement trajectory of the crossbar 9 is diagonally downward or diagonally upward (because this solution has two pairs of crossbars 9). The surface of the crossbar 9 is laterally slidably equipped with a cleaning plate 10. The arc surface of one side of the cleaning plate 10 can be fitted with a brush-shaped object similar to the lower part of the shaking block 27. The lower part of the shaking block 27 is a brush head, and one end of the cleaning plate 10 is inserted into the middle of the overlapping piece 12. The middle part of the overlapping piece 12 is similar to a curved groove. One side of the cleaning plate 10 is long enough, so after the crossbar 9 reaches this point, the cleaning plate 10 will sweep the surface of the cloth bag 14 back and forth. The crossbar 9 also has the effect of causing the drive frame 17 to rebound. Because the crossbar 9 moves diagonally, it will push the drive block 18 to rotate during the diagonal movement (the drive block 18 rotates unidirectionally on the drive frame 17, as shown in the instruction manual). Figure 6As shown, a trapezoidal strip is located on one side of the driving block 18, and this strip is fixed to the driving frame 17. This allows the driving block 18 to rotate along the direction of the cloth bag 14. During the reset process, the horizontal frame 7 pushes against the right side of the driving block 18, causing the driving block 18 to slide laterally, which in turn causes the driving frame 17 to slide laterally, compressing the first spring. The first spring is shown in the attached diagram as being in a stretched state, i.e., the storage stage. Once the horizontal bar 9 slides diagonally away from the side of the driving block 18, the driving frame 17 will quickly reset towards the cloth bag 14, essentially striking the cloth bag 14, causing the dust to fall quickly. In this design, the horizontal bar 9 can extend into multiple cylinders on the side facing the cloth bag 14 until it contacts the cloth bag 14. For ease of understanding, this design places the driving frame 17 in a stationary state before release, facilitating the process. Solution), that is, the side frame 8 can reciprocate to press the crossbar 9 to both sides to press the cloth bag 14, and the cleaning plate 10 can clean the surface of the cloth bag 14 and shake the surface of the cloth bag 14 (the cloth bag 14 is hidden in these pictures). The rotating disk 4 is also equipped with a shaking block 27. The shaking block 27 can rotate on the rotating disk 4 and has a No. 6 spring 28. The No. 6 spring 28 is a torsion spring. One side of the shaking block 27 has a long brush. The long brush is soft. The crossbar 7 in this solution has a chamfer design on one side, so the crossbar will not jam the shaking block 27. The shaking block 27 can be understood as a soft head, so it will not affect the movement of the crossbar. Each time it hits the crossbar, the dust can be shaken off by the crossbar. The exhaust port is facing the drive frame 17. Because the drive frame 17 shakes the dust, the exhaust hole 21 blows air.

[0025] As attached Figure 10-12 As shown, this solution also has a core feature: the interchangeable face of the cloth bag 14, as indicated in the instruction manual. Figure 11 As shown, this view is of the bottom of the fixing frame 15. The fixing frame 15 is integrally mounted on the housing 1 and is therefore stationary. The bottom of the fixing frame 15 has a limiting plate with a notch. This notch is for facilitating the rotation of the cloth bag 14. The top of the cloth bag 14 is made of a rigid material. Only when it reaches this bottom notch, and the upper extension strip 16 overlaps the top of the cloth bag 14, as shown in the instruction manual. Figure 11 Included with instruction manual Figure 12As shown, the bag 14 will rotate under the influence of the extension bar 16. After rotating past the extension bar 16, one side of the bag 14 will face one end of the notch. Under the push of the notch, the bottom of the bag 14 will enter the annular channel (this is a bit difficult to understand; to put it simply, the bag 14 rotates under the influence of the extension bar 16, but it doesn't perfectly align with the bottom of the fixing frame 15 like the other sets. Both sides of the bag 14 have curved surfaces. At this point, the curved surface of the bag 14 is just short of aligning with the circular side of the bottom of the fixing frame 15. Then, the notch pushes the bag 14 back into the annular surface of the fixing frame 15 little by little, completing the limiting). In other words, each time the bag passes through the extension bar 16 and the notch, it will complete a 180-degree rotation. The process of changing surfaces is completed. Finally, the sealing plate 30 is introduced. The sealing plate 30 is slidably installed inside the housing 1. A No. 7 spring 31 on top of the sealing plate 30 is used for resetting. The bottom of the sealing plate 30 has a chamfer. Observing the top of the filter bag 14, there is a bevel gear. Thus, when the filter bag 14 pushes against it, the sealing plate 30 will lift upwards and then reset under the action of the spring, forming a wrapping area for the processed filter bag 14. The ash discharge pipe 33 works similarly. One side of the extension strip 16 is a rack, corresponding to the gear above the filter bag 14. Below the filter bag 14 is the filter screen in the prior art. A push rod 2 is installed inside the housing 1. The extended end of the push rod 2 is equipped with a cleaning mechanism, which includes a cleaning frame 3, a central rotating mechanism, and a side sliding mechanism. The cleaning frame 3 is mounted on one end of the push rod 2. The central rotating mechanism includes a rotating disk 4, a driving groove 5, a lifting block 6, and a crossbar 7. The side sliding mechanism includes a side frame 8, a crossbar 9, and a cleaning plate 10. The driving groove 5 is attached to one side of the side frame 8, and the crossbar 9 is slidably arranged on one side of the side frame 8. Limiting grooves 11 are opened on both sides of the cleaning frame 3. The crossbar 9 is attached to the surface of the limiting groove 11, and the cleaning plate 10 is slidably arranged on the surface of the crossbar 9. An overlapping piece 12 is integrally provided on one side of the cleaning frame 3, and the cleaning plate 10 is attached to the middle of the overlapping piece 12. A rotating adjustment mechanism is provided inside the housing 1. The rotating adjustment mechanism includes a rotating frame 13, a cloth bag 14, a fixing frame 15, and an extension strip 16. The fixing frame 15 is integrally provided inside the housing 1. A rotatable rotating frame 13 is rotatably mounted on the surface of the rotating frame 13, and a cloth bag 14 is rotatably mounted on the surface of the rotating frame 13. A rotating disk 4 is rotatably mounted on one side of the cleaning frame 3. An extension strip 16 is integrally mounted on one side of the fixed frame 15. A drive groove 5 is opened on the outer side of the rotating disk 4. A drive mechanism is mounted above the crossbar 9. The drive mechanism includes a drive frame 17 and a drive block 18. The drive frame 17 is slidably mounted on one side of the cleaning frame 3, and the drive block 18 is rotatably mounted below the drive frame 17. A first spring 34 is installed between the drive frame 17 and the side frame 8. A second spring 19 is installed at the rotation center of the drive block 18. A lifting block 6 is fixedly mounted on one side of the rotating disk 4. A crossbar 7 is slidably mounted on one side of the cleaning frame 3, and a third spring 20 is installed between the crossbar 7 and the cleaning frame 3.The cross frame 7 is equipped with an exhaust mechanism, which includes an exhaust port 21, an exhaust valve 22, and a clamping plate 23. The exhaust port 21 is located on the upper and lower sides of the cross frame 7. The clamping plate 23 is slidably mounted on one side of the cross frame 7. A No. 4 spring 24 is installed between the clamping plate 23 and the cross frame 7. The exhaust valve 22 is slidably mounted on one side of the clamping plate 23. A No. 5 spring 25 is installed between the exhaust valve 22 and the clamping plate 23. An air supply pipe 26 is installed on one side of the cross frame 7. A shaking block 2 is rotatably mounted on the outer surface of the rotating disk 4. 7. A No. 6 spring 28 is installed between the shaking block 27 and the rotating disk 4. The side frame 8 is slidably mounted on one side of the cleaning frame 3. A driving gear 29 is engaged on one side of the rotating disk 4. A sealing plate 30 is slidably mounted on the inner top of the housing 1. A No. 7 spring 31 is installed between the sealing plate 30 and the housing 1. A mating gear 32 is installed on the lower surface of the extension strip 16. A rotating frame 13 is engaged on one side of the mating gear 32. A dust discharge pipe 33 is installed on the inner bottom of the housing 1. The left side of the housing 1 is the air inlet, and the top is the air outlet.

[0026] The above description is only for illustrating the present invention and should be understood as not being limited to the above embodiments. Various modifications that conform to the spirit of the present invention are within the protection scope of the present invention.

Claims

1. A pilot-type electrostatic precipitator-bag composite electrostatic precipitator agglomeration efficiency-enhancing baghouse life-extending cost-reducing collection and transportation technology system, comprising a housing (1), characterized in that, The housing (1) is provided with a push rod (2) inside. The extended end of the push rod (2) is provided with a cleaning mechanism. The cleaning mechanism includes a cleaning frame (3), a central rotating mechanism and a side sliding mechanism. The cleaning frame (3) is installed at one end of the push rod (2). The central rotating mechanism includes a rotating disk (4), a driving groove (5), a lifting block (6) and a crossbar (7). The side sliding mechanism includes a side frame (8), a crossbar (9) and a cleaning plate (10). The driving groove (5) is connected to one side of the side frame (8). The crossbar (9) is slidably provided on one side of the side frame (8). Limiting grooves (11) are opened on both sides of the cleaning frame (3). The crossbar (9) is connected to the surface of the limiting groove (11). The cleaning plate (10) is slidably provided on the surface of the crossbar (9). An overlapping piece (12) is integrally provided on one side of the cleaning frame (3). The cleaning plate (10) is connected to the middle of the overlapping piece (12). The housing (1) is provided with a rotation adjustment mechanism, which includes a rotating frame (13), a cloth bag (14), a fixed frame (15) and an extension strip (16). The fixed frame (15) is integrally disposed inside the housing (1). The surface of the fixed frame (15) is rotatably provided with a rotating frame (13). The surface of the rotating frame (13) is rotatably provided with a cloth bag (14). The rotating disk (4) is rotatably disposed on one side of the cleaning frame (3). The extension strip (16) is integrally disposed on one side of the fixed frame (15). The drive groove (5) is opened on the outside of the rotating disk (4). The bottom of the fixing frame (15) has a limiting plate with a notch. The notch facilitates the rotation of the cloth bag (14). The cloth bag (14) rotates under the drive of the extension strip (16). After rotating past the extension strip (16), one side of the cloth bag (14) will face one end of the notch. Under the push of one end of the notch, the bottom of the cloth bag (14) enters the annular channel. Each time the cloth bag passes the extension strip (16) and the notch, it will complete a 180-degree rotation to complete the face-changing work. There are two cleaning racks (3), and the two cleaning racks (3) wrap the cloth bag (14).

2. The pilot-type electrostatic precipitator-bag composite electrostatic precipitator agglomeration efficiency improvement bag life extension cost reduction collection and transportation technology system according to claim 1, characterized in that, A driving mechanism is provided above the crossbar (9). The driving mechanism includes a driving frame (17) and a driving block (18). The driving frame (17) is slidably disposed on one side of the cleaning frame (3). The driving block (18) is rotatably disposed below the driving frame (17). A first spring (34) is disposed between the driving frame (17) and the cleaning frame (3). A second spring (19) is disposed at the rotation center of the driving block (18).

3. The pilot-type electrostatic precipitator-bag composite electrostatic precipitator agglomeration efficiency improvement bag life extension cost reduction collection and transportation technology system according to claim 1, characterized in that, The lifting block (6) is fixedly installed on one side of the rotating disk (4), the cross frame (7) is slidably installed on one side of the cleaning frame (3), a No. 3 spring (20) is provided between the cross frame (7) and the cleaning frame (3), and an exhaust mechanism is provided inside the cross frame (7).

4. The pilot-type electrostatic precipitator-bag composite electrostatic precipitator agglomeration efficiency improvement bag life extension cost reduction collection and transportation technology system according to claim 3, characterized in that, The ventilation mechanism includes a ventilation hole (21), a ventilation valve (22), and a clamping plate (23). The ventilation hole (21) is opened on the upper and lower sides of the cross frame (7). The clamping plate (23) is slidably disposed on one side of the cross frame (7). A No. 4 spring (24) is disposed between the clamping plate (23) and the cross frame (7). A ventilation valve (22) is slidably disposed on one side of the clamping plate (23). A No. 5 spring (25) is disposed between the ventilation valve (22) and the clamping plate (23). An air supply pipe (26) is disposed on one side of the cross frame (7).

5. The pilot-type electrostatic precipitator-bag composite electrostatic precipitator agglomeration efficiency improvement bag life extension cost reduction collection and transportation technology system according to claim 1, characterized in that, The outer surface of the rotating disk (4) is provided with a shaking block (27), and a No. 6 spring (28) is provided between the shaking block (27) and the rotating disk (4).

6. The pilot-type electrostatic precipitator-bag composite electrostatic precipitator agglomeration efficiency improvement bag life extension cost reduction collection and transportation technology system according to claim 1, characterized in that, The side frame (8) is slidably disposed on one side of the cleaning frame (3), and a drive gear (29) is engaged on one side of the rotating disk (4).

7. The pilot-type electrostatic precipitator-bag composite electrostatic precipitator agglomeration efficiency improvement bag life extension cost reduction collection and transportation technology system according to claim 1, characterized in that, A sealing plate (30) is slidably disposed on the inner top of the housing (1), and a No. 7 spring (31) is disposed between the sealing plate (30) and the housing (1).

8. The pilot-type electrostatic precipitator-bag composite electrostatic precipitator agglomeration efficiency improvement bag life extension cost reduction collection and transportation technology system according to claim 1, characterized in that, The lower surface of the extension bar (16) is provided with a mating gear (32), and a rotating frame (13) meshes with one side of the mating gear (32).

9. The pilot-type electrostatic precipitator-bag composite electrostatic precipitator agglomeration efficiency improvement bag life extension cost reduction collection and transportation technology system according to claim 1, characterized in that, The bottom of the housing (1) is provided with a ash discharge pipe (33).

Citation Information

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