CN107081323B - Automatic dust removing device - Google Patents

Automatic dust removing device Download PDF

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Publication number
CN107081323B
CN107081323B CN201710351917.XA CN201710351917A CN107081323B CN 107081323 B CN107081323 B CN 107081323B CN 201710351917 A CN201710351917 A CN 201710351917A CN 107081323 B CN107081323 B CN 107081323B
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CN
China
Prior art keywords
dust
cover body
channel cover
inner cavity
binding plate
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Active
Application number
CN201710351917.XA
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Chinese (zh)
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CN107081323A (en
Inventor
李搌龙
温永涛
李建强
宋伟峰
雷勇道
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Jiekai Communications Shenzhen Co Ltd
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Jiekai Communications Shenzhen Co Ltd
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Priority to CN201710351917.XA priority Critical patent/CN107081323B/en
Publication of CN107081323A publication Critical patent/CN107081323A/en
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Publication of CN107081323B publication Critical patent/CN107081323B/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B08CLEANING
    • B08BCLEANING IN GENERAL; PREVENTION OF FOULING IN GENERAL
    • B08B15/00Preventing escape of dirt or fumes from the area where they are produced; Collecting or removing dirt or fumes from that area
    • B08B15/007Fume suction nozzles arranged on a closed or semi-closed surface, e.g. on a circular, ring-shaped or rectangular surface adjacent the area where fumes are produced

Abstract

The invention provides an automatic dust removal device which comprises a channel cover body, a dust removal pipe arranged on the channel cover body, a dust sticking plate arranged in an inner cavity of the channel cover body and a dust removal assembly used for blowing off dust in a product, wherein an inlet and an outlet are respectively arranged on two opposite side surfaces of the channel cover body, a pipe orifice communicated with the inner cavity of the channel cover body is arranged on the channel cover body, and the dust removal pipe is connected to the pipe orifice, so that the dust in the product is automatically removed. Compared with the prior art, through set up dust removal subassembly, dust sticky board and carry out the exhaust dust removal pipe to the dust in the internal chamber of passageway cover in the passageway cover to the realization is to the dust automatic clear in the product, not only can improve the product quality, need not the manual work moreover and removes dust reduction in production cost.

Description

Automatic dust removing device
Technical Field
The invention relates to an automatic production technology in the electronic industry, in particular to an automatic dust removal device.
Background
With the development of science and technology, various industries have been rapidly developed, and the electronic industry, as an industry related to the trend of people, has many product types, wide range and difficult estimation.
With the increasing competition of electronic products, various electronic products continuously improve their respective qualities while continuously reducing the production cost. At present, most electronic product production workshops adopt a dust-free workshop mode for production, and nevertheless, product accessories can inevitably generate dust in the processing and transportation processes, and the dust adheres to products, directly influences the appearance of the products and even influences the functions of the products. The mode of cleaning by manually wiping or holding the air gun consumes a large amount of manpower, cleaning tools such as alcohol and dust-free cloth are frequently used in the cleaning process, certain material cost is required to be invested, and the production cost is directly increased.
Disclosure of Invention
In order to overcome the defects of the prior art, the invention provides an automatic dust removal device, so that dust in a product is effectively removed.
The invention provides an automatic dust removal device which comprises a channel cover body, a dust removal pipe arranged on the channel cover body, a dust sticking plate arranged in an inner cavity of the channel cover body and a dust removal assembly used for blowing dust in a product, wherein an inlet and an outlet are respectively arranged on two opposite side surfaces of the channel cover body, a pipe orifice communicated with the inner cavity of the channel cover body is arranged on the channel cover body, and the dust removal pipe is connected to the pipe orifice. The dust in the product can be automatically removed.
Further, the dust removal assembly comprises an air nozzle and a first electromagnetic valve connected with the air nozzle through a pipeline.
Further, the device still includes the subassembly that destatics that is arranged in the passageway cover body inner chamber and is used for getting rid of dust static to destatic the processing to the dust, make the dust more easily cleared up.
Further, the static electricity removing assembly comprises a static electricity removing air knife and a second electromagnetic valve connected with the static electricity removing air knife through a pipeline.
Further, the device also comprises a sensing device, wherein the sensing device is respectively connected with the first electromagnetic valve and the second electromagnetic valve, so that the device is used for controlling the opening and closing of the first electromagnetic valve and/or the second electromagnetic valve when a product is sensed, automation is realized, and energy is saved.
Furthermore, the dust sticking plate comprises a frame body and dust sticking paper covering the frame body, so that the dust sticking paper is replaceable, and the cost of consumable materials is reduced.
Furthermore, a dust-binding plate insertion hole is formed in the side face, located at one side of the inlet or the outlet, of the channel cover body, and corresponds to the position of the dust-binding plate, a pair of dust-binding plate guide rails is arranged on the wall of the inner cavity, located in the inner cavity of the channel cover body, of the side corresponding to the dust-binding plate insertion hole, the dust-binding plate is inserted through the dust-binding plate insertion hole and is arranged in the inner cavity of the channel cover body through the guide and the bearing of the dust-binding plate guide rails, and therefore dust-binding paper on the dust-binding plate.
Furthermore, the dust-sticking plates are three and are respectively arranged on the upper side in the inner cavity of the channel cover body and the inner cavity walls at two sides adjacent to the inlet, and the dust-sticking plate insertion hole and the dust-sticking plate guide rail are correspondingly arranged at the corresponding positions of the three dust-sticking plates, so that the adsorption effect is better.
Furthermore, the air tap is arranged on one side of the inner cavity of the channel cover body positioned at the outlet, so that dust is removed from a product completely entering the inner cavity.
Further, the static electricity removing air knife is arranged on one side, located at the inlet, of the inner cavity of the channel cover body, so that static electricity removing is firstly carried out on products entering the inner cavity, the adsorption force of dust is reduced, and therefore follow-up processes can easily clean the dust.
Compared with the prior art, the dust removal device has the advantages that the dust removal component, the dust sticking plate and the dust removal pipe for discharging dust in the inner cavity of the channel cover body are arranged in the channel cover body, so that the dust in a product is automatically removed, the quality of the product can be improved, manual dust removal is not needed, and the production cost is reduced.
Drawings
FIG. 1 is an external structural view of the present invention;
FIG. 2 is a top view of the present invention;
FIG. 3-1 is an exploded view of the present invention;
FIG. 3-2 is a partial cross-sectional view of the present invention;
FIG. 4 is a schematic structural view of the dust bonding plate of the present invention;
FIG. 5 is a schematic view of the position of the dust binding plate guide rail of the present invention;
fig. 6 is a schematic diagram of an exemplary embodiment of the present invention.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings and examples.
As shown in fig. 1, 2 and 3-1, an automatic dust removing apparatus of the present invention includes a channel cover 1, a dust removing pipe 2 disposed on the channel cover 1, a dust adhering plate 3 disposed in an inner cavity of the channel cover 1, and a dust removing assembly for blowing off dust in a product, wherein an inlet 4 and an outlet 5 are respectively disposed on two opposite sides of the channel cover 1, a pipe orifice 6 (shown in fig. 5) communicated with the inner cavity of the channel cover 1 is disposed on the channel cover 1, the dust removing pipe 2 is connected to the pipe orifice 6, the dust removing pipe 2 can be connected to an exhaust pipe of a factory or a separate dust extraction system, which is not specifically limited herein, and preferably, the dust in the inner cavity of the channel cover 1 is extracted in a negative pressure manner, and two dust removing pipes 2 and two pipe orifices 6 are disposed in the dust removing apparatus of the present invention. Through this kind of structure, can reduce the required time of using artifical dust removal, through mutually supporting of dust removal subassembly, dust removal pipe and dust adhesion plate, the dust removal effect is good moreover, can improve the quality of product.
As shown in fig. 2, the dust removing assembly comprises an air nozzle 11 and a first electromagnetic valve 12 connected with the air nozzle 11 through a pipeline, the first electromagnetic valve 12 is connected with a fan (not shown in the figure), specifically, the air nozzle 11 is arranged in the inner cavity of the channel cover body 1 on one side of the outlet 5, and air blowing and dust removing are carried out on the product completely entering the inner cavity of the channel cover body 1, in the invention, the number of the air nozzles 11 can be set according to the actual product area, and two air nozzles 11 are arranged here.
As shown in fig. 2, the automatic dust removing device of the present invention further comprises a static electricity removing assembly for removing dust static electricity, the static electricity removing assembly comprises a static electricity removing air knife 9 and a second electromagnetic valve 10 connected with the static electricity removing air knife 9 through a pipeline, the second electromagnetic valve 10 is connected with a fan (not shown in the figure), it should be noted that the first electromagnetic valve 12 and the second electromagnetic valve 10 can be connected with the same fan, so as to save components, specifically, the static electricity removing air knife 9 is arranged on one side of the inlet 4 of the inner cavity of the channel cover body 1, the static electricity removing air knife 9 is parallel to the side cavity wall provided with the inlet 4, the static electricity removing air knife 9 adopts an ion air knife, so as to remove static electricity, the static electricity removing air knife is arranged on one side of the inlet 4, the dust can be removed before the product enters the channel cover body 1, so as to reduce the dust adsorption force, the dust can be blown and sucked away through the dust removal assembly and/or the dust removal pipe 2, and the dust removal effect is improved.
As shown in fig. 2, the automatic dust removing apparatus of the present invention further includes a dust sensing device connected to the first solenoid valve 12 and the second solenoid valve 10, respectively, so as to control the opening and closing of the first solenoid valve 12 and/or the second solenoid valve 10 when dust is sensed; specifically, the dust sensing device is a first sensor 14 and a second sensor 13 corresponding to the positions of the air tap 11 and the static removing air knife 9, the first sensor 14 is connected to a first electromagnetic valve 12, the second sensor 13 is connected to a second electromagnetic valve 10, the first sensor 14 and the second sensor 13 respectively employ a set of correlation photoelectric sensors, the first sensor 14 is disposed at a position close to the outlet 5 in the inner cavity of the channel cover body 1, and the second sensor 13 is disposed at a position close to the inlet 4 in the inner cavity of the channel cover body 1, so that when a product enters the inner cavity of the channel cover body 1 from the inlet 4, the second sensor 13 is triggered to start the fan and the second electromagnetic valve 10 to be opened, the static removing air knife 9 removes static electricity from the surface of the product, then the first sensor 14 is triggered to open the first electromagnetic valve 12, so as to blow up dust on the surface of the product, the dust is absorbed or drawn away through the dust removing pipe 2 and the dust adhering plate 3, so that the dust removal is completed.
The power supply of the present invention may be an equipment power supply or a self-contained power supply for supplying power to the first inductor 14, the second inductor 13, the first electromagnetic valve 12, the second electromagnetic valve 10, the fan, and the like, which is not limited herein.
As shown in fig. 4, the dust-binding plate 3 includes a frame 7 and dust-binding paper 8 covering the frame 7, and the dust-binding paper 8 is replaceable, so that not only is the material cost saved, but also the environment is protected.
In order to facilitate the replacement of the dust-binding paper 8, as shown in fig. 1 and 2, a dust-binding plate insertion opening 15 is arranged on the side surface of one side of the channel cover body 1, which is positioned at the inlet 4 or the outlet 5, and corresponds to the position of the dust-binding plate 3, and the dust-binding plate 3 is inserted into the inner cavity of the channel cover body 1 through the dust-binding plate insertion opening 15, so that the replacement of the dust-binding paper 8 is more convenient; specifically, the dust-sticking plate insertion port 15 is provided on a side surface of the duct cover 1 corresponding to the inlet 4.
In the invention, three dust-binding plates 3 are arranged, and the setting positions are as follows: as shown in fig. 1 and 3-1, one of the first dust-binding plates 3A is disposed on the upper side of the inner cavity of the channel cover 1, the other two second dust-binding plates 3B are disposed on the inner cavity walls on the two sides adjacent to the inlet 4, respectively, the first dust-binding plate 3A is parallel to the upper surface of the inner cavity of the channel cover 1, the two second dust-binding plates 3B are parallel to the inner cavity walls on the two sides adjacent to the inlet 4 (i.e., perpendicular to the first dust-binding plate 3A; correspondingly, three dust-binding plate insertion openings 15 are also provided, which correspond to the arrangement positions and directions of the three dust-binding plates 3, respectively, and the three dust-binding plates 3 are provided to improve the adsorption effect.
In order to guide and bear the dust-binding plate 3 inserted into the inner cavity of the passage cover body 1, as shown in fig. 5, a dust-binding plate guide rail 16 is arranged in the inner cavity of the passage cover body 1, the dust-binding plate guide rail 16 on the first dust-binding plate 3A side is explained below, and the dust-binding plate guide rails 16 on the other two second dust-binding plates 3B sides have the same structure and are changed only in direction; specifically, a pair of L-shaped sticky board guide rails 16 are arranged on the upper sides of the inner cavity walls of two sides adjacent to the sticky board insertion hole 15 in the inner cavity of the channel cover body 1, an accommodating space is formed between the sticky board guide rails 16 and the upper end surface of the inner cavity of the channel cover body 1, and the sticky board 3 is inserted through the sticky board insertion hole 15 and is arranged in the accommodating space through the guiding and bearing of the sticky board guide rails 16, so that the dust collection board is more easily inserted into the inner cavity.
As an embodiment of the present invention, as shown in fig. 4, a handle 17 for facilitating drawing is provided on one side of the frame 7.
As shown in fig. 3-1, 3-2 and 5, as an embodiment of the present invention, the passage cover body 1 includes a bending plate 18 formed by bending a plate body into an n shape, a first side plate 19 and a second side plate 20 covering openings at front and rear sides of the bending plate 18, and both the first side plate 19 and the second side plate 20 are fixed on the bending plate 18 by screw connection; the bending plate 18 comprises a top plate 23, a left side plate 24 and a right side plate 24, a first side plate 19 and a second side plate 20 are respectively fixed on two sides of the left side plate 24 and the right side plate 24 through screws, the inlet 4 is arranged on the lower side of the first side plate 19, the outlet 5 is arranged on the lower side of the second side plate 20, the dust sticking plate insertion holes 15 are all arranged on the first side plate 19, three pairs of dust sticking plate guide rails 16 are respectively arranged on the left side and the right side of the inner side surface of the top plate 23 and the upper side and the lower side of the inner side surface of the left side plate 24 and the lower side of the inner side surface of the right side plate 24, the pipe orifice 6 is arranged; the second inductor 13 is fixed on the inner side surfaces of the left and right side plates 24 close to the inlet 4; the bending plate 18 is also provided with a first transverse plate 22 and a second transverse plate 29 which are arranged between the inner side surfaces of the left side plate 24 and the right side plate 24 in a spanning manner, and the first transverse plate 22 and the second transverse plate 29 are fixed on the inner side surfaces of the left side plate 24 and the right side plate 24 through screws. The static removing air knife 9 and the second electromagnetic valve 10 are fixed on the second horizontal plate 29, the air nozzles 11 and the first electromagnetic valve 12 are fixed on the first horizontal plate 22, and the two air nozzles 11 are symmetrically arranged.
As shown in fig. 3-2, the first cross plate 22 and the second cross plate 29 are respectively disposed at the left and right side plates 24 near the top plate 23.
In an embodiment of the present invention, the second sensor 13 is disposed between the electrostatic discharge air knife 9 and the inlet 4, and the first sensor 14 is disposed between the air nozzle 11 and the outlet 5.
As shown in fig. 2, in order to fix the automatic dust removing apparatus in the device which needs to remove dust from the product, a fixing plate 25 is provided on each of the left and right side plates 24 for clamping and fixing.
As shown in fig. 6, which is a schematic view of an exemplary embodiment of the present invention, the apparatus herein includes a clean room 26, and a conveying mechanism 27 disposed at a product inlet of one side of the clean room 26, the automatic dust removing device of the present invention is mounted on the conveying mechanism and clamped by a fixing plate 25, the inlet 4 is disposed at a side far from the product inlet of the clean room 26, the outlet 5 is opposite to the product inlet, and the electronic product 28 is conveyed by the conveying mechanism and enters the automatic dust removing device for electrostatic dust removal.
The invention has double layers of air blowing and dust removal, wherein one layer is an electrostatic removal air knife and an air nozzle, the electrostatic removal air knife blows ion air to eliminate dust static, and the air nozzle blows strong air to blow dust; the other layer is that the elimination of dust in the air of the inner cavity of the channel cover body adopts a dual mode of a dust adhering plate and a dust suction pipe, the dust flies away from the surface of the product under the action of the static removing air knife and the dust removing air nozzle and dissociates in the inner cavity of the channel cover body, and the dissociated dust is probably adsorbed by the dust adhering plate and probably is sucked away by the dust suction pipe under the action of the dust adhering plate and the dust suction pipe, so that the effect of eliminating the dissociated dust in the inner cavity of the channel cover body is achieved.
The invention adopts two groups of inductors to induct and remove static electricity and dust in real time, thereby saving energy and having high automation degree; the dust removal mode of combining the dust sticking plate and the dust extraction pipe ensures that the dust is removed more thoroughly; the invention can be used independently or used together with a clean shed or other equipment, and has strong universality.
While the invention has been shown and described with reference to certain embodiments, those skilled in the art will understand that: various changes in form and details may be made therein without departing from the spirit and scope of the invention as defined by the appended claims and their equivalents.

Claims (6)

1. The utility model provides an automatic dust collector which characterized in that: the device comprises a channel cover body (1), a dust removing pipe (2) arranged on the channel cover body (1), a dust adhering plate (3) arranged in an inner cavity of the channel cover body (1), a dust removing component used for blowing dust in a product and a static removing component used for removing dust static, wherein an inlet (4) and an outlet (5) are respectively arranged on two opposite side surfaces of the channel cover body (1), a pipe orifice (6) communicated with the inner cavity of the channel cover body (1) is arranged on the channel cover body (1), the dust removing pipe (2) is connected to the pipe orifice (6), the dust removing pipe (2) is used for generating negative pressure to extract the dust in the inner cavity of the channel cover body (1), the dust removing component is positioned on one side of the outlet (5) in the inner cavity of the channel cover body (1), and the static removing component is positioned on one side of the inlet (4) in the inner cavity of the channel cover body (; the dust removal assembly comprises an air nozzle (11) and a first electromagnetic valve (12) connected with the air nozzle (11) through a pipeline; the static electricity removing component comprises a static electricity removing air knife (9) and a second electromagnetic valve (10) connected with the static electricity removing air knife (9) through a pipeline;
automatic dust collector still includes dust induction system, dust induction system includes first inductor (14) and second inductor (13), wherein, a set of correlation formula photoelectric sensor is adopted respectively in first inductor (14) and second inductor (13), the position department that the passageway cover body (1) inner chamber is close to export (5) is located in first inductor (14), the position department that the passageway cover body (1) inner chamber is close to import (4) is located in second inductor (13), first inductor 14 is connected with first solenoid valve (12), second inductor (13) are connected with second solenoid valve (10) for the switch of first solenoid valve (12) of control and second solenoid valve (10) when sensing the dust.
2. The automatic dust removal device according to claim 1, wherein: the dust adhering plate (3) comprises a frame body (7) and dust adhering paper (8) covered on the frame body (7).
3. The automatic dust removing device according to claim 1 or 2, wherein: the dust-binding plate is characterized in that a dust-binding plate insertion hole (15) is formed in the side face, located at one side of the inlet (4) or the outlet (5), of the channel cover body (1) and corresponding to the position of the dust-binding plate (3), a pair of dust-binding plate guide rails (16) are arranged on the wall of the inner cavity, corresponding to the dust-binding plate insertion hole (15), in the inner cavity of the channel cover body (1), the dust-binding plate (3) is inserted through the dust-binding plate insertion hole (15) and is arranged in the inner cavity of the channel cover body (1) through the guiding and bearing of the dust-binding plate guide rails (.
4. The automatic dust removing device according to claim 3, wherein: the dust-binding plates (3) are three and are respectively arranged on the upper side in the inner cavity of the channel cover body (1) and the inner cavity walls at two sides adjacent to the inlet (4), and the dust-binding plate insertion hole (15) and the dust-binding plate guide rail (16) are correspondingly arranged at the corresponding positions of the three dust-binding plates (3).
5. The automatic dust removal device according to claim 1, wherein: wherein, the air tap (11) in the dust removal assembly is arranged on one side of the outlet (5) of the inner cavity of the channel cover body (1).
6. The automatic dust removal device according to claim 1, wherein: the static electricity removing air knife (9) in the static electricity removing assembly is arranged on one side of the inlet (4) of the inner cavity of the channel cover body (1).
CN201710351917.XA 2017-05-18 2017-05-18 Automatic dust removing device Active CN107081323B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
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Application Number Priority Date Filing Date Title
CN201710351917.XA CN107081323B (en) 2017-05-18 2017-05-18 Automatic dust removing device

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CN107081323A CN107081323A (en) 2017-08-22
CN107081323B true CN107081323B (en) 2020-05-19

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CN109622514A (en) * 2018-12-28 2019-04-16 上海华岭集成电路技术股份有限公司 A kind of method and device of automated cleaning prober cavity
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CN113803619A (en) * 2021-11-03 2021-12-17 杭州童画文化咨询有限公司 A drawing training projecting apparatus for wisdom education

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