Cleaning wastewater recycling mechanism

By using multiple filtration components and pressurization, the problem of ineffective filtration by a single filter plate in existing equipment has been solved, achieving efficient recycling and environmental protection of wastewater from glass cover plates.

CN223641445UActive Publication Date: 2025-12-09SICHUAN HONGYE FUCHANG OPTOELECTRONICS GROUP CO LTD
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Patent Information

Application Number
CN202423128557.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-12-09
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

Most existing wastewater recycling equipment uses a single filter plate, which cannot achieve the desired filtration effect. As a result, the wastewater used to clean the glass cover cannot be effectively recycled, causing environmental pollution.

Method used

It adopts multiple filtration components, including inlet pipe, pre-filter pipe, sieve plate, transmission pipe, pressurization pipe, pressurizer, connecting pipe, filter box, fixing frame, filter element and outlet pipe. Through multi-stage filtration and pressurization, the filter element made of PP material and activated carbon performs multiple filtrations to remove large and small particles and odors.

Benefits of technology

It improves the filtration efficiency of wastewater, effectively removes large and small particles from wastewater, reduces environmental pollution, and achieves efficient wastewater recycling.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of glass cover plate production, in particular to a cleaning wastewater recycling mechanism which comprises a multiple filtering assembly, the multiple filtering assembly comprises a water inlet pipe, a primary filtering pipe, a sieving plate, a conveying pipe, a pressurizing pipe and a pressurizer, the primary filtering pipe is detachably connected with the water inlet pipe and located at one end of the water inlet pipe, and the sieving plate is located at the other end of the water inlet pipe; the screening plate is fixedly connected with the primary filtering pipe and located in the primary filtering pipe, the screening plate is perpendicular to the primary filtering pipe, the conveying pipe is detachably connected with the primary filtering pipe and located at the end, away from the water inlet pipe, of the primary filtering pipe, and the pressurizing pipe is fixedly connected with the conveying pipe and located at the end, away from the primary filtering pipe, of the conveying pipe. The pressurizing device is detachably connected with the pressurizing pipe and located in the center of the interior of the pressurizing pipe, and by additionally arranging multiple filtering assemblies, the problem that most of existing wastewater recycling equipment uses a single filtering plate for filtering, and the ideal filtering effect cannot be achieved is effectively solved.
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Description

Technical Field

[0001] This utility model relates to the field of glass cover plate production technology, and in particular to a cleaning wastewater recycling mechanism. Background Technology

[0002] Glass sheet refers to fixed-size glass produced by flat glass factories. The size of glass sheet is usually based on some standard imperial data, such as 12 feet, 11 inches, 8 feet, 7 feet, etc. Before coating, the glass sheet needs to be cleaned of the release powder on the surface. In the current technology, the release powder needs to be removed by a cleaning machine.

[0003] Wastewater from cleaning glass covers cannot be directly discharged due to the presence of insulating powder. Therefore, secondary recycling and filtration of the wastewater is required; otherwise, it will cause great pollution to the environment. However, most existing wastewater recycling equipment uses a single filter plate for filtration, which cannot achieve the ideal filtration effect.

[0004] To address the above issues, we propose a wastewater recycling system for cleaning. Utility Model Content

[0005] The purpose of this invention is to provide a cleaning wastewater recycling mechanism, which solves the problem that most existing wastewater recycling equipment uses a single filter plate for filtration, which cannot achieve the ideal filtration effect.

[0006] To achieve the above objectives, this utility model employs a wastewater recycling mechanism for cleaning, comprising a multi-stage filtration assembly. The multi-stage filtration assembly includes an inlet pipe, a pre-filter pipe, a sieve plate, a transmission pipe, a pressurizing pipe, and a pressurizer. The pre-filter pipe is detachably connected to the inlet pipe and located at one end of the inlet pipe. The sieve plate is fixedly connected to the pre-filter pipe and located inside the pre-filter pipe, and the sieve plate is perpendicular to the pre-filter pipe. The transmission pipe is detachably connected to the pre-filter pipe and located at the end of the pre-filter pipe furthest from the inlet pipe. The pressurizing pipe is fixedly connected to the transmission pipe and located at the end of the transmission pipe furthest from the pre-filter pipe. The pressurizer is detachably connected to the pressurizing pipe and located at the center of the pressurizing pipe.

[0007] The multi-filter assembly further includes a connecting pipe and a filter box. The connecting pipe is fixedly connected to the pressurizing pipe and is located at the end of the pressurizing pipe away from the transmission pipe. The filter box is detachably connected to the connecting pipe and is located at the end of the connecting pipe away from the pressurizing pipe.

[0008] The multi-filter assembly further includes a mounting frame and a filter element. The mounting frame is fixedly connected to the filter box and located inside the filter box. The filter element is disposed inside the mounting frame, and the filter box is also disposed inside the filter box.

[0009] The multi-filtration assembly also includes a water outlet pipe, which is detachably connected to the filter box and located on the side of the filter box away from the connecting pipe.

[0010] The multi-filter assembly further includes a sealing plate and an observation window. The sealing plate is detachably connected to the filter box and is located above the filter box. The observation window is fixedly connected to the sealing plate and is located inside the sealing plate.

[0011] This utility model discloses a wastewater recycling mechanism for cleaning, comprising a multi-stage filtration assembly. The multi-stage filtration assembly includes an inlet pipe, a pre-filter pipe, a sieve plate, a transmission pipe, a pressurizing pipe, and a pressurizer. The pre-filter pipe is detachably connected to the inlet pipe and located at one end of the inlet pipe. The sieve plate is fixedly connected to the pre-filter pipe and located inside the pre-filter pipe, and the sieve plate is perpendicular to the pre-filter pipe. The transmission pipe is detachably connected to the pre-filter pipe and located at the end of the pre-filter pipe furthest from the inlet pipe. The pressurizing pipe is fixedly connected to the transmission pipe and located at the end of the transmission pipe furthest from the pre-filter pipe. The pressurizer is detachably connected to the pressurizing pipe and located at the center of the pressurizing pipe. By adding the multi-stage filtration assembly, the problem that most existing wastewater recycling equipment uses a single filter plate and cannot achieve the desired filtration effect is effectively solved. Attached Figure Description

[0012] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0013] Figure 1 This is a schematic diagram of the overall structure of this utility model.

[0014] Figure 2 This is a top view of the entire utility model.

[0015] Figure 3 This is a utility model Figure 2 A cross-sectional view of the AA line structure.

[0016] 101-Inlet pipe, 102-Preliminary filter pipe, 103-Sieve plate, 104-Transfer pipe, 105-Pressure pipe, 106-Pressure booster, 107-Connecting pipe, 108-Filter box, 109-Fixing frame, 110-Filter element, 111-Outlet pipe, 112-Sealing plate, 113-Observation window. Detailed Implementation

[0017] 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.

[0018] Please see Figures 1-3 , Figure 1 This is a schematic diagram of the overall structure of this utility model. Figure 2 This is a top view of the entire utility model. Figure 3 This is a utility model Figure 2 A cross-sectional view of the AA line structure.

[0019] This utility model provides a wastewater recycling mechanism for cleaning, including a multi-stage filtration assembly. The multi-stage filtration assembly includes an inlet pipe 101, a pre-filter pipe 102, a sieve plate 103, a transmission pipe 104, a pressurizing pipe 105, a pressurizer 106, a connecting pipe 107, a filter box 108, a mounting frame 109, a filter element 110, an outlet pipe 111, a sealing plate 112, and an observation window 113. This solution addresses the problem that most existing wastewater recycling equipment uses a single filter plate, which fails to achieve ideal filtration. Regarding the issue of effectiveness, it is understandable that the aforementioned solution, when dealing with wastewater from cleaning the glass cover, can transmit the wastewater through the inlet pipe 101 into the primary filter pipe 102, where the filter plate in the primary filter pipe 102 filters out large particles of solid waste from the wastewater. After the initial filtration, the wastewater is then transmitted into the transfer pipe 104, and from the transfer pipe 104 into the pressurization pipe 105, where the pressurizer 106... The wastewater is pressurized, which effectively improves the overall filtration efficiency. After pressurization, the wastewater enters the filter box 108 through the connecting pipe 107, where it undergoes secondary or multiple filtration by the filter element 110. The filter element 110 is made of PP (polypropylene) material and activated carbon, effectively filtering out residual fine particles in the wastewater and removing odors. After secondary or multiple filtrations, the wastewater is discharged through the outlet pipe 111. The sealing plate 112 effectively prevents wastewater from flowing out of the filter box 108 due to excessive water pressure. The observation window 113 allows staff to easily observe the condition of the filter element 110 in the filter box 108. When the filter element 110 reaches its service life limit, the staff will disassemble the sealing plate 112 and replace the filter element 110. This effectively solves the problem that most existing wastewater recycling equipment uses a single filter plate, which cannot achieve the ideal filtration effect.

[0020] In this specific embodiment, the primary filter pipe 102 is detachably connected to the water inlet pipe 101 and is located at one end of the water inlet pipe 101. The sieve plate 103 is fixedly connected to the primary filter pipe 102 and is located inside the primary filter pipe 102, and the sieve plate 103 is perpendicular to the primary filter pipe 102. The transmission pipe 104 is detachably connected to the primary filter pipe 102 and is located at the end of the primary filter pipe 102 away from the water inlet pipe 101. The pressurizing pipe 105 is fixedly connected to the transmission pipe 104 and is located at the end of the transmission pipe 104 away from the primary filter pipe 102. The pressurizer 106 is detachably connected to the pressurizing pipe 105 and is located at the center of the pressurizing pipe 105. When dealing with wastewater from cleaning the glass cover, the wastewater is conveyed into the primary filter pipe 102 through the inlet pipe 101. The filter plate in the primary filter pipe 102 filters out large particles of solid waste in the wastewater. After the wastewater undergoes primary filtration, it is conveyed into the transmission pipe 104, which then conveys the wastewater into the pressurizing pipe 105. The pressurizer 106 in the pressurizing pipe 105 pressurizes the wastewater, thereby effectively improving the overall filtration efficiency.

[0021] The connecting pipe 107 is fixedly connected to the pressurizing pipe 105 and is located at the end of the pressurizing pipe 105 away from the transmission pipe 104. The filter box 108 is detachably connected to the connecting pipe 107 and is located at the end of the connecting pipe 107 away from the pressurizing pipe 105. After being pressurized, the wastewater will enter the filter box 108 through the connecting pipe 107 and be filtered twice or multiple times by the filter element 110 of the filter box 108.

[0022] Secondly, the fixing frame 109 is fixedly connected to the filter box 108 and is located inside the filter box 108. The filter element 110 is disposed inside the fixing frame 109, and the filter box 108 is also disposed inside the filter box 108. The filter element 110 is made of PP (polypropylene) material and activated carbon, which effectively filters the residual small particles in the wastewater and removes the odor from the wastewater. After secondary or multiple filtrations are completed, the wastewater will be discharged through the outlet pipe 111.

[0023] Meanwhile, the outlet pipe 111 is detached from the filter box 108 and is located on the side of the filter box 108 away from the connecting pipe 107. After the wastewater is filtered, it will be discharged through the outlet pipe 111.

[0024] In addition, the sealing plate 112 is detachably connected to the filter box 108 and is located above the filter box 108. The observation window 113 is fixedly connected to the sealing plate 112 and is located inside the sealing plate 112. The sealing plate 112 will effectively prevent wastewater from flowing out of the filter box 108 due to excessive water pressure, while the observation window 113 will allow the staff to observe the usage of the filter element 110 in the filter box 108 at any time. When the filter element 110 reaches the limit of its service life, the staff will disassemble the sealing plate 112 to replace the filter element 110.

[0025] When using this invention to handle wastewater from cleaning glass covers, the wastewater is conveyed through the inlet pipe 101 into the primary filter pipe 102. The filter plate in the primary filter pipe 102 filters out large solid particles in the wastewater. After the initial filtration, the wastewater is conveyed into the transmission pipe 104, which then conveys it into the pressurization pipe 105. The pressurizer 106 in the pressurization pipe 105 pressurizes the wastewater, effectively improving the overall filtration efficiency. After pressurization, the wastewater enters the filter box 108 through the connecting pipe 107, where it undergoes secondary or multiple filtrations by the filter element 110. It will be made of PP (polypropylene) material and activated carbon, effectively filtering out residual fine particles in wastewater and removing odors. After secondary or multiple filtrations, the wastewater will be discharged through the outlet pipe 111. The sealing plate 112 will effectively prevent wastewater from flowing out of the filter box 108 due to excessive water pressure. The observation window 113 will allow staff to observe the condition of the filter element 110 in the filter box 108 at any time. When the filter element 110 reaches the end of its service life, the staff will disassemble the sealing plate 112 to replace the filter element 110. This effectively solves the problem that most existing wastewater recycling equipment uses a single filter plate for filtration, which cannot achieve the ideal filtration effect.

[0026] The above-disclosed embodiments are merely preferred embodiments of the present utility model and should not be construed as limiting the scope of the present utility model. Those skilled in the art can understand that implementing all or part of the above-described embodiments and making equivalent changes in accordance with the claims of the present utility model are still within the scope of the utility model.

Claims

1. A wastewater recycling mechanism for cleaning, characterized in that, The system includes a multi-stage filtration assembly, comprising an inlet pipe, a pre-filter pipe, a sieve plate, a transmission pipe, a pressurizing pipe, and a pressurizer. The pre-filter pipe is detachably connected to the inlet pipe and is located at one end of the inlet pipe. The sieve plate is fixedly connected to the pre-filter pipe and is located inside the pre-filter pipe, with the sieve plate perpendicular to the pre-filter pipe. The transmission pipe is detachably connected to the pre-filter pipe and is located at the end of the pre-filter pipe away from the inlet pipe. The pressurizing pipe is fixedly connected to the transmission pipe and is located at the end of the transmission pipe away from the pre-filter pipe. The pressurizer is detachably connected to the pressurizing pipe and is located at the center inside the pressurizing pipe.

2. The cleaning wastewater recycling mechanism as described in claim 1, characterized in that, The multi-stage filtration assembly further includes a connecting pipe and a filter box. The connecting pipe is fixedly connected to the pressurizing pipe and is located at the end of the pressurizing pipe away from the transmission pipe. The filter box is detachably connected to the connecting pipe and is located at the end of the connecting pipe away from the pressurizing pipe.

3. The cleaning wastewater recycling mechanism as described in claim 2, characterized in that, The multi-filter assembly also includes a mounting frame and a filter element. The mounting frame is fixedly connected to the filter box and located inside the filter box. The filter element is disposed inside the mounting frame, and the filter box is also disposed inside the filter box.

4. The cleaning wastewater recycling mechanism as described in claim 3, characterized in that, The multi-filtration assembly also includes a water outlet pipe, which is detachably connected to the filter box and located on the side of the filter box away from the connecting pipe.

5. The cleaning wastewater recycling mechanism as described in claim 4, characterized in that, The multi-filter assembly also includes a sealing plate and an observation window. The sealing plate is detachably connected to the filter box and is located above the filter box. The observation window is fixedly connected to the sealing plate and is located inside the sealing plate.