A wastewater recycling treatment device for tempered glass processing

By designing a wastewater recycling treatment device for tempered glass processing, and adopting a multi-stage treatment system with two-stage filtration and adsorption plates, the problem of poor impurity separation and sedimentation in existing devices has been solved. This achieves efficient wastewater treatment and convenient equipment maintenance, and is suitable for various glass processing scenarios.

CN224578052UActive Publication Date: 2026-07-31ANHUI BOHAO TEMPERED GLASS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ANHUI BOHAO TEMPERED GLASS CO LTD
Filing Date
2025-07-25
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

Existing glass processing wastewater treatment equipment is unable to effectively separate suspended solids, colloids and other impurities, and the sedimentation effect is poor, failing to meet increasingly stringent wastewater treatment standards.

Method used

A wastewater recycling treatment device for tempered glass processing was designed. The device features a two-stage filtration structure with a raised filter plate and a filter bucket in the inlet hopper and an adsorption mesh plate in the sedimentation chamber, forming a multi-stage treatment system that can effectively separate glass fragments, powders and other impurities of different particle sizes. Through modular design, it is applicable to other similar glass processing wastewater treatment scenarios.

Benefits of technology

It achieves effective treatment of glass fragments, powder, and fluoride ions in tempered glass processing wastewater, meets stringent wastewater treatment standards, reduces maintenance difficulty and cost, improves equipment operating efficiency, and has strong versatility.

✦ Generated by Eureka AI based on patent content.

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Abstract

This utility model relates to the field of glass processing technology, specifically a wastewater recycling treatment device for tempered glass processing. It includes a treatment chamber, a sedimentation chamber, and a sealing cover. The treatment chamber contains a treatment cavity. A mounting base for installing an inlet hopper and a pipe is fixed to the upper surface of the sealing cover by a first bolt. A raised filter plate and a filter hopper are installed inside the inlet hopper. A through hole for the pipe to pass through is located in the center of the upper surface of the sealing cover. A sedimentation chamber is located on one side of the treatment chamber, and a first conveying pipe is fixedly inserted into the lower part of the sedimentation chamber at the end furthest from the second connecting pipe. This device is designed specifically for the characteristics of tempered glass processing wastewater. It effectively treats wastewater containing glass fragments, powder, and fluoride ions generated during polishing, grinding, and cleaning processes. Furthermore, its modular design and multi-stage treatment structure, with appropriate adjustments, can also be applied to other similar glass processing wastewater treatment scenarios, demonstrating strong versatility.
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Description

Technical Field

[0001] This utility model relates to the field of glass processing technology, specifically to a wastewater recycling treatment device for tempered glass processing. Background Technology

[0002] Glass processing wastewater mainly originates from the polishing, grinding, and cleaning processes during glass processing. The wastewater mainly contains glass fragments, glass powder, and small amounts of pollutants such as fluoride ions. If discharged directly without treatment, it will lead to environmental pollution.

[0003] Application number CN202320271581.7 discloses a wastewater treatment device for glass production and processing. This device filters glass fragments from wastewater using a filter plate. The filter plate is easily disassembled and replaced; simply removing the nut and pushing the limiting post into the receiving groove releases the limiting on the filter plate, allowing for disassembly and replacement. A rotating motor drives a rotating rod, which in turn stirs the wastewater. A water pump transports the wastewater, and a valve controls the opening and closing of the first delivery pipe. However, this design has shortcomings. The baffle structure is simple, only providing basic obstruction and failing to achieve preliminary separation of suspended solids, colloids, and other impurities in the wastewater. Furthermore, the sedimentation chamber lacks a specialized design, preventing sufficient settling of fine particles and pollutants in the wastewater, thus failing to meet increasingly stringent wastewater treatment standards and the demands for refined treatment.

[0004] Therefore, we propose a wastewater recycling treatment device for tempered glass processing. Utility Model Content

[0005] The main objective of this invention is to provide a wastewater recycling treatment device for tempered glass processing. This device is designed specifically for the characteristics of tempered glass processing wastewater and has a good treatment effect on wastewater containing pollutants such as glass fragments, powder, and fluoride ions generated from polishing, grinding, and cleaning processes. At the same time, its modular design and multi-stage treatment structure, with appropriate adjustments, can also be applied to other similar glass processing wastewater treatment scenarios, demonstrating strong versatility and effectively solving the problems in the background technology.

[0006] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0007] A wastewater recycling treatment device for tempered glass processing includes a treatment chamber, a sedimentation chamber, and a sealing cover. The sealing cover is installed at the top of the treatment chamber. The treatment chamber is provided with a treatment cavity. The upper end face of the sealing cover is fixedly installed with a mounting seat for installing an inlet hopper and a pipe by a first bolt. The inlet hopper is respectively installed with a raised filter plate and a filter hopper. The mounting seat has a circular structure. The upper end face of the sealing cover is provided with a through hole for the pipe to pass through at the center.

[0008] A sedimentation chamber is provided on one side of the treatment chamber. The treatment chamber is connected to the sedimentation chamber through a second conveying pipe. A first conveying pipe is fixedly inserted into the lower part of the sedimentation chamber at the end away from the second connecting pipe. Two sets of relatively parallel sealing grooves are provided at the top of the sedimentation chamber. An installation plate is embedded in the sealing groove. A vertically arranged adsorption mesh plate is inserted vertically into the lower end face of the installation plate. The bottom end of the adsorption mesh plate passes through the inner wall of the sealing groove and is inserted into the sedimentation chamber. Two adsorption mesh plates are arranged relatively parallel to each other.

[0009] By adopting the above technical solution, the device is designed specifically for the characteristics of tempered glass processing wastewater. It has a good effect on treating wastewater containing pollutants such as glass fragments, powder and fluoride ions generated from polishing, grinding and cleaning processes. At the same time, its modular design and multi-stage treatment structure, with appropriate adjustments, can also be applied to other similar glass processing wastewater treatment scenarios, and has strong versatility.

[0010] Specifically, the top end of the pipe is fixedly connected to the bottom end of the liquid inlet hopper, the outer side of the pipe is provided with a threaded groove, the inner wall of the mounting base is provided with an assembly groove that matches the threaded groove, and the pipe is threadedly connected to the mounting base.

[0011] Specifically, a limiting plate is fixedly sleeved on the lower outer side of the mounting base, and the bottom end of the first bolt passes through the limiting plate and is threadedly connected to the sealing cover.

[0012] Specifically, the lower part of the inner wall of the liquid inlet hopper is provided with an embedding groove for installing the filter bucket, and the top of the filter bucket is fixedly connected with a mounting bracket that is compatible with the embedding groove.

[0013] Specifically, a slot for installing a raised filter plate is provided in the center of the inner wall of the liquid inlet hopper, and a ring-shaped clip is fixedly fitted on the outer side of the raised filter plate.

[0014] Specifically, the raised filter plate is located directly above the filter bucket, and the diameter of the filter bucket mesh is smaller than the diameter of the raised filter plate mesh.

[0015] The beneficial effects of this utility model are as follows: The tempered glass processing wastewater recycling treatment device described in this utility model has a two-stage filtration structure formed by the raised filter plate and filter bucket in the inlet hopper. This effectively separates impurities such as glass fragments and powders of different particle sizes in the wastewater, greatly reducing suspended solids and large particulate pollutants entering the treatment chamber and sedimentation chamber. The adsorption mesh plate in the sedimentation chamber can adsorb fine particles and pollutants, enhancing the sedimentation effect. Compared with traditional devices, it can more fully treat impurities in wastewater and meet strict wastewater treatment standards. The raised filter plate and filter bucket in the inlet hopper are installed using a slotted or embedded groove method, which facilitates disassembly and replacement, reducing maintenance costs. The device is designed specifically for the characteristics of tempered glass processing wastewater. It effectively treats wastewater containing glass fragments, powder, and fluoride ions generated during polishing, grinding, and cleaning processes. Its modular design and multi-stage treatment structure, with appropriate adjustments, can also be applied to other similar glass processing wastewater treatment scenarios, demonstrating strong versatility. The adsorption screen in the sedimentation chamber is easily disassembled and cleaned via a mounting plate and sealing groove, effectively reducing equipment maintenance time and costs and improving operating efficiency. The mounting base is fixed to the sealing cover by the first bolt and a limiting plate, and the pipe is threadedly connected to the mounting base, ensuring the stability of the liquid inlet system. Attached Figure Description

[0016] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0017] Figure 1 This is a schematic diagram of the structure of this utility model;

[0018] Figure 2 For the present utility model Figure 1 Enlarged view of point A in the middle;

[0019] Figure 3 This is a perspective view of the liquid inlet hopper of this utility model;

[0020] In the diagram: 1. Processing chamber; 2. Inlet hopper; 3. Pipeline; 4. Sedimentation chamber; 5. First delivery pipe; 6. Adsorption screen; 7. Sealing groove; 8. Mounting plate; 9. Sealing cover; 10. Processing cavity; 11. Mounting base; 12. First bolt; 13. Embedding groove; 14. Mounting bracket; 15. Filter hopper; 16. Slot; 17. Clip; 18. Raised filter plate; 19. Threaded groove. Detailed Implementation

[0021] To make the technical means, creative features, objectives and effects of this utility model easier to understand, the present utility model will be further described below in conjunction with specific embodiments.

[0022] As one embodiment of this utility model, such as Figures 1-3As shown, the present invention discloses a wastewater recycling treatment device for tempered glass processing, comprising a treatment chamber 1, a sedimentation chamber 4, and a sealing cover 9. The sealing cover 9 is installed at the top of the treatment chamber 1, and a treatment cavity 10 is provided inside the treatment chamber 1. The upper end face of the sealing cover 9 is fixedly installed with a mounting base 11 for installing an inlet hopper 2 and a pipe 3 by a first bolt 12. The inlet hopper 2 is respectively installed with a raised filter plate 18 and a filter hopper 15. The mounting base 11 has a circular structure, and a through hole for the pipe 3 to pass through is provided in the center of the upper end face of the sealing cover 9.

[0023] A sedimentation chamber 4 is provided on one side of the treatment chamber 1. The treatment chamber 1 is connected to the sedimentation chamber 4 through a second conveying pipe. A first conveying pipe 5 is fixedly inserted into the lower part of the sedimentation chamber 4 away from the second connecting pipe. Two sets of relatively parallel sealing grooves 7 are provided at the top of the sedimentation chamber 4. An installation plate 8 is embedded in the sealing groove 7. A vertically arranged adsorption mesh plate 6 is inserted vertically into the lower end face of the installation plate 8. The bottom end of the adsorption mesh plate 6 passes through the inner wall of the sealing groove 7 and is inserted into the sedimentation chamber 4. Two adsorption mesh plates 6 are arranged relatively parallel to each other.

[0024] In use, when treating wastewater, the wastewater from tempered glass processing flows in through the inlet hopper 2, first passing through the raised filter plate 18 to initially filter out larger glass fragments and other impurities, and then through the filter hopper 15 to further filter out smaller particles. The filtered wastewater then enters the treatment chamber 10 of the treatment chamber 1 through the pipe 3. After completing the corresponding treatment in the treatment chamber 10, the wastewater flows into the sedimentation chamber 4 through the second conveying pipe. In the sedimentation chamber 4, two relatively parallel adsorption mesh plates 6 can adsorb fine particles and pollutants in the wastewater, further promoting the sedimentation process. The settled water is discharged from the first conveying pipe 5 at the lower end of the sedimentation chamber 4 away from the second connecting pipe, and the adsorption mesh plates 6 can be removed from the sealing groove 7 by disassembling the mounting plate 8 for cleaning and replacement.

[0025] The present invention also includes that the top end of the pipe 3 is fixedly connected to the bottom end of the liquid inlet hopper 2, the outer side of the pipe 3 is provided with a threaded groove 19, the inner wall of the mounting base 11 is provided with an assembly groove adapted to the threaded groove 19, and the pipe 3 is threadedly connected to the mounting base 11.

[0026] This utility model also includes a limiting plate fixedly sleeved on the lower outer side of the mounting base 11, and the bottom end of the first bolt 12 passes through the limiting plate and is threadedly connected to the sealing cover 9.

[0027] The present invention also includes an embedding groove 13 for installing a filter bucket 15 on the lower part of the inner wall of the liquid inlet 2, and a mounting bracket 14 adapted to the embedding groove 13 is fixedly connected to the top of the filter bucket 15.

[0028] The present invention also includes a slot 16 for installing a raised filter plate 18 at the center of the inner wall of the liquid inlet 2, and a ring-shaped clip 17 is fixedly sleeved on the outer side of the raised filter plate 18.

[0029] The present invention also includes that the raised filter plate 18 is located directly above the filter bucket 15, and the mesh diameter of the filter bucket 15 is smaller than the mesh diameter of the raised filter plate 18.

[0030] In actual use of the tempered glass processing wastewater recycling device described in this utility model, the mounting base 11 is first fixedly installed on the upper end face of the sealing cover 9 by the first bolt 12. Due to the limiting plate sleeved on the lower outer side of the mounting base 11, the mounting base 11 can be securely installed. Next, the pipe 3 with the threaded groove 19 is threadedly connected to the assembly groove on the inner wall of the mounting base 11, and the top end of the pipe 3 is fixedly connected to the bottom end of the liquid inlet hopper 2. The clip 17 on the outer side of the raised filter plate 18 is embedded into the clip groove 16 in the middle of the inner wall of the liquid inlet hopper 2, and then the mounting bracket 14 at the top of the filter bucket 15 is embedded into the embedding groove 13 at the lower part of the inner wall of the liquid inlet hopper 2. Since the raised filter plate 18 is located directly above the filter bucket 15 and the mesh diameter of the filter bucket 15 is smaller than the mesh diameter of the raised filter plate 18, a two-stage filtration structure is formed.

[0031] When wastewater is treated, the wastewater from tempered glass processing flows in through the inlet hopper 2. It first passes through the raised filter plate 18 to initially filter out larger glass fragments and other impurities, and then passes through the filter hopper 15 to further filter out smaller particles. The filtered wastewater then enters the treatment chamber 10 of the treatment chamber 1 through the pipe 3. After the corresponding treatment is completed in the treatment chamber 10, the wastewater flows into the sedimentation chamber 4 through the second conveying pipe. In the sedimentation chamber 4, two relatively parallel adsorption mesh plates 6 can adsorb fine particles and pollutants in the wastewater, further promoting the sedimentation process. The settled water is discharged from the first conveying pipe 5 at the lower end of the sedimentation chamber 4 away from the second connecting pipe, and the adsorption mesh plates 6 can be removed from the sealing groove 7 by disassembling the mounting plate 8 for cleaning and replacement.

[0032] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The descriptions of the above embodiments and specifications are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of protection claimed by this utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A wastewater recycling treatment device for tempered glass processing, characterized in that, It includes a processing chamber (1), a sedimentation chamber (4) and a sealing cover (9). The top of the processing chamber (1) is equipped with a sealing cover (9). The processing chamber (1) is provided with a processing cavity (10). The upper end face of the sealing cover (9) is fixedly installed with a mounting seat (11) for installing the liquid inlet hopper (2) and the pipe (3) by a first bolt (12). The liquid inlet hopper (2) is respectively equipped with a raised filter plate (18) and a filter hopper (15). The mounting seat (11) is a circular structure. The upper end face of the sealing cover (9) is provided with a through hole for the pipe (3) to pass through. The processing chamber (1) is provided with a sedimentation chamber (4) on one side. The processing chamber (1) is connected to the sedimentation chamber (4) through a second conveying pipe. A first conveying pipe (5) is fixedly inserted into the lower part of the sedimentation chamber (4) away from the second connecting pipe. Two sets of relatively parallel sealing grooves (7) are provided at the top of the sedimentation chamber (4). An installation plate (8) is embedded in the sealing groove (7). A vertically arranged adsorption mesh plate (6) is vertically inserted into the lower end face of the installation plate (8). The bottom end of the adsorption mesh plate (6) passes through the inner wall of the sealing groove (7) and is inserted into the sedimentation chamber (4). Two adsorption mesh plates (6) are arranged relatively parallel to each other.

2. The tempered glass processing wastewater recycling treatment device according to claim 1, characterized in that, The top end of the pipe (3) is fixedly connected to the bottom end of the liquid inlet (2). The outer side of the pipe (3) is provided with a threaded groove (19). The inner wall of the mounting base (11) is provided with an assembly groove that matches the threaded groove (19). The pipe (3) is threadedly connected to the mounting base (11).

3. The tempered glass processing wastewater recycling treatment device according to claim 2, characterized in that, A limiting plate is fixedly fitted on the lower outer side of the mounting base (11), and the bottom end of the first bolt (12) passes through the limiting plate and is threadedly connected to the sealing cover (9).

4. The tempered glass processing wastewater recycling treatment device according to claim 1, characterized in that, The lower part of the inner wall of the liquid inlet (2) is provided with an embedding groove (13) for installing the filter bucket (15), and the top of the filter bucket (15) is fixedly connected with a mounting bracket (14) that is compatible with the embedding groove (13).

5. The tempered glass processing wastewater recycling treatment device according to claim 1, characterized in that, The inner wall of the liquid inlet hopper (2) is provided with a slot (16) for installing the raised filter plate (18) at the center, and a ring-shaped clip (17) is fixedly sleeved on the outside of the raised filter plate (18).

6. The tempered glass processing wastewater recycling treatment device according to claim 1, characterized in that, The raised filter plate (18) is located directly above the filter bucket (15), and the mesh diameter of the filter bucket (15) is smaller than the mesh diameter of the raised filter plate (18).