CN216259354U - Material filtering device - Google Patents

Material filtering device Download PDF

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Publication number
CN216259354U
CN216259354U CN202122519795.5U CN202122519795U CN216259354U CN 216259354 U CN216259354 U CN 216259354U CN 202122519795 U CN202122519795 U CN 202122519795U CN 216259354 U CN216259354 U CN 216259354U
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China
Prior art keywords
hole
cover plate
filtering device
barrel
filtering
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Active
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CN202122519795.5U
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Chinese (zh)
Inventor
邵斌
张凤珍
杨波
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Klueber Lubrication Shanghai Co Ltd
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Klueber Lubrication Shanghai Co Ltd
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Priority to CN202122519795.5U priority Critical patent/CN216259354U/en
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Abstract

A material filtration device comprising: the material barrel comprises a barrel body and a cover plate for sealing the barrel body, the barrel body is provided with a first through hole communicated from the inside to the outside of the barrel body, and a cover plate hole penetrating through the cover plate is formed in the cover plate; the filtering component is fixed outside the barrel body and comprises a filtering net, and the filtering component is communicated with the first through hole; pressure disk device, pressure disk device is including being located pressure disk in the material bucket and passing the actuating lever in apron hole, actuating lever one end is fixed in the pressure disk surface, the actuating lever drives along the axial pressure disk reciprocating motion, the filtering process of material is nimble more, light, material filter equipment is convenient for clean, is favorable to improving the seal of filtering process, reduces the condition that the material leaked.

Description

Material filtering device
Technical Field
The utility model relates to the technical field of industrial equipment, in particular to a material filtering device.
Background
The lubricating grease plays a role in lubrication in mechanical transmission, and whether the lubricating grease is normally supplied to mechanical equipment directly determines the reliable, stable and long-acting running performance of the mechanical equipment. There may be some minute impurities in the grease, and when the minute impurities enter into the mechanical parts, the mechanical parts may rub against the minute impurities. For this reason, the grease needs to be filtered to achieve higher material cleanliness. In the production process, the materials are filtered by a filter screen through a large pumping system. In material transfer, a gear pump is a common industrial filtering pump.
However, the filtration process must be equipped with a specialized production material pump system, the pumping process requires a large amount of material (at least 20Kg), the pumping system is difficult to clean, time and labor consuming, and the pumping process consumes a large amount of material.
Therefore, the existing material filtering device needs to be further improved.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a material filtering device to improve the performance of the material filtering device.
In order to solve the above technical problem, an embodiment of the present invention provides a material filtering apparatus, including: the material barrel comprises a barrel body and a cover plate for sealing the barrel body, the barrel body is provided with a first through hole communicated from the inside to the outside of the barrel body, and a cover plate hole penetrating through the cover plate is formed in the cover plate; the filtering component is fixed outside the barrel body and comprises a filtering net, and the filtering component is communicated with the first through hole; the pressing plate device comprises a pressing plate located in the material barrel and a driving rod penetrating through a hole of the covering plate, one end of the driving rod is fixed on the surface of the pressing plate, and the driving rod drives the pressing plate to reciprocate along the axial direction.
Optionally, the filter assembly further comprises a first filter pipeline and a second filter pipeline which are connected with each other, the first filter pipeline is provided with a first end and a second end which are opposite to each other, the first end is connected with the material barrel through the first through hole, and the filter screen is arranged between the second end and the second filter pipeline.
Optionally, the filter screen is detachably disposed between the first filter pipeline and the second filter pipeline.
Optionally, the second end is provided with a first flange, one end of the second filtering pipeline is provided with a second flange, the first filtering pipeline and the second filtering pipeline are connected through the first flange and the second flange, and the filtering net is arranged between the first flange and the second flange.
Optionally, one or both surfaces of the first flange and the second flange are provided with a filter screen clamping groove, and the filter screen is fixed to the filter screen clamping groove.
Optionally, a holding handle is arranged at one end of the driving rod, which is located outside the material barrel.
Optionally, one end of the driving rod, which is located outside the material barrel, is connected with the driving assembly.
Optionally, the driving rod is a screw rod, and the cover plate hole is a screw hole matched with the screw rod.
Optionally, the connection mode of the cover plate and the barrel body comprises a threaded connection, a bayonet connection and a hinge connection.
Optionally, the material barrel is further provided with a second through hole which is communicated from the inside to the outside of the material barrel, and a through hole cover which enables the second through hole to be in an open state and a closed state respectively.
Optionally, the second through hole is located in the barrel body or the cover plate.
Optionally, the first through hole is located on the sidewall of the barrel body.
Compared with the prior art, the technical scheme of the embodiment of the utility model has the following beneficial effects:
in the material filtering device provided by the technical scheme of the utility model, one end of the driving rod is fixed on the surface of the pressure plate, the driving rod drives the pressure plate to reciprocate along the axial direction, pressure can be applied to materials by manual or other driving modes (such as electric) to transmit the materials, and filtering is carried out without a large pumping system, so that the filtering process of the materials is more flexible and portable; in addition, the material filtering device is small, so that the cleaning is convenient, and the cleaning difficulty of the material conveying system is reduced; meanwhile, the cover plate seals the material barrel, so that the sealing performance in the filtering process is improved, and the material leakage is reduced.
Further, the filter screen can be dismantled set up in between first filtering duct and the second filtering duct, multiple different specification filter screens can be replaced to material filter equipment, improves material filtering process's flexibility and practicality.
Further, the material barrel is also provided with a second through hole which is communicated from the inside to the outside of the material barrel, and a through hole cover which enables the second through hole to be in an open state and a closed state respectively. After the materials are filtered, the through hole cover can enable the interior of the material barrel to be communicated with the exterior so as to adjust the up-down pressure of the pressure plate and facilitate the taking out of the pressure plate.
Drawings
Fig. 1 is a schematic structural view of a material filtering device of the present invention.
Detailed Description
As described in the background art, the existing material filtering device has the problems that the pumping system is difficult to clean, time and labor are wasted, more materials are consumed in the pumping process, and the like, and the performance of the material filtering device needs to be further improved.
In order to solve the technical problems, in the material filtering device provided by the technical scheme of the utility model, one end of the driving rod is fixed on the surface of the pressure plate, the driving rod drives the pressure plate to reciprocate along the axial direction, the material can be conveyed and filtered by applying pressure to the material manually or in other driving modes (such as electric driving), and a large-scale pumping system is not needed, so that the material filtering process is more flexible and portable; in addition, the material filtering device is small, so that the cleaning is convenient, and the cleaning difficulty of the material conveying system is reduced; meanwhile, the cover plate seals the material barrel, so that the sealing performance in the filtering process is improved, and the material leakage is reduced.
In order to make the aforementioned objects, features and advantages of the present invention comprehensible, embodiments accompanied with figures are described in detail below.
Fig. 1 is a schematic structural view of a material filtering device of the present invention.
Referring to fig. 1, the material filtering apparatus includes: the material barrel 10 comprises a barrel body 101 and a cover plate 102 for sealing the barrel body 101, wherein the barrel body 101 is provided with a first through hole 103 which is communicated from the inside to the outside of the barrel body 101, and a cover plate hole 104 which penetrates through the cover plate 102 is formed in the cover plate 102; the filter assembly 20 is fixed outside the barrel body 101, the filter assembly 20 comprises a filter screen 201, and the filter assembly 20 is communicated with the first through hole 103; the pressing plate device 30 comprises a pressing plate 301 located in the material barrel 10 and a driving rod 302 penetrating through the cover plate hole 104, one end of the driving rod 302 is fixed on the surface of the pressing plate 301, and the driving rod 302 drives the pressing plate 301 to reciprocate along the axial direction.
One end of the driving rod 302 is fixed on the surface of the pressure plate 301, the driving rod 302 drives the pressure plate 301 to reciprocate along the axial direction, pressure can be applied to materials through manual or other driving modes (such as electric) to convey the materials, and filtering is performed without a large pumping system, so that the filtering process of the materials is more flexible and portable; in addition, the material filtering device is small, so that the cleaning is convenient, and the cleaning difficulty of the material conveying system is reduced; meanwhile, the cover plate 102 seals the material barrel 10, which is beneficial to improving the sealing performance in the filtering process and reducing the material leakage.
In this embodiment, the first through hole 103 is located on the sidewall of the barrel 101. In another embodiment, the first through hole may be located at the bottom of the tub. The first through hole is used for connecting the material barrel and the filtering component, so the position of the first through hole can not be limited.
In this embodiment, the filter assembly 20 further includes a first filter pipeline 202 and a second filter pipeline 203 connected to each other, the first filter pipeline 202 has a first end and a second end opposite to each other, the first end is connected to the material barrel 10 through the first through hole 103, and the filter screen 201 is disposed between the second end and the second filter pipeline 203.
Specifically, the filter screen 201 is detachably disposed between the first filter pipeline 202 and the second filter pipeline 203. The filter screen 201 can be dismantled, the material filter equipment can replace multiple different specification (if mesh number) filter screens, improves the flexibility and the practicality of material filtering process.
In this embodiment, the second end is provided with a first flange 204, one end of the second filtering pipe 203 is provided with a second flange 205, the first filtering pipe 202 and the second filtering pipe 203 are connected through the first flange 204 and the second flange 205, and the filtering net 201 is disposed between the first flange 204 and the second flange 205.
In this embodiment, the first flange 204 and the second flange 205 have screw holes 206 at their edges, and the first flange 204 and the second flange 205 are fastened together by bolts. In other embodiments, the first flange 204 and the second flange 205 may not be limited to bolt-on connection.
In this embodiment, one or both of the first flange 204 and the second flange 205 have a screen slot 207 on a surface thereof, and the screen 201 is fixed to the screen slot 207.
In other embodiments, the filter screen may be disposed between the first filter conduit and the second filter conduit by a screw connection, a bayonet connection, a hinge connection, or the like.
In this embodiment, a holding handle 303 is disposed at one end of the driving rod 302 outside the material barrel 10. Specifically, the holding handle 303 is disposed at one end of the driving rod 302, and is wheel-shaped, so as to facilitate manual operation and save labor. In other embodiments, the holding handle may have other shapes for easy operation, and is not limited herein.
In another embodiment, one end of the driving rod, which is positioned outside the material barrel, is connected with the driving assembly. The driving component can work in a mechanical driving mode, such as electric driving and the like. The connection with the driving assembly can save more labor for the filtering operation, and increase the diversification of the operation form and the operation practicability.
In this embodiment, the driving rod 302 is a screw, and the cover plate hole 104 is a screw hole matching with the screw. In actual use, the driving rod 302 is driven to rotate by rotating the holding handle 303, so as to further reciprocate the pressing plate 301. Specifically, the pressure plate 301 can be driven to squeeze the material by rotating the holding handle 303 instantaneously (or counterclockwise), and the pressure applied to the material by the pressure plate 301 can be released by rotating the holding handle 303 counterclockwise (or instantaneous needle).
The connection of the cover plate 102 and the barrel 101 includes a screw connection, a bayonet connection, and a hinge connection. In this embodiment, the cover plate 102 is connected to the barrel 101 by a screw.
Specifically, a threaded hole (not shown) is formed in the end surface of the wall of the barrel body 101, and the cover plate 102 is correspondingly provided with a cover plate through hole 105, and the cover plate 102 is connected with the barrel body 101 through a cover plate bolt 106 and a cover plate nut 107.
In this embodiment, the material barrel 10 further has a second through hole (not shown) communicating from the inside to the outside of the material barrel 10, and a through hole cover 106 for opening and closing the second through hole respectively. After the filtering of the material is completed, the through hole cover 106 may communicate the inside of the material barrel 10 with the outside to adjust the up-down pressure of the platen 301, so as to facilitate the taking out of the platen 301.
The second through hole is located in the barrel 101 or the cover plate 102.
In this embodiment, the second through hole is located on the barrel 101. The second through hole is used for communicating the inside and the outside of the material barrel, so the position of the second through hole is not particularly limited.
In this embodiment, the process of filtering the material by using the material filtering device includes: preparing, including selecting a filter screen 201 with a proper specification, installing the filter screen 201 on the material filtering device, and rotating the holding handle 303 to drive the pressing plate 301 to the lower surface of the cover plate 102, so as to reserve enough space for subsequently placing materials to be filtered in the through body 101; after the preparation work is finished, after the material to be filtered is put into the barrel body 101, the cover plate 102 is connected with the barrel body 101 through the cover plate bolt 106 and the cover plate nut 107 so as to seal the material barrel 10; rotating the holding handle 303 to drive the pressing plate 301 to extrude the material to be filtered, so that the material to be filtered is extruded into the filtering assembly 20 through the first through hole 103, specifically, enters the first filtering pipeline 202, and the material to be filtered is conveyed; impurities in the material to be filtered are filtered out through the filter screen 201 and discharged to the outside of the material filtering device through the second filtering pipeline 203; after the filtering of the material to be filtered is completed, the purified filtering material is left in the barrel body 101, and the second through hole is opened to communicate the inside with the outside of the material barrel 10, so as to adjust the upper and lower pressure of the pressure plate 301, so that the pressure plate 301 can be taken out conveniently; after the second through hole is opened, the holding handle 303 is rotated to drive the pressure plate 301 to release the filtering material; after releasing the filter material, the filter material is taken out by opening the cover plate 102 to obtain a purified filter material.
Although the present invention is disclosed above, the present invention is not limited thereto. Various changes and modifications may be effected therein by one skilled in the art without departing from the spirit and scope of the utility model as defined in the appended claims.

Claims (12)

1. A material filtering device, comprising:
the material barrel comprises a barrel body and a cover plate for sealing the barrel body, the barrel body is provided with a first through hole communicated from the inside to the outside of the barrel body, and a cover plate hole penetrating through the cover plate is formed in the cover plate; the filtering component is fixed outside the barrel body and comprises a filtering net, and the filtering component is communicated with the first through hole;
the pressing plate device comprises a pressing plate located in the material barrel and a driving rod penetrating through a hole of the covering plate, one end of the driving rod is fixed on the surface of the pressing plate, and the driving rod drives the pressing plate to reciprocate along the axial direction.
2. The material filtering device according to claim 1, wherein the filter assembly further comprises a first filter conduit and a second filter conduit connected to each other, the first filter conduit having a first end and a second end opposite to each other, the first end being connected to the material tank through the first through hole, the filter screen being disposed between the second end and the second filter conduit.
3. The material filtering device as claimed in claim 2, wherein the filter screen is detachably disposed between the first filter pipe and the second filter pipe.
4. The material filtering device as claimed in claim 2, wherein the second end is provided with a first flange, one end of the second filtering pipe is provided with a second flange, the first filtering pipe and the second filtering pipe are connected through the first flange and the second flange, and the filtering net is arranged between the first flange and the second flange.
5. The material filtering device as claimed in claim 4, wherein one or both of said first flange and said second flange has a screen engaging groove formed on a surface thereof, said screen being fixed to said screen engaging groove.
6. The material filtering device according to claim 1, wherein a holding handle is provided at an end of the driving rod located outside the material barrel.
7. The material filtering device according to claim 1, wherein the end of the driving rod outside the material barrel is connected with a driving assembly.
8. The material filtering device as in claim 1, wherein said drive rod is a threaded rod and said cover plate aperture is a threaded aperture that engages said threaded rod.
9. The material filtering device of claim 1, wherein the cover plate is coupled to the bowl in a manner comprising a threaded connection, a bayonet connection, and a hinged connection.
10. The material filtering device as claimed in claim 1, wherein the material barrel further has a second through hole communicating from the inside to the outside of the material barrel, and a through hole cover for opening and closing the second through hole, respectively.
11. The material filtering device of claim 10, wherein the second aperture is located in the bucket body or the cover plate.
12. The material filtering device as recited in claim 1, wherein the first through hole is located in the sidewall of the bucket body.
CN202122519795.5U 2021-10-19 2021-10-19 Material filtering device Active CN216259354U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122519795.5U CN216259354U (en) 2021-10-19 2021-10-19 Material filtering device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122519795.5U CN216259354U (en) 2021-10-19 2021-10-19 Material filtering device

Publications (1)

Publication Number Publication Date
CN216259354U true CN216259354U (en) 2022-04-12

Family

ID=81071500

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122519795.5U Active CN216259354U (en) 2021-10-19 2021-10-19 Material filtering device

Country Status (1)

Country Link
CN (1) CN216259354U (en)

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