Integrated pore plate membrane grating water filtering device
By introducing a flushing component and a circulation component into the integrated orifice membrane grid water filtration device, automatic cleaning of the brush and recycling of water are achieved, solving the problem of poor cleaning effect after the brush becomes dirty, improving work efficiency and saving water resources.
Patent Information
- Application Number
- CN202422625654.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-30
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2034-10-30
AI Technical Summary
In the existing integrated perforated plate membrane grid water filtration device, when the brush becomes dirty, the dirt is difficult to remove, and frequent replacement of the brush increases the workload and reduces work efficiency.
A device including a flushing component and a circulation component was designed. The forward and reverse screws were driven by a motor to move the support frame closer to form a closed space. Clean water was sprayed with a spray gun to clean the brush, and the circulation component was used to filter and recycle the wastewater, thus realizing automatic cleaning of the brush and recycling of water.
It effectively avoids the transfer of dirt on the brush surface, improves cleaning efficiency, reduces the frequency of manual cleaning and brush replacement, and saves water resources.
Smart Images

Figure CN223416863U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of orifice plate membrane grilles, and more specifically, to an integrated orifice plate membrane grille water filtering device. Background Art
[0002] An integrated orifice plate membrane grille water filtration device. The integrated orifice plate membrane grille can effectively remove impurities in sewage, improve water quality, and provide good conditions for subsequent treatment processes. In short, the integrated orifice plate membrane grille is a water filtration equipment with excellent performance and wide application. It is of great significance to improving the utilization efficiency of water resources and protecting the environment.
[0003] The integrated perforated plate membrane grid water filtration device is an advanced water treatment device that integrates multiple functions into a single system, primarily used for wastewater treatment and solid-liquid separation. During operation, wastewater enters the device through the water inlet and is filtered by the non-metallic filter screen, where larger solid particles are intercepted. As the traction chain moves, the filter screen, laden with impurities, gradually moves to the slag removal and conveying mechanism, where the impurities are removed and transported away. Simultaneously, the slag removal mechanism processes the removed impurities, reducing the burden of subsequent processing. The filtered water is discharged from the device's outlet, achieving solid-liquid separation and water purification.
[0004] Existing integrated orifice plate membrane grid water filtration devices generally use the backwash method, which is one of the most commonly used cleaning methods. In some cases, mechanical means are also used to assist cleaning. By installing mechanical devices such as rotating brushes or scrapers near the filter membrane, dirt and sediment on the membrane surface are removed by physical friction. This method is better for removing more stubborn stains and sediments. However, after using a brush for cleaning for a long time, the brush will become dirty and a large amount of dirt and impurities will adhere to its surface. These dirts are not only difficult to effectively remove the target pollutants during the cleaning process, but may transfer their own dirt to the orifice plate or membrane, resulting in a greatly reduced cleaning effect. At this time, the operator needs to frequently clean the brush or replace it with a new one, which reduces work efficiency. In addition, the operator's frequent replacement of new brushes will increase the workload.
[0005] Therefore, in order to solve the above technical problems, the present application proposes an integrated perforated plate membrane grid water filtration device. Utility Model Content
[0006] In view of the shortcomings of the existing technology, the purpose of the present invention is to provide an integrated perforated plate membrane grid water filtration device.
[0007] To achieve the above-mentioned purpose, the present invention provides the following technical solutions: an integrated orifice plate membrane grid water filtration device, comprising a main body, and further comprising: a flushing assembly arranged on the inner side of the main body, the flushing assembly comprising a support plate, the inner side surface of the main body being mounted with the support plate, the support plate being mounted with a motor C, the output end of the motor C being mounted with a forward and reverse screw rod and passing through the support plate, support frames being mounted on the forward and reverse screw rods at both the forward and reverse ends, and a baffle being mounted on the end of the forward and reverse screw rods away from the motor, and barrier plates being mounted at both ends of each support frame;
[0008] A water storage tank is installed on one of the support frames, and a plurality of spray guns are installed on the support frame where the water storage tank is located. Each of the spray guns is connected to the water storage tank through a water pumping pipe, and a water filling port is opened on the water storage tank.
[0009] Preferably, a circulation component is provided on the support frame where the water storage tank is located, and the circulation component includes a water leakage port, and each of the support frames is provided with a plurality of water leakage ports;
[0010] A sewage tank is installed on the support frame where the water storage tank is located. A plurality of water inlet holes corresponding to each water leakage port are opened on one side of the sewage tank corresponding to the support frame, and a slide is installed in the sewage tank. The slide is installed in the sewage tank in an inclined state. A clean water tank is installed on one side of the sewage tank, and a sieve plate is installed between the sewage tank and the clean water tank. The lower end of the slide is connected to the sieve plate. A water pump is installed in the clean water tank, and a water inlet pipe is installed at one end of the water pump. The end of the water inlet pipe away from the water pump passes through the clean water tank and extends into the water storage tank, so as to facilitate the recycling of water and save water resources.
[0011] Preferably, a motor A is installed on the outside of the main body, and a support rod is installed on the output end of the motor A. The support rod passes through the inside of the main body and can rotate on the main body. A sprocket is installed on the support rod in a mirror image, and each sprocket is installed with a chain. A plurality of filter mesh plates are installed between the two chains. Each filter mesh plate can rotate in the main body following the chain, so as to facilitate the filtering of sewage.
[0012] Preferably, a water inlet is provided on one side of the main body to facilitate the entry of sewage.
[0013] Preferably, a cleaning assembly is provided on one side of the main body corresponding to the support plate, and the cleaning assembly includes a motor B. The motor B is installed on the outside of the main body, and a support arm is installed on the output end of the motor B. The support arm extends into the main body and can rotate on the main body. A brush is installed in a mirror image at the end of the support arm away from the motor B. The brush can contact the filter mesh plate, which facilitates the alternating use of the brush to improve work efficiency.
[0014] Preferably, the two support frames and the blocking plates on the two support frames can be combined into a closed space, the water storage tank, the sewage tank and the clean water tank can slide on the other support frame, and the brush can move between the two support frames, so that the sewage is collected.
[0015] Preferably, each water leakage hole is in communication with a corresponding water inlet hole, so that the sewage is transported.
[0016] Compared with the prior art, the utility model has the following beneficial effects:
[0017] 1、 the utility model discloses a flushing assembly is set up on the main part, and the starting motor C makes the positive and negative screw rod rotate, at this time, two support frames will slowly approach until the two support frames and the blocking plate on the support frame contact each other, at this time, a closed space is formed, and the dirty brush is in the closed space formed by the two support frames, then the lance is started, then the water suction pipe will suck the clean water in the water storage tank, and then spray the dirty brush from the lance, so that the dirty brush is cleaned, thereby solving the problem that the surface of the brush is attached with a large amount of dirt and impurities after the brush is dirty in the background art, the dirt is difficult to effectively remove the target pollutants in the cleaning process, but the dirt can be transferred to the orifice plate or the membrane, so that the cleaning effect is greatly reduced, at this time, the operator needs to frequently clean the brush or replace a new brush, thereby reducing the work efficiency, and the operator frequently replaces the new brush, which increases the work burden.
[0018] 2、 the utility model discloses a circulating assembly is set up on the support frame, when the closed space formed by the two support frames cleans the dirty brush, at this time, the sewage generated when the brush is cleaned will come to the sewage tank from the water leakage hole through the water inlet hole, then the sewage will flow to the sieve plate through the sliding plate, then the sieve plate filters the sewage, the clean water after filtering will flow into the clean water tank, then the clean water is sucked into the water inlet pipe through the water pump, then the water of the workpiece will flow into the water storage tank from the water inlet pipe, so that the water is recycled, and water resources can be effectively saved. BRIEF DESCRIPTION OF DRAWINGS
[0019] 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.
[0020] Figure 1 It is the structure schematic view of the utility model whole;
[0021] Figure 2 It is the structure schematic view of the main part in the utility model;
[0022] Figure 3 This is a structural diagram of the water storage tank in the utility model;
[0023] Figure 4 This is a structural diagram of a cross-sectional view of a sewage tank in the present invention.
[0024] 1. Main body; 2. Motor A; 3. Support rod; 4. Sprocket; 5. Chain; 6. Filter grid plate; 7. Water inlet; 8. Cleaning assembly; 801. Motor B; 802. Support arm; 803. Brush; 9. Flushing assembly; 901. Support plate; 902. Motor C; 903. Forward and reverse screw rods; 904. Support frame; 905. Baffle; 906. Blocking plate; 907. Water storage tank; 908. Suction pipe; 909. Spray gun; 910. Water filling port; 10. Circulation assembly; 1001. Leakage port; 1002. Water inlet hole; 1003. Sewage tank; 1004. Slide plate; 1005. Clean water tank; 1006. Sieve plate; 1007. Water pump; 1008. Water inlet pipe. DETAILED DESCRIPTION
[0025] like Figure 1-4As shown, the utility model provides an integrated orifice plate membrane grid water filtration device, including a main body 1, and also including: a flushing component 9 arranged on the inner side of the main body 1, which is used to realize the cleaning of the brush 803 by placing it between two support frames 904, and then starting the motor C902 to rotate the forward and reverse screw rods 903. At this time, the two support frames 904 and the blocking plates 906 on the support frames 904 will approach each other until they contact each other and form a closed space, and then the spray gun 909 draws clean water from the water storage tank 907 through the water suction pipe 908, and then the spray gun 909 sprays the clean water to the dirty brush 803, so as to clean the brush 803, thereby avoiding the operator from frequently cleaning the brush 80 3 or replace the new brush 803, which can effectively improve work efficiency and reduce the workload of the staff. The flushing component 9 includes a support plate 901. The support plate 901 is installed on the inner side of the main body 1, which is used to support the motor C902. The motor C902 is installed on the support plate 901, which is used to provide power to the positive and negative screw rods 903. The output end of the motor C902 is installed with the positive and negative screw rods 903 and passes through the support plate 901, which is used to make the two support frames 904 approach to each other and move away from each other. The positive and negative screw rods 903 are both installed with support frames 904 at the positive and negative ends, which are used to support and cooperate with each other to form a closed space, and the positive and negative screw rods A baffle 905 is installed at the end of 903 away from the motor, which is used to prevent the support frame 904 away from the motor from separating from the screw rod when moving. Blocking plates 906 are installed at both ends of each support frame 904, which are used to cooperate with each other to form a closed space to prevent water from flowing out. A water storage tank 907 is installed on one of the support frames 904, which is used to store clean water. A plurality of spray guns 909 are installed on the support frame 904 where the water storage tank 907 is located, which are used to spray clean water onto the dirty brush 803. Each spray gun 909 is connected to the water storage tank 907 by a water pump 908, which is used to transport the water in the water storage tank 907. A water inlet 910 is provided on the water storage tank 907, which is used to add water to the water storage tank 907. The two support frames 904 and the baffles 906 on the two support frames 904 can cooperate with each other to form a closed space, which is used to collect the water sprayed by the spray gun 909 to the dirty brush 803. The water storage tank 907, the sewage tank 1003 and the clean water tank 1005 can slide on another support frame 904, which is used to ensure that the two support frames 904 can cooperate smoothly and the brush 803 can move between the two support frames 904, which is used to ensure that the brush 803 can smoothly come in for cleaning and the brush 803 can smoothly leave.
[0026] The support frame 904 where the water storage tank 907 is located is provided with a circulating assembly 10, which is used to realize that the sewage generated by the cleaning brush 803 will flow into the sewage tank 1003 from the water leakage hole 1001 through the water inlet hole 1002, and then the sewage will flow to the sieve plate 1006 through the sliding plate 1004, and then the sieve plate 1006 filters the sewage, and then the clean water after filtration will flow into the clean water tank 1005, and then the clean water will be sucked into the water inlet pipe 1008 through the water pump 1007, and then the water of the workpiece will flow into the water storage tank 907 from the water inlet pipe 1008, so as to realize the recycling of water, which can effectively save water resources. The circulating assembly 10 comprises the water leakage hole 1001, a plurality of water leakage holes 1001 are formed in each support frame 904, which is used to realize the function of conveying the sewage in the two support frames 904 to the water inlet hole 1002. The support frame 904 where the water storage tank 907 is located is provided with a sewage tank 1003, which is used to realize the function of storing sewage. A plurality of water inlet holes 1002 corresponding to each water leakage hole 1001 are formed in one side of the sewage tank 1003 corresponding to the support frame 904, which is used to realize the function of transmission. The sewage tank 1003 is provided with a sliding plate 1004. The sliding plate 1004 is installed in the sewage tank 1003 in an inclined manner, which is used to realize the function of concentrating the flow of all sewage to the sieve plate 1006. One side of the sewage tank 1003 is provided with a clean water tank 1005, which is used to store the water filtered by the sieve plate 1006. The sieve plate 1006 is installed between the sewage tank 1003 and the clean water tank 1005, which is used to realize the function of filtering the water in the sewage tank 1003. The low end of the sliding plate 1004 is connected to the sieve plate 1006, which is used to realize the function of concentrating the sewage to the sieve plate 1006. The water pump 1007 is installed in the clean water tank 1005. One end of the water pump 1007 is provided with a water inlet pipe 1008. The end of the water inlet pipe 1008 away from the water pump 1007 penetrates the clean water tank 1005 and extends into the water storage tank 907, which is used to realize the function of conveying the water in the clean water tank 1005 to the water storage tank 907 through the water pump 1007 and the water inlet pipe 1008, so as to realize the function of recycling water. Each water leakage hole 1001 is in communication with the corresponding water inlet hole 1002, which is used to realize the function of conveying sewage.
[0027] The motor A2 is installed outside the main body 1, which is used to realize the function of driving the support rod 3. The output end of the motor A2 is provided with the support rod 3, which is used to realize the functions of support and transmission. The support rod 3 penetrates into the inside of the main body 1 and can rotate on the main body 1. The support rod 3 is provided with the chain wheel 4 in mirror image. Each chain wheel 4 is provided with the chain 5, which is used to realize the function that the chain 5 can rotate with the chain wheel 4. A plurality of filter grid plates 6 are installed between the two chains 5, which are used to realize the function of filtering sewage. Each filter grid plate 6 can rotate in the main body 1 with the chain 5. The main body 1 is provided with the water inlet 7 on one side, which is used to realize the function of entering the sewage.
[0028] A cleaning component 8 is provided on the side of the main body 1 corresponding to the support plate 901, which is used to realize the rotation of the support arm 802 by starting the motor B801. The rotation of the support arm 802 rotates the two brushes 803, thereby realizing alternating work and effectively improving work efficiency. The cleaning component 8 includes a motor B801, and a motor B801 is installed on the outside of the main body 1, which is used to realize the effect of power on the support arm 802. The output end of the motor B801 is installed with a support arm 802, which is used to realize the function of support and transmission. The support arm 802 extends into the main body 1 and can rotate on the main body 1. The end of the support arm 802 away from the motor B801 is mirror-mounted with a brush 803, and the brush 803 can contact the filter mesh plate 6, which is used to realize the function of the brush 803 to clean the filter mesh plate 6.
[0029] Working principle: When the brush 803 needs to be cleaned, the motor B801 is first started to rotate the support arm 802, and then the dirty brush 803 will rotate between the two support frames 904, and then the clean brush 803 will rotate to the filter mesh plate 6 to continue working, and then the motor C902 is started to rotate the forward and reverse screw rods 903. At this time, the two support frames 904 will slowly approach each other until the two support frames 904 and the barrier plate 906 on the support frames 904 contact each other, and a barrier will be formed. A closed space, and the dirty brush 803 will be in the closed space formed by the two support frames 904, and then the spray gun 909 will be started, and the water pipe 908 will absorb the clean water in the water tank, and then spray it from the spray gun 909 to the dirty brush 803, so as to clean the dirty brush 803. When the cleaning is completed, the motor C902 will be started again to rotate the forward and reverse screw rods 903, and then the two support frames 904 will slowly separate until the support frame 904 close to the baffle 905 and the baffle 905 are separated. 05 contact, at this time the openings opened by the two support frames 904 will allow the brush 803 to pass through, at this time the motor B801 will be started to rotate the support arm 802, the rotation of the support arm 802 will bring the cleaned brush 803 back to the filter grid plate 6, and at the same time the dirty brush 803 will be back between the two support frames 904, and then the dirty brush 803 will be cleaned by the above method. When the closed space formed by the two support frames 904 cleans the dirty brush 803, the clean brush 803 will be The generated sewage will flow from the leaking port 1001 through the water inlet 1002 into the sewage tank 1003, and then the sewage will flow through the slide plate 1004 to the sieve plate 1006, and then the sieve plate 1006 will filter the sewage. After filtration, the clean water will flow into the clean water tank 1005, and then the clean water will be sucked into the water inlet pipe 1008 by the water pump 1007. Then, the water in the workpiece will flow from the water inlet pipe 1008 into the water storage tank 907, so as to achieve the recycling of water and effectively save water resources.
[0030] The above description is only a preferred embodiment of the present invention and does not constitute any form of limitation to the present invention. Any ordinary technician in this industry can smoothly implement the present invention as shown in the drawings and described above. However, any equivalent changes, modifications and evolutions made by technicians familiar with this profession without departing from the scope of the technical solution of the present invention using the technical content disclosed above are all equivalent embodiments of the present invention. At the same time, any equivalent changes, modifications and evolutions made to the above embodiments based on the essential technology of the present invention are still within the scope of protection of the technical solution of the present invention.
Claims
1. An integrated perforated plate membrane grid water filtration device, comprising a main body (1), characterized in that: Also includes: A flushing assembly (9) is arranged on the inner side of the main body (1), and the flushing assembly (9) includes a support plate (901). The support plate (901) is installed on the inner side of the main body (1), and a motor C (902) is installed on the support plate (901). The output end of the motor C (902) is installed with a forward and reverse screw rod (903) and passes through the support plate (901). Support frames (904) are installed at the forward and reverse ends of the forward and reverse screw rod (903), and a baffle (905) is installed at the end of the forward and reverse screw rod (903) away from the motor. A blocking plate (906) is installed at both ends of each support frame (904); A water storage tank (907) is installed on one of the support frames (904), and a plurality of spray guns (909) are installed on the support frame (904) where the water storage tank (907) is located. Each spray gun (909) is connected to the water storage tank (907) via a water pumping pipe (908), and a water filling port (910) is provided on the water storage tank (907).
2. The integrated perforated plate membrane grid water filtration device according to claim 1, characterized in that: A circulation component (10) is provided on the support frame (904) where the water storage tank (907) is located. The circulation component (10) includes a water leakage port (1001). Each support frame (904) is provided with a plurality of water leakage ports (1001). A sewage tank (1003) is installed on the support frame (904) where the water storage tank (907) is located. A plurality of water inlet holes (1002) corresponding to each water leakage opening (1001) are opened on one side of the sewage tank (1003) corresponding to the support frame (904). A slide plate (1004) is installed in the sewage tank (1003). The slide plate (1004) is installed in the sewage tank (1003) in an inclined manner. A clean water tank (1003) is installed on one side of the sewage tank (1003). 05), and a sieve plate (1006) is installed between the sewage tank (1003) and the clean water tank (1005), the lower end of the slide plate (1004) is connected to the sieve plate (1006), a water pump (1007) is installed in the clean water tank (1005), one end of the water pump (1007) is installed with a water inlet pipe (1008), and the end of the water inlet pipe (1008) away from the water pump (1007) passes through the clean water tank (1005) and extends into the water storage tank (907).
3. The integrated perforated plate membrane grid water filtration device according to claim 1, characterized in that: A motor A (2) is installed on the outside of the main body (1), and a support rod (3) is installed on the output end of the motor A (2). The support rod (3) passes through the inside of the main body (1) and can rotate on the main body (1). A sprocket (4) is installed on the support rod (3) in a mirror image. A chain (5) is installed on each of the sprockets (4). A plurality of filter grid plates (6) are installed between two of the chains (5). Each of the filter grid plates (6) can rotate in the main body (1) following the chain (5).
4. The integrated perforated plate membrane grid water filtration device according to claim 3, characterized in that: A water inlet (7) is provided on one side of the main body (1).
5. The integrated perforated plate membrane grid water filtration device according to claim 4, characterized in that: A cleaning assembly (8) is provided on a side of the main body (1) corresponding to the support plate (901), and the cleaning assembly (8) includes a motor B (801). The motor B (801) is installed on the outside of the main body (1), and a support arm (802) is installed at the output end of the motor B (801). The support arm (802) extends into the main body (1) and can rotate on the main body (1). A brush (803) is installed in a mirror image at one end of the support arm (802) away from the motor B (801), and the brush (803) can contact the filter mesh plate.
6. The integrated perforated plate membrane grid water filtration device according to claim 5, characterized in that: The two support frames (904) and the blocking plates (906) on the two support frames (904) can cooperate with each other to form a closed space, the water storage tank (907), the sewage tank (1003) and the clean water tank (1005) can slide on the other support frame (904), and the brush (803) can move between the two support frames (904).
7. The integrated perforated plate membrane grid water filtration device according to claim 2, characterized in that: Each of the water leakage openings (1001) is interconnected with the corresponding water inlet hole (1002).