A high flux anti-fouling microporous filtration device for processing water

By designing a high-throughput, anti-fouling microporous filtration device, the problems of low filtration efficiency, easy clogging, and difficult maintenance of traditional equipment have been solved, achieving high-throughput filtration and stable operation, and reducing maintenance costs.

CN116920618BActive Publication Date: 2025-12-05YUNNAN HAOZAN BEVERAGE CO LTD
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Patent Information

Application Number
CN202311059387.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-08-22
Publication Date
2025-12-05
Estimated Expiration
2043-08-22

AI Technical Summary

Technical Problem

Traditional equipment suffers from low filtration efficiency, easy clogging, difficult maintenance, and poor continuous and stable operation, making it unable to meet high flow rate processing requirements.

Method used

A high-throughput, anti-fouling microporous filtration device was designed, comprising a preliminary filtration component, a microporous filtration component, and a cleaning scraper. The filter element is automatically replaced through a booster and a sealing arc plate, and the device operates efficiently using a fixed frame structure for the guide tube.

Benefits of technology

It has enabled efficient operation of the equipment, simplified the automation of the equipment and the high-throughput filtration of the equipment, reduced maintenance costs and time, and improved filtration efficiency and stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of filtering equipment, and discloses a high-flux anti-pollution micropore filtering device for processing water, which comprises a preliminary filtering assembly, the top of the preliminary filtering assembly is fixedly provided with a connecting assembly, the top of the connecting assembly is fixedly provided with an upper conical guide pipe one, and the top of the upper conical guide pipe one is fixedly provided with a fixing seat. The setting of the lifting device and the sealing arc plate enables the square groove between the cavity and the storage bin to be sealed, the setting of the arc-shaped clamping plate enables the sealing arc plate to be fixed and sealed, the setting of the lifting gripper enables the filter core in the inner cavity of the cavity to be separated from the filter core at the top through the lifting gripper when the filter core needs to be replaced, the impact force of liquid flow is utilized to make the bottom of the cavity be suspended, the lifting gripper can push the filter core in the inner cavity of the storage groove to the inner cavity of the bottom of the cavity, and the automatic replacement of the filter core is realized.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of filtering equipment, in particular to a high-flux anti-pollution microporous filtering device for processing water. BACKGROUND

[0002] Microporous filtration is a membrane filtration separation technology that has been developed earliest and is widely used. Microporous filtration is used for separating particles of 0.02-10 pm, and the required pressure range of the process is 0.07-0.2 MPa. Microporous filtration can be used to intercept microparticles, bacteria, pollutants and the like from gas and liquid phases, and is a necessary means for ensuring product quality in modern industry.

[0003] The traditional water treatment equipment has the following shortcomings:

[0004] Low filtering efficiency: the filter screen structure used in the traditional equipment is single, and only single-structure filtering effect can be achieved, resulting in low filtering efficiency;

[0005] Prone to blockage: due to the long-time filtering effect of the filtering structure, it is easy to be blocked by pollutants, and frequent cleaning and replacement are required, but the existing equipment needs to be replaced manually;

[0006] Difficult to maintain: the filter screen in the traditional equipment often needs to be disassembled from the entire equipment for cleaning and replacement, which is difficult to maintain and time-consuming and labor-consuming;

[0007] Poor continuous and stable operation: the filtering speed of the traditional equipment is slow, and it cannot meet the high-flow processing requirements, and is easily affected by pollutants to cause unstable operation state, and cannot meet the requirements of maintaining the filtering operation while repairing. SUMMARY

[0008] The present application provides a high-flux anti-pollution microporous filtering device for processing water, which solves the problems raised in the background art.

[0009] The application provides the following technical scheme: a high-flux anti-pollution microporous filtering device for processing water, comprising a preliminary filtering assembly, a connecting assembly is fixedly arranged on the top of the preliminary filtering assembly, an upper conical pipe one is fixedly arranged on the top of the connecting assembly, a fixing seat is fixedly arranged on the top of the upper conical pipe one, a driving motor is fixedly arranged on the top of the fixing seat, a lower conical pipe one is fixedly arranged on the bottom of the preliminary filtering assembly, a flow guide pipe is fixedly arranged on the outer edge of the preliminary filtering assembly, a control valve is fixedly arranged on the outer edge of the flow guide pipe, an upper conical pipe two is fixedly arranged on the end of the flow guide pipe away from the preliminary filtering assembly, a microporous filtering assembly is fixedly arranged on the end of the upper conical pipe two away from the flow guide pipe, a lower conical pipe two is fixedly arranged on the end of the microporous filtering assembly away from the upper conical pipe two, and a parallel outlet pipe is fixedly arranged on the outer edge of the lower conical pipe two; and a cleaning scraper is fixedly arranged on the power output shaft of the driving motor 4.

[0010] Preferably, the connecting assembly comprises an upper connecting plate, an arc-shaped groove is formed in the outer edge of the upper connecting plate, a lower connecting plate is arranged at the bottom of the upper connecting plate, a fixing clamp seat is fixedly arranged at the bottom of the lower connecting plate, a rotating bolt is rotatably connected to the inner wall of the fixing clamp seat, and a nut is threadedly connected to the outer edge of the rotating bolt.

[0011] Preferably, the number of the connecting assemblies is two, and the two connecting assemblies are respectively arranged between the preliminary filtering assembly and the upper conical pipe one and between the microporous filtering assembly and the lower conical pipe two, and the positions of the rotating bolts and the arc-shaped grooves correspond to each other.

[0012] Preferably, the preliminary filtering assembly comprises a shell main body, an overflow pipe is formed in the outer edge of the shell main body, a support frame is fixedly arranged on the bottom inner wall of the shell main body, a filtering ring is arranged on the inner wall of the shell main body, a fixing frame is arranged on the outer edge of the filtering ring, a support clamping plate is clamped to the outer edge of the fixing frame, the overflow pipe is connected to the flow guide pipe, the number of the support clamping plates is several, the several support clamping plates are clamped to the fixing frame, and the number of the filtering rings is several, and the several filtering rings are fixed through the fixing frame and the support clamping plates.

[0013] Preferably, the microporous filter assembly comprises a cavity, the outer edge of the cavity is fixedly provided with a storage bin, the inner wall of the cavity is provided with a fixed shell, the outer edge of the fixed shell is provided with a clamping groove, the inner wall of the fixed shell is inlaid with a filter core body, one side of the cavity is fixedly provided with a telescopic device, the telescopic end of the telescopic device is fixedly provided with a sealing arc plate, the upper and lower inner walls of the storage bin are both fixedly provided with an arc-shaped clamping plate, the inner cavity of the storage bin is provided with a storage groove, the outer edge of the storage bin is fixedly provided with a hinge, the outer edge of the hinge is fixedly provided with a controller, the side of the controller is fixedly provided with a telescopic gripper, and the inner wall bottom of the cavity is provided with a partition frame.

[0014] Preferably, the fixed shell and the filter core body are a group of filter cores, the number of filter cores is several groups, and the several filter cores are arranged in the cavities and the inner cavities of the storage bins respectively, the positions of the arc-shaped clamping plates correspond to the positions of the outer edges of the sealing arc plates, the cavity and the storage bin are provided with a square groove, and the position of the square groove corresponds to the position of the fixed shell close to the upper and lower inner walls of the storage bin, the gripping end of the telescopic gripper corresponds to the position of the clamping groove, and the bottom of the storage bin is inlaid with an electric valve.

[0015] Preferably, the cleaning scraper comprises a rotating shaft, the outer edge of the rotating shaft is fixedly provided with a supporting column, the outer edge of the supporting column is fixedly provided with an adjusting bolt, the outer wall of the adjusting bolt is provided with a straight slot, and the supporting column is provided with a scraper body away from the rotating shaft.

[0016] Preferably, the rotating shaft is fixedly provided with a power output shaft of a driving motor, the distance between the scraper body and the rotating shaft is adjusted through the adjusting bolt, the outer wall of the adjusting bolt is provided with a fixing bolt, the position of the fixing bolt corresponds to the position of the straight slot, and the fixing bolt is fixed, and the outer edge of one side of the scraper body away from the rotating shaft is in contact with the inner wall of the filter ring.

[0017] Preferably, the number of the flow guide pipes is two groups, and the two groups of flow guide pipes are symmetrically arranged on the two sides of the preliminary filter assembly, the number of the microporous filter assemblies is two groups, and the water outlet ends and the water inlet ends of the two groups of microporous filter assemblies are connected through the parallel connection pipes and the flow guide pipes respectively.

[0018] The application has the following beneficial effects:

[0019] 1. The high-flux anti-pollution micro-porous filter device for processing water, by setting the lifting and shrinking device and the sealing arc plate, the square groove opened between the cavity and the storage bin can be sealed, and by setting the arc-shaped clamping plate, the sealing arc plate can be fixed and sealed, by setting the lifting and shrinking gripper, when the filter core in the inner cavity of the cavity needs to be replaced, the filter core at the top can be pulled out through the lifting and shrinking gripper, and then the impact force of liquid flow is used to make the bottom of the cavity suspended, so that the lifting and shrinking gripper can push the filter core in the inner cavity of the storage tank to the bottom inner cavity of the cavity, thereby realizing automatic replacement of the filter core, and when the filter core is automatically replaced, the lifting and shrinking device drives the sealing arc plate to move to cooperate with the lifting and shrinking gripper to realize automatic replacement of the filter core.

[0020] 2. The high-flux anti-pollution micro-porous filter device for processing water, by the overflow pipe, the liquid filtered by the preliminary filter assembly can be discharged through the overflow pipe, by setting the support frame, the filter ring can be supported, and by setting the fixing frame, the filter rings can be fixed, so that the device parts can be replaced in a single structure during maintenance, thereby reducing the cost of device maintenance, and by setting the support clamping plate, the filter ring and the shell main body can be kept stable to avoid the outer edge of the filter ring being attached to the inner wall of the shell main body, thereby reducing the filtering efficiency.

[0021] 3. The high-flux anti-pollution micro-porous filter device for processing water, the number of the flow guide pipes is two groups, and the two groups of flow guide pipes are symmetrically arranged on both sides of the preliminary filter assembly, the number of the micro-porous filter assemblies is two groups, and the water outlet end and the water inlet end of the two groups of micro-porous filter assemblies are connected through the parallel connection pipe and the flow guide pipe, respectively, by using the above-mentioned setting, the device can realize high-speed filtering operation, and when one group of micro-porous filter assemblies is maintained, the other group of micro-porous filter assemblies can operate at low load, so that the device can maintain the running state. BRIEF DESCRIPTION OF DRAWINGS

[0022] Figure 1 It is a schematic diagram of the three-dimensional structure of the present application;

[0023] Figure 2 It is a schematic diagram of the side structure of the present application;

[0024] Figure 3 It is a schematic diagram of the cross-sectional structure of the shell main body of the present application;

[0025] Figure 4 It is a schematic diagram of the structure of the preliminary filter assembly of the present application;

[0026] Figure 5 It is a schematic diagram of the structure of the upper conical pipe of the present application;

[0027] Figure 6 It is a schematic diagram of the structure of the micro-porous filter assembly of the present application;

[0028] Figure 7 For the present application Figure 3 Structure diagram of A in the present application.

[0029] In the figure: 1, preliminary filtering assembly; 101, shell body; 102, overflow pipe; 103, support frame; 104, filter ring; 105, fixing frame; 106, support clamping plate; 2, upper conical guide pipe one; 3, fixing seat; 4, driving motor; 5, lower conical guide pipe one; 6, flow guide pipe; 7, control valve; 8, upper conical guide pipe two; 9, microporous filtering assembly; 901, cavity; 902, storage bin body; 903, fixed shell; 904, clamping groove; 905, filter core body; 906, expansion device; 907, sealing arc plate; 908, arc clamping plate; 909, storage groove; 910, hinge; 911, controller; 912, expansion gripper; 913, partition frame; 10, lower conical guide pipe two; 11, parallel outlet pipe; 12, cleaning scraper; 1201, rotating shaft; 1202, support column; 1203, adjusting bolt; 1204, straight slot; 1205, scraper body; 13, connecting assembly; 1301, upper connecting plate; 1302, arc-shaped groove; 1303, lower connecting plate; 1304, fixing clamping seat; 1305, rotating bolt; 1306, nut. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the present application.

[0031] Please refer to Figures 1-7 A high-flux anti-pollution microporous filtering device for processing water, comprising a preliminary filtering assembly 1, the top of the preliminary filtering assembly 1 is fixedly equipped with a connecting assembly 13, the top of the connecting assembly 13 is fixedly equipped with an upper conical guide pipe one 2, the top of the upper conical guide pipe one 2 is fixedly equipped with a fixing seat 3, the top of the fixing seat 3 is fixedly equipped with a driving motor 4, the bottom of the preliminary filtering assembly 1 is fixedly equipped with a lower conical guide pipe one 5, the outer edge of the preliminary filtering assembly 1 is fixedly equipped with a flow guide pipe 6, the outer edge of the flow guide pipe 6 is fixedly equipped with a control valve 7, the end of the flow guide pipe 6 away from the preliminary filtering assembly 1 is fixedly equipped with an upper conical guide pipe two 8, the end of the upper conical guide pipe two 8 away from the flow guide pipe 6 is fixedly equipped with a microporous filtering assembly 9, the end of the microporous filtering assembly 9 away from the upper conical guide pipe two 8 is fixedly equipped with a lower conical guide pipe two 10, and the outer edge of the lower conical guide pipe two 10 is fixedly equipped with a parallel outlet pipe 11.

[0032] The connecting assembly 13 comprises an upper connecting plate 1301, an arc-shaped groove 1302 is formed in the outer edge of the upper connecting plate 1301, a lower connecting plate 1303 is arranged at the bottom of the upper connecting plate 1301, a fixed clamp seat 1304 is fixedly arranged at the bottom of the lower connecting plate 1303, a rotating bolt 1305 is rotatably connected to the inner wall of the fixed clamp seat 1304, and a nut 1306 is threadedly connected to the outer edge of the rotating bolt 1305.

[0033] It should be noted that the rotating bolt 1305 and the nut 1306 are arranged to fix the upper connecting plate 1301 and the lower connecting plate 1303, and the rotating bolt 1305 is rotatably connected to the fixed clamp seat 1304, so that when the equipment is disassembled, only the nut 1306 needs to be disassembled, the rotating bolt 1305 is rotated, and the rotating bolt 1305 is away from the arc-shaped groove 1302. The above arrangement increases the convenience of equipment installation and disassembly, and reduces the loss rate of parts during equipment disassembly.

[0034] The number of the connecting assembly 13 is two, and the two connecting assemblies 13 are respectively located between the preliminary filtering assembly 1 and the upper conical duct one 2 and between the microporous filtering assembly 9 and the lower conical duct two 10. The positions of the rotating bolt 1305 and the arc-shaped groove 1302 correspond to each other.

[0035] The preliminary filtering assembly 1 comprises a shell main body 101, an overflow pipe 102 is formed in the outer edge of the shell main body 101, a support frame 103 is fixedly arranged on the inner wall of the bottom of the shell main body 101, a filter ring 104 is arranged on the inner wall of the shell main body 101, a fixed frame 105 is arranged on the outer edge of the filter ring 104, a support clamping plate 106 is connected to the outer edge of the fixed frame 105, the overflow pipe 102 is connected to the flow guide pipe 6, the number of the support clamping plate 106 is several, and the several support clamping plates 106 are connected to the fixed frame 105, and the number of the filter ring 104 is several, and the several filter rings 104 are fixed by the fixed frame 105 and the support clamping plate 106.

[0036] It should be noted that the overflow pipe 102 is arranged to discharge the liquid filtered by the preliminary filtering assembly 1, the support frame 103 is arranged to support the filter ring 104, the fixed frame 105 is arranged to fix the several filter rings 104, the single structure of the equipment parts can be replaced during maintenance or replacement, thereby reducing the maintenance cost of the equipment, and the support clamping plate 106 is arranged to keep the filter ring 104 and the shell main body 101 stable, so that the outer edge of the filter ring 104 does not fit the inner wall of the shell main body 101, thereby reducing the filtering efficiency.

[0037] The microporous filter assembly 9 comprises a cavity 901, the outer edge of the cavity 901 is fixedly provided with a storage bin 902, the inner wall of the cavity 901 is provided with a fixed shell 903, the outer edge of the fixed shell 903 is provided with a clamping groove 904, the inner wall of the fixed shell 903 is inlaid with a filter core body 905, one side of the cavity 901 is fixedly provided with a lifting device 906, the lifting end of the lifting device 906 is fixedly provided with a sealing arc plate 907, the upper and lower inner walls of the storage bin 902 are fixedly provided with arc clamping plates 908, the inner cavity of the storage bin 902 is provided with a storage groove 909, the outer edge of the storage bin 902 is fixedly provided with a hinge 910, the outer edge of the hinge 910 is fixedly provided with a controller 911, one side of the inner wall of the storage bin 902 is fixedly provided with a lifting gripper 912, and the inner wall bottom of the cavity 901 is provided with a partition 913.

[0038] The fixed shell 903 and the filter core body 905 are a group of filter cores, the number of filter cores is several groups, and the several filter cores are arranged in the inner cavities of the cavity 901 and the storage bin 902, the positions of the arc clamping plates 908 correspond to the positions of the outer edges of the sealing arc plates 907, a square groove is arranged between the cavity 901 and the storage bin 902, and the position of the square groove corresponds to the position of the fixed shell 903 close to the upper and lower inner walls of the storage bin 902, the gripping end of the lifting gripper 912 corresponds to the position of the clamping groove 904, and the bottom of the storage bin 902 is inlaid with an electric valve.

[0039] It should be noted that the square groove arranged between the cavity 901 and the storage bin 902 can be sealed by arranging the lifting device 906 and the sealing arc plate 907, the sealing arc plate 907 can be fixed and sealed by arranging the arc clamping plate 908, the filter core in the inner cavity of the cavity 901 can be pulled out by the lifting gripper 912 when it needs to be replaced, the bottom of the cavity 901 is suspended by the impact force of liquid flow, and the lifting gripper 912 can push the filter core in the inner cavity of the storage groove 909 to the inner cavity of the bottom of the cavity 901, so that the automatic replacement of the filter core is realized, and when the filter core is automatically replaced, the sealing arc plate 907 is moved by the lifting device 906 to cooperate with the lifting gripper 912 to realize the automatic replacement of the filter core.

[0040] The cleaning scraper 12 comprises a rotating shaft 1201, the outer edge of the rotating shaft 1201 is fixedly provided with a support column 1202, the outer edge of the support column 1202 is fixedly provided with an adjusting bolt 1203, the outer wall of the adjusting bolt 1203 is provided with a straight slot 1204, and the end away from the rotating shaft 1201 of the support column 1202 is provided with a scraper main body 1205.

[0041] The rotation shaft 1201 is fixedly assembled with the power output shaft of the driving motor 4, the scraper main body 1205 is adjusted by the adjusting bolt 1203, the outer wall of the adjusting bolt 1203 is provided with a fixing bolt, the position of the fixing bolt corresponds to the straight slot 1204, and the fixing bolt is fixed, and the outer edge of the side, away from the rotation shaft 1201, of the scraper main body 1205 is in contact with the inner wall of the filter ring 104.

[0042] It should be noted that the scraper main body 1205 is adjusted by the adjusting bolt 1203, so that the outer edge of the side, away from the rotation shaft 1201, of the scraper main body 1205 is in contact with the inner wall of the filter ring 104, and thus when the driving motor 4 drives the cleaning scraper 12 to rotate, the cleaning scraper 12 can clean the inner wall of the filter ring 104.

[0043] The number of the flow guide pipes 6 is two, the two groups of flow guide pipes 6 are symmetrically arranged on the two sides of the preliminary filtering assembly 1, the number of the micro-porous filtering assemblies 9 is two, and the water outlet ends and the water inlet ends of the two groups of micro-porous filtering assemblies 9 are connected by the parallel connection pipe 11 and the flow guide pipe 6 respectively.

[0044] It should be noted that the above arrangement enables the device to realize high-speed filtering operation, and when one group of micro-porous filtering assemblies 9 is being maintained, the other group of micro-porous filtering assemblies 9 can operate at low load, so that the device can maintain the operating state.

[0045] The working principle is that when the device is used, the water is guided into the inner cavity of the preliminary filtering assembly 1 through the upper conical guide pipe 1, the driving motor 4 drives the cleaning scraper 12 to rotate, the scraper main body 1205 is adjusted by the adjusting bolt 1203, so that the outer edge of the side, away from the rotation shaft 1201, of the scraper main body 1205 is in contact with the inner wall of the filter ring 104, and thus when the driving motor 4 drives the cleaning scraper 12 to rotate, the cleaning scraper 12 can clean the inner wall of the filter ring 104, the preliminarily filtered water is guided into the micro-porous filtering assembly 9 through the flow guide pipe 6, the water is further filtered by the filter core, the groove between the cavity 901 and the storage bin 902 is sealed by arranging the lifting device 906 and the sealing arc plate 907, the sealing arc plate 907 is fixed by arranging the arc-shaped clamping plate 908, the sealing arc plate 907 is sealed, the filter core in the inner cavity of the cavity 901 is separated from the top by arranging the lifting gripper 912 when the filter core needs to be replaced, the bottom of the cavity 901 is suspended by the impact force of the liquid flow, the filter core in the inner cavity of the storage tank 909 is pushed to the bottom of the inner cavity of the cavity 901 by the lifting gripper 912, and thus the automatic replacement of the filter core is realized, and when the filter core is automatically replaced, the lifting device 906 drives the sealing arc plate 907 to move to cooperate with the lifting gripper 912 to realize the automatic replacement of the filter core.

[0046] It has to be noted that, in the present document, the terms "first", "second", etc. merely serve to identify different entities or actions from each other, without necessarily requiring or implying any such actual relationship or order between such entities or actions. Moreover, the terms "comprising", "containing", or any other similar term are intended to encompass non-exclusive inclusions, such that a process, method, article, or apparatus that comprises a list of elements does not necessarily include only those elements, but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.

[0047] While embodiments of the present application have been shown and described, it is to be understood that various modifications, substitutions, changes, and alterations can be made by those skilled in the art without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A high flux anti-fouling microporous filtration device for processing water comprising a preliminary filtration assembly (1), characterized in that: The top of the preliminary filtering assembly (1) is fixedly provided with a connecting assembly (13), the top of the connecting assembly (13) is fixedly provided with an upper conical pipe I (2), the top of the upper conical pipe I (2) is fixedly provided with a fixed seat (3), the top of the fixed seat (3) is fixedly provided with a driving motor (4), the bottom of the preliminary filtering assembly (1) is fixedly provided with a lower conical pipe I (5), the outer edge of the preliminary filtering assembly (1) is fixedly provided with a flow guide pipe (6), the outer edge of the flow guide pipe (6) is fixedly provided with a control valve (7), the end, away from the preliminary filtering assembly (1), of the flow guide pipe (6) is fixedly provided with an upper conical pipe II (8), the end, away from the flow guide pipe (6), of the upper conical pipe II (8) is fixedly provided with a microporous filtering assembly (9), the end, away from the upper conical pipe II (8), of the microporous filtering assembly (9) is fixedly provided with a lower conical pipe II (10), the outer edge of the lower conical pipe II (10) is fixedly provided with a parallel outlet pipe (11), and the power output shaft of the driving motor (4) is fixedly provided with a cleaning scraper (12). The preliminary filtering assembly (1) comprises an outer shell body (101), the outer edge of the outer shell body (101) is provided with an overflow pipe (102), the bottom inner wall of the outer shell body (101) is fixedly provided with a support frame (103), the inner wall of the outer shell body (101) is provided with a filter ring (104), the outer edge of the filter ring (104) is provided with a fixing frame (105), the outer edge of the fixing frame (105) is clamped with a support clamping plate (106), the overflow pipe (102) is connected with the flow guide pipe (6), the number of the support clamping plates (106) is several, the several support clamping plates (106) are clamped with the fixing frame (105), the number of the filter rings (104) is several, and the several filter rings (104) are fixed through the fixing frame (105) and the support clamping plate (106). The micro-porous filtering assembly (9) comprises a cavity (901), the outer edge of the cavity (901) is fixedly provided with a storage bin (902), the inner wall of the cavity (901) is provided with a fixed shell (903), the outer edge of the fixed shell (903) is provided with a clamping groove (904), the inner wall of the fixed shell (903) is inlaid with a filter core body (905), one side of the outer wall of the cavity (901) clamped with the storage bin (902) is fixedly provided with a lifting device (906), the lifting end of the lifting device (906) is fixedly provided with a sealing arc plate (907), the upper and lower inner walls of the storage bin (902) are both fixedly provided with an arc clamping plate (908), the inner cavity of the storage bin (902) is provided with a storage groove (909), the outer edge of the storage bin (902) is fixedly provided with a hinge (910), the outer edge of the hinge (910) is fixedly provided with a controller (911), one side of the inner wall of the controller (911) clamped with the storage bin (902) is fixedly provided with a lifting gripper (912), and the inner wall bottom of the cavity (901) is provided with a partition frame (913).

2. A high flux, anti-fouling, micro-porous filtration device for processing water according to claim 1, wherein: The connecting assembly (13) comprises an upper connecting plate (1301), the outer edge of the upper connecting plate (1301) is provided with an arc-shaped groove (1302), the bottom of the upper connecting plate (1301) is provided with a lower connecting plate (1303), the bottom of the lower connecting plate (1303) is fixedly provided with a fixed clamping seat (1304), the inner wall of the fixed clamping seat (1304) is rotatably connected with a rotating bolt (1305), and the outer edge of the rotating bolt (1305) is threadedly connected with a nut (1306).

3. A high flux, anti-fouling, micro-porous filtration device for processing water according to claim 2, wherein: The number of the connecting assembly (13) is two groups, and the two groups of the connecting assembly (13) are located between the primary filtering assembly (1) and the upper conical pipe I (2) and between the micro-porous filtering assembly (9) and the lower conical pipe II (10) respectively, and the positions of the rotating bolt (1305) and the arc-shaped groove (1302) correspond to each other.

4. A high flux, anti-fouling, micro-porous filtration device for processing water according to claim 1, wherein: The fixed shell (903) and the filter core body (905) form a group of filter cores, the number of the filter cores is several groups, and the several filter cores are arranged in the cavities (901) and the inner cavities of the storage bins (902) respectively, the positions of the arc-shaped clamping plates (908) correspond to the positions of the outer edges of the sealing arc plates (907), a square groove is formed between the cavity (901) and the storage bin (902), and the position of the square groove corresponds to the position of the fixed shell (903) close to the inner walls on the upper and lower sides of the storage bin (902), the grasping end of the lifting gripper (912) corresponds to the position of the clamping groove (904), and the bottom of the storage bin (902) is inlaid with an electric valve.

5. A high flux, anti-fouling, micro-porous filtration device for processing water according to claim 1, wherein: The cleaning scraper (12) comprises a rotating shaft (1201), the outer edge of the rotating shaft (1201) is fixedly provided with a supporting column (1202), the outer edge of the supporting column (1202) is fixedly provided with an adjusting bolt (1203), the outer wall of the adjusting bolt (1203) is provided with a straight notch (1204), and the supporting column (1202) is provided with a scraper main body (1205) at the end away from the rotating shaft (1201).

6. A high flux, anti-fouling, micro-porous filtration device for processing water according to claim 5, wherein: The rotating shaft (1201) is fixedly provided with a power output shaft of a driving motor (4), the scraper main body (1205) is adjusted in distance through the adjusting bolt (1203), the outer wall of the adjusting bolt (1203) is provided with a fixing bolt, the position of the fixing bolt corresponds to the straight notch (1204), and the fixing bolt is fixed, and the outer edge of the side, away from the rotating shaft (1201), of the scraper main body (1205) is in contact with the inner wall of the filtering ring (104).

7. A high flux, anti-fouling, micro-porous filtration device for processing water according to claim 1, wherein: The number of the flow guide pipes (6) is two groups, the two groups of flow guide pipes (6) are symmetrically arranged on the two sides of the preliminary filtering assembly (1), the number of the microporous filtering assemblies (9) is two groups, and the water outlet ends and the water inlet ends of the two groups of microporous filtering assemblies (9) are respectively connected through the parallel connecting pipes (11) and the flow guide pipes (6).

Citation Information

Patent Citations

  • Microfiltration method for domestic wastewater

    CN113443731A

  • Hollow ultrafiltration membrane water purifier

    CN213569763U