Environment-friendly waste water treatment and deslagging device

By designing the synchronous rotation of the partition ring and the filter driving block, the automation and independence of sewage filtration and waste slag recovery in the wastewater treatment slag removal device is achieved, and the problem of wastewater entering the collection box in the prior art affects the recycling effect and waste water resources waste, which improves the slag removal efficiency and the service life of the motor.

CN120502149APending Publication Date: 2025-08-19TIANJIN LANCHAO ELECTRIC POWER CHECKING & MAINTAIN CO LTD
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Patent Information

Application Number
CN202510388115.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2025-08-19

AI Technical Summary

Technical Problem

In the existing environmentally friendly wastewater treatment and slag removal device, the wastewater enters the collection box and affects the waste slag recycling effect, and it is easy to cause waste of water resources and motor pollution during the filtration process.

Method used

Design an environmentally friendly wastewater treatment and slag removal device. Through the coordination of the partition ring and the filter drive block, the independent process of sewage filtration and waste slag recycling is realized. The synchronous rotation of the partition ring and the filter drive motor is used to ensure the automation and independence of sewage filtration and waste slag recycling, and avoid water resource waste and motor pollution.

Benefits of technology

It realizes automatic recycling and efficient separation of waste slag, enhances sewage filtration efficiency, avoids waste of water resources and motor failure, and extends the service life of the motor.

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Abstract

An environment-friendly waste water treatment slag removal device comprises a slag removal bearing shell, a motor bearing table, a filtering driving motor, a waste water separation ring, a driven gear ring, a filtering driving block, a separation ring driving shaft, a separation ring driving motor and a separation ring driving gear, a waste water treatment groove is formed in the slag removal bearing shell, and a motor table positioning groove is formed in the top of the waste water treatment groove; a water inlet pipe is arranged at the top of the deslagging bearing shell and located on the side face of the motor table positioning groove, and four waste water area separation marks are arranged on the surface of the deslagging bearing shell and evenly arranged around the deslagging bearing shell. The internal space of the wastewater treatment tank is sequentially divided into a water filtering tank, a transition tank, a deslagging tank and a water inlet tank clockwise by the wastewater area separation marks, a waste residue recycling pipe is arranged at the bottom of the deslagging tank, and a separation ring connecting tank is formed in the middle of the deslagging bearing shell.
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Description

Technical Field

[0001] The present invention relates to the field of environmental wastewater treatment, and in particular to an environmental wastewater treatment slag removal device. Background Art

[0002] The existing patent (publication number: CN220530783U) proposes an environmentally friendly wastewater treatment slag removal device, including a base, a slag removal bin is provided on one side of the top of the base, a water inlet pipe is provided in the middle of the top of the slag removal bin, a purification mechanism is provided on one side of the top of the slag removal bin, an arc-shaped guide block is provided in the middle of one end of the inside of the slag removal bin, and a filter screen is provided in the middle of both sides of the inside of the slag removal bin. However, this device "scraped impurities can be pushed by the scraper into two groups of collection boxes for collection, and the bin door can be opened for centralized cleaning later." The collection box and the scraper may cause wastewater to enter the collection box during slag removal, affecting the subsequent waste slag recovery effect. Summary of the Invention

[0003] In view of the above-mentioned shortcomings of the prior art, the present invention provides a device for automatically filtering out the wastewater from the wastewater treatment tank when the wastewater treatment tank corresponds to the water inlet tank. When the wastewater treatment tank intersects the water filter tank, the wastewater is filtered by the wastewater treatment mesh, and waste residue remains in the wastewater treatment tank. When the wastewater treatment tank overlaps with the water filter tank, the water inlet pipe no longer supplies water to the wastewater treatment tank at this location, and the sewage in the wastewater treatment tank is gradually emptied until the wastewater treatment tank moves to intersect with the slag discharge tank, and the waste residue is driven by the filter driving blade to be thrown out, and finally falls into the waste residue recovery pipe and is recovered. After the wastewater treatment tank overlaps with the water inlet tank again, the next round of slag removal cycle can be carried out. The automatic recovery of waste residue can be completed as a whole, and the waste residue recovery process and the waste residue separation process are independent of each other, so that the waste residue recovery effect is better.

[0004] The purpose of the present invention is to be achieved through the following technical solutions: An environmentally friendly wastewater treatment and slag removal device includes a slag removal bearing shell, a motor bearing platform, a filter drive motor, a wastewater separation ring, a driven gear ring, a filter drive block, a separation ring drive shaft, a separation ring drive motor, and a separation ring drive gear. The slag removal bearing shell has a wastewater treatment tank inside, a motor platform positioning groove on the top of the wastewater treatment tank, a water inlet pipe on the top of the slag removal bearing shell, and the water inlet pipe is located on the side of the motor platform positioning groove. The surface of the slag removal bearing shell has four groups of wastewater area separation marks, and the four groups of wastewater area separation marks are evenly arranged around the slag removal bearing shell. The wastewater area separation marks separate the inside of the wastewater treatment tank. The space is divided into a water filter trough, a transition trough, a slag discharge trough, and a water inlet trough in a clockwise direction. There is a waste slag recovery pipe at the bottom of the slag discharge trough. There is a separation ring connecting groove in the middle of the slag removal bearing shell. The separation ring connecting groove is adapted to the wastewater separation ring. The separation ring connecting groove is connected to the wastewater separation ring. The wastewater separation ring rotates inside the separation ring connecting groove. There is a separation motor mounting platform on the side of the wastewater separation ring. Four groups of separation motor mounting platforms are evenly arranged around the wastewater separation ring. The separation motor mounting platform is adapted to the wastewater treatment trough. The separation motor mounting platform is connected to the wastewater treatment trough. The separation motor mounting platform slides inside the wastewater treatment trough.

[0005] The two adjacent separation motor mounting platforms cooperate with the slag removal bearing shell to form a wastewater treatment tank. A drive shaft mounting block is provided on the top of the wastewater separation ring. The drive shaft mounting blocks are evenly arranged between the two adjacent separation motor mounting platforms. A filter drive block is provided at the bottom of the drive shaft mounting block. The filter drive block is rotatably connected to the drive shaft mounting block. A filter drive page is provided on the side of the filter drive block. The filter drive page is evenly arranged around the filter drive block. The motor bearing platform is adapted to the motor platform positioning groove, and the motor bearing platform is connected to the motor platform positioning groove.

[0006] Beneficial effects: 1. In the process of wastewater treatment and slag removal of the present invention, the separation ring driving motor drives the wastewater separation ring to rotate through the separation ring driving gear and the driven gear ring, and synchronously, the filter driving motor drives the filter driving block to rotate. When the wastewater treatment tank corresponds to the water inlet tank, the sewage enters the wastewater treatment tank from the water inlet pipe. When the wastewater treatment tank intersects with the water filter tank, the sewage is filtered by the wastewater treatment mesh through the high-speed rotation of the filter driving block, and the waste residue remains inside the wastewater treatment tank. When the wastewater treatment tank coincides with the water filter tank, the water inlet pipe no longer supplies water to the wastewater treatment tank here, and the sewage inside the wastewater treatment tank is gradually emptied until the wastewater treatment tank moves to intersect with the slag discharge tank, and the waste residue is driven by the filter driving blade to be thrown out, and finally falls into the waste residue recovery pipe and is recovered, until the wastewater treatment tank coincides with the water inlet tank again, the next round of slag removal cycle can be carried out, and the automatic recovery of waste residue can be completed as a whole, and the waste residue recovery process and the waste residue separation process are independent of each other, so that the waste residue recovery effect is better.

[0007] 2. The filter drive blocks of the present invention are evenly distributed inside the wastewater treatment tank, thereby increasing the fluidity of sewage in various places inside the wastewater treatment tank, thereby increasing the sewage filtration efficiency of the wastewater treatment mesh, and further increasing the sewage slag removal efficiency of this device.

[0008] 3. A transition trough is provided between the water filter trough and the slag discharge trough of the present invention, so that when the wastewater treatment trough rotates to any position during the rotation process, it will not be connected with the water filter trough and the slag discharge trough at the same time, thereby avoiding the waste of water resources caused by the outflow of sewage from the waste residue recovery pipe during the filtration process.

[0009] 4. The motor supporting platform of the present invention slides inside the motor platform positioning groove, so that the filter drive motor arranged on the top of the slag removal supporting shell can drive the filter drive block to rotate while following the wastewater separation ring. While ensuring the sealing inside the slag removal supporting shell, the filter drive motor can be arranged on the outside of the slag removal supporting shell to avoid the filter drive motor from being contaminated by sewage for a long time and causing malfunctions, thereby increasing the service life of the filter drive motor. BRIEF DESCRIPTION OF THE DRAWINGS

[0010] Figure 1 This is a structural schematic diagram of an environmentally friendly wastewater treatment and slag removal device according to the present invention.

[0011] Figure 2 This is a diagram showing the installation status of the separation ring drive motor described in the present invention.

[0012] Figure 3 This is a diagram of the installation state of the filter drive block described in the present invention.

[0013] Figure 4 This is a diagram showing the installation status of the motor platform positioning slot described in the present invention.

[0014] Figure 5 This is a top cross-sectional view of an environmentally friendly wastewater treatment and slag removal device described in the present invention.

[0015] Figure 6 Schematic diagram of the slag removal bearing shell structure of the present invention Figure 1 .

[0016] Figure 7 Schematic diagram of the slag removal bearing shell structure of the present invention Figure 2 .

[0017] Figure 8 This is a schematic diagram of the wastewater separation ring structure of the present invention. DETAILED DESCRIPTION

[0018] The present invention will be further described in detail below with reference to the accompanying drawings and examples: Example 1: An environmentally friendly wastewater treatment and slag removal device includes a slag removal bearing shell 1, a motor bearing platform 3, a filter drive motor 5, a wastewater separation ring 7, a driven gear ring 8, a filter drive block 15, a separation ring drive shaft 19, a separation ring drive motor 22, and a separation ring drive gear 23. The slag removal bearing shell 1 has a wastewater treatment tank 11 inside, and the top of the wastewater treatment tank 11 has a motor platform positioning groove 20. The top of the slag removal bearing shell 1 has an inlet pipe 2, and the inlet pipe 2 is located on the side of the motor platform positioning groove 20. The surface of the slag removal bearing shell 1 has four groups of wastewater area separation marks 24, and the four groups of wastewater area separation marks 24 are evenly arranged around the slag removal bearing shell 1. The wastewater area separation marks 24 divide the internal space of the wastewater treatment tank 11 into a filter water tank 101, a transition tank 102, a slag discharge tank 103, and a water inlet tank 104 in a clockwise direction. A transition groove 102 is provided so that the wastewater treatment tank 25 will not be connected to the filter water tank 101 and the slag discharge tank 103 at the same time when it rotates to any position during the rotation process, so as to avoid the wastewater flowing out of the waste residue recovery pipe 13 during the filtration process, causing waste of water resources. The bottom of the slag discharge tank 103 is provided with a waste residue recovery pipe 13, and the middle part of the slag removal bearing shell 1 is provided with a separating ring connecting groove 6, which is adapted to the wastewater separating ring 7, and the separating ring connecting groove 6 is connected to the wastewater separating ring 7, and the wastewater separating ring 7 rotates inside the separating ring connecting groove 6. The side of the wastewater separating ring 7 is provided with a separating motor mounting platform 21, and four groups of separating motor mounting platforms 21 are evenly arranged around the wastewater separating ring 7, and the separating motor mounting platform 21 is adapted to the wastewater treatment tank 11, and the separating motor mounting platform 21 is connected to the wastewater treatment tank 11, and the separating motor mounting platform 21 slides inside the wastewater treatment tank 11.

[0019] Example 2: The two adjacent separation motor mounting platforms 21 described in the present invention cooperate with the slag removal bearing shell 1 to form a wastewater treatment tank 25. The top of the wastewater separation ring 7 is provided with a drive shaft mounting block 17, and the drive shaft mounting block 17 is evenly arranged between the two adjacent separation motor mounting platforms 21. A filter drive block 15 is provided at the bottom of the drive shaft mounting block 17. The filter drive block 15 is rotatably connected to the drive shaft mounting block 17. The filter drive block 15 is evenly distributed inside the wastewater treatment tank 25, thereby increasing the fluidity of sewage at various locations inside the wastewater treatment tank 25, thereby increasing the sewage filtration efficiency of the wastewater treatment mesh 12, thereby further increasing the sewage slag removal efficiency of this device. The side of the filter drive block 15 is provided with a filter drive page 18, and the filter drive page 18 is evenly arranged around the filter drive block 15. The motor bearing platform 3 is adapted to the motor platform positioning groove 20, and the motor bearing platform 3 is connected to the motor platform positioning groove 20.

[0020] Example 3: The motor supporting platform 3 described in the present invention slides inside the motor platform positioning groove 20. The motor supporting platform 3 slides inside the motor platform positioning groove 20, so that the filter drive motor 5 arranged on the top of the slag removal supporting shell 1 can follow the wastewater separation ring 7 to rotate while driving the filter drive block 15 to rotate. While ensuring the sealing inside the slag removal supporting shell 1, the filter drive motor 5 can be arranged on the outside of the slag removal supporting shell 1 to avoid the filter drive motor 5 from being contaminated by sewage for a long time and causing failures, thereby increasing the service life of the filter drive motor 5. The top of the motor supporting platform 3 has a motor mounting groove 4, and the number and position of the motor mounting groove 4 correspond to the drive shaft mounting block 17. The filter drive motor 5 is inserted into the motor mounting groove 4 and fixed. The transmission shaft of the filter drive motor 5 is fixedly connected to the filter drive block 15. The inner side of the separation ring connecting groove 6 has a drive rod mounting platform 9, and the middle part of the drive rod mounting platform 9 has a drive rod mounting groove 10.

[0021] Example 4: The driving rod mounting platform 9 of the present invention is provided with a separating ring driving shaft 19 inside, and driving mounting columns 16 are provided on both sides of the separating ring driving shaft 19. The driving mounting columns 16 are rotatably connected to the driving rod mounting groove 10. The bottom of the driving rod mounting platform 9 is provided with a separating motor mounting platform 21, and the separating ring driving motor 22 is inserted into the separating motor mounting platform 21 and fixed. During the wastewater treatment and slag removal process, the separating ring driving motor 22 drives the wastewater separating ring 7 to rotate through the separating ring driving gear 23 and the driven gear ring 8. Synchronously, the filter driving motor 5 drives the filter driving block 15 to rotate. When the wastewater treatment tank 25 corresponds to the water inlet tank 104, the sewage enters the wastewater treatment tank 25 from the water inlet pipe 2. When the wastewater treatment tank 25 corresponds to the water filter tank 101 When the wastewater and the slag are combined, the wastewater is filtered by the wastewater treatment mesh 12 through the high-speed rotation of the filter drive block 15, and the waste residue remains inside the wastewater treatment tank 25. When the wastewater treatment tank 25 overlaps with the filter tank 101, the water inlet pipe 2 no longer supplies water to the wastewater treatment tank 25 at this location, and the sewage inside the wastewater treatment tank 25 is gradually emptied until the wastewater treatment tank 25 moves to intersect with the slag discharge tank 103. The waste residue is driven by the filter drive leaf 18 to be thrown out and finally falls into the waste residue recovery pipe 13 to be recovered until the wastewater treatment tank 25 overlaps with the water inlet tank 104 again. The next round of slag removal cycle can be carried out, and the automatic recovery of waste residue can be completed as a whole. In addition, the waste residue recovery process and the waste residue separation process are independent of each other, so that the waste residue recovery effect is better.

[0022] Example 5: The transmission shaft of the separating ring driving motor 22 of the present invention is fixedly connected to the separating ring driving shaft 19, the middle part of the separating ring driving shaft 19 is fixedly connected to the separating ring driving gear 23, the middle part of the wastewater separating ring 7 is fixedly connected to the driven gear ring 8, and the separating ring driving gear 23 is meshed with the driven gear ring 8.

[0023] Example 6: The installation steps of the present invention are as follows: insert the wastewater separation ring 7 into the separation ring connection groove 6 of the slag removal bearing shell 1, insert the separation motor mounting platform 21 of the wastewater separation ring 7 into the wastewater treatment tank 11, rotate the filter drive block 15 and the drive shaft mounting block 17 of the wastewater separation ring 7, insert the motor bearing platform 3 into the motor platform positioning groove 20 of the slag removal bearing shell 1, insert the filter drive motor 5 into the motor mounting groove 4 of the motor bearing platform 3, and fix the transmission shaft of the filter drive motor 5 to the filter drive. Block 15, rotatably connect the driving mounting column 16 of the separating ring driving shaft 19 with the driving rod mounting groove 10 of the slag removal supporting shell 1, insert the separating ring driving motor 22 into the separating motor mounting platform 21 of the driving rod mounting platform 9, fix the transmission shaft of the separating ring driving motor 22 to the separating ring driving shaft 19, fix the middle part of the separating ring driving shaft 19 to the separating ring driving gear 23, fix the middle part of the wastewater separating ring 7 to the driven gear ring 8, and make the separating ring driving gear 23 mesh with the driven gear ring 8. The installation of this device is completed.

[0024] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as the scope of protection of the present invention.

Claims

1. An environmentally friendly wastewater treatment and slag removal device, characterized by : It includes a slag removal bearing shell (1), a motor bearing platform (3), a filter drive motor (5), a wastewater separation ring (7), a driven gear ring (8), a filter drive block (15), a separation ring drive shaft (19), a separation ring drive motor (22), and a separation ring drive gear (23). The slag removal bearing shell (1) has a wastewater treatment tank (11) inside, the top of the wastewater treatment tank (11) has a motor platform positioning groove (20), the top of the slag removal bearing shell (1) has a water inlet pipe (2), the water inlet pipe (2) is located on the side of the motor platform positioning groove (20), the surface of the slag removal bearing shell (1) has four groups of wastewater area separation marks (24), the four groups of wastewater area separation marks (24) are evenly arranged around the slag removal bearing shell (1), and the wastewater area separation marks (24) divide the internal space of the wastewater treatment tank (11) into filter areas in a clockwise direction. A water trough (101), a transition trough (102), a slag discharge trough (103), and a water inlet trough (104); a waste slag recovery pipe (13) is provided at the bottom of the slag discharge trough (103); a separation ring connecting groove (6) is provided in the middle of the slag removal bearing shell (1); the separation ring connecting groove (6) is adapted to the wastewater separation ring (7); the separation ring connecting groove (6) is connected to the wastewater separation ring (7); the wastewater separation ring (7) rotates inside the separation ring connecting groove (6); a separation motor mounting platform (21) is provided on the side of the wastewater separation ring (7); four groups of separation motor mounting platforms (21) are evenly arranged around the wastewater separation ring (7); the separation motor mounting platforms (21) are adapted to the wastewater treatment trough (11); the separation motor mounting platforms (21) are connected to the wastewater treatment trough (11); and the separation motor mounting platforms (21) slide inside the wastewater treatment trough (11).

2. The environmentally friendly wastewater treatment and slag removal device according to claim 1 is characterized in that The two adjacent separation motor mounting platforms (21) cooperate with the slag removal bearing shell (1) to form a wastewater treatment tank (25), the top of the wastewater separation ring (7) is provided with a drive shaft mounting block (17), the drive shaft mounting block (17) is evenly arranged between the two adjacent separation motor mounting platforms (21), the bottom of the drive shaft mounting block (17) is provided with a filter drive block (15), the filter drive block (15) is rotatably connected to the drive shaft mounting block (17), the side of the filter drive block (15) is provided with a filter drive leaf (18), the filter drive leaf (18) is evenly arranged around the filter drive block (15), the motor bearing platform (3) is adapted to the motor platform positioning groove (20), and the motor bearing platform (3) is connected to the motor platform positioning groove (20).

3. The environmentally friendly wastewater treatment and slag removal device according to claim 2 is characterized in that The motor bearing platform (3) slides inside the motor platform positioning groove (20), the top of the motor bearing platform (3) is provided with a motor mounting groove (4), the filter drive motor (5) is inserted into the motor mounting groove (4) and fixed, the transmission shaft of the filter drive motor (5) is fixedly connected to the filter drive block (15), the inner side of the separation ring connection groove (6) is provided with a drive rod mounting platform (9), and the middle part of the drive rod mounting platform (9) is provided with a drive rod mounting groove (10).

4. The environmentally friendly wastewater treatment and slag removal device according to claim 3 is characterized in that The driving rod mounting platform (9) is provided with a separation ring driving shaft (19) inside, and driving mounting columns (16) are provided on both sides of the separation ring driving shaft (19), and the driving mounting columns (16) are rotatably connected to the driving rod mounting groove (10). The bottom of the driving rod mounting platform (9) is provided with a separation motor mounting platform (21), and the separation ring driving motor (22) is inserted into the separation motor mounting platform (21) and fixed.

5. The environmentally friendly wastewater treatment and slag removal device according to claim 1 is characterized in that The driving shaft of the separating ring driving motor (22) is fixedly connected to the separating ring driving shaft (19), the middle of the separating ring driving shaft (19) is provided with a separating ring driving gear (23), the middle of the wastewater separating ring (7) is provided with a driven gear ring (8), and the separating ring driving gear (23) is meshed with the driven gear ring (8).

Citation Information

Patent Citations

  • Deslagging device for environment-friendly wastewater treatment

    CN220530783U