High-speed rotating dust removal equipment
By designing an automated feeding rack, dust hood, ion bar, and rotating nozzle, a high-speed rotating dust removal device was developed, solving the problem of low automation in existing equipment and achieving highly efficient automated dust removal.
Patent Information
- Application Number
- CN202520186703.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-06
- Publication Date
- 2026-01-20
- Estimated Expiration
- 2035-02-06
AI Technical Summary
Existing dust removal equipment requires manual adjustment of the dust removal position, resulting in low automation and low adjustment efficiency.
A high-speed rotating dust removal device was designed, comprising a feeding mechanism and a dust removal mechanism. It adopts an automated feeding rack, dust removal hood, ion bar, and rotating nozzle. The automatic feeding and dust removal position adjustment are achieved through a drive device. The ion bar removes static electricity, and the rotating nozzle sprays air to remove dust.
It achieves a highly automated dust removal process, improves dust removal efficiency, automatically feeds and adjusts the dust removal position without manual intervention, and significantly improves the dust removal effect.
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Figure CN223811352U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to dust removal equipment technical field especially is a kind of high-speed rotary dust removal equipment. BACKGROUND
[0002] With the development of science and technology, many material production processes require to maintain cleanliness. For example, circuit board, screen and the like need to be dusted, otherwise dust will affect the quality of products. Some dust removal equipment on the market needs manual adjustment of dust removal position, and has the problems of poor automation degree and low adjustment efficiency.
[0003] Chinese patent application number: CN202122223017.1 discloses an efficient cleaning dust collector, specifically discloses "a lifting screw is rotatably installed on a fixed plate, the lifting screw is symmetrically provided in two groups, a lifting hand wheel is fixedly installed at the upper end of the lifting screw, one side of the lifting screw seat is fixedly connected to the outer wall of the dust removal cleaning head, a lifting guide rod is fixedly connected to the upper end of the dust removal cleaning head, and the lifting guide rod penetrates one side of the fixed plate and extends to the upper end of the fixed plate, the lifting guide rod is symmetrically provided in two groups, and the lifting hand wheel is rotated to drive the lifting screw to rotate". The dust collector needs manual adjustment of dust removal position, and has the problems of poor automation degree and low adjustment efficiency. UTILITY MODEL CONTENTS
[0004] Therefore, the utility model provides a high-speed rotary dust removal equipment, which can automatically feed and dust, has higher automation degree and is beneficial to improve dust removal efficiency, so as to overcome the shortcomings of the prior art.
[0005] To achieve the above-mentioned purpose, the utility model adopts the following technical scheme:
[0006] The application provides a high-speed rotary dust removal equipment, which comprises a feeding mechanism and a dust removal mechanism; the feeding mechanism comprises a first driving device and a feeding rack arranged on the first driving device; the material is placed on the feeding rack, and the clean surface of the material is exposed on the feeding rack; the dust removal mechanism is arranged on the movement track of the feeding rack; the dust removal mechanism comprises a second driving device, a dust removal cover, an ion wind rod and a rotary nozzle; the second driving device is connected with the dust removal cover, and the dust removal cover can move towards the material; a first groove and a first air duct are arranged in the dust removal cover, and the first air duct is beside the first groove; the rotary nozzle is arranged in the first groove and can spray air towards the material; and the ion wind rod is arranged at the slot opening of the first groove.
[0007] Preferably, the two sides of the first groove are provided with a second groove, the ion wind rod is arranged in the second groove, and the first air duct is arranged outside the second groove.
[0008] Preferably, the dust cover comprises a first dust cover and a second dust cover; the second dust cover is arranged inside the first dust cover; the first groove and the second groove are arranged on the second dust cover; the first air channel is formed between the first dust cover and the second dust cover; the second air channel is formed on the second dust cover; and the second air channel is connected with the rotating nozzle.
[0009] Preferably, the first air channel is connected with the air purifier; the second air channel and the ion wind rod are connected with the filter box.
[0010] Preferably, the dust cover is provided with a first baffle and a second baffle; the material can pass between the first baffles; and the second baffle can abut against the material.
[0011] Preferably, the rotating nozzle comprises a nozzle seat, a nozzle body, a first nozzle head and a second nozzle head; the nozzle body is rotatably arranged on the nozzle seat; the first nozzle head and the second nozzle head are symmetrically arranged on the nozzle body; the first nozzle head is provided with a first nozzle hole, and the second nozzle head is provided with a second nozzle hole; the first nozzle hole and the second nozzle hole are oppositely directed; the first nozzle head is provided with at least two third nozzle holes directed toward the material, and an included angle A is left between the third nozzle holes; and the second nozzle head is provided with at least two fourth nozzle holes directed toward the material, and an included angle B is left between the fourth nozzle holes.
[0012] Preferably, the dust removal mechanism is provided with two groups; the second driving device of the first group is a lead screw servo module; and the second driving device of the second group is a cylinder module.
[0013] Preferably, the first driving device is one of a lead screw servo module, a cylinder module and a belt module.
[0014] Preferably, the feeding frame comprises a frame and a supporting net; and the supporting net is arranged in the frame.
[0015] Preferably, the feeding mechanism and the dust removal mechanism are arranged in a cabinet; the cabinet is provided with a feeding port and a discharging port; and the feeding port is provided with a safety grating.
[0016] Compared with the prior art, the utility model has obvious advantages and beneficial effects, specifically, the feeding mechanism is used for automatic feeding; the material is placed on the feeding frame; the first driving device drives the feeding frame to move to the dust removal mechanism; and the dust removal mechanism removes dust from the material. The ion wind rod and the rotating nozzle are arranged on the dust cover; the second driving device drives the dust cover to move toward the material; and manual adjustment is not needed. Therefore, the high-speed rotating dust removal equipment can automatically feed, automatically adjust the dust removal position, has high automation degree, has high adjustment efficiency, and helps to improve the dust removal efficiency. The rotating nozzle is arranged in each dust cover; and the dust removal effect is better.
[0017] When working, the material is put into the feeding frame, and the feeding frame moves through the dust removal mechanism. The dust removal cover moves towards the material, the ion wind rod removes static electricity on the surface of the material, the rotary nozzle sprays gas at high speed, and the discharged gas beats the surface of the cleaned material in rhythm, and the dust and other substances on the surface of the material are rolled up. The dust rotating is sucked away by the first air duct, and dust removal is realized. The dust removal effect is very good. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 It is the overall schematic diagram of the embodiment of the utility model.
[0019] Figure 2 It is the partial structure schematic diagram of the embodiment of the utility model.
[0020] Figure 3 It is the dust removal mechanism arrangement schematic diagram of the embodiment of the utility model.
[0021] Figure 4 It is the partial dust removal mechanism schematic diagram of the embodiment of the utility model.
[0022] Figure 5 It is the partial dust removal mechanism overhead schematic diagram of the embodiment of the utility model.
[0023] Figure 6 It is the partial Figure 5 F_F sectional view schematic diagram of the embodiment of the utility model.
[0024] Figure 7 It is the partial Figure 5 H_H sectional view schematic diagram of the embodiment of the utility model.
[0025] Figure 8 It is the partial rotary nozzle exploded schematic diagram of the embodiment of the utility model.
[0026] Explanation of figure mark:
[0027] 10, feeding mechanism; 11, first driving device; 12, feeding frame; 13, frame; 14, support net; 15, cabinet; 16, feeding port; 18, material; 19, safety grating; 20, dust removal mechanism; 21, second driving device; 22, air blower; 210, dust removal cover; 211, first dust removal cover; 212, second dust removal cover; 213, first baffle; 214, second baffle; 216, first groove; 215, first air duct; 217, first joint; 218, second air duct; 219, second joint; 220, ion wind stick; 221, third joint; 222, second groove; 230, rotary nozzle; 231, nozzle seat; 232, nozzle main body; 233, first spray head; 234, first spray hole; 234, third spray hole; 235, second spray head; 236, second spray hole; 237, fourth spray hole; 238, filter box; 239, air purifier. DETAILED DESCRIPTION
[0028] In order to further illustrate the technical means and effects taken by the utility model to achieve the predetermined utility model purposes, the specific embodiments, structures, features and effects according to the utility model are described in detail as follows in combination with the drawings and preferred embodiments.
[0029] Please refer to Figures 1 to 8 It shows the specific structure of the preferred embodiment of the utility model, which is a high-speed rotary dust removal equipment.
[0030] Among them, the feeding mechanism 10 can automatically feed, the dust removal mechanism 20 can automatically adjust the dust removal position, and the degree of automation is high, which helps to improve the dust removal efficiency.
[0031] The application provides a high-speed rotating dust removal equipment, which comprises a feeding mechanism 10 and a dust removal mechanism 20. The feeding mechanism 10 comprises a first driving device 11 and a feeding rack 12 arranged on the first driving device 11. The material 18 is placed on the feeding rack 12, and the clean surface of the material 18 is exposed on the feeding rack 12. The dust removal mechanism 20 is arranged on the movement track of the feeding rack 12. The dust removal mechanism 20 comprises a second driving device 21, a dust removal cover 210, an ion wind rod 220 and a rotating nozzle 230. The second driving device 21 is connected with the dust removal cover 210, and the dust removal cover 210 can move towards the material 18. The dust removal cover 210 is provided with a first groove 216 and a first air duct 215, and the first air duct 215 is arranged on the side of the first groove 216. The rotating nozzle 230 is arranged on the first groove 216 and can spray air towards the material 18. The ion wind rod 220 is arranged at the slot of the first groove 216. The feeding mechanism 10 is used for automatic feeding. In the embodiment, the first driving device 11 is a lead screw servo module, and the lead screw servo module drives the feeding rack 12 to move back and forth. The second driving device 21 is one of a lead screw servo module, a cylinder module and a belt module. In the embodiment, the dust removal mechanism 20 is provided with two groups, and the dust removal mechanisms 20 are arranged in an upper and lower interval. Preferably, the upper second driving device 21 is a lead screw servo module, and the lower second driving device 21 is a cylinder module. The second driving device 21 drives the dust removal cover 210 to move up and down. When the feeding rack 12 passes through the dust removal mechanism 20, the dust removal cover 210 moves towards the material 18, and the dust removal mechanism 20 removes dust from the material 18. The specific working principle is as follows: the material 18 is placed into the feeding rack 12, and the first driving device 11 drives the feeding rack 12 to move to the dust removal mechanism 20. The dust removal cover 210 moves towards the material 18, the ion wind rod 220 removes static electricity on the surface of the material 18, the rotating nozzle 230 rotates at a high speed, and the discharged gas rhythmically hits the material surface, so that the dust and other foreign matters on the surface of the material 18 are rolled up. The rotating dust is sucked away by the first air duct 215, so that dust removal is realized. As an optional solution, a distance sensor is further arranged on the dust removal cover 210, which can judge the distance between the dust removal cover 210 and the material 18, so as to improve the precision of dust removal.
[0032] Preferably, the first slot 216 is provided with a second slot 222 on both sides, the ion wind rod 220 is arranged in the second slot 222, and the first air duct 215 is arranged outside the second slot 222. The ion wind rod 220 is a special equipment for fixed electrostatic elimination, which belongs to a kind of rod type electrostatic elimination products. The air blower 22 is connected with the ion wind rod 220 and the rotating nozzle 230 through a pipeline, so that the ion wind rod 220 and the rotating nozzle 230 can blow air. The ion wind rod 220 eliminates static electricity on the surface of the material 18, and the rotating nozzle 230 rolls up dust and other foreign matters on the surface of the material 18. The air extractor / air aspirator provides suction for the first air duct 215, and the dust and other foreign matters rolled up by the rotating nozzle 230 are sucked away by the first air duct 215. The first air duct 215 is arranged outside the second slot 222, which can realize bilateral suction, effectively prevent dust from leaking, and achieve better dust removal effect. The ion wind rod 220 is arranged on both sides of the first slot 216, which can achieve better electrostatic elimination effect.
[0033] Preferably, the dust removal cover 210 includes a first dust removal cover 211 and a second dust removal cover 212; the second dust removal cover 212 is arranged inside the first dust removal cover 211; the first slot 216 and the second slot 222 are arranged on the second dust removal cover 212; the first air duct 215 is formed between the first dust removal cover 211 and the second dust removal cover 212; the second air duct 218 is formed on the second dust removal cover 212; the second air duct 218 is connected with the rotating nozzle 230; and the third joint 221 is connected with the ion wind rod 220. The first dust removal cover 211 and the second dust removal cover 212 can be assembled together by screws. The first air duct 215 is formed between the first dust removal cover 211 and the second dust removal cover 212, which makes the formation of the first air duct 215 simpler and has low processing difficulty. The second air duct 218 can be formed by drilling. The first joint 217 is arranged on the first air duct 215, which can be used to connect a pipeline for air extraction. The second joint 219 is connected with the second air duct 218, and the third joint 221 is connected with the ion wind rod 220. The second joint 219 and the third joint 221 are used to connect a pipeline for air blowing.
[0034] Preferably, the first air duct 215 is connected with the first joint 217, the first joint 217 is connected with the air purifier 239, and the second joint 219 and the third joint 221 are connected with the filter box 238. The air extracted by the first air duct 215 is treated by the air purifier 239 before being discharged, which is more environmentally friendly and conducive to environmental protection. The filter box 238 can filter dust, foreign matters, water vapor and the like, so that the filter box 238 filters the air and protects the material 18 from being polluted by external air.
[0035] Preferably, the dust removal cover 210 is provided with a first baffle 213 and a second baffle 214; the material 18 can pass between the first baffle 213; the second baffle 214 can be in close contact with the material 18. The first baffle 213 and the second baffle 214 cooperate to block the air outside the dust removal cover 210, providing a better negative pressure environment for suction, and better sucking away dust particles.
[0036] Preferably, the rotating nozzle 230 includes a nozzle seat 231, a nozzle body 232, a first nozzle head 233, and a second nozzle head 235; the nozzle body 232 is rotatably arranged in the nozzle seat 231; the first nozzle head 233 and the second nozzle head 235 are symmetrically arranged on the nozzle body 232; the first nozzle head 233 is provided with a first nozzle hole 234, and the second nozzle head 235 is provided with a second nozzle hole 236; the first nozzle hole 234 and the second nozzle hole 236 are oppositely directed; the first nozzle head 233 is provided with at least two third nozzle holes 234 facing the material 18, and the third nozzle holes 234 are left with an included angle A; the second nozzle head 235 is provided with at least two fourth nozzle holes 237 facing the material 18, and the fourth nozzle holes 237 are left with an included angle B. The air blower 22 drives the rotating nozzle 230 to act. The first nozzle hole 234 and the second nozzle hole 236 are oppositely directed, and the nozzle body 232 can rotate when blowing. The nozzle seat 231 is arranged in the second dust removal cover 212. The third nozzle holes 234 and the fourth nozzle holes 237 are left with certain included angles, so that the gas sprayed from the third nozzle holes 234 and the fourth nozzle holes 237 can vibrate the dust and also make the dust roll up like a tornado. This design makes the dust removal effect better and the cleanliness higher. The included angle A and the included angle B are between 15-30°.
[0037] Preferably, the feeding frame 12 includes a frame 13 and a support net 14, which can be assembled together by screws or welding. The support net 14 is arranged in the frame 13. The support net 14 facilitates the dust removal mechanism 20 below to remove dust from the bottom of the material 18, and the frame 13 ensures the stability and firmness of the feeding frame 12.
[0038] Preferably, the feeding mechanism 10 and the dust removal mechanism 20 are arranged in the cabinet 16, and the cabinet 16 is provided with a feeding port 16 and a discharging port after dust removal. The feeding port 16 is provided with a safety grating 19. During dust removal, the first mechanical arm loads the material 18 from the feeding port 16 to the feeding frame 12, and the second mechanical arm takes out the material 18 from the discharging port after dust removal, so as to realize automatic feeding and discharging with high working efficiency. The safety grating 19 can improve the safety of the equipment, and the material 18 can also be manually placed on the feeding frame.
[0039] To sum up, the design emphasis of the utility model lies in that the feeding mechanism 10 can automatically feed, and the dust removal mechanism 20 removes dust from the material 18. The second driving device 21 drives the dust removal cover 210 to automatically move to the material 18, without manual adjustment, realizing automatic feeding, automatic adjustment of the dust removal position, high automation degree, high adjustment efficiency, and helping to improve the dust removal efficiency.
[0040] The above is only the preferred embodiment of the utility model, and does not limit the utility model in any form. Although the utility model has been disclosed as above with the preferred embodiment, it is not intended to limit the utility model. Any person skilled in the art can make slight changes or modifications to the equivalent embodiments within the scope of the technical scheme of the utility model without departing from the technical scheme of the utility model. Any modification, equivalent change and modification of the above embodiments according to the technical essence of the utility model still belong to the scope of the technical scheme of the utility model.
Claims
1. A high-speed rotary dust collector, characterized in that: Includes a feeding mechanism and a dust removal mechanism; The feeding mechanism includes a first driving device and a feeding rack disposed on the first driving device; the material is placed on the feeding rack, and the clean surface of the material is exposed on the feeding rack; The dust removal mechanism is set on the movement trajectory of the feeding frame; the dust removal mechanism includes a second drive device, a dust removal hood, an ionizing air bar, and a rotating nozzle; The second drive unit is connected to the dust removal hood, which can move toward the material. The dust collector hood is equipped with a first trough and a first air passage, with the first air passage located beside the first trough; the rotating nozzle is located in the first trough and can spray air towards the material; the ion air bar is located at the opening of the first trough.
2. The high-speed rotary dust collector according to claim 1, characterized in that: A second groove is provided on both sides of the first groove, the ion wind bar is placed in the second groove, and the first air channel is placed on the outside of the second groove.
3. The high-speed rotary dust collector according to claim 2, characterized in that: The dust removal hood includes a first dust removal hood and a second dust removal hood; the second dust removal hood is disposed inside the first dust removal hood; the first groove and the second groove are disposed on the second dust removal hood; a first air passage is formed between the first dust removal hood and the second dust removal hood; a second air passage is formed on the second dust removal hood; the second air passage is connected to the rotating nozzle.
4. The high-speed rotary dust collector according to claim 1, characterized in that: The first air duct is connected to the air purifier; the second air duct and ionizer are connected to the filter box.
5. The high-speed rotary dust collector according to claim 1, characterized in that: The dust collector hood is equipped with a first baffle and a second baffle; materials can pass between the first baffles; the second baffle can be in close contact with the materials.
6. The high-speed rotary dust collector according to claim 1, characterized in that: The rotating nozzle includes a nozzle seat, a nozzle body, a first nozzle, and a second nozzle. The nozzle body is rotatably mounted on the nozzle seat. The first nozzle and the second nozzle are symmetrically arranged on the nozzle body. The first nozzle has a first nozzle hole, and the second nozzle has a second nozzle hole, with the first and second nozzles facing opposite directions. The first nozzle has at least two third nozzle holes facing the material, with an included angle A between the third nozzle holes. The second nozzle has at least two fourth nozzle holes facing the material, with an included angle B between the fourth nozzle holes.
7. The high-speed rotary dust collector according to claim 1, characterized in that: The dust removal mechanism is provided in two sets. The second drive device of the first set is a lead screw servo module, and the second drive device of the second set is a cylinder module.
8. A high-speed rotary dust collector according to any one of claims 1-7, characterized in that: The first driving device is one of a lead screw servo module, a cylinder module, or a belt module.
9. A high-speed rotary dust collector according to claim 1, characterized in that: The feeding rack includes a frame and a support mesh, with the support mesh disposed inside the frame.
10. A high-speed rotary dust collector according to claim 1, characterized in that: The feeding mechanism and dust removal mechanism are installed inside the cabinet, which has a feeding port and a discharging port, and a safety light curtain is installed at the feeding port.
Citation Information
Patent Citations
Efficient cleaning dust remover
CN216150557U