Pulsation dust remover
By using a detachable filter bag and container design, the pulse dust collector solves the problems of easy clogging and complicated maintenance of baghouse dust collectors in high-dust environments, achieving efficient dust removal and simplified maintenance, ensuring air cleanliness and equipment lifespan.
Patent Information
- Application Number
- CN202520047485.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-09
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-01-09
AI Technical Summary
Existing baghouse dust collectors are prone to clogging in high-dust environments, are cumbersome to maintain, and pose a risk of secondary pollution, affecting equipment efficiency and lifespan.
A pulse dust collector was designed, which adopts a detachable filter bag and dust container structure. The snap-fit connection makes disassembly convenient and the observation window facilitates monitoring, simplifying the maintenance process.
It improves dust removal efficiency, reduces equipment maintenance time and costs, ensures the cleanliness of exhaust air, and extends equipment life.
Smart Images

Figure CN223760641U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of dust collector technology, specifically relating to a pulse dust collector. Background Technology
[0002] With the continuous advancement of industrialization, dust pollution generated during industrial production is becoming increasingly serious. Dust not only pollutes the environment but also poses a threat to workers' health, especially in industries such as metallurgy, building materials, chemicals, and machinery manufacturing, where dust concentrations are often high. Long-term exposure may lead to health problems such as lung diseases and occupational diseases.
[0003] Currently, common dust collection equipment on the market mainly includes bag filters, electrostatic precipitators, and cyclone dust collectors. Among them, bag filters are widely used in various industrial production processes due to their high dust removal efficiency and good filtration performance, especially suitable for handling fine particulate matter and environments with large airflow rates. Bag filters intercept dust particles in the air through filter bags, and the purified air is discharged through the exhaust system, achieving effective environmental protection.
[0004] While existing baghouse dust collectors can effectively filter dust particles, the filter bags tend to accumulate dust during use, requiring regular cleaning and replacement. Because replacing and cleaning the filter bags is quite cumbersome, especially in enclosed environments, disassembling and replacing the bags often requires significant manpower and time, increasing equipment maintenance costs and downtime.
[0005] Traditional dust collectors typically use static filtration. As usage time increases, the resistance of the filter bags gradually increases, leading to a decrease in dust removal efficiency. In environments with high concentrations of dust, the filter bags are prone to clogging, resulting in reduced equipment operating efficiency and potentially even equipment shutdown.
[0006] In some dust removal systems, there is a risk of secondary pollution in the air after dust removal. For example, incompletely filtered exhaust gas may re-enter the environment through the exhaust system, causing pollution. In addition, if the filter bags are damaged or improperly maintained, some dust may not be completely separated, leaving dust particles in the air.
[0007] Dust accumulation not only affects the lifespan of the filter bags but can also damage the dust container. If the dust container is not easily disassembled for cleaning, long-term dust accumulation may lead to equipment malfunction or affect dust removal efficiency.
[0008] Therefore, overcoming the shortcomings of the existing technology is an urgent problem to be solved in this technical field. Utility Model Content
[0009] In view of the technical problems mentioned in the background art, the purpose of this utility model is to provide a pulse dust collector to solve the technical problems mentioned in the background art.
[0010] To achieve the above objectives, the present invention provides the following technical solution: a pulse dust collector, comprising a mounting bracket on which a housing is mounted, an upper cover covering the upper part of the housing, an exhaust pipe on the side of the upper cover, an air inlet pipe on the side of the housing, a fan mounted on the outer side of the housing, the fan being connected to the air inlet pipe, a plurality of filter bags connected to the inner top of the housing, the filter bags being correspondingly arranged with respect to the upper cover, a dust outlet funnel connected to the bottom of the housing, a dust pipe connected to the bottom of the dust outlet funnel, and a dust container connected to the bottom of the dust pipe.
[0011] Furthermore, the upper outer side of the housing is evenly connected with several connecting buckles, and the outer edge of the upper cover is evenly provided with several buckle connecting parts. The several connecting buckles and the several buckle connecting parts are connected one-to-one, so that the upper cover can be detachably installed on the housing.
[0012] Furthermore, the upper outer side of the dust container is evenly connected with several fixing buckles, and the bottom outer edge of the dust pipe is evenly provided with several buckle fixing parts. The fixing buckles and the buckle fixing parts are connected one-to-one, so that the dust container can be detachably installed at the bottom of the dust pipe.
[0013] Furthermore, the air inlet pipe is provided with an air inlet pipe connection part on its side, and the fan is provided with a fan connection part on its side. A connecting component is connected between the air inlet pipe connection part and the fan connection part, thereby connecting the air inlet pipe and the fan.
[0014] Furthermore, the side wall of the housing is provided with an observation window mounting part, and the middle of the observation window mounting part is provided with a mounting slot. The observation window is installed inside the mounting slot, and the observation window is connected and fixed to the observation window mounting part by fasteners.
[0015] The present invention has the following advantages: a housing is mounted on the mounting bracket, an upper cover is provided on the upper part of the housing, an exhaust pipe is provided on the side of the upper cover, an air inlet pipe is provided on the side of the housing, a fan is mounted on the outer side of the housing, the fan is connected to the air inlet pipe, several filter bags are connected to the inner top of the housing, a dust outlet funnel is connected to the bottom of the housing, a dust pipe is connected to the bottom of the dust outlet funnel, and a dust container is connected to the bottom of the dust pipe. The pulse dust collector of the present invention can efficiently capture fine dust particles in the air through bag filtration, ensuring the cleanliness of the exhaust air. The observation window and detachable structural design make the maintenance and cleaning of the equipment convenient, and the filter bags, dust container and other components can be easily disassembled and replaced. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the overall three-dimensional structure of this utility model.
[0017] Figure 2 for Figure 1 An enlarged structural diagram of point A.
[0018] Figure 3 for Figure 1 An enlarged structural diagram at point B.
[0019] Figure 4 This is an exploded structural diagram of the housing, upper cover, and observation window of this utility model.
[0020] Reference numerals: Mounting bracket 10; Housing 20; Upper cover 30; Exhaust pipe 31; Air inlet pipe 21; Fan 40; Filter bag 50; Dust outlet funnel 22; Dust pipe 23; Dust container 60; Connecting buckle 24; Buckle connection part 32; Fixing buckle 61; Buckle fixing part 231; Air inlet pipe connection part 211; Fan connection part 41; Connecting component 70; Observation window mounting part 25; Mounting slot 251; Observation window 80. Detailed Implementation
[0021] like Figures 1 to 4 As shown, a pulse dust collector includes a mounting bracket 10 on which a housing 20 is mounted. An upper cover 30 covers the upper part of the housing 20, and an exhaust pipe 31 is located on the side of the upper cover 30. An air inlet pipe 21 is located on the side of the housing 20. A fan 40 is mounted on the outside of the housing 20 and connected to the air inlet pipe 21. A plurality of filter bags 50 are connected to the inner top of the housing 20, and these filter bags 50 are correspondingly arranged with the upper cover 30. A dust outlet funnel 22 is connected to the bottom of the housing 20, and a dust pipe 23 is connected to the bottom of the dust outlet funnel 22. A dust container 60 is connected to the bottom of the dust pipe 23. In use, dust-laden air enters the pulse dust collector through the air inlet pipe 21, and the airflow is controlled by the fan. Powered by a fan 40, the fan 40 delivers air into the housing 20. The air entering the housing 20 passes through a filter bag 50, which intercepts dust particles in the air. Larger dust particles are effectively captured by the filter bag 50, while smaller gaseous components pass through the filter bag 50. The filtered air continues to flow upward and is discharged from the housing 20 through the exhaust pipe 31 of the upper cover 30. This ensures that the filtered air is discharged smoothly without generating secondary pollution. The dust accumulated in the filter bag 50 naturally falls into the dust outlet funnel 22 at the bottom of the housing 20, and then flows into the dust container 60 for storage through the dust pipe 23. The dust is collected in the container through the pipe, and the container can be disassembled and cleaned periodically, reducing the number of manual maintenance operations.
[0022] In practical implementation, a plurality of connecting buckles 24 are evenly connected to the upper outer side of the casing 20, and a plurality of buckle connecting parts 32 are evenly provided on the outer edge of the upper cover 30. The connecting buckles 24 and the buckle connecting parts 32 are connected one-to-one, thereby allowing the upper cover 30 to be detachably installed on the casing 20. When disassembling, the operator can simply pry the connecting buckles 24 outwards, separating them from the buckle connecting parts 32 through elasticity or mechanical principles. This action requires few tools and facilitates quick disassembly. After the connector 32 is separated, the upper cover 30 can be easily opened, and the user can remove the upper cover 30 from the housing 20. This design simplifies the disassembly process and reduces the trouble caused by complicated screws or other fixing methods. After opening the upper cover 30, the user can directly access the filter bag 50 inside the housing 20. At this time, the user can easily take out the dirty filter bag 50 for replacement or cleaning, ensuring that the dust collector's filtration effect is kept at its best. In addition to replacing the filter bag 50, this design can also be used to clean, inspect or maintain the inside of the housing.
[0023] In practical implementation, the upper outer side of the dust container 60 is evenly connected with several fixing buckles 61, and the bottom outer edge of the dust pipe 23 is evenly provided with several fixing parts 231. The fixing buckles 61 and the fixing parts 231 are connected one-to-one, so that the dust container 60 can be detachably installed at the bottom of the dust pipe 23. When disassembling, the user only needs to pry the fixing buckle 61 to separate it from the fixing part 231, and the dust container 60 can be removed from the bottom of the dust pipe 23. The disassembled dust container 60 can be easily cleaned or replaced to ensure that the dust inside the dust container 60 can be regularly removed. Through the buckle connection design, maintenance personnel can easily open the dust container 60 to check the operating status of the equipment or clean the dust pipe to ensure the long-term efficient operation of the entire dust removal system. Regular cleaning of the dust container helps to extend the equipment life and improve the dust removal effect.
[0024] In practical implementation, the air inlet pipe 21 is provided with an air inlet pipe connection part 211 on its side, and the fan 40 is provided with a fan connection part 41 on its side. A connecting component 70 is connected between the air inlet pipe connection part 211 and the fan connection part 41, so that the air inlet pipe 21 and the fan 40 are connected. The structure is simple and the installation is convenient.
[0025] In practical implementation, the side wall of the housing 20 is provided with an observation window mounting part 25. The middle of the observation window mounting part 25 is provided with a mounting slot 251. An observation window 80 is installed inside the mounting slot 251. The observation window 80 is connected and fixed to the observation window mounting part 25 by fasteners. When the equipment is running, the operator can directly check the working status inside the housing 20 through the observation window 80 to confirm whether there is any abnormality. The design of the observation window 80 allows the operator to monitor the internal situation without opening the equipment, saving maintenance time.
[0026] In summary, the mounting bracket 10 is equipped with a housing 20, the upper part of which is covered by an upper cover 30. An exhaust pipe 31 is provided on the side of the upper cover 30, and an air inlet pipe 21 is provided on the side of the housing 20. A fan 40 is installed on the outside of the housing 20 and is connected to the air inlet pipe 21. Several filter bags 50 are connected to the top inside the housing 20, and a dust outlet funnel 22 is connected to the bottom of the housing 20. A dust pipe 23 is connected to the bottom of the dust outlet funnel 22, and a dust container 60 is connected to the bottom of the dust pipe 23. The pulse dust collector of this utility model can efficiently capture fine dust particles in the air through bag filtration, ensuring the cleanliness of the exhaust air. The observation window and detachable structural design make the maintenance and cleaning of the equipment convenient. Components such as filter bags and dust containers can be easily disassembled and replaced.
Claims
1. A pulsating dust separator, characterized in that It includes the installation support (10), the installation support (10) is installed on the machine shell (20), the upper cover of the machine shell (20) is provided with the upper cover body (30), the side of the upper cover body (30) is provided with the exhaust pipe (31), the side of the machine shell (20) is provided with the air inlet pipe (21), the outside of the machine shell (20) is installed with the fan (40), the fan (40) is connected between the air inlet pipe (21), the inner top of the machine shell (20) is connected with a plurality of filter cloth bags (50), a plurality of filter cloth bags (50) are correspondingly arranged between the upper cover body (30), the bottom of the machine shell (20) is connected with the dust outlet funnel (22), the bottom of the dust outlet funnel (22) is connected with the dust pipe (23), the bottom of the dust pipe (23) is connected with the dust container (60).
2. The pulse dust collector according to claim 1, characterized by The outer upper side of the machine shell (20) is uniformly connected with a plurality of connecting buckles (24), the outer edge of the upper cover body (30) is uniformly provided with a plurality of buckle connecting parts (32), a plurality of connecting buckles (24) and a plurality of buckle connecting parts (32) are one-to-one buckled connection, so that the upper cover body (30) can be detachably installed on the machine shell (20).
3. The pulse dust collector according to claim 1, wherein The outer upper side of the dust container (60) is uniformly connected with a plurality of fixed buckles (61), the bottom outer edge of the dust pipe (23) is uniformly provided with a plurality of buckle fixing parts (231), a plurality of fixed buckles (61) and a plurality of buckle fixing parts (231) are one-to-one buckled connection, so that the dust container (60) can be detachably installed at the bottom of the dust pipe (23).
4. The pulse dust collector according to claim 1, wherein The side of the air inlet pipe (21) is provided with the air inlet pipe connecting part (211), one side of the fan (40) is provided with the fan connecting part (41), the air inlet pipe connecting part (211) and the fan connecting part (41) are connected with the connecting part (70), so that the air inlet pipe (21) and the fan (40) are connected.
5. The pulse dust collector according to claim 1, wherein The side wall of the machine shell (20) is provided with the observation window mounting part (25), the middle part of the observation window mounting part (25) is provided with the installation slot (251), the inside of the installation slot (251) is installed with the observation window (80), the observation window (80) and the observation window mounting part (25) are connected and fixed by the fastener.