Dust collecting and circulating device for microcrystalline graphite processing workshop

By designing the connection between the extraction component limiting shell and the dust collection component shell, and utilizing the combination of the swing plate and the filter layer, the rapid collection and recycling of dust in the microcrystalline graphite processing workshop was achieved, solving the problem of dust not being able to be collected and recycled in the existing technology, and improving processing efficiency and safety.

CN223888674UActive Publication Date: 2026-02-10CHENZHOU AONENG GRAPHITE NEW MATERIALS CO LTD
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Patent Information

Application Number
CN202520299066.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-25
Publication Date
2026-02-10
Estimated Expiration
2035-02-25

AI Technical Summary

Technical Problem

Existing technologies cannot achieve the function of cyclic collection and cyclic operation of dust in microcrystalline graphite processing workshops.

Method used

A dust collection and circulation device is designed, comprising an extraction component limiting shell, a dust collection component shell, a dust collection component, a swing groove, a swing plate, a baffle, and a filter layer. By connecting the extraction component limiting shell and the dust collection component shell, rapid dust collection and rapid gas separation are achieved. The swing plate is used to store and filter dust and export gas.

Benefits of technology

It achieves rapid and cyclical dust collection, preventing dust from drifting in the air, protecting the health of workers, and improving the efficiency of dust handling.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a dust collecting and circulating device for a microcrystalline graphite processing workshop, which belongs to the technical field of dust collection and is characterized in that a dust collecting part is mounted in a dust collecting part shell, a baffle covers one end of the dust collecting part, and a swing plate is mounted at the bottom of the baffle; the swing plate is pumped and injected into the dust collection piece shell along with the dust pumping piece in the pumping piece limiting shell to push the swing plate to swing downwards, dust is pumped into the dust collection piece to be stored at the bottom of the dust collection piece in the swing process, the dust is filtered through the filtering layer, and gas is guided out through the gas outlet hole. The functions of rapidly collecting dust and rapidly separating gas from the dust are achieved, a flow dividing extraction piece communicates with a dust flow dividing connector in a dust collection piece shell, after communication is completed, the extraction piece is started to extract the dust in the dust collection piece, in the dust extraction process, a swing plate is closed, the extraction piece in an extraction piece limiting shell stops running temporarily, and therefore the dust is rapidly collected. And the function of circularly collecting dust can be realized.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of dust collection circulating devices of microcrystalline graphite processing workshop, belong to dust collection technical field. BACKGROUND

[0002] As the application number is: 202320996639.4 discloses a kind of dust collection device for producing graphite powder, including dust collection mechanism, and installation in the front side of dust collection mechanism transmission motor and cleaning motor, the top of the dust collection mechanism is provided with feeding mechanism, and the side of feeding mechanism is provided with opening and closing motor and discharging motor, the dust collection mechanism includes transmission support, transmission chute is opened in the inside of transmission support, transmission chute is fixedly installed in the middle side of transmission support, the output end of transmission motor is fixedly connected with transmission driving wheel, wherein, the outside of transmission driving wheel is engaged with transmission belt, the inside of transmission belt is symmetrically engaged with transmission driven wheel on both sides, by being provided with dust collection mechanism, graphite powder can be separated from dust, dust can be collected, to avoid dust to float in air, be inhaled into body by staff, to affect the health of staff.

[0003] Prior art is provided with transmission chute in the inside of transmission support, transmission chute is fixedly installed in the middle side of transmission support, the output end of transmission motor is fixedly connected with transmission driving wheel, wherein, the outside of transmission driving wheel is engaged with transmission belt, the inside of transmission belt is symmetrically engaged with transmission driven wheel on both sides, to realize the function that graphite powder can be separated from dust by being provided with dust collection mechanism, dust can be collected, to avoid dust to float in air, be inhaled into body by staff, to affect the health of staff.

[0004] Prior art cannot realize the function of circulating collection and circulating operation, therefore, a kind of dust collection circulating devices of microcrystalline graphite processing workshop is needed to improve the above-mentioned deficiencies. UTILITY MODEL CONTENT

[0005] The main purpose of the utility model is to provide a kind of dust collection circulating devices of microcrystalline graphite processing workshop.

[0006] The purpose of the utility model can be achieved by adopting the following technical solutions:

[0007] A kind of dust collection circulating devices of microcrystalline graphite processing workshop, including the extraction piece limiting shell for limiting and dust collecting piece shell body;

[0008] Dust collecting piece, swing groove, swing plate, baffle, dust guide hole and filter layer are distributed in dust collecting piece shell body;

[0009] The dust collecting part shell is internally provided with a dust collecting part, the upper end of the dust collecting part is covered with a baffle, a swing plate is swingingly installed below the baffle, the swing plate swings along a swing groove on one side of the dust collecting part, and the other end of the dust collecting part is covered with a filter layer.

[0010] Preferably, the dust collecting part shell is provided with a dust shunting interface, a splicing part, a hole and a hole.

[0011] The dust collecting part shell and the dust collecting part are provided with a hole around, the hole is spliced with a dust shunting interface, the outer end of the dust collecting part shell is provided with an air outlet, and the dust collecting part shell and the extraction part limiting shell are spliced by the splicing part.

[0012] Preferably, the extraction part limiting shell is provided with an extraction outer connecting part and an extraction inner connecting part.

[0013] The two ends of the extraction part limiting shell are respectively provided with the extraction outer connecting part and the extraction inner connecting part.

[0014] Preferably, the extraction part limiting shell is in communication with the dust collecting part shell and the dust collecting part.

[0015] Preferably, the baffle, the swing plate and the filter layer on the dust collecting part are in a split structure.

[0016] Preferably, the dust collecting part in the dust collecting part shell is in a sleeving splicing structure.

[0017] The dust collecting part shell is internally provided with a dust collecting part, the upper end of the dust collecting part is covered with a baffle, a swing plate is swingingly installed below the baffle, the swing plate swings along a swing groove on one side of the dust collecting part, and the other end of the dust collecting part is covered with a filter layer.

[0018] The dust collecting part shell is internally provided with a dust collecting part, the upper end of the dust collecting part is covered with a baffle, a swing plate is swingingly installed below the baffle, the swing plate swings along a swing groove on one side of the dust collecting part, and the other end of the dust collecting part is covered with a filter layer. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1This is an exploded three-dimensional structural diagram of a preferred embodiment of a dust collection and circulation device for a microcrystalline graphite processing workshop according to the present invention.

[0020] Figure 2 This is a schematic diagram of a preferred embodiment of a dust collection and circulation device for a microcrystalline graphite processing workshop according to the present invention.

[0021] Figure 3 This is a schematic diagram of the upper end of the dust collection structure of a preferred embodiment of a dust collection and circulation device for a microcrystalline graphite processing workshop according to the present invention.

[0022] Figure 4 This is a schematic diagram of the bottom end of the dust collection structure of a preferred embodiment of a dust collection and circulation device for a microcrystalline graphite processing workshop according to the present invention.

[0023] In the diagram: 1. Pull-out component limiting shell; 101. Pull-out external connector; 102. Pull-out internal connector; 2. Dust collection component shell; 201. Dust diversion interface; 202. Splicing component; 203. Air outlet; 204. Connection hole; 205. Dust collection component; 206. Swing groove; 207. Swing plate; 208. Baffle; 209. Dust guide hole; 210. Filter layer. Detailed Implementation

[0024] To enable those skilled in the art to understand the technical solution of this utility model more clearly, the present utility model will be further described in detail below with reference to the embodiments and accompanying drawings, but the implementation of this utility model is not limited thereto.

[0025] like Figure 1 - Figure 4 As shown, this embodiment provides a dust collection and circulation device for a microcrystalline graphite processing workshop, including a limiting shell 1 for extraction and a dust collection shell 2 for limiting.

[0026] The dust collection housing 2 contains a dust collection component 205, a swing groove 206, a swing plate 207, a baffle 208, a dust guide hole 209, and a filter layer 210.

[0027] The dust collection housing 2 houses a dust collection component 205. The upper end of the dust collection component 205 is covered with a baffle 208. A swing plate 207 is installed below the baffle 208 and swings up and down. The swing plate 207 swings along the swing groove 206 on one side of the dust collection component 205. The other end of the dust collection component 205 is covered with a filter layer 210.

[0028] The dust collection housing 2 is equipped with a dust diversion interface 201, a splicing component 202, a connection hole 204, and a connection hole 204;

[0029] The dust collection housing 2 and the dust collection component 205 are provided with connecting holes 204 around them. A dust diversion interface 201 is spliced ​​and connected to the connecting holes 204. Air outlets 203 are distributed at the outer end of the dust collection housing 2. The dust collection housing 2 and the extraction component limiting shell 1 are spliced ​​and connected by splicing component 202.

[0030] The extraction outer connector 101 and the extraction inner connector 102 are installed on the extraction component limiting shell 1;

[0031] The two ends of the extraction limiting shell 1 are respectively equipped with an outer extraction connector 101 and an inner extraction connector 102.

[0032] The extraction component limiting shell 1 is interconnected with the dust collection component shell 2 and the dust collection component 205.

[0033] The baffle 208, swing plate 207 and filter layer 210 on the dust collection component 205 are separate structures.

[0034] The dust collection component 205 inside the dust collection component housing 2 is a sleeved splicing structure.

[0035] like Figure 1 - Figure 4 As shown in the figure, the working process of the dust collection and circulation device in the microcrystalline graphite processing workshop provided in this embodiment is as follows: The dust collection hood is spliced ​​and connected to the extraction outer connector 101 on the extraction component limiting shell 1. The extraction drive component is installed on the extraction component limiting shell 1. The other end of the extraction component limiting shell 1 is equipped with the extraction inner connector 102. The dust collection component shell 2 is spliced ​​and installed in the extraction inner connector 102. The dust collection component shell 2 is equipped with the dust collection component 205. One end of the dust collection component 205 is covered with a baffle 208. A swing plate 207 is installed at the bottom of the baffle 208. The swing plate 207 moves with the dust collection component in the extraction component limiting shell 1. The dust collector housing 2 is drawn into the dust collection component housing 2, which pushes the swing plate 207 to swing downward. During the swing, dust enters the dust collection component 205 and is stored at the bottom of the dust collection component 205. The dust is filtered through the filter layer 210, and the gas is discharged through the air outlet 203, realizing the function of rapid dust collection and rapid separation of gas and dust. The diversion extraction component is connected to the dust diversion interface 201 on the dust collection component housing 2. After the connection is completed, the extraction component is started to extract the dust in the dust collection component 205. During the dust extraction process, the swing plate 207 closes the extraction component limit shell 1 and the extraction component stops running briefly, which can realize the function of cyclic dust collection.

[0036] Example

[0037] like Figure 1 - Figure 4As shown, an external extraction connector 101 and an internal extraction connector 102 are respectively installed at both ends of the extraction component limiting shell 1. An extraction component is installed inside the extraction component limiting shell 1. A dust collection component shell 2 is threadedly connected to the internal extraction connector 102. A connection hole 204 is installed around the outer end of the dust collection component shell 2. A dust diversion interface 201 is installed on the connection hole 204. A dust collection component 205 is spliced ​​and installed inside the dust collection component shell 2. A swing groove 206 is opened on one side of the dust collection component 205. A swing plate 207 is installed in the swing groove 206 and swings open and closes. A baffle 208 is covered on the swing plate 207. Dust guide holes 209 are distributed on the baffle 208. A filter layer 210 is covered at the bottom end of the dust collection component 205. The outer end of the dust collection component shell 2 is a sealed structure. An air outlet 203 is distributed at the outer end of the dust collection component shell 2.

[0038] The dust collection hood is spliced ​​and connected to the external extraction connector 101 on the extraction component limiting shell 1. The extraction drive component is installed on the extraction component limiting shell 1. An internal extraction connector 102 is installed at the other end of the extraction component limiting shell 1. A dust collection component shell 2 is spliced ​​and installed inside the internal extraction connector 102. A dust collection component 205 is installed inside the dust collection component shell 2. One end of the dust collection component 205 is covered with a baffle 208. A swing plate 207 is installed at the bottom of the baffle 208. The swing plate 207 is pushed by the dust collection component in the extraction component limiting shell 1 as it is extracted and injected into the dust collection component shell 2. 7. The device swings downwards, during which dust is drawn into the dust collection component 205 and stored at the bottom of the dust collection component 205. The dust is filtered through the filter layer 210, and the gas is discharged through the air outlet 203, realizing the function of rapid dust collection and rapid separation of gas and dust. The diversion extraction component is connected to the dust diversion interface 201 on the dust collection component housing 2. After the connection is completed, the extraction component is started to extract the dust in the dust collection component 205. During the dust extraction process, the swing plate 207 closes the extraction component limit shell 1 and the extraction component in the shell 1 stops running briefly, which can realize the function of cyclic dust collection.

[0039] The above description is only a further embodiment of the present utility model, but the protection scope of the present utility model is not limited thereto. Any equivalent substitutions or changes made by those skilled in the art within the scope disclosed by the present utility model, based on the technical solution and concept of the present utility model, shall fall within the protection scope of the present utility model.

Claims

1. A dust collection and circulation device for a microcrystalline graphite processing workshop, comprising a limiting shell for a pull-out component (1) and a dust collection component shell (2) for limiting the movement of the pull-out component. Its features are: The dust collection housing (2) contains a dust collection component (205), a swing groove (206), a swing plate (207), a baffle (208), a dust guide hole (209), and a filter layer (210); The dust collection housing (2) contains a dust collection component (205). The upper end of the dust collection component (205) is covered with a baffle (208). A swing plate (207) is installed below the baffle (208) and swings up and down. The swing plate (207) swings along the swing groove (206) on one side of the dust collection component (205). The other end of the dust collection component (205) is covered with a filter layer (210).

2. The dust collection and circulation device for a microcrystalline graphite processing workshop according to claim 1, characterized in that: The dust collection housing (2) is equipped with a dust diversion interface (201), a splicing component (202), a connection hole (204), and a connection hole (204); The dust collection housing (2) and the dust collection component (205) are provided with connecting holes (204), and dust diversion interfaces (201) are spliced ​​and connected to the connecting holes (204). Air outlets (203) are distributed at the outer end of the dust collection housing (2). The dust collection housing (2) and the extraction component limiting shell (1) are spliced ​​and connected by splicing components (202).

3. The dust collection and circulation device for a microcrystalline graphite processing workshop according to claim 2, characterized in that: The extraction outer connector (101) and the extraction inner connector (102) are installed on the extraction component limiting shell (1); The two ends of the extraction limiting shell (1) are respectively equipped with an extraction outer connector (101) and an extraction inner connector (102).

4. The dust collection and circulation device for a microcrystalline graphite processing workshop according to claim 3, characterized in that: The extraction component limiting shell (1) is interconnected with the dust collection component shell (2) and the dust collection component (205).

5. A dust collection and circulation device for a microcrystalline graphite processing workshop according to claim 4, characterized in that: The baffle (208), swing plate (207) and filter layer (210) on the dust collection component (205) are separate structures.

6. A dust collection and circulation device for a microcrystalline graphite processing workshop according to claim 5, characterized in that: The dust collection component (205) inside the dust collection component housing (2) is a spliced ​​structure.

Citation Information

Patent Citations

  • Dust collecting device for producing graphite powder

    CN219751024U