CN212041811U - Dust removing device - Google Patents

Dust removing device Download PDF

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Publication number
CN212041811U
CN212041811U CN201922374785.XU CN201922374785U CN212041811U CN 212041811 U CN212041811 U CN 212041811U CN 201922374785 U CN201922374785 U CN 201922374785U CN 212041811 U CN212041811 U CN 212041811U
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CN
China
Prior art keywords
dust
dust removing
piece
air blowing
air
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Active
Application number
CN201922374785.XU
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Chinese (zh)
Inventor
黄红裕
程伦
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Fulian Technology (Jiyuan) Co.,Ltd.
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Futaihua Precision Electronic Jiyuan Co Ltd
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Priority to CN201922374785.XU priority Critical patent/CN212041811U/en
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Abstract

A dust removal device comprises a frame and a dust removal cavity arranged on the frame; a bearing piece, a dust removing piece and a liquid tank are arranged in the dust removing cavity, the bearing piece is connected with the rack, the dust removing piece is arranged above the bearing piece, and the liquid tank is arranged below the dust removing piece; the dust removal piece comprises a positioning part and an air blowing part, the positioning part is used for bearing a workpiece, and the air blowing part is communicated with the positioning part and is used for blowing air and removing dust on the workpiece on the positioning part; the liquid tank is internally provided with liquid for containing impurities blown off from the dust removing piece; the dust removal device further comprises an air blowing mechanism, wherein one end of the air blowing mechanism is communicated with the dust removal cavity so as to blow impurities blown down through the air blowing part into the liquid tank. The dust removal device can automatically remove dust of the workpiece, and dust removal efficiency and yield are improved.

Description

Dust removing device
Technical Field
The utility model relates to an automated production field, especially a dust collector.
Background
In the production process of electronic products, after a workpiece is subjected to CNC machining, anodic oxidation, sand blasting and other processes, the workpiece is usually required to be dedusted. For example, a plurality of threaded holes are formed in a housing of an electronic product, and in a conventional dust removal method, air is sequentially blown into the threaded holes in the housing by using a blowing needle tube, however, the manual dust removal method is inefficient, and the dust removal yield is low.
SUMMERY OF THE UTILITY MODEL
In view of the above, it is necessary to provide a dust removing device to solve the above problems.
The application provides a dust removal device, which comprises a rack and a dust removal cavity arranged on the rack;
a bearing piece, a dust removing piece and a liquid tank are arranged in the dust removing cavity, the bearing piece is connected with the rack, the dust removing piece is arranged above the bearing piece, and the liquid tank is arranged below the dust removing piece;
the dust removal piece comprises a positioning part and an air blowing part, the positioning part is used for bearing a workpiece, and the air blowing part is communicated with the positioning part and is used for blowing air and removing dust on the workpiece on the positioning part;
the liquid tank is internally provided with liquid for containing impurities blown off from the dust removing piece;
the dust removal device further comprises an air blowing mechanism, wherein one end of the air blowing mechanism is communicated with the dust removal cavity so as to blow impurities blown down through the air blowing part into the liquid tank.
Furthermore, the dust removing cavity is provided with a feed port, and the workpiece is placed on the bearing piece through the feed port;
the dust removal device further comprises an induction piece, the induction piece is arranged at the feeding hole and used for inducing a workpiece to enter or leave the feeding hole so as to start or stop the operation of the air blowing part.
Further, dust collector still includes booster mechanism, booster mechanism includes booster pump and trachea, the one end of booster pump is passed through the trachea with the portion of blowing is connected, and the other end is connected with an air supply, the booster pump is used for the increase to get into the pressure of the gas of portion of blowing.
Furthermore, the air blowing mechanism comprises an air inlet piece and an air blowing pipe, one end of the air inlet piece is communicated with an air source, the other end of the air inlet piece is communicated with the air blowing pipe, and the air blowing pipe is arranged at the top of the rack and communicated with the dust removal cavity and used for blowing impurities in the dust removal cavity into the liquid tank.
Furthermore, the dust removing device also comprises a dust collecting mechanism, the dust collecting mechanism comprises a dust collecting power part and a dust collecting pipe, one end of the dust collecting pipe is communicated with the dust removing cavity, and the other end of the dust collecting pipe is connected with the dust collecting power part and used for extracting impurities in the dust removing cavity.
Furthermore, an air inlet hole is formed in the air blowing part, an air blowing hole is formed in the positioning part, and the air blowing hole is communicated with the air inlet hole.
Furthermore, a filter screen is arranged in the liquid tank.
The dust removal part and the liquid tank are arranged in the dust removal cavity of the dust removal device, so that the workpiece can be automatically removed in a dust manner, the dust removal efficiency is improved, and the labor cost is reduced; moreover, the dust removal device can also avoid secondary pollution of impurities on the workpiece or the dust removal cavity, and the yield of dust removal is improved.
Drawings
Fig. 1 is a schematic perspective view of a dust removing device according to an embodiment of the present invention.
Fig. 2 is an exploded perspective view of the dust removing member of the dust removing device shown in fig. 1.
Description of the main elements
Dust removing apparatus 100
Rack 10
Dust removal cavity 20
Feed inlet 201
Carrier 21
Dust-removing member 22
Positioning part 221
Air blowing hole 2211
Air blowing part 222
Air intake ports 2221
Liquid tank 23
Filter screen 231
Air blowing mechanism 30
Air inlet 31
Gas blow pipe 32
Supercharging mechanism 40
Booster pump 41
Air pipe 42
Induction member 50
Dust suction mechanism 60
Dust-collecting power unit 61
Dust suction pipe 62
Gas source 70
The following detailed description of the invention will be further described in conjunction with the above-identified drawings.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
It will be understood that when an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may also be present. When an element is referred to as being "disposed on" another element, it can be directly on the other element or intervening elements may also be present.
Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items.
Referring to fig. 1 and fig. 2, an embodiment of the present disclosure provides a dust removing apparatus 100 for automatically removing impurities from a workpiece. The dust removing device 100 comprises a frame 10 and a dust removing cavity 20 arranged on the frame 10, wherein a bearing member 21, a dust removing member 22 and a liquid tank 23 are arranged in the dust removing cavity 20, the bearing member 21 is connected with the frame 10, the dust removing member 22 is arranged above the bearing member 21, and the liquid tank 23 is arranged below the dust removing member 22.
The dust removing member 22 includes a positioning portion 221 and a blowing portion 222, the positioning portion 221 is used for bearing the workpiece, and the blowing portion 222 is communicated with the positioning portion 221 and used for introducing gas and performing blowing dust removal on the workpiece on the positioning portion 221. It is understood that the number of the dust removing members 22 may be one or more.
The liquid tank 23 is filled with a liquid for containing the foreign substances blown off by the dust removing member 22. The liquid is, for example, but not limited to, clear water.
Preferably, a filter screen 231 is disposed in the liquid tank 23, and the filter screen 231 is detachably connected to a tank wall of the liquid tank 23.
Preferably, the dust removing device 100 further comprises an air blowing mechanism 30 provided on the frame 10, and one end of the air blowing mechanism 30 is communicated with the dust removing chamber 20 to blow the impurities blown off by the dust removing member 22 into the liquid tank 23.
The dust removal device 100 performs air blowing dust removal on the workpiece through the dust removal piece 22, and the air blowing mechanism 30 blows impurities to the liquid tank 23, so that the dust removal device 100 can automatically remove dust from the workpiece, the dust removal efficiency is high, and the impurity can be prevented from polluting the dust removal cavity 20 or secondarily polluting the workpiece.
In one embodiment, the dust removing device 100 further comprises a pressurization mechanism 40, a sensor 50, a dust suction mechanism 60 and an air source 70.
Specifically, the blowing mechanism 30 includes an air inlet 31 and a blowing pipe 32, one end of the air inlet 31 is communicated with the air source 70, the other end is communicated with the blowing pipe 32, and the blowing pipe 32 is disposed at the top of the frame 10 and is communicated with the dust-removing chamber 20, and is used for blowing the impurities in the dust-removing chamber 20 to the liquid tank 23. In one embodiment, the number of the blowpipes 32 is plural, and the plural blowpipes 32 are provided corresponding to the dust removing member 22.
In one embodiment, the air blowing portion 222 is provided with an air inlet hole 2221, the positioning portion 221 is provided with an air blowing hole 2211, and the air blowing hole 2211 is communicated with the air inlet hole 2221. The positioning portion 221 may be designed to be similar to the workpiece, and the number of the air blowing holes 2211 may be set to be plural as required. After the workpiece cover is disposed on the positioning portion 221, the air hole 2211 is disposed corresponding to a through hole on the workpiece, so that the air hole 2211 can remove dust from the through hole of the workpiece.
The pressurizing mechanism 40 includes a pressurizing pump 41 and an air pipe 42, one end of the pressurizing pump 41 is connected to the air blowing part 222 through the air pipe 42, and the other end is connected to the air source 70, and the pressurizing pump 41 is used for increasing the pressure of the air entering the air blowing part 222.
One side of the dust removing cavity 20 is provided with a feeding hole 201, and the workpiece is placed on the bearing member 21 through the feeding hole 201. The sensing member 50 is installed at the feeding hole 201, and the sensing member 50 is used for sensing whether a workpiece enters or leaves the feeding hole 201, so as to start or stop the operation of the blowing part 222. When the sensing part 50 senses that a workpiece enters the feeding hole 201, the dust removing part 22 is automatically started, and when the sensing part 50 senses that the workpiece moves out of the feeding hole 201, the dust removing part 22 automatically stops removing dust, so that a switch valve of the dust removing part 22 does not need to be manually controlled during dust removal, and the operation efficiency is improved. In one embodiment, the sensing element 50 is a photoelectric sensor.
The dust suction mechanism 60 comprises a dust suction power part 61 and a dust suction pipe 62, wherein one end of the dust suction pipe 62 is communicated with the dust removal cavity 20, and the other end of the dust suction pipe 62 is connected with the dust suction power part 61 and is used for extracting impurities in the dust removal cavity 20.
Preferably, the dust removing device 100 further comprises a controller (not shown) electrically connected to the sensing element 50 and configured to receive a sensing signal from the sensing element 50 and control the operations of the dust removing element 22, the blowing mechanism 30, the pressurizing mechanism 40 and the dust collecting mechanism 60 according to the sensing signal.
The working principle of the dust removing device 100 is as follows: after the sensing piece 50 senses that the workpiece is placed in the dust removing cavity 20, the controller controls the dust removing piece 22, the air blowing mechanism 30, the pressurization mechanism 40 and the dust collecting mechanism 60 to be started, the pressurization mechanism 40 pressurizes air and then transmits the pressurized air to the air blowing part 222, and the air blowing holes 2211 of the positioning part 221 blow the air to remove dust on the workpiece; meanwhile, the blowing mechanism 30 blows off the impurities blown up by the dust removing member 22 into the liquid tank 23, and the dust suction mechanism 60 sucks the air and floating sand in the dust removing chamber 20.
After the dust removal is finished, the workpiece is taken out of the dust removal cavity 20, the sensing piece 50 senses that the workpiece is taken out and sends a sensing signal, and the controller controls the dust removal piece 22, the air blowing mechanism 30, the pressurizing mechanism 40 and the dust collection mechanism 60 to stop working.
In other embodiments, one or more of the pressurization mechanism 40, the sensor 50, and the dust suction mechanism 60 may be omitted, and the dust removing device 100 may remove dust through the dust removing member 22.
The dust removal device 100 has the advantages that the dust removal part 22 and the liquid tank 23 are arranged in the dust removal cavity 20, so that automatic dust removal is realized, the dust removal efficiency is improved, and the labor cost is reduced; moreover, the dust removing device 100 further comprises a blowing mechanism 30, so that impurities can be effectively blown to the liquid tank 23, the impurities are prevented from secondarily polluting the workpiece or the dust removing cavity 20, and the yield of dust removal is improved. In addition, the dust removing device 100 controls the start of the dust removing part 22 by using the sensing part 50, thereby further improving the automation efficiency.
In addition, other changes may be made by those skilled in the art without departing from the spirit of the invention, and it is intended that all such changes be considered within the scope of the invention.

Claims (7)

1. The dust removal device is characterized by comprising a rack and a dust removal cavity arranged on the rack;
a bearing piece, a dust removing piece and a liquid tank are arranged in the dust removing cavity, the bearing piece is connected with the rack, the dust removing piece is arranged above the bearing piece, and the liquid tank is arranged below the dust removing piece;
the dust removal piece comprises a positioning part and an air blowing part, the positioning part is used for bearing a workpiece, and the air blowing part is communicated with the positioning part and is used for blowing air and removing dust on the workpiece on the positioning part;
the liquid tank is internally provided with liquid for containing impurities blown off from the dust removing piece;
the dust removal device further comprises an air blowing mechanism, wherein one end of the air blowing mechanism is communicated with the dust removal cavity so as to blow impurities blown down through the air blowing part into the liquid tank.
2. The dust removing apparatus according to claim 1, wherein the dust removing chamber is provided with a feed opening through which the work is placed on the carrier;
the dust removal device further comprises an induction piece, the induction piece is arranged at the feeding hole and used for inducing a workpiece to enter or leave the feeding hole so as to start or stop the operation of the air blowing part.
3. The dust removing apparatus as claimed in claim 1, further comprising a pressurizing mechanism including a pressurizing pump and a gas pipe, one end of the pressurizing pump being connected to the gas blowing section through the gas pipe, and the other end being connected to a gas source, the pressurizing pump being for increasing a pressure of the gas entering the gas blowing section.
4. The dust removing device of claim 1, wherein the blowing mechanism comprises an air inlet member and an air blowing pipe, one end of the air inlet member is communicated with an air source, the other end of the air inlet member is communicated with the air blowing pipe, and the air blowing pipe is arranged at the top of the frame and is communicated with the dust removing cavity and used for blowing the impurities in the dust removing cavity into the liquid tank.
5. The dust removing device of claim 1, further comprising a dust suction mechanism, wherein the dust suction mechanism comprises a dust suction power member and a dust suction pipe, one end of the dust suction pipe is communicated with the dust removing cavity, and the other end of the dust suction pipe is connected with the dust suction power member and is used for extracting impurities in the dust removing cavity.
6. The dust removing device as claimed in claim 1, wherein the air blowing part is provided with an air inlet hole, and the positioning part is provided with an air blowing hole which is communicated with the air inlet hole.
7. The dust removing apparatus of claim 1, wherein a filter screen is provided in the liquid tank.
CN201922374785.XU 2019-12-25 2019-12-25 Dust removing device Active CN212041811U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922374785.XU CN212041811U (en) 2019-12-25 2019-12-25 Dust removing device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922374785.XU CN212041811U (en) 2019-12-25 2019-12-25 Dust removing device

Publications (1)

Publication Number Publication Date
CN212041811U true CN212041811U (en) 2020-12-01

Family

ID=73512691

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922374785.XU Active CN212041811U (en) 2019-12-25 2019-12-25 Dust removing device

Country Status (1)

Country Link
CN (1) CN212041811U (en)

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Address after: 459000 Huling industrial cluster, Jiyuan City, Henan Province

Patentee after: Fulian Technology (Jiyuan) Co.,Ltd.

Address before: 459000 Huling industrial cluster, Jiyuan City, Henan Province

Patentee before: FUTAIHUA PRECISION ELECTRONIC (JIYUAN) CO.,LTD.