Lithium-containing glass powder mixture calcine filtering equipment

By designing an automated cleaning and rinsing filter, the problem of manual cleaning of leaching residue in existing equipment has been solved, enabling fast and convenient filter plate cleaning and improving equipment efficiency.

CN223861438UActive Publication Date: 2026-02-03QINGHAI DINGNENG ENVIRONMENTAL PROTECTION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520147667.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-22
Publication Date
2026-02-03
Estimated Expiration
2035-01-22

AI Technical Summary

Technical Problem

Existing filtration equipment requires workers to first clean the leaching residue inside, and then pull out the filter plates for cleaning and replacement, which is complicated and inconvenient.

Method used

A lithium-containing glass powder mixture calcined sand filtration device was designed, comprising a shell, filter plates, cleaning components and a waste tank. Automatic cleaning and rinsing are achieved through the combined use of sealing plates, pull rods, push plates and rinsing plates, avoiding manual cleaning and filter plate replacement.

Benefits of technology

It eliminates the need for manual cleaning and replacement of filter plates by workers, making cleaning operations quick and convenient, and improving the efficiency and ease of use of filtration equipment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of filtering equipment, in particular to lithium-containing glass powder mixture calcine filtering equipment which comprises a shell, a filtering plate and a cleaning assembly, the shell is provided with a slag discharging opening, and the cleaning assembly comprises a sealing plate, a pull rod, a push plate and a flushing plate; the shell provides an installation place for the filter plate, lithium-containing glass powder mixture calcine is fed through a feeding port of the shell, leaching residues are filtered through the filter plate, lithium-containing leaching liquid penetrates through the filter plate and is discharged and collected through a discharging port of the shell, after the calcine is filtered, a worker holds the pull rod and pulls the sealing plate, a residue discharging port of the shell is exposed, the push plate is started through the controller, and the lithium-containing glass powder mixture calcine is discharged through the discharging port of the shell. The push plate slides on the filter plate and is close to the residue discharge port, so that the leaching residues are discharged out of the shell, after the leaching residues are completely discharged, the flushing plate is opened to flush the filter plate, the residual leaching residues in meshes of the filter plate are flushed, flushing waste liquid is discharged through the discharge port of the shell, the filter plate does not need to be taken out by workers to be cleaned and replaced, and the cleaning operation is rapid and convenient.
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Description

Technical Field

[0001] This utility model relates to the field of filtration equipment technology, and in particular to a lithium-containing glass powder mixture calcined sand filtration device. Background Technology

[0002] Lithium-containing glass powder mixture calcined sand contains lithium. As the lightest metallic element, lithium is the lightest metal in nature and has many unique and excellent properties. It is widely used in fields such as nuclear reactors, light alloys, and batteries. Filtration equipment is needed to filter lithium-containing glass powder mixture calcined sand to obtain lithium-containing leachate.

[0003] Currently, existing technology CN216798914U discloses a filtration device for cobalt leaching solution, belonging to the field of filtration equipment technology. This filtration device for cobalt leaching solution includes a housing, inside which a filter plate is movably mounted. A fixing mechanism is provided on one side wall of the housing. One end of the filter plate is engaged with the side wall of the housing via the fixing mechanism, and the other end of the filter plate penetrates through the side wall of the housing. The fixing mechanism includes a fixing box fixed to the side wall of the housing, and a threaded rod is rotatably mounted inside the fixing box via a bearing. When the filter plate has been used for a long time, the filtration effect will decrease. The operator can rotate the wheel to move the locking rod away from the filter plate, allowing the filter plate to be pulled out and replaced. This solves the problem that existing filtration equipment on the market lacks the function of easily replacing filter plates, and large particles of sediment easily clog the filter mesh, affecting filtration efficiency and causing water blockage.

[0004] However, after using the above-mentioned filtration equipment, workers need to clean the leaching residue inside first, and then pull out the filter plate for cleaning and replacement. The operation is complicated and cumbersome, and the use is relatively inconvenient. Utility Model Content

[0005] The purpose of this utility model is to provide a lithium-containing glass powder mixture calcined sand filtration device, which aims to solve the problem that existing filtration devices require workers to first clean the leaching residue inside and then pull out the filter plates for cleaning and replacement, which is inconvenient to use.

[0006] To achieve the above objectives, this utility model provides a lithium-containing glass powder mixture calcined sand filtration device, including a shell, a filter plate, and a cleaning assembly. The filter plate is fixedly connected to the shell and located inside the shell. The shell has a slag discharge port located on one side of the shell. The cleaning assembly includes a sealing plate, a pull rod, a push plate, and a flushing plate. The sealing plate is slidably connected to the shell and located on one side of the slag discharge port. The pull rod is fixedly connected to the sealing plate and located on the side of the sealing plate away from the shell. The push plate is disposed inside the shell. The flushing plate is fixedly connected to the shell and located inside the shell.

[0007] The sealing plate includes a scraper, a telescopic cylinder, and a telescopic guide rod. The telescopic cylinder is fixedly connected to the housing and is located inside the housing. The scraper is fixedly connected to the telescopic cylinder and is located on the side of the telescopic cylinder away from the housing. The telescopic guide rod is fixedly connected to the scraper and to the housing, and is located between the housing and the scraper.

[0008] The flushing plate includes a guide plate, a snap-fit ​​block, and a high-pressure nozzle. The snap-fit ​​block is detachably connected to the housing and is located at the top of the housing. The guide plate is fixedly connected to the snap-fit ​​block and penetrates the housing. The high-pressure nozzle is fixedly connected to the guide plate and is located on the side of the guide plate away from the housing.

[0009] The lithium-containing glass powder mixture calcined sand filtration equipment also includes a waste tank, which is located on the side of the housing near the sealing plate.

[0010] The waste trough includes a sliding seat, a trough body, and a lifting rod. The trough body is located on the side of the housing near the slag discharge port. The sliding seat is fixedly connected to the trough body and is located at the bottom of the trough body. The lifting rod is fixedly connected to the trough body and is located on the outside of the trough body.

[0011] This utility model discloses a lithium-containing glass powder mixture calcined sand filtration device. The housing provides an installation location for the filter plate. The lithium-containing glass powder mixture calcined sand is fed into the housing through the inlet, and the leaching residue is filtered through the filter plate. The lithium-containing leaching liquid passes through the filter plate and is discharged and collected through the outlet of the housing. After calcined sand filtration, the worker holds the pull rod and pulls the sealing plate to expose the slag discharge port of the housing. Then, the push plate is activated by the controller, causing the push plate to slide on the filter plate and move towards the slag discharge port, thereby discharging the leaching residue from the housing. After the leaching residue is discharged, the flushing plate opens to flush the filter plate, rinsing away the leaching residue remaining in the mesh of the filter plate. The flushing waste liquid is discharged through the outlet of the housing. There is no need for the worker to remove the filter plate for cleaning and replacement. The cleaning operation is quick and convenient, solving the problem that existing filtration equipment requires workers to first clean the leaching residue inside and then pull out the filter plate for cleaning and replacement, which is inconvenient. Attached Figure Description

[0012] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.

[0013] Figure 1 This is a top view of a lithium-containing glass powder mixture calcined sand filtration device according to this utility model.

[0014] Figure 2 This is a schematic diagram of the structure of a lithium-containing glass powder mixture calcined sand filtration device according to the present invention.

[0015] Figure 3 yes Figure 1 A cross-sectional view along plane AA.

[0016] Figure 4 yes Figure 1 A cross-sectional view along plane BB.

[0017] In the diagram: 1-shell, 2-slag discharge port, 3-filter plate, 4-cleaning assembly, 5-sealing plate, 6-pull rod, 7-push plate, 8-rinsing plate, 9-scraper, 10-telescopic cylinder, 11-telescopic guide rod, 12-guide plate, 13-clamping block, 14-high pressure nozzle, 15-waste trough, 16-sliding seat, 17-trough body, 18-lifting rod. Detailed Implementation

[0018] The embodiments of this utility model are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this utility model, and should not be construed as limiting this utility model.

[0019] Please see Figures 1 to 4 This utility model provides a lithium-containing glass powder mixture calcined sand filtration device, including a housing 1, a filter plate 3, and a cleaning assembly 4. The filter plate 3 is fixedly connected to the housing 1 and located inside the housing 1. The housing 1 has a slag discharge port 2 located on one side of the housing 1. The cleaning assembly 4 includes a sealing plate 5, a pull rod 6, a push plate 7, and a flushing plate 8. The sealing plate 5 is slidably connected to the housing 1 and located on one side of the slag discharge port 2. The pull rod 6 is fixedly connected to the sealing plate 5 and located on the side of the sealing plate 5 away from the housing 1. The push plate 7 is disposed inside the housing 1. The flushing plate 8 is fixedly connected to the housing 1 and located inside the housing 1.

[0020] In this embodiment, the housing 1 provides an installation location for the filter plate 3. Lithium-containing glass powder mixture calcined sand is fed into the housing 1 through the inlet, and the leaching residue is filtered through the filter plate 3. The lithium-containing leaching liquid passes through the filter plate 3 and is discharged and collected through the outlet of the housing 1. After calcined sand filtration, the worker holds the pull rod 6 and pulls the sealing plate 5 to expose the slag discharge port 2 of the housing 1. Then, the push plate 7 is activated by the controller, causing it to slide on the filter plate 3 and move towards the slag discharge port 2, thereby discharging the leaching residue from the housing 1. After the leaching residue is discharged, the flushing plate 8 opens to flush the filter plate 3, rinsing away any remaining leaching residue inside the mesh of the filter plate 3. The flushing waste liquid is discharged through the outlet of the housing 1. This eliminates the need for workers to remove the filter plate 3 for cleaning and replacement, making the cleaning operation quick and convenient. This solves the problem of existing filtration equipment requiring workers to first clean the leaching residue inside and then remove the filter plate for cleaning and replacement, which is inconvenient.

[0021] Furthermore, the sealing plate 5 includes a scraper 9, a telescopic cylinder 10, and a telescopic guide rod 11. The telescopic cylinder 10 is fixedly connected to the housing 1 and located inside the housing 1. The scraper 9 is fixedly connected to the telescopic cylinder 10 and located on the side of the telescopic cylinder 10 away from the housing 1. The telescopic guide rod 11 is fixedly connected to the scraper 9 and fixedly connected to the housing 1, and located between the housing 1 and the scraper 9.

[0022] In this embodiment, the controller drives the output end of the telescopic cylinder 10 to extend, pushing the scraper 9 to slide on the filter plate 3, thereby pushing the leaching residue on the filter plate 3 out of the slag discharge port 2. The telescopic guide rod 11 is provided to guide the push plate 7 and prevent the output end of the telescopic cylinder 10 from deviating when pushing the scraper 9. The telescopic guide rod 11 consists of a sleeve and a sliding rod. When the output end of the telescopic cylinder 10 extends and pushes the scraper 9 to slide, the scraper 9 pulls the sliding rod, causing the sliding rod to slide inside the sleeve, thus guiding the scraper 9.

[0023] Furthermore, the flushing plate 8 includes a guide plate 12, a snap-fit ​​block 13, and a high-pressure nozzle 14. The snap-fit ​​block 13 is detachably connected to the housing 1 and is located at the top of the housing 1. The guide plate 12 is fixedly connected to the snap-fit ​​block 13 and penetrates the housing 1. The high-pressure nozzle 14 is fixedly connected to the guide plate 12 and is located on the side of the guide plate 12 away from the housing 1.

[0024] In this embodiment, the snap-fit ​​block 13 is used to snap-fit ​​the guide plate 12 to the top of the housing 1, so that the guide plate 12 can be disassembled and replaced after the high-pressure nozzle 14 is damaged. The high-pressure nozzle 14 is used to pressurize and spray the water inside the guide plate 12 to clean the mesh of the filter plate 3. The high-pressure nozzle 14 is a commonly used technology on the market. The guide plate 12 is connected to an external water source through a water supply pipe.

[0025] Furthermore, the lithium-containing glass powder mixture calcined sand filtration equipment also includes a waste tank 15, which is located on the side of the housing 1 near the sealing plate 5.

[0026] In this embodiment, the waste tank 15 is set up to collect the leaching residue pushed out by the pusher plate 7, so as to avoid the leaching residue being directly discharged and polluting the working environment, requiring subsequent cleaning by workers and increasing the workload of workers.

[0027] Furthermore, the waste trough 15 includes a sliding seat 16, a trough body 17, and a lifting rod 18. The trough body 17 is disposed on the side of the housing 1 near the slag discharge port 2. The sliding seat 16 is fixedly connected to the trough body 17 and is located at the bottom of the trough body 17. The lifting rod 18 is fixedly connected to the trough body 17 and is located on the outside of the trough body 17.

[0028] In this embodiment, the tank 17 is designed to collect the leaching residue pushed out by the pusher plate 7, preventing the leaching residue from being directly discharged and polluting the working environment, requiring subsequent cleaning by workers and increasing their workload. The sliding seat 16 allows the tank 17 to move within the workshop, and the lifting rod 18 facilitates workers in emptying the leaching residue from the tank 17, improving its practicality.

[0029] The above-disclosed embodiments are merely preferred embodiments of a lithium-containing glass powder mixture calcined sand filtration device of this application and should not be construed as limiting the scope of this application. Those skilled in the art can understand that all or part of the processes of the above embodiments can be implemented, and equivalent changes made in accordance with the claims of this application still fall within the scope of this application.

Claims

1. A lithium-containing glass powder mixture calcined sand filtration device, characterized in that... ; The device includes a housing, a filter plate, and a cleaning assembly. The filter plate is fixedly connected to the housing and located inside the housing. The housing has a slag discharge port located on one side of the housing. The cleaning assembly includes a sealing plate, a pull rod, a push plate, and a flushing plate. The sealing plate is slidably connected to the housing and located on one side of the slag discharge port. The pull rod is fixedly connected to the sealing plate and located on the side of the sealing plate away from the housing. The push plate is disposed inside the housing. The flushing plate is fixedly connected to the housing and located inside the housing.

2. The lithium-containing glass powder mixture calcined sand filtration equipment as described in claim 1, characterized in that... ; The sealing plate includes a scraper, a telescopic cylinder, and a telescopic guide rod. The telescopic cylinder is fixedly connected to the housing and is located inside the housing. The scraper is fixedly connected to the telescopic cylinder and is located on the side of the telescopic cylinder away from the housing. The telescopic guide rod is fixedly connected to the scraper and to the housing, and is located between the housing and the scraper.

3. The lithium-containing glass powder mixture calcined sand filtration equipment as described in claim 1, characterized in that... ; The flushing plate includes a guide plate, a snap-fit ​​block, and a high-pressure nozzle. The snap-fit ​​block is detachably connected to the housing and is located at the top of the housing. The guide plate is fixedly connected to the snap-fit ​​block and passes through the housing. The high-pressure nozzle is fixedly connected to the guide plate and is located on the side of the guide plate away from the housing.

4. The lithium-containing glass powder mixture calcined sand filtration equipment as described in claim 1, Its characteristics are: The lithium-containing glass powder mixture calcined sand filtration equipment also includes a waste tank, which is located on the side of the housing near the sealing plate.

5. The lithium-containing glass powder mixture calcined sand filtration equipment as described in claim 4, characterized in that... ; The waste trough includes a sliding seat, a trough body, and a lifting rod. The trough body is located on the side of the housing near the slag discharge port. The sliding seat is fixedly connected to the trough body and is located at the bottom of the trough body. The lifting rod is fixedly connected to the trough body and is located on the outside of the trough body.

Citation Information

Patent Citations

  • Filtering equipment for cobalt leachate

    CN216798914U