Dust removal device for copper-clad plate production

By designing a dust removal device for copper clad laminate production, which utilizes vacuum suction cups for fixing, rotating cleaning brushes, and air extraction components, the problem of difficult dust removal from the surface of copper clad laminates is solved, achieving surface cleaning and reducing the risk of equipment damage.

CN223518160UActive Publication Date: 2025-11-07HUBEI HENGCHI ELECTRONIC TECH CO LTD
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Patent Information

Application Number
CN202422952287.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-11-07
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

After cutting and grinding, copper-clad laminates become covered with a large amount of dust, which is difficult to remove effectively with existing technologies, increasing the risk of equipment damage.

Method used

A dust removal device for copper clad laminate production was designed. The copper clad laminate is fixed by a vacuum suction cup. The surface of the copper clad laminate is cleaned and dust is extracted by rotating a cleaning brush and an air extraction component in conjunction with a vacuum pump, so as to prevent the dust from falling back onto the surface.

Benefits of technology

It effectively removes dust from the surface of copper-clad laminates, prevents equipment damage, and improves the cleanliness of the production process and the service life of the equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a dust removal device for copper-clad plate production, which belongs to the field of copper-clad plate processing equipment and comprises a bottom plate, a rotatable clamping component arranged above the bottom plate, a cleaning brush arranged above the rotatable clamping component, a dust collection component connected onto the cleaning brush, a support connected onto the bottom plate, and a lifting component connected onto the support. Firstly, a cut copper-clad plate is placed on the vacuum suction cup in the groove, the vacuum suction cup is used for clamping materials, then the driving motor is started, the driving motor drives the connecting plate to rotate, large particles can be moved to the edge of the groove through centrifugal force, the situation that the surfaces of the materials are scratched by the large particles during sweeping is avoided, and the connecting plate drives the materials to rotate; when materials rotate, the air cylinder is started, the output end of the air cylinder drives the dust collection cover to descend, the cleaning brush makes contact with the surfaces of the materials, and the cleaning brush cleans the surfaces of the rotating materials during contact.
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Description

TECHNICAL FIELD

[0001] The utility model relates to copper clad plate processing equipment field, concretely relates to a dust collector for copper clad plate production. BACKGROUND

[0002] Copper clad plate is a kind of plate-shaped material that electronic glass fiber cloth or other reinforcing materials are dipped with resin, one side or double sides are covered with copper foil and are made by hot pressing, mainly used for processing and manufacturing printed circuit board, and is widely used in television, radio, computer, computer, mobile communication and other electronic products.In the production process of copper clad plate, the copper clad plate needs to be cut and edge ground, and after cutting and edge grinding, the outer surface of the copper clad plate will be contaminated with a large amount of dust, so the surface of the copper clad plate needs to be dusted before being packaged for delivery to prevent dust from adhering to the surface of the copper clad plate and causing equipment damage. SUMMARY

[0003] Therefore, the utility model provides a dust collector for copper clad plate production, which can place the copper clad plate on the vacuum chuck, drive the copper clad plate to rotate by the driving assembly, clean the copper clad plate by the cleaning brush connected to the dust collecting cover while rotating, blow the surface of the copper clad plate by the gas conveying pipeline during cleaning, extract the dust blown by the gas conveying pipeline after blowing, and avoid the dust from falling on the copper clad plate after cleaning.

[0004] To solve the above technical problems, the utility model provides a dust collector for copper clad plate production, which includes a bottom plate for connecting and supporting a driving motor and a support, and a rotatable clamping assembly above the bottom plate, the rotatable clamping assembly is used for clamping and rotating the material, a cleaning brush above the rotatable clamping assembly, the cleaning brush is used for cleaning the surface of the material, a dust suction assembly connected to the cleaning brush, the dust suction assembly is used for sucking the dust cleaned by the cleaning brush, a support connected to the bottom plate, the support is connected to a lifting assembly, and a lifting assembly connected to the support.

[0005] The rotatable clamping assembly includes a driving assembly arranged on the bottom plate, the driving assembly is used for driving the connecting plate to rotate, a connecting plate connected to the driving assembly, the connecting plate is used for driving the vacuum chuck, a recess in the connecting plate, the recess is used for placing the vacuum chuck and the material, a vacuum chuck connected to the recess, and the vacuum chuck is used for sucking and fixing the material.

[0006] The driving assembly includes a driving motor connected to the bottom plate, the driving motor is used for driving the connecting plate to rotate, and the output end of the driving motor is fixedly connected to the connecting plate.

[0007] The dust collection assembly comprises a dust collection cover arranged above the vacuum chuck, the dust collection cover is used for covering the groove to prevent dust from escaping, a cleaning brush is connected below the dust collection cover, and an air extraction assembly is arranged above the dust collection cover and used for extracting the cleaned dust to prevent the dust from falling back to the material surface.

[0008] The air extraction assembly comprises an air extraction pipeline connected to the dust collection cover, the air extraction pipeline is used for connecting the vacuum pump and the dust collection cover, one end of the air extraction pipeline is connected with the vacuum pump, and the vacuum pump is used for extracting the dust in the dust collection cover.

[0009] The lifting assembly comprises a cylinder connected to the base surface of the support, the cylinder is used for driving the dust collection cover to move up and down, facilitating the taking and placing of the material in the groove, and the output end of the cylinder is connected to the upper base surface of the dust collection cover.

[0010] The cleaning brush is connected with air conveying pipelines at both ends, the air conveying pipelines are used for conveying air to the cleaning brush, a plurality of air nozzles are arranged on the cleaning brush, the air nozzles are used for spraying the air conveyed by the air conveying pipelines to the material surface, the air nozzles are arranged above the rotatable clamping assembly, and the air nozzles are in communication with the air conveying pipelines.

[0011] The beneficial effects of the above technical scheme of the utility model are as follows:

[0012] 1. The vacuum pump extracts the air in the dust collection cover through the air extraction pipeline to extract the dust cleaned by the cleaning brush, and when the cleaning brush cleans the material surface, the air conveying pipeline sprays air from the air nozzles to blow the material surface, so that the dust in the gap of the material surface is not hidden in the gap and cannot be cleaned by the cleaning brush, and the dead angle is avoided.

[0013] 2. The connecting plate rotates with the material, the cylinder is started when the material rotates, the output end of the cylinder drives the dust collection cover to descend, the cleaning brush is in contact with the material surface, and the cleaning brush cleans the rotating material surface when the cleaning brush is in contact with the material surface.

[0014] 3. The cut copper-clad plate is placed on the vacuum chuck in the groove, the vacuum chuck is used for clamping the material, then the driving motor is started, the driving motor drives the connecting plate to rotate, and the large particles are moved to the edge of the groove by centrifugal force, so that the material surface is not scratched by the large particles during cleaning. BRIEF DESCRIPTION OF DRAWINGS

[0015] Figure 1 It is a main structure schematic view of the dust removal device for copper-clad plate production.

[0016] Figure 2 It is a left view structure schematic view of the utility model.

[0017] Figure 3 It is a top view structure schematic view of the utility model.

[0018] Figure 4 It is a sectional view structure schematic diagram of the utility model A-A.

[0019] Mark explanation: 100, bottom plate; 101, cleaning brush; 102, support; 103, gas pipeline; 104, air jet nozzle; 110, rotatable clamping assembly; 111, drive motor; 112, connecting plate; 113, groove; 114, vacuum chuck; 120, dust suction assembly; 121, dust collection cover; 122, air extraction pipeline; 123, vacuum pump; 130, lifting assembly; 131, air cylinder. DETAILED DESCRIPTION

[0020] To make the purpose, technical scheme and advantages of the embodiments of the utility model clearer, the following will combine the drawings of the embodiments of the utility model with the specific implementation of the embodiments of the utility model to make the purpose, technical scheme and advantages of the embodiments of the utility model clearer. Figures 1-4 The technical scheme of the embodiments of the utility model is described clearly and completely. Obviously, the described embodiments are part of the embodiments of the utility model, not all the embodiments. Based on the described embodiments of the utility model, all other embodiments obtained by the person skilled in the art belong to the scope of protection of the utility model.

[0021] As Figures 1-4 shown:

[0022] The embodiment provides a dust removal device for copper-clad plate production, which comprises a bottom plate 100, the bottom plate 100 is used for connecting and supporting and fixing a drive motor 111 and a support 102, a rotatable clamping assembly 110 is arranged above the bottom plate 100, the rotatable clamping assembly 110 is used for clamping and rotating material, a cleaning brush 101 is arranged above the rotatable clamping assembly 110, the cleaning brush 101 is used for cleaning the surface of the material, a dust suction assembly 120 is connected to the cleaning brush 101, the dust suction assembly 120 is used for sucking dust cleaned by the cleaning brush 101, the support 102 is connected to the bottom plate 100, the support 102 is connected to support a lifting assembly 130, and the lifting assembly 130 is connected to the support 102. The lifting assembly 130 is used for driving the air extraction assembly to move up and down, so that the groove 113 can be covered completely, and dust is prevented from escaping.

[0023] The rotatable clamping assembly 110 comprises a driving assembly arranged on the base plate 100, which is used to drive the connecting plate 112 to rotate, and the driving assembly is connected with the connecting plate 112. The connecting plate 112 is fixedly connected to the output end of the driving motor 111 through bolts. The connecting plate 112 is used to drive the vacuum chuck 114. The vacuum chuck 114 is fixedly connected with the connecting plate 112 through a quick release assembly. The connecting plate 112 is provided with a groove 113. The groove 113 is used to place the vacuum chuck 114 and the material. The vacuum chuck 114 is connected and arranged in the groove 113. The vacuum chuck 114 is used to suck and fix the material.

[0024] The driving assembly comprises a driving motor 111 arranged on the base plate 100. The driving motor 111 is fixedly connected to the base plate 100 through bolts. The driving motor 111 is used to drive the connecting plate 112 to rotate. The output end of the driving motor 111 is fixedly connected with the connecting plate 112.

[0025] The dust collection assembly 120 comprises a dust collection cover 121 arranged above the vacuum chuck 114. The bottom of the dust collection cover 121 is matched with the size of the groove 113. The dust collection cover 121 is used to cover the groove 113 to prevent dust from escaping. The cleaning brush 101 is connected and arranged below the dust collection cover 121. An air extraction assembly is arranged above the dust collection cover 121. The air extraction assembly is used to extract the cleaned dust to prevent the dust from falling back onto the surface of the material.

[0026] The air extraction assembly comprises an air extraction pipeline 122 connected and arranged on the dust collection cover 121. The air extraction pipeline is sealingly connected with the dust collection cover 121. The air extraction pipeline 122 is used to connect the vacuum pump 123 and the dust collection cover. One end of the air extraction pipeline 122 is connected with the vacuum pump 123. The vacuum pump 123 is used to extract the dust in the dust collection cover 121.

[0027] The lifting assembly 130 comprises a pneumatic cylinder 131 connected and arranged on the base surface of the support 102. The pneumatic cylinder 131 is fixedly arranged on the base surface of the support 102 through bolts. The pneumatic cylinder 131 is used to drive the dust collection cover 121 to move up and down, which is convenient for taking and placing the material in the groove 113. The output end of the pneumatic cylinder 131 is connected and arranged with the upper base surface of the dust collection cover 121.

[0028] The cleaning brush 101 is connected with the gas conveying pipeline 103 at both ends. The cleaning brush 101 is provided with a gas conveying groove at the middle position. The gas conveying pipeline 103 conveys the gas into the gas conveying groove, and then the gas is sprayed out through the air jet nozzle 104. The gas conveying pipeline 103 is used to convey the gas into the cleaning brush 101. The cleaning brush 101 is provided with a plurality of air jet nozzles 104. The air jet nozzles 104 are used to spray the gas conveyed by the conveying pipeline onto the surface of the material. The air jet nozzles 104 are located above the rotatable clamping assembly 110. The air jet nozzles 104 are in communication with the gas conveying pipeline 103.

[0029] Working principle: in use, first place the cutting copper clad plate in the recess 113 in the vacuum chuck 114, use the vacuum chuck 114 to clamp the material, then start the driving motor 111, the driving motor 111 drives the connecting plate 112 to rotate, the big particles can be moved by centrifugal force at the edge of the recess 113, avoid scratching the material surface when cleaning, the connecting plate 112 drives the material to rotate, when the material rotates, start the air cylinder 131, the air cylinder 131 output end drives the dust collecting cover 121 to descend, the cleaning brush 101 is in contact with the material surface, the cleaning brush 101 cleans the rotating material surface when in contact, start the vacuum pump 123, the vacuum pump 123 extracts the air in the dust collecting cover 121 through the air duct 122 to extract the dust cleaned by the cleaning brush 101, and when the cleaning brush 101 cleans the material surface, the gas duct 103 sprays gas from the air jet nozzle 104 to blow the material surface, avoid the dust in the gap of the material surface hiding in the gap, which cannot be well cleaned by the cleaning brush 101, avoid the emergence of health dead angle.

[0030] In addition, it also needs to be explained that, in the description of the utility model, unless there is definite provision and limitation, the terms "mounting", "connecting", "connecting" should be understood broadly, for example, it can be fixed connection, also can be detachable connection, or integrally connected, can be mechanical connection, also can be electrical connection, can be directly connected, also can be indirectly connected through intermediate medium, can be the communication inside two elements. For the person skilled in the art, the specific meaning of the above-mentioned terms in the utility model can be understood according to the specific circumstances.

[0031] The above is the preferred embodiment of the utility model, it should be pointed out that, for the ordinary skilled person in the art, without departing from the principle described in the utility model, can also make a number of improvements and refinements, these improvements and refinements also should be considered as the protection scope of the utility model.

Claims

1. A dust removal device for copper clad laminate production, characterized in that: Including the bottom plate (100), the bottom plate (100) is provided with a rotatable clamping assembly (110), the rotatable clamping assembly (110) is provided with a cleaning brush (101), the cleaning brush (101) is connected with a dust suction assembly (120), the bottom plate (100) is connected with a support (102), the support (102) is connected with a lifting assembly (130).

2. The dust removal device for copper-clad plate production according to claim 1, characterized in that: The rotatable clamping assembly (110) includes a drive assembly arranged on the bottom plate (100), the drive assembly is connected with a connecting plate (112), the connecting plate (112) is provided with a groove (113), the groove (113) is connected with a vacuum chuck (114).

3. The dust removal device for the production of copper-clad plates according to claim 2, characterized in that: The drive assembly includes a drive motor (111) connected with the bottom plate (100), and the output end of the drive motor (111) is fixedly connected with the connecting plate (112).

4. The dust removal device for producing copper-clad plates according to claim 3, characterized in that: The dust suction assembly (120) includes a dust collecting cover (121) arranged above the vacuum chuck (114), the cleaning brush (101) is connected below the dust collecting cover (121), and the dust collecting cover (121) is provided with an air suction assembly.

5. The dust removal device for the production of copper-clad plates according to claim 4, characterized in that: The air suction assembly includes an air suction pipeline (122) connected with the dust collecting cover (121), and the air suction pipeline (122) is connected with a vacuum pump (123) at one end.

6. The dust removal device for producing copper-clad plates according to claim 5, characterized in that: The lifting assembly (130) includes a gas cylinder (131) connected with the support (102), and the output end of the gas cylinder (131) is connected with the dust collecting cover (121).

7. The dust removal device for the production of copper-clad plates according to claim 6, characterized in that: The cleaning brush (101) is connected with a gas pipeline (103) at both ends, a plurality of air nozzles (104) are arranged on the cleaning brush (101), the air nozzles (104) are located above the rotatable clamping assembly (110), and the air nozzles (104) are in communication with the gas pipeline (103).