Integrated ultra-magnetic microfiltration system equipment
By designing integrated ultra-magnetic microfiltration system equipment, using outriggers, clamping components and connecting components, the cumbersome problems of water treatment equipment are solved, the equipment is simple to install and repair, and subsequent maintenance operations are facilitated.
Patent Information
- Application Number
- CN202421590259.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-08
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2034-07-08
AI Technical Summary
The installation and disassembly of existing water treatment equipment is cumbersome, and it is difficult for non-professional personnel to carry out efficiently, which affects the convenience of maintenance and repair.
An integrated ultra-magnetic microfiltration system equipment is designed, including a super-magnetic microfiltration device housing, a micro-filtration water processor, a sedimentation box, a magnetic drum, an intelligent control screen and a pipeline assembly. Through the combination of legs, clamping components, sliding components, fixed components and connecting components, the equipment is easily installed and disassembled.
It improves the installation efficiency and maintenance convenience of the equipment, facilitates subsequent maintenance and repair operations, and enhances practicality.
Smart Images

Figure CN223060767U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of auxiliary devices of water treatment equipment, in particular to an integrated supermagnetic microfiltration system equipment. Background Technique
[0002] The microfiltration membrane can intercept particles between 0.1 and 1 micron. The microfiltration membrane allows macromolecules and dissolved solids (inorganic salts) etc. to pass through, but will intercept suspended solids, bacteria, and macromolecular colloids and other substances. The operating pressure of the microfiltration membrane is generally: 0.3 - 7 bar. Microfiltration membrane filtration is the earliest developed and applied membrane technology in the world. Using natural or synthetic high molecular compounds as membrane materials, the microfiltration membrane has a very wide range of applications. Some household water purifiers use the microfiltration membrane for purification. The magnetic microfiltration membrane method is to use magnetism in cooperation with the microfiltration membrane to complete better and deeper purification. The installation and disassembly processes of some existing water treatment equipment are too cumbersome, and it is difficult for non-professional installers to install, and the installation efficiency is low. Therefore, a magnetic microfiltration membrane method water treatment equipment is proposed to solve the problem that the installation and disassembly processes of some existing water treatment equipment are too cumbersome. Content of the Utility Model
[0003] In order to solve the above technical problems, the utility model provides an integrated supermagnetic microfiltration system equipment which is convenient for installation and disassembly, so as to facilitate maintenance and repair, thereby enhancing practicability.
[0004] The integrated supermagnetic microfiltration system equipment of the utility model includes a supermagnetic microfiltration device housing, a microfiltration water processor, a sedimentation tank, a magnetic rotating cylinder, an intelligent control screen, a third pipeline and a fourth pipeline. Four groups of legs are arranged at the bottom end of the supermagnetic microfiltration device housing. A chamber is arranged at the rear end of the supermagnetic microfiltration device housing. A cover plate assembly is arranged at the rear end of the supermagnetic microfiltration device housing. The bottom end of the chamber is clamped with the microfiltration water processor through a clamping assembly. The bottom end of the chamber is slidably clamped with the sedimentation tank through a sliding assembly. The magnetic rotating cylinder is fixedly clamped in the middle of the chamber through a fixing assembly. The intelligent control screen is connected with the supermagnetic microfiltration device housing through an installation assembly. A first through hole is arranged at the left end of the supermagnetic microfiltration device housing. A first pipeline is arranged at the left end of the magnetic rotating cylinder. The first pipeline slidably passes through the first through hole. The right end of the magnetic rotating cylinder is communicated with the sedimentation tank through two communicating components and the third pipeline. A sewage discharge pipe is arranged at the front end of the sedimentation tank. The sewage discharge pipe slidably passes through the rear end of the cover plate assembly. A valve is arranged on the sewage discharge pipe. The bottom end of the chamber is connected with a water pump. The input end of the water pump is hermetically inserted into the sedimentation tank. The output end of the water pump is communicated with a second pipeline. The second pipeline is communicated with the microfiltration water processor through a communicating component. The right end of the microfiltration water processor is communicated with the fourth pipeline through a communicating component.
[0005] Preferably, the fixing component includes a fixing frame, a clamping plate, two sets of clamping sliders, two sets of fixing plates, and four first screws. The front end of the middle part of the chamber is connected to the fixing frame. A fixing groove is provided at the rear end of the fixing frame. Clamping chutes are respectively provided at the left end and the right end of the fixing groove. The bottom end of the magnetic rotating cylinder is connected to the fixing groove. The left end and the right end of the clamping plate are respectively connected to the clamping sliders. The two sets of clamping sliders are respectively slidably clamped with the clamping chutes. The bottom end of the clamping plate is connected to the two sets of fixing plates. Two first grooves are provided at the rear end of the fixing frame. Four fixing threaded holes are provided at the front ends of the two first grooves. Four fixing through holes are provided at the rear ends of the two sets of fixing plates. The four first screws are respectively threadedly connected to the fixing threaded holes through the fixing through holes.
[0006] Preferably, the sliding component includes three sets of clamping sliders. The bottom end of the sedimentation tank is connected to the three sets of clamping sliders. Three clamping chutes are provided at the top end of the chamber. The three sets of clamping sliders are respectively slidably clamped with the clamping chutes.
[0007] Preferably, the clamping component includes a clamping block, a first clamping hoop, a second clamping hoop, and a threaded rod. The bottom end of the chamber is connected to the clamping block. Three second grooves are provided at the top end of the clamping block. The three second grooves are clamped with the bottom end of the sedimentation tank. The front end of the chamber is connected to the first clamping hoop. The left side of the first clamping hoop is connected to the second clamping hoop through a hinge. A first through threaded hole is provided at the left end of the rear side of the second clamping hoop. The threaded rod is threadedly connected to the first through threaded hole. A first threaded hole is provided at the rear end of the first clamping hoop. The first threaded hole is threadedly connected to the threaded rod.
[0008] Preferably, the installation component includes four second screws. A through hole is provided at the front end of the outer shell of the supermagnetic microfiltration device. A support plate is provided on the rear outer wall of the intelligent control screen. The intelligent control screen is slidably sleeved with the through hole. Four installation through holes are provided at the rear end of the support plate. Four installation threaded holes are provided at the front end of the chamber. The four second screws respectively pass through the installation through holes and the installation threaded holes.
[0009] Preferably, the connection component includes multiple sets of internal threaded connectors. External threaded connectors are respectively provided at the left end and the right end of the microfiltration water processor. The fourth pipeline is communicated with the internal threaded connectors. The top end of the second pipeline is communicated with the internal threaded connectors. An external threaded connector is provided at the top end of the sedimentation tank. An external threaded connector is provided at the right end of the magnetic rotating cylinder. The top end and the bottom end of the third pipeline are respectively communicated with the internal threaded connectors. The multiple sets of internal threaded connectors are respectively threadedly connected to the external threaded connectors.
[0010] Preferably, it further includes a surrounding plate. The bottom end of the outer shell of the supermagnetic microfiltration device is connected to the surrounding plate.
[0011] Preferably, the cover plate component includes a cover plate and six third screws. Six second threaded holes are provided at the rear end of 01. Six second through holes are provided at the rear end of the cover plate. The six third screws respectively pass through the second through holes and are threadedly connected to the second threaded holes.
[0012] Compared with the prior art, the beneficial effects of the present utility model are as follows: First, place the equipment in a suitable position through four sets of legs, and then the magnetic drum equipment, sedimentation tank, microfiltration water processor, and intelligent control screen can be installed by installing components, fixing components, clamping components, and sliding components, which facilitates the disassembly and assembly of the four sets of equipment during subsequent maintenance. After that, the pipelines of the four sets of equipment are connected through the connecting components, and the water pump can inject the water in the sedimentation tank into the microfiltration water processor through the pipeline for water filtration, which facilitates maintenance and repair, thereby enhancing the practicability. Description of the Drawings
[0013] Figure 1 is a schematic diagram of the connection structure of the present utility model;
[0014] Figure 2 is a schematic diagram of the connection structure between the chamber and the fixing frame of the present utility model;
[0015] Figure 3 is a schematic rear view structure of the present utility model;
[0016] Figure 4 is a schematic diagram of the articulated structure between the first clamping hoop and the second clamping hoop of the present utility model;
[0017] Figure 5 is a schematic diagram of the enlarged partial structure A of the present utility model;
[0018] Reference numerals in the drawings: 1, magnetic microfiltration device housing; 2, legs; 3, magnetic drum; 4, sedimentation tank; 5, microfiltration water processor; 6, intelligent control screen; 7, fixing frame; 8, clamping plate; 9, clamping slide plate; 10, fixing plate; 11, first screw; 12, clamping slider; 13, clamping block; 14, first clamping hoop; 15, second clamping hoop; 16, threaded rod; 17, support plate; 18, second screw; 19, external thread connector; 20, first pipeline; 21, water pump; 22, second pipeline; 23, third pipeline; 24, third pipeline; 25, ranking port; 26, valve; 27, internal thread connector; 28, enclosing plate; 29, cover plate; 30, chamber; 31, third screw. Detailed Description of the Preferred Embodiments
[0019] The following combines the drawings and embodiments to further describe in detail the specific embodiments of the present utility model. The following embodiments are used to illustrate the present utility model, but are not used to limit the scope of the present utility model.
[0020] As Figures 1 to 5As shown in the figure, the integrated high-gradient magnetic microfiltration system equipment of the present utility model includes a high-gradient magnetic microfiltration device housing 1, a microfiltration water processor 3, a sedimentation tank 4, a magnetic drum 5, an intelligent control panel 6, a third pipeline 23, and a fourth pipeline 24. Four sets of legs 2 are provided at the bottom end of the high-gradient magnetic microfiltration device housing 1. A chamber 30 is provided at the rear end of the high-gradient magnetic microfiltration device housing 1. A cover plate assembly is provided at the rear end of the high-gradient magnetic microfiltration device housing 1. The bottom end of the chamber 30 is clamped with the microfiltration water processor 3 through a clamping assembly. The bottom end of the chamber 30 is slidably clamped with the sedimentation tank 4 through a sliding assembly. The magnetic drum 5 is fixedly clamped in the middle of the chamber 30 through a fixing assembly. The intelligent control panel 6 is connected to the high-gradient magnetic microfiltration device housing 1 through a mounting assembly. A first through hole is provided at the left end of the high-gradient magnetic microfiltration device housing 1. A first pipeline 20 is provided at the left end of the magnetic drum 5. The first pipeline 20 slidably passes through the first through hole. The right end of the magnetic drum 5 is communicated with the sedimentation tank 4 through two sets of communication components and the third pipeline 23. A sewage discharge pipe 25 is provided at the front end of the sedimentation tank 4. The sewage discharge pipe 25 slidably passes through the rear end of the cover plate assembly. A valve 26 is provided on the sewage discharge pipe 25. The bottom end of the chamber 30 is connected to a water pump 21. The input end of the water pump 21 is hermetically inserted into the sedimentation tank 4. The output end of the water pump 21 is communicated with a second pipeline 22. The second pipeline 22 is communicated with the microfiltration water processor 3 through a communication component. The right end of the microfiltration water processor 3 is communicated with the fourth pipeline 24 through a communication component. First, place the equipment in a suitable position through the four sets of legs, and then install the magnetic drum equipment, sedimentation tank, microfiltration water processor, and intelligent control panel through the mounting assembly, fixing assembly, clamping assembly, and sliding assembly, so as to facilitate the disassembly and assembly of the four sets of equipment during subsequent maintenance. Then, connect the pipelines of the four sets of equipment through the connection components, and the water pump can inject the water in the sedimentation tank into the microfiltration water processor through the pipeline for water filtration, so as to facilitate maintenance and repair, thereby enhancing the practicability.
[0021] As a preference of the above embodiment, the fixing assembly includes a fixing frame 7, a clamping plate 8, two sets of clamping sliding plates 9, two sets of fixing plates 10, and four sets of first screws 11. The front end of the middle part of the chamber 30 is connected to the fixing frame 7. A fixing groove is provided at the rear end of the fixing frame 7. Clamping sliding grooves are respectively provided at the left end and the right end of the fixing groove. The bottom end of the magnetic drum 5 is connected to the fixing groove. The left end and the right end of the clamping plate 8 are respectively connected to the clamping sliding plates 9. The two sets of clamping sliding plates 9 are respectively slidably clamped with the clamping sliding grooves. The bottom end of the clamping plate 8 is connected to the two sets of fixing plates 10. Two sets of first grooves are provided at the rear end of the fixing frame 7. Four sets of fixing threaded holes are provided at the front ends of the two sets of first grooves. Four sets of fixing through holes are provided at the rear ends of the two sets of fixing plates 10. The four sets of first screws 11 are respectively threadedly connected with the fixing threaded holes through the fixing through holes. The magnetic drum can be supported through the fixing frame, and the clamping plate can be clamped and fixed through the two sets of clamping sliding plates and the clamping grooves on the clamping plate, so as to fix the magnetic drum, thereby enhancing the practicability.
[0022] Preferably, as in the above embodiment, the sliding assembly includes three sets of clamping sliders 12. The bottom end of the sedimentation tank 4 is connected to the three sets of clamping sliders 12. Three sets of clamping chutes are provided at the top end of the chamber 30, and the three sets of clamping sliders 12 are respectively slidably clamped with the clamping chutes. The sedimentation tank can be fixedly installed through the three sets of clamping chutes and the three sets of clamping sliders, thereby enhancing the practicability.
[0023] Preferably, as in the above embodiment, the clamping assembly includes a clamping block 13, a first clamping hoop 14, a second clamping hoop 15 and a threaded rod 16. The bottom end of the chamber 30 is connected to the clamping block 13. Three sets of second grooves are provided at the top end of the clamping block 13, and the three sets of second grooves are clamped with the bottom end of the sedimentation tank 4. The front end of the chamber 30 is connected to the first clamping hoop 14. The left side of the first clamping hoop 14 is connected to the second clamping hoop 15 through a hinge. A first through threaded hole is provided at the left end of the rear side of the second clamping hoop 15, and the threaded rod 16 is threadedly connected to the first through threaded hole. A first threaded hole is provided at the rear end of the first clamping hoop 14, and the first threaded hole is threadedly connected to the threaded rod 16. The bottom of the microfiltration water processor can be fixed through the second grooves on the clamping block, and the middle part of the microfiltration water processor can be fixedly clamped through the first clamping hoop and the second clamping hoop, and the two clamping hoops can be fixedly connected through the threaded rod, thereby enhancing the practicability.
[0024] Preferably, as in the above embodiment, the installation assembly includes four sets of second screws 18. A through hole is provided at the front end of the supermagnetic microfiltration device housing 1. A support plate 17 is provided on the rear outer wall of the intelligent control screen 6. The intelligent control screen 6 is slidably sleeved with the through hole. Four sets of installation through holes are provided at the rear end of the support plate 17. Four sets of installation threaded holes are provided at the front end of the chamber 30. The four sets of second screws 18 respectively pass through the installation through holes and the installation threaded holes. The intelligent control screen can be fixedly installed through the support plate and the four sets of second screws, so as to facilitate disassembly and maintenance, thereby enhancing the practicability.
[0025] Preferably, as in the above embodiment, the connection assembly includes multiple sets of internal threaded connectors 27. External threaded connectors 19 are respectively provided at the left and right ends of the microfiltration water processor 3. The fourth pipeline 24 communicates with the internal threaded connector 27. The top end of the second pipeline 22 communicates with the internal threaded connector 27. An external threaded connector 19 is provided at the top end of the sedimentation tank 4. An external threaded connector 19 is provided at the right end of the magnetic rotating cylinder 5. The top and bottom ends of the third pipeline 23 respectively communicate with the internal threaded connector 27. The multiple sets of internal threaded connectors 27 are respectively threadedly connected to the external threaded connectors 19. The installation and disassembly of multiple pipelines can be carried out through the internal threaded connectors and the external threads, thereby enhancing the practicability.
[0026] Preferably, as in the above embodiment, it further includes a skirt board 28, and the bottom end of the outer shell 1 of the supermagnetic microfiltration device is connected to the skirt board 28; the four sets of legs can be hidden through the skirt board, thereby enhancing the practicability.
[0027] Preferably, as in the above embodiment, the cover plate assembly includes a cover plate 29 and six sets of third screws 31. Six sets of second threaded holes are provided at the rear end of 01, and six sets of second through holes are provided at the rear end of the cover plate 29. The six sets of third screws 31 are respectively threadedly connected to the second threaded holes through the second through holes; the chamber can be closed and opened through the six sets of screws and the cover plate, so as to facilitate the maintenance in the chamber, thus enhancing the practicability.
[0028] For the integrated supermagnetic microfiltration system equipment of the present invention, its working principle is as follows. When it works, first place the equipment at a suitable position through the four sets of legs, then the magnetic rotating cylinder can be fixedly installed through the fixing frame and the sliding plate. After that, the sedimentation tank is slidably clamped through the three sets of clamping chutes and the three sets of clamping sliders. Then, the microfiltration water processor can be fixedly installed through the clamping block and the two sets of clamping hoops. After that, the intelligent control screen can be installed through the four sets of second screws and the support plate, so as to facilitate the disassembly and assembly of the four sets of equipment in subsequent maintenance. Then, the pipeline is connected through the external thread connecting block and the internal thread connecting block, and the water pump can inject the water in the sedimentation tank into the microfiltration water processor through the pipeline for water filtration. Then, during maintenance, the cover plate is removed through the four sets of third screws, and then the four sets of equipment can be easily disassembled and installed through the four sets of components in the chamber, so as to facilitate maintenance. Then, the rear end of the chamber is reinstalled through the four sets of third screws and the cover plate.
[0029] The terms "vertical", "horizontal", "left", "right" and similar expressions used herein are for illustrative purposes only.
[0030] In the present invention, the "first", "second", "third" do not represent specific quantities and sequences, but are only used for name distinction.
[0031] The above are only the preferred embodiments of the present invention. It should be noted that for those of ordinary skill in the art in the technical field, without departing from the technical principle of the present invention, several improvements and modifications can be made, and these improvements and modifications should also be regarded as the protection scope of the present invention.
Claims
1. An integrated high-gradient magnetic microfiltration system equipment, characterized in that It includes the shell (1) of the supermagnetic microfiltration device, the microfiltration water processor (3), the sedimentation tank (4), the magnetic rotating cylinder (5), the intelligent control panel (6), the third pipeline (23) and the fourth pipeline (24). Four groups of legs (2) are arranged at the bottom end of the shell (1) of the supermagnetic microfiltration device. A chamber (30) is arranged at the rear end of the shell (1) of the supermagnetic microfiltration device. A cover plate assembly is arranged at the rear end of the shell (1) of the supermagnetic microfiltration device. The bottom end of the chamber (30) is clamped with the microfiltration water processor (3) through a clamping assembly. The bottom end of the chamber (30) is slidably clamped with the sedimentation tank (4) through a sliding assembly. The magnetic rotating cylinder (5) is fixedly clamped in the middle of the chamber (30) through a fixing assembly. The intelligent control panel (6) is connected with the shell (1) of the supermagnetic microfiltration device through a mounting assembly. A first through hole is arranged at the left end of the shell (1) of the supermagnetic microfiltration device. A first pipeline (20) is arranged at the left end of the magnetic rotating cylinder (5). The first pipeline (20) slidably passes through the first through hole. The right end of the magnetic rotating cylinder (5) is communicated with the sedimentation tank (4) through two groups of communicating assemblies and the third pipeline (23). A sewage discharge pipe (25) is arranged at the front end of the sedimentation tank (4). The sewage discharge pipe (25) slidably passes through the rear end of the cover plate assembly. A valve (26) is arranged on the sewage discharge pipe (25). The bottom end of the chamber (30) is connected with a water pump (21). The input end of the water pump (21) is hermetically inserted into the sedimentation tank (4). The output end of the water pump (21) is communicated with a second pipeline (22). The second pipeline (22) is communicated with the microfiltration water processor (3) through a communicating assembly. The right end of the microfiltration water processor (3) is communicated with the fourth pipeline (24) through a communicating assembly.
2. The integrated high-gradient magnetic microfiltration system equipment according to claim 1, characterized in that The fixing assembly includes a fixing frame (7), a clamping plate (8), two groups of clamping sliding plates (9), two groups of fixing plates (10) and four groups of first screws (11). The front end in the middle of the chamber (30) is connected with the fixing frame (7). A fixing groove is arranged at the rear end of the fixing frame (7). Clamping sliding grooves are respectively arranged at the left end and the right end of the fixing groove. The bottom end of the magnetic rotating cylinder (5) is connected with the fixing groove. The left end and the right end of the clamping plate (8) are respectively connected with the clamping sliding plates (9). The two groups of clamping sliding plates (9) are respectively slidably clamped with the clamping sliding grooves. The bottom end of the clamping plate (8) is connected with the two groups of fixing plates (10). Two groups of first grooves are arranged at the rear end of the fixing frame (7). Four groups of fixing threaded holes are arranged at the front ends of the two groups of first grooves. Four groups of fixing through holes are arranged at the rear ends of the two groups of fixing plates (10). The four groups of first screws (11) are respectively threadedly connected with the fixing threaded holes through the fixing through holes.
3. The integrated high-gradient magnetic microfiltration system equipment according to claim 2, characterized in that, The sliding assembly includes three groups of clamping sliders (12). The bottom end of the sedimentation tank (4) is connected with the three groups of clamping sliders (12). Three groups of clamping sliding grooves are arranged at the top end of the chamber (30). The three groups of clamping sliders (12) are respectively slidably clamped with the clamping sliding grooves.
4. The integrated high-gradient magnetic microfiltration system equipment according to claim 3, characterized in that The card-mounted component includes a card-mounted block (13), a first card-mounted hoop (14), a second card-mounted hoop (15) and a threaded rod (16). The bottom end of the chamber (30) is connected to the card-mounted block (13). The top end of the card-mounted block (13) is provided with three groups of second grooves, and the three groups of second grooves are card-mounted with the bottom end of the sedimentation tank (4). The front end of the chamber (30) is connected to the first card-mounted hoop (14). The left side of the first card-mounted hoop (14) is connected to the second card-mounted hoop (15) through a hinge. The left end of the rear side of the second card-mounted hoop (15) is provided with a first through-threaded hole, and the threaded rod (16) is threadedly connected to the first through-threaded hole. The rear end of the first card-mounted hoop (14) is provided with a first threaded hole, and the first threaded hole is threadedly connected to the threaded rod (16).
5. The integrated high-gradient magnetic microfiltration system equipment according to claim 4, characterized in that, The installation component includes four groups of second screws (18). The front end of the supermagnetic microfiltration device housing (1) is provided with a through-hole. A support plate (17) is provided on the rear outer wall of the intelligent control screen (6). The intelligent control screen (6) is slidably sleeved with the through-hole. Four groups of installation through-holes are provided at the rear end of the support plate (17). Four groups of installation threaded holes are provided at the front end of the chamber (30). The four groups of second screws (18) respectively pass through the installation through-holes and the installation threaded holes.
6. The integrated high-gradient magnetic microfiltration system equipment according to claim 5, characterized in that, The connection component includes multiple groups of internal-threaded connectors (27). The left end and the right end of the microfiltration water processor (3) are respectively provided with external-threaded connectors (19). The fourth pipeline (24) communicates with the internal-threaded connectors (27). The top end of the second pipeline (22) communicates with the internal-threaded connectors (27). The top end of the sedimentation tank (4) is provided with an external-threaded connector (19). The right end of the magnetic rotating cylinder (5) is provided with an external-threaded connector (19). The top end and the bottom end of the third pipeline (23) respectively communicate with the internal-threaded connectors (27). The multiple groups of internal-threaded connectors (27) are respectively threadedly connected to the external-threaded connectors (19).
7. The integrated high-gradient magnetic microfiltration system equipment according to claim 6, characterized in that, It also includes a surrounding plate (28), and the bottom end of the supermagnetic microfiltration device housing (1) is connected to the surrounding plate (28).
8. The integrated high-gradient magnetic microfiltration system equipment according to claim 7, characterized in that, The cover plate component includes a cover plate (29) and six groups of third screws (31). Six groups of second threaded holes are provided at the rear end of 01. Six groups of second through-holes are provided at the rear end of the cover plate (29). The six groups of third screws (31) respectively pass through the second through-holes and are threadedly connected to the second threaded holes.