Efficient cleaning device for ridge type demister
By designing support and cleaning mechanisms, the dust in the dust removal chamber of the ridge-type demister is collected and cleaned in a centralized manner, solving the problem of dust dispersion and improving cleaning efficiency and safety.
Patent Information
- Application Number
- CN202511526056.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-24
- Publication Date
- 2025-11-25
- Estimated Expiration
- 2045-10-24
AI Technical Summary
After prolonged operation, the walls of the dust removal chamber of a ridge-type demister will accumulate a large amount of dust. When cleaning, the dust will be scattered, posing a health hazard to personnel and spreading to other chambers, thus affecting cleaning efficiency.
A high-efficiency cleaning device for a ridge-type demister was designed, comprising a support mechanism, a dust collection mechanism, and a cleaning mechanism. The device achieves centralized collection and cleaning of dust through a support rod and screw structure, and extracts and collects dust using a servo motor and a dust pump.
It effectively prevents dust from spreading during the cleaning process, protects the health of staff, and improves cleaning efficiency and effectiveness.
Smart Images

Figure CN121004149A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the technical field of auxiliary equipment for cleaning ridge-type demisters, and in particular to a high-efficiency cleaning device for ridge-type demisters. Background Technology
[0002] After prolonged operation, the walls of the dust removal chamber of the ridge-type demister will accumulate a large amount of dust. If it is not cleaned for a long time, it will affect the subsequent work. When cleaning, the staff needs to lie on the ground to clean the dust in the dust removal chamber. During the cleaning process, the dust in the dust removal chamber will float around, which will harm the staff's respiratory system. At the same time, the dust will also float into other dust removal chambers. Summary of the Invention
[0003] To overcome the shortcomings of the prior art, this invention discloses a high-efficiency cleaning device for a ridge-type demister. This invention cleans the walls of the dust removal chamber through a cleaning mechanism. While cleaning the dust, a dust collection mechanism collects the dust floating inside the chamber. A support mechanism supports the dust collection mechanism. While supporting the dust collection mechanism, the dust floating at the dust removal chamber opening is collected to prevent the dust from spreading to the outside.
[0004] To achieve the aforementioned objective, the present invention employs the following technical solution: A high-efficiency cleaning device for a ridge-type demister includes a support mechanism, on which a dust collection mechanism is installed, and a cleaning mechanism is installed on the rotating end of the dust collection mechanism. The dust generated during the cleaning process by the dust collection mechanism is collected by the dust collection mechanism.
[0005] The support mechanism includes a support rod, a sleeve, a support plate, and a fixed rod. The rotating end of the dust collection mechanism is rotatably connected inside the sleeve, and the fixed rods are fixedly connected to the outer wall of the sleeve at equal intervals. One end of the fixed rod is connected to the support rod through a connecting shaft, and the support plate is fixedly connected between the fixed rods.
[0006] The support rod is a hollow rod body, and the support rod is provided with dust suction ports arranged at equal intervals. The dust suction ports are connected to the cavity inside the support rod, and the dust suction ports face downwards.
[0007] The cavities of the support rods are connected by a second diversion pipe, and the second diversion pipe is connected to the dust collection end of the dust collection mechanism.
[0008] The dust collection mechanism includes a screw, a servo motor, a first diverter pipe, a motor gear, a dust pump, and a gear ring. The screw is located inside a sleeve and is rotatably connected, and a cleaning mechanism is installed on the screw. The top of the screw is fixedly connected to the gear ring. The servo motor and the dust pump are located on a support plate and are fixedly connected. The servo motor is connected to the motor gear through a motor shaft. The motor gear meshes with the gear ring. The dust pump is connected to the exhaust end of the screw through the first diverter pipe, and one of the air inlets of the first diverter pipe is connected to the second diverter pipe.
[0009] The screw has a cavity inside and also has dust suction ports arranged at equal intervals on the screw. The dust suction ports on the screw are connected to the cavity inside the screw.
[0010] A bearing is fixedly connected to the cavity at the top of the screw, and the rotating end of the bearing is fixedly connected to the first shunt pipe.
[0011] The cleaning mechanism includes an internally threaded sleeve, a limiting rod, a spring, and a sliding rod. The internally threaded sleeve is located on the screw and threadedly connected. The limiting rod is fixedly connected to the outer wall of the internally threaded sleeve at equal intervals. The limiting rod has an installation groove, and a spring is fixedly connected in the installation groove. The sliding rod is slidably connected in the installation groove, and one end of the sliding rod located in the installation groove is connected to the spring.
[0012] A positioning rod is fixedly connected inside the mounting slot, and the positioning rod is slidably connected to the sliding rod.
[0013] The upper and lower sides of the limiting rod are respectively fixedly connected with fan blades, and the fan blades are arranged along the central axis of the screw.
[0014] Due to the adoption of the above technical solution, the present invention has the following beneficial effects: The present invention discloses a high-efficiency cleaning device for a ridge-type demister. The cleaning mechanism cleans the walls of the dust removal chamber. While cleaning the dust, the dust collection mechanism collects the dust floating in the chamber. The support mechanism supports the dust collection mechanism and collects the dust floating at the dust removal chamber opening to prevent the dust from spreading to the outside. Attached Figure Description
[0015] Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is a cross-sectional view of the present invention; Figure 3 for Figure 2 A magnified structural schematic diagram of point A of the present invention; Figure 4 for Figure 2 A magnified structural schematic diagram of point B of the present invention; 1. Dust collection mechanism; 101. Screw; 102. Bearing; 103. Servo motor; 104. First diverter pipe; 105. Motor gear; 106. Gear ring; 2. Support mechanism; 201. Support rod; 202. Sleeve; 203. Second diverter pipe; 204. Support plate; 205. Fixing rod; 3. Cleaning mechanism; 301. Internal threaded sleeve; 302. Limiting rod; 303. Spring; 304. Sliding rod; 305. Positioning rod; 306. Fan blade. Detailed Implementation
[0016] The present invention will be explained in detail through the following embodiments. The purpose of disclosing the present invention is to protect all technical improvements within the scope of the present invention.
[0017] Combined with appendix Figures 1-4 The high-efficiency cleaning device for a ridge-type demister includes a support mechanism 2, on which a dust collection mechanism 1 is installed. A cleaning mechanism 3 is installed on the rotating end of the dust collection mechanism 1. The dust generated by the cleaning mechanism 3 during cleaning is collected by the dust collection mechanism 1. All electrical equipment in the dust collection mechanism 1 is electrically connected to an external control device, which controls the operation of the electrical equipment in the dust collection mechanism 1.
[0018] The support mechanism 2 includes a support rod 201, a sleeve 202, a support plate 204, and a fixing rod 205. The rotating end of the dust collection mechanism 1 is rotatably connected inside the sleeve 202, and the fixing rods 205 are fixedly connected to the outer wall of the sleeve 202 at equal intervals. One end of the fixing rod 205 is connected to the support rod 201 through a connecting shaft, and the support plate 204 is fixedly connected between the fixing rods 205.
[0019] The support rod 201 is a hollow rod, and the support rod 201 is provided with dust suction ports arranged at equal intervals. The dust suction ports are connected to the cavity inside the support rod 201, and the dust suction ports face downwards.
[0020] The cavities of the support rod 201 are connected by a second diversion pipe 203, and the second diversion pipe 203 is connected to the dust collection end of the dust collection mechanism 1.
[0021] The dust collection mechanism 1 includes a screw 101, a servo motor 103, a first diversion pipe 104, a motor gear 105, a dust pump, and a gear ring 106. The screw 101 is located inside the sleeve 202 and is rotatably connected. A cleaning mechanism 3 is installed on the screw 101. The top end of the screw 101 is fixedly connected to the gear ring 106. The servo motor 103 and the dust pump are located on the support plate 204 and are fixedly connected. The servo motor 103 is connected to the motor gear 105 through a motor shaft. The motor gear 105 meshes with the gear ring 106. The dust pump is connected to the exhaust end of the screw 101 through the first diversion pipe 104. One of the air inlets of the first diversion pipe 104 is connected to the second diversion pipe 203. The dust outlet of the dust pump is connected to an external collection bag. The servo motor 103 controls the forward and reverse rotation of the screw 101.
[0022] The screw 101 has a cavity inside, and the screw 101 also has dust suction ports arranged at equal intervals. The dust suction ports on the screw 101 are connected to the cavity inside the screw 101.
[0023] A bearing 102 is fixedly connected to the cavity at the top of the screw 101, and the rotating end of the bearing 102 is fixedly connected to the first diverter pipe 104.
[0024] The cleaning mechanism 3 includes an internally threaded sleeve 301, a limiting rod 302, a spring 303, and a sliding rod 304. The internally threaded sleeve 301 is located on the screw 101 and is threadedly connected. The limiting rods 302 are fixedly connected to the outer wall of the internally threaded sleeve 301 at equal intervals. The limiting rods 302 are provided with a mounting groove, and the spring 303 is fixedly connected in the mounting groove. The sliding rod 304 is slidably connected in the mounting groove, and one end of the sliding rod 304 located in the mounting groove is connected to the spring 303.
[0025] A positioning rod 305 is fixedly connected in the mounting groove, and the positioning rod 305 is slidably connected to the sliding rod 304.
[0026] The upper and lower sides of the limiting rod 302 are respectively fixedly connected with fan blades 306, and the fan blades 306 are arranged along the central axis of the screw 101. The rotation of the fan blades 306 forms a vortex in the dust removal chamber, causing the dust to move towards the screw 101.
[0027] In the aforementioned high-efficiency cleaning device for a ridge-type demister, during use, the operator unfolds the support rod 201 and places the unfolded support rod 201 at the dust removal chamber opening, positioning the screw 101 within the dust removal chamber. An external control device then activates the servo motor 103 and the dust pump. The servo motor 103, via the motor gear 105, drives the screw 101, which is equipped with a gear ring 106, to rotate forward and backward. The screw 101, in turn, drives the internal threaded sleeve 301 to move up and down. During this movement, the internal threaded sleeve 301 also moves the limiting rod 302. The extension of the sliding rod 304 is controlled by the spring 303 inside the limiting rod 302, so that the sliding rod 304 is in close contact with the cavity wall of the dust removal chamber. The sliding rod 304 rotates together with the internal threaded sleeve 301. During the rotation of the limiting rod 302, the fan blade 306 will move. The movement of the fan blade 306 forms an air vortex, which causes the dust generated during cleaning to move towards the screw 101. The dust pump draws air through the first diversion pipe 104 and the second diversion pipe 203, and extracts the dust that rises through the suction port on the screw 101 and the support rod 201.
[0028] The parts of this invention not described in detail are prior art. Although the invention has been specifically shown and introduced in conjunction with preferred embodiments, there are many methods and approaches to implement this technical solution. The above description is only a preferred embodiment of the invention. However, those skilled in the art should understand that various changes in form and detail can be made to the invention without departing from the spirit and scope of the invention as defined in the appended claims, and all such changes are within the scope of protection of the invention.
Claims
1. A high-efficiency cleaning device for a ridge-type demister, comprising a support mechanism, characterized in that: The support mechanism is equipped with a dust collection mechanism, and a cleaning mechanism is installed on the rotating end of the dust collection mechanism. The dust generated during the cleaning process is collected by the dust collection mechanism.
2. The high-efficiency cleaning device for a ridge-type demister according to claim 1, characterized in that: The support mechanism includes a support rod, a sleeve, a support plate, and a fixed rod. The rotating end of the dust collection mechanism is rotatably connected inside the sleeve, and the fixed rods are fixedly connected to the outer wall of the sleeve at equal intervals. One end of the fixed rod is connected to the support rod through a connecting shaft, and the support plate is fixedly connected between the fixed rods.
3. The high-efficiency cleaning device for a ridge-type demister according to claim 2, characterized in that: The support rod is a hollow rod body, and the support rod is provided with dust suction ports arranged at equal intervals. The dust suction ports are connected to the cavity inside the support rod, and the dust suction ports face downwards.
4. The high-efficiency cleaning device for a ridge-type demister according to claim 2, characterized in that: The cavities of the support rods are connected by a second diversion pipe, and the second diversion pipe is connected to the dust collection end of the dust collection mechanism.
5. The high-efficiency cleaning device for a ridge-type demister according to claim 1, characterized in that: The dust collection mechanism includes a screw, a servo motor, a first diverter pipe, a motor gear, a dust pump, and a gear ring. The screw is located inside a sleeve and is rotatably connected, and a cleaning mechanism is installed on the screw. The top of the screw is fixedly connected to the gear ring. The servo motor and the dust pump are located on a support plate and are fixedly connected. The servo motor is connected to the motor gear through a motor shaft. The motor gear meshes with the gear ring. The dust pump is connected to the exhaust end of the screw through the first diverter pipe, and one of the air inlets of the first diverter pipe is connected to the second diverter pipe.
6. The high-efficiency cleaning device for a ridge-type demister according to claim 5, characterized in that: The screw has a cavity inside and also has dust suction ports arranged at equal intervals on the screw. The dust suction ports on the screw are connected to the cavity inside the screw.
7. A high-efficiency cleaning device for a ridge-type demister according to claim 5, characterized in that: A bearing is fixedly connected to the cavity at the top of the screw, and the rotating end of the bearing is fixedly connected to the first shunt pipe.
8. The high-efficiency cleaning device for a ridge-type demister according to claim 1, characterized in that: The cleaning mechanism includes an internally threaded sleeve, a limiting rod, a spring, and a sliding rod. The internally threaded sleeve is located on the screw and threadedly connected. The limiting rod is fixedly connected to the outer wall of the internally threaded sleeve at equal intervals. The limiting rod has an installation groove, and a spring is fixedly connected in the installation groove. The sliding rod is slidably connected in the installation groove, and one end of the sliding rod located in the installation groove is connected to the spring.
9. A high-efficiency cleaning device for a ridge-type demister according to claim 8, characterized in that: A positioning rod is fixedly connected inside the mounting slot, and the positioning rod is slidably connected to the sliding rod.
10. A high-efficiency cleaning device for a ridge-type demister according to claim 8, characterized in that: The upper and lower sides of the limiting rod are respectively fixedly connected with fan blades, and the fan blades are arranged along the central axis of the screw.
Citation Information
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