Integrated scum separation device with self-cleaning function
By introducing exchange and cleaning components into the integrated scum separation device, and utilizing electric telescopic rods and roller brushes to achieve automatic alternation and cleaning of filter plates, the problem of manual cleaning after filter plate clogging is solved, and work efficiency is improved.
Patent Information
- Application Number
- CN202423155580.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-20
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2034-12-20
AI Technical Summary
Existing integrated scum separation devices with self-cleaning functions require manual shutdown and disassembly for cleaning after the filter plates become clogged, which is time-consuming and consumes a lot of manpower and resources, resulting in reduced work efficiency.
The system employs exchange and cleaning components, enabling automatic alternation of filter plates via an electric telescopic rod, and automatically cleaning the filter plates with a roller brush, thus avoiding downtime.
It enables automatic alternation and cleaning of filter plates, improving separation efficiency, reducing manpower and material input, and enhancing overall work efficiency.
Smart Images

Figure CN223570164U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to sewage treatment technical field more specifically, it relates to a scum integrated separation device with self -cleaning function. BACKGROUND
[0002] The scum integrated separation device is a kind of high-efficiency equipment for sewage treatment, and the scum integrated separation device adopts the way of combining physical method and chemical method, and quickly and efficiently separates grease, suspended solids and solid particles in sewage by self-developed high-efficiency separation technology.
[0003] The scum integrated separation device with self-cleaning function is a kind of high-efficiency equipment for treating scum in wastewater or sewage, which combines scum separation and self-cleaning function, can effectively remove scum in water and keep long-term stable operation of the equipment.
[0004] The existing scum integrated separation device with self-cleaning function generally cleans the scraper plate scraped off scum by setting brush and water flushing nozzle, and the design of the existing scum integrated separation device often focuses on efficiency and environmental protection, so as to minimize the waste of water resources as far as possible during design, and some equipment is equipped with a circulating water system to recycle and reuse the wastewater generated during cleaning, thereby further reducing the consumption of water resources, but the water for cleaning the scraper plate contains a high content of suspended solids, which will gradually accumulate on the filter plate during filtration, resulting in increased filtration resistance and eventually clogging the filter plate, and the filter plate in the circulating water device is cleaned by manual method after clogging, but manual cleaning of the filter plate requires shutdown and disassembly, which not only consumes time, but also requires a large amount of manpower and material resources, and at the same time, the overall work efficiency is reduced due to the need for shutdown for cleaning.
[0005] Therefore, in order to solve the above technical problems, the present application provides a scum integrated separation device with self-cleaning function. UTILITY MODEL CONTENTS
[0006] In view of the deficiencies in the prior art, the utility model aims to provide a scum integrated separation device with self-cleaning function.
[0007] In order to achieve the above object, the utility model provides the following technical scheme: A scum integrated separation device with self -cleaning function, including sewage pool and filter plate A, set up exchange component on the sewage pool, exchange component includes electric telescopic handle, the filter plate A is opened in the sewage pool at slide rail, and the sewage pool is installed with electric telescopic handle at the slide rail, the telescopic end of electric telescopic handle is installed with moving link, the end of moving link away from electric telescopic handle is connected with filter plate A, one end of filter plate A is installed with horizontal plate, one end of horizontal plate away from filter plate A is installed with filter plate B, the end of filter plate A and filter plate B away from each other is installed with baffle, and filter plate A and filter plate B are consistent, filter plate A and filter plate B can move in slide rail.
[0008] Preferably, the sewage pool is provided with a cleaning assembly, the cleaning assembly comprises a placing frame, the sewage pool is symmetrically provided with the placing frame at the slide rail, each placing frame is provided with a sliding opening at one end close to the slide rail, the two sliding openings are communicated with the slide rail, two stable plates are mirror installed in the two placing frames, a roller brush is rotatably installed on each stable plate, one end of each roller brush penetrates through the stable plate, a gear is installed at the end of each roller brush penetrating through the stable plate, a rack is installed on the filter plate A and the filter plate B, and each rack is engaged with the gear close to each other, thereby improving the separation efficiency.
[0009] Preferably, two partitions are installed in the sewage pool, the two partitions divide the sewage into a sewage cavity, a scum cavity and a cleaning cavity, the sewage cavity is between the scum cavity and the cleaning cavity, the cleaning cavity is close to the slide rail, and an arc-shaped blocking plate is installed on each partition, thereby facilitating the storage separation.
[0010] Preferably, four supporting plates are symmetrically installed on the sewage pool, a rotating shaft is rotatably installed between each two vertical supporting plates, a conveyor belt is symmetrically installed on the two rotating shafts, and a scraper is jointly installed on the two conveyor belts, thereby facilitating the scum scraping.
[0011] Preferably, a sliding plate is obliquely installed in the cleaning cavity, a sewage outlet is formed in the sewage pool at the low end of the sliding plate, the sewage outlet is communicated with the slide rail, the filter plate A is slidably installed in the slide rail corresponding to the sewage outlet, a water tank is installed on the side of the sewage pool away from the sliding plate, the water tank is communicated with the slide rail, a water pump is installed in the water tank, a water outlet pipe is installed at one end of the water pump, the end of the water outlet pipe away from the water pump penetrates through the water tank and extends into the cleaning cavity, and a plurality of spray pipes are installed at one end of the water outlet pipe in the cleaning cavity, thereby facilitating the pipe flushing.
[0012] Preferably, one of the support plates is provided with a motor, an output end of the motor is provided with a connecting rod, and the connecting rod is connected with the rotating shafts close to each other, so as to facilitate the rotation of the transmission belt.
[0013] Compared with the prior art, the utility model has the following beneficial effects:
[0014] 1、the utility model discloses, through setting the exchange subassembly on the sewage pool, will start electric telescopic pole and make the movement link, when the movement link moves, will take filter plate A and move in the slide rail, and move to the placing frame close to filter plate A simultaneously, when filter plate A moves, will take the transverse board and move, when the transverse board moves, will take filter plate B and move in the slide rail and move to the original filter plate A simultaneously, when filter plate A completely enters the placing frame, filter plate B will be just in the place of original filter plate A at this moment, and the baffle on filter plate B will be pasted on the outside of sewage pool, when filter B needs cleaning, filter plate A and filter plate B are exchanged position through the above-mentioned mode, so that filter plate A and filter plate B are alternately used, thereby solve the problem that the filter plate in the circulating water device in the background art is cleaned by manual mode after being blocked, but the filter plate needs to be stopped and disassembled by manual cleaning, which not only consumes time, but also needs to invest a large amount of manpower and material resources, and the overall working efficiency is reduced because of the need of stopping and cleaning.
[0015] 2、the utility model discloses, through setting the cleaning subassembly on the sewage pool, when needing to clean filter plate A, first when filter plate A enters the placing frame close to completely through the slide, when filter plate A moves, will take the rack and move simultaneously, when filter plate A takes the rack and enters the placing frame and continues to move forward, the rack will make each gear rotate in turn when moving, when each gear rotates, will take each connected cylinder brush and rotate, filter plate A is cleaned when each cylinder brush moves simultaneously, when filter plate B needs cleaning, filter plate B is cleaned through the above-mentioned mode, so that filter plate A or filter plate B is cleaned, and the separation efficiency can be effectively improved. BRIEF DESCRIPTION OF DRAWINGS
[0016] The drawings described herein are used to provide further understanding of the utility model and constitute a part of the application, and the illustrative embodiments of the utility model and the description thereof are used to explain the utility model, and do not constitute improper limitation on the utility model.
[0017] Figure 1 It is the overall structural schematic view of the utility model;
[0018] Figure 2 It is the structural schematic view of the blocking plate in the utility model;
[0019] Figure 3 It is the structure schematic view of filter plate A in the utility model;
[0020] Figure 4 It is the structure schematic view of horizontal plate in the utility model;
[0021] Figure 5 It is the structure schematic view of placing frame in the utility model.
[0022] 1, sewage pool;2, sewage cavity;3, dross cavity;4, cleaning cavity;5, partition;6, sliding plate;7, blocking plate;8, support plate;9, rotating shaft;10, conveyor belt;11, filter plate A;12, water tank;13, water pump;14, water outlet pipe;15, spray pipe;16, motor;17, connecting rod;18, exchange assembly;1801, electric telescopic rod;1802, moving rod;1803, filter plate B;1804, baffle;1805, horizontal plate;1806, sliding rail;19, cleaning assembly;1901, placing frame;1902, sliding port;1903, stabilizing plate;1904, cylinder brush;1905, gear;1906, rack;20, scraper;21, sewage outlet. DETAILED DESCRIPTION
[0023] As Figures 1-5 shown, the utility model provides a dross integrated separation device with self -cleaning function, including sewage pool 1 and filter plate A 11, set up on sewage pool 1 exchange assembly 18, it is used to realize through starting electric telescopic rod 1801 and make moving rod 1802 move, when moving rod 1802 moves will take filter plate A 11 in sliding rail 1806 moves, and moves to the placing frame 1901 close to filter plate A 11 simultaneously, when filter plate A 11 moves will take horizontal plate 1805 and move, when horizontal plate 1805 moves will take filter plate B 1803 and move in sliding rail 1806 and move to the original filter plate A 11 simultaneously, when filter plate A 11 completely enters placing frame 1901, filter plate B 1803 will be just in the place of original filter plate A 11 simultaneously when filter plate B 1803 on baffle 1804 will be attached on sewage pool 1 outside, when filtering B needs cleaning, filter plate A 11 and filter plate B 1803 are exchanged position through above -mentioned mode, to this to reach filter plate A 11 and filter plate B 1803 alternate use, can effectively avoid downtime cleaning, thereby can improve the overall work efficiency;
[0024] The exchange assembly 18 comprises an electric telescopic rod 1801, and a sliding rail 1806 is arranged at the filter plate A11 of the sewage pool 1, which is used to realize the alternate sliding of the filter plate A11 and the filter plate B1803, and the electric telescopic rod 1801 is arranged at the sliding rail 1806 of the sewage pool 1, which is used to realize the function of improving power, the telescopic end of the electric telescopic rod 1801 is provided with a moving rod 1802, which is used to realize the transmission of the filter plate A11, one end of the moving rod 1802 away from the electric telescopic rod 1801 is connected with the filter plate A11, one end of the filter plate A11 is provided with a horizontal plate 1805, which is used to realize the transmission of the filter plate B1803, one end of the horizontal plate 1805 away from the filter plate A11 is provided with the filter plate B1803, which is used to realize the alternate use with the filter plate A11, and is used for filtering, one end of the filter plate A11 and the filter plate B1803 away from each other is provided with a baffle 1804, which is used to realize the limiting function of the filter plate A11 and the filter plate B1803, and the filter plate A11 and the filter plate B1803 are consistent, and the filter plate A11 and the filter plate B1803 can move in the sliding rail 1806, which is used to realize the alternate use.
[0025] The sewage pool 1 is provided with a cleaning assembly 19, which is used to realize that when the filter plate A11 needs to be cleaned, first when the filter plate A11 is completely entered into the adjacent placing frame 1901 through the sliding opening 1902, the rack 1906 installed when the filter plate A11 moves will move at the same time, when the filter plate A11 with the rack 1906 enters the placing frame 1901 and continues to move forward, at this time the moving rack 1906 will make each gear 1905 rotate in turn, when each gear 1905 rotates, it will rotate each connected roller brush 1904, at this time the filter plate A11 moves while each roller brush 1904 cleans the filter plate A11, when the filter plate B1803 needs to be cleaned, the filter plate B1803 will be cleaned by the above-mentioned mode, so as to realize the cleaning of the filter plate A11 or the filter plate B1803, which can effectively improve the separation efficiency;
[0026] The cleaning assembly 19 comprises a placing frame 1901, the sewage tank 1 is symmetrically provided with the placing frame 1901 at the sliding rail 1806, which is used to realize the function of accommodating the filter plate A11 or the filter plate B1803, each placing frame 1901 is provided with a sliding opening 1902 near one end of the sliding rail 1806, which is used to realize the function of facilitating the filter plate A11 or the filter plate B1803 to slide into the corresponding placing frame 1901, the two sliding openings 1902 are communicated with the sliding rail 1806, and the two placing frames 1901 are symmetrically provided with a stabilizing plate 1903, which is used to realize the function of supporting each roller brush 1904, each stabilizing plate 1903 is rotatably provided with a roller brush 1904, which is used to realize the function of cleaning the filter plate A11 and the filter plate B1803, one end of each roller brush 1904 penetrates out of the stabilizing plate 1903, and the end of each roller brush 1904 penetrating out of the stabilizing plate 1903 is provided with a gear 1905, which is used to realize the function of rotating the roller brush 1904, and the filter plate A11 and the filter plate B1803 are provided with a rack 1906, which is used to realize the function of rotating the gear 1905, and each rack 1906 can be engaged with the gear 1905 close to each other.
[0027] The sewage tank 1 is provided with two partitions 5, which are used to realize the function of separation, and the two partitions 5 divide the sewage into the sewage cavity 2, the scum cavity 3 and the cleaning cavity 4, which are used to realize the functions of storing sewage, scum and water for cleaning the scraper 20 respectively, the sewage cavity 2 is between the scum cavity 3 and the cleaning cavity 4, which is used to realize the function of facilitating the scum in the sewage cavity 2 to be scraped into the scum cavity 3 by the scraper 20, the cleaning cavity 4 is close to the sliding rail 1806, which is used to realize the function of facilitating the water for cleaning the scraper 20 to flow to the sewage outlet 21, and the two partitions 5 are provided with an arc-shaped blocking plate 7, which is used to realize the function of blocking the sewage in the sewage tank 1 from flowing into the cleaning cavity 4 and the scum cavity 3.
[0028] The sewage tank 1 is symmetrically provided with four supporting plates 8, and each two vertical supporting plates 8 are rotatably provided with a rotating shaft 9, which is used to realize the function of driving the conveyor belt 10, the two rotating shafts 9 are symmetrically provided with a conveyor belt 10, which is used to realize the function of moving the scraper 20, and the two conveyor belts 10 are jointly provided with a scraper 20, which is used to realize the function of scraping off the scum.
[0029] The inclined slide plate 6 is arranged in the cleaning cavity 4, which is used to convey the sewage of the cleaning scraper 20. The sewage pool 1 is provided with a sewage outlet 21 at the low end of the slide plate 6, which is used to convey the sewage of the cleaning scraper 20 to the filter plate A11 or the filter plate B1803. The sewage outlet 21 is communicated with the slide rail 1806. The filter plate A11 is slidably arranged in the slide rail 1806 corresponding to the sewage outlet 21. The water tank 12 is arranged on the side of the sewage pool 1 away from the slide plate 6, which is used to store clean water. The water tank 12 is communicated with the slide rail 1806. The water pump 13 is arranged in the water tank 12, which is used to pump the water in the water tank 12. The water outlet pipe 14 is arranged at one end of the water pump 13, which is used to convey the water in the water tank 12 to each spray pipe 15. The water outlet pipe 14 extends into the cleaning cavity 4 through the water tank 12. The plurality of spray pipes 15 are arranged at one end of the cleaning cavity 4, which are used to spray the water in the water tank 12 to the cleaning scraper 20.
[0030] The motor 16 is arranged on one of the support plates 8, which is used to provide power. The output end of the motor 16 is provided with the connecting rod 17, which is connected with the rotating shaft 9 close to each other, which is used to transmit power.
[0031] Working principle: when the filter plate A11 needs to be cleaned, the electric telescopic rod 1801 is started to move the moving rod 1802. When the moving rod 1802 moves, the filter plate A11 moves in the slide rail 1806 and moves into the placing frame 1901 close to the filter plate A11. When the filter plate A11 moves, the horizontal plate 1805 moves, which moves the filter plate B1803 in the slide rail 1806 and moves to the original position of the filter plate A11. When the filter plate A11 completely enters the placing frame 1901, the filter plate B1803 is just in the original position of the filter plate A11. At the same time, the baffle 1804 on the filter plate B1803 is attached to the outside of the sewage pool 1. When the filter plate B1803 needs to be cleaned, the filter plate A11 and the filter plate B1803 are exchanged by the above method, so that the filter plate A11 and the filter plate B1803 are used alternately.
[0032] When the filter plate A11 needs to be cleaned, first, when the filter plate A11 is completely entered into the close placing frame 1901 through the sliding opening 1902, the filter plate A11 will move with the installed rack 1906 when the filter plate A11 moves, when the filter plate A11 enters the placing frame 1901 with the rack 1906 and continues to move forward, at this time, the moving rack 1906 will make each gear 1905 rotate in turn, when each gear 1905 rotates, it will rotate each connected roller brush 1904, at this time, the filter plate A11 will be cleaned by each roller brush 1904 while moving, when the filter plate B1803 needs to be cleaned, the filter plate B1803 will be cleaned by the above-mentioned way.
[0033] The above is only a preferred embodiment of the present application, and does not limit the present application in any form; any person skilled in the art can easily implement the present application according to the drawings and the above description; however, any equivalent changes, modifications and evolutions made by those skilled in the art within the scope of the technical scheme of the present application, using the above disclosed technical content, are equivalent embodiments of the present application; at the same time, any equivalent changes, modifications and evolutions made according to the essential technology of the present application to the above embodiments are still within the protection scope of the technical scheme of the present application.
Claims
1. A scum separation device with self-cleaning function, comprising a sewage tank (1) and a filter plate A (11), characterized in that: An exchange assembly (18) is installed on the sewage tank (1). The exchange assembly (18) includes an electric telescopic rod (1801). A slide rail (1806) is provided at the filter plate A (11) of the sewage tank (1), and the electric telescopic rod (1801) is installed at the slide rail (1806) of the sewage tank (1). A moving rod (1802) is installed at the telescopic end of the electric telescopic rod (1801). The end of the moving rod (1802) away from the electric telescopic rod (1801) is connected to the filter plate A (11). 11) Connected, a horizontal plate (1805) is installed at one end of the filter plate A (11), and a filter plate B (1803) is installed at the end of the horizontal plate (1805) away from the filter plate A (11). Baffles (1804) are installed at the ends of the filter plates A (11) and B (1803) that are away from each other. The filter plates A (11) and B (1803) are identical, and both the filter plates A (11) and B (1803) can move within the slide rail (1806).
2. The integrated scum separation device with self-cleaning function according to claim 1, characterized in that: A cleaning assembly (19) is provided on the sewage tank (1). The cleaning assembly (19) includes a placement frame (1901). The placement frames (1901) are symmetrically installed on the sewage tank (1) at the slide rail (1806). Each placement frame (1901) has a sliding opening (1902) at one end near the slide rail (1806). Both sliding openings (1902) are connected to the slide rail (1806). A stabilizing plate (1903) is mirror-installed in both placement frames (1901). Each of the stabilizing plates (1903) is rotatably mounted with a roller brush (1904), one end of each roller brush (1904) extends through the stabilizing plate (1903), and a gear (1905) is mounted on one end of each roller brush (1904) extending through the stabilizing plate (1903). Both the filter plate A (11) and the filter plate B (1803) are mounted with racks (1906), and each rack (1906) can mesh with the gears (1905) that are close to each other.
3. The integrated scum separation device with self-cleaning function according to claim 2, characterized in that: The sewage tank (1) is equipped with two partitions (5), which divide the sewage into a sewage chamber (2), a scum chamber (3) and a cleaning chamber (4). The sewage chamber (2) is located between the scum chamber (3) and the cleaning chamber (4). The cleaning chamber (4) is located near the slide rail (1806). Both partitions (5) are equipped with arc-shaped baffles (7).
4. The integrated scum separation device with self-cleaning function according to claim 3, characterized in that: Four support plates (8) are symmetrically installed on the sewage tank (1). A rotating shaft (9) is rotatably installed between every two vertical support plates (8). A conveyor belt (10) is symmetrically installed on the two rotating shafts (9). A scraper (20) is installed on both conveyor belts (10).
5. The integrated scum separation device with self-cleaning function according to claim 4, characterized in that: A sliding plate (6) is installed at an incline inside the cleaning chamber (4). A sewage outlet (21) is opened at the lower end of the sewage tank (1) on the sliding plate (6). The sewage outlet (21) is connected to the slide rail (1806). A filter plate A (11) is slidably installed in the slide rail (1806) corresponding to the sewage outlet (21). A water tank (12) is installed on the side of the sewage tank (1) away from the sliding plate (6) on the slide rail (1806). The water tank (12) is connected to the slide rail (1806). A water pump (13) is installed inside the water tank (12). A water outlet pipe (14) is installed at one end of the water pump (13). The end of the water outlet pipe (14) away from the water pump (13) passes through the water outlet tank (12) and extends into the cleaning chamber (4). Multiple spray pipes (15) are installed at the end of the water outlet pipe (14) in the cleaning chamber (4).
6. The integrated scum separation device with self-cleaning function according to claim 5, characterized in that: One of the support plates (8) is equipped with a motor (16), and a connecting rod (17) is installed at the output end of the motor (16). The connecting rod (17) is connected to a rotating shaft (9) that is close to each other.