Water purification system

By designing an insertable partition and running water hole water purification system, the problem that traditional water purification systems cannot adjust filter materials according to needs is solved, and the types and quantity of filter materials are dynamically adjusted according to water purification needs is achieved, and the flexibility and efficiency of the water purification system are improved.

CN119929940AInactive Publication Date: 2025-05-06吕阳
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510318250.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-18
Publication Date
2025-05-06
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Traditional water purification systems cannot set up different types and quantities of filter materials according to needs, cannot adjust the types and quantities of filter materials according to water purification needs, and it is difficult to meet the growing water purification needs and the challenges of dealing with complex pollutants.

Method used

A water purification system is designed, including a base plate and an insertable partition plate. The partition plate is provided with a running water hole, and the running water holes on the adjacent partition plate are arranged one by one. By adjusting the number and position of the partitions, the type and quantity of filter materials can be adjusted according to the water purification needs.

Benefits of technology

It realizes dynamic adjustment of the types and quantity of filter materials according to water purification needs, meets different water purification needs, and improves the flexibility and efficiency of the water purification system.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119929940A_ABST
    Figure CN119929940A_ABST
Patent Text Reader

Abstract

The invention relates to the field of water purification, in particular to a water purification system. The water purification system comprises a bottom plate, a plurality of slots are formed in the upper side of the bottom plate from left to right, a plurality of partition plates are arranged and can be inserted into the slots, water flowing holes are formed in the upper ends or the lower ends of the partition plates, and the water flowing holes in the adjacent partition plates are formed up and down. Side plates are fixed to the left end and the right end of the bottom plate, and a pipeline is fixed to each side plate. Supporting rods are fixed to the four corners of the lower side of the bottom plate, and a conical block is fixed to the lower end of each supporting rod. Baffles are arranged on the front side and the rear side of the bottom plate, side edges are fixed to the left end and the right end of each baffle, the two side edges on each baffle block the outer sides of the two side plates respectively, and a blocking piece is fixed to the upper end of each side edge and lapped above the corresponding side plate. The types and the quantity of the filter materials can be adjusted according to water purification requirements, so that different water purification requirements are met.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to the field of water purification, and more particularly to a water purification system. Background Art

[0002] In the context of increasingly severe water shortage and environmental pollution, with the global population growth, industrialization and climate change, water shortage and environmental pollution problems are becoming increasingly serious, and there is an urgent need for efficient and sustainable water purification technology. Traditional water purification methods have many limitations and are difficult to meet the growing demand for water purification and the challenge of dealing with complex pollutants. For example, traditional water purification systems cannot set different types and quantities of filter materials as needed, and cannot adjust the type and quantity of filter materials according to water purification needs. Summary of the invention

[0003] In order to overcome the deficiencies of the prior art, the present invention provides a water purification system, which has the beneficial effect of being able to adjust the type and quantity of filter materials according to water purification requirements to meet different water purification needs.

[0004] A water purification system comprises a bottom plate, wherein the upper side of the bottom plate is provided with a plurality of slots from left to right, a plurality of partitions are provided, the partitions can be inserted into the slots, the upper end or the lower end of the partition is provided with water flow holes, and the water flow holes on adjacent partitions are arranged one above and one below.

[0005] Side plates are fixed to both left and right ends of the bottom plate, and each side plate is fixed with a pipeline.

[0006] Support rods are fixed at the four corners of the lower side of the bottom plate, and a conical block is fixed at the lower end of each support rod.

[0007] Baffles are arranged on both the front and rear sides of the bottom plate, and side edges are fixed on both the left and right ends of the baffles. The two side edges on the baffles are respectively blocked on the outsides of the two side plates, and a baffle is fixed on the upper end of each side edge, which is placed on the top of the corresponding side plate.

[0008] A threaded column is fixed at both the front and rear ends of each side plate, a strip groove is arranged on each side edge, the threaded column is inserted into the corresponding strip groove, a nut is connected to the threaded column through a thread, and the nut is pressed on the corresponding side edge. BRIEF DESCRIPTION OF THE DRAWINGS

[0009] The present invention is further described in detail below with reference to the accompanying drawings and specific implementation methods.

[0010] Figure 1 A schematic diagram of the structure of a water purification system Figure 1 ;

[0011] Figure 2 A schematic diagram of the structure of a water purification system Figure 2 ;

[0012] Figure 3 A schematic diagram of the structure of a water purification system Figure 3 ;

[0013] Figure 4 Schematic diagram of the structure of the base plate and partition Figure 1 ;

[0014] Figure 5 Schematic diagram of the structure of the base plate and partition Figure 2 ;

[0015] Figure 6 Schematic diagram of the baffle structure Figure 1 ;

[0016] Figure 7 Schematic diagram of the baffle structure Figure 2 ;

[0017] Figure 8 The structure diagram of filter plate 1 Figure 1 ;

[0018] Fig. 9 The structure diagram of filter plate 1 Figure 2 ;

[0019] Fig.10 The structure diagram of filter plate 2 Figure 1 ;

[0020] Fig.11 The structure diagram of filter plate 2 Figure 2 ;

[0021] In the figure: bottom plate 101; slot 102; pipe 103; side plate 104; nut 105; threaded column 106; support rod 107; tapered block 108;

[0022] Partition plate 201; limit block 202; water flow hole 203;

[0023] Baffle 301; limit fork 302; baffle 303; strip groove 304; side edge 305;

[0024] Filter plate 401; fastening screw 402; square column 403; sliding column 404; convex plate 405; hollow sleeve 406;

[0025] Filter plate 2 501; blocking edge 502; outer plate 503; fastening screw 2 504; inner plate 505; strip plate 506; stopper 507; column 508; rotating plate 509; hinged seat 510. DETAILED DESCRIPTION

[0026] like Figure 4-5 As shown, this example can achieve the effect of adjusting the type and quantity of filter materials according to water purification needs.

[0027] Since the water purification system includes a bottom plate 101, a plurality of slots 102 are arranged on the upper side of the bottom plate 101 from left to right, a plurality of partitions 201 are arranged, and the partitions 201 can be inserted into the slots 102, and a water flow hole 203 is arranged on the upper end or the lower end of the partition 201, and the water flow holes 203 on adjacent partitions 201 are arranged one above and one below. The partitions 201 divide the upper side of the bottom plate 101 into a plurality of areas for storing filter materials, and different numbers of partitions 201 can be inserted, thereby dividing the upper side of the bottom plate 101 into a plurality of areas as needed, and the plurality of areas can store different filter materials, thereby filtering the water with different processes, and the size of each area can be adjusted according to the insertion position of the partition 201, thereby putting more filter materials in a large area, and adjusting the type and quantity of the filter materials according to the water purification demand. The water flow holes 203 on the adjacent partitions 201 are arranged one above the other, so that water can completely flow through the filter material in each area, so that the flow path of water above the bottom plate 101 becomes longer, and the water can be fully purified by the longer flow path of water. The bottom plate 101 and the multiple partitions 201 are easy to separate, so that the bottom plate 101 and the multiple partitions 201 are easy to clean.

[0028] like Figure 4-5 As shown, this example can achieve the effect of facilitating the entry and exit of water in the water purification system.

[0029] Since side plates 104 are welded to both ends of the bottom plate 101 and pipes 103 are welded to each side plate 104, water can flow in from one of the pipes 103, pass through the filter material between the multiple partitions 201, and flow out from another pipe 103, which facilitates the entry and exit of water in the water purification system.

[0030] like Figure 4-5 As shown, this example can achieve the effect of conveniently and stably setting the base plate 101 on the ground.

[0031] Since support rods 107 are welded at the four corners of the lower side of the base plate 101, and a conical block 108 is welded at the lower end of each support rod 107, the base plate 101 can be stably supported by the support rods 107, so that the base plate 101 is stably set, and the four conical blocks 108 are convenient for inserting into the ground. The lower end of the conical block 108 is pointed, which is convenient for insertion. After insertion, it will not be pulled out at will, so that the base plate 101 can be stably set on the ground.

[0032] like Figure 4-7 As shown, this example can achieve the effect of preventing the baffle 301 from being unstable when installed on both sides of the base plate 101.

[0033] Since baffles 301 are provided on both the front and rear sides of the bottom plate 101, side edges 305 are welded on both the left and right ends of the baffles 301, and the two side edges 305 on the baffles 301 are respectively blocked on the outside of the two side plates 104, and a baffle 303 is welded on the upper end of each side edge 305, and the baffle 303 is placed on the top of the corresponding side plate 104, the baffle 301 can block the space formed by the multiple partitions 201, and then close the front and rear sides of the multiple spaces, and the two side edges 305 can be respectively blocked on the outside of the two side plates 104, thereby preventing the baffle 301 from moving left and right at will, and preventing the baffle 301 from being unstable when installed on both sides of the bottom plate 101. The baffles 303 on the side edges 305 are placed on the top of the corresponding side plates 104, thereby preventing the baffle 301 from moving up and down at will, and further preventing the baffle 301 from being unstable when installed on both sides of the bottom plate 101.

[0034] like Figure 4-7 As shown, this example can achieve the effect of fixing the baffle 301 on the base plate 101 .

[0035] Since each of the side panels 104 is welded with a threaded column 106 at both ends, each side edge 305 is provided with a strip groove 304, the threaded column 106 is inserted into the corresponding strip groove 304, and the threaded column 106 is connected with a nut 105 by threading, and the nut 105 is pressed on the corresponding side edge 305. When the two baffles 301 are respectively installed on the front and rear sides of the base plate 101, the four threaded columns 106 are respectively inserted into the four strip grooves 304, and then the nuts 105 on the threaded columns 106 are rotated so that the nuts 105 are pressed on the side edges 305, thereby fixing the side edges 305 on the side panels 104, and finally fixing the baffle 301 on the front and rear sides of the base plate 101, thereby achieving the effect of fixing the baffle 301 on the base plate 101.

[0036] like Figure 4-7 As shown, this example can achieve the effect of preventing the partition 201 from tilting relative to the bottom plate 101, which causes the filter materials in different spaces to mix together.

[0037] Since a plurality of limit forks 302 are arranged on the inner side of the baffle 301, and the plurality of limit forks 302 are respectively inserted into the plurality of partitions 201, when the baffle 301 is installed, the limit forks 302 on the baffle 301 are inserted into the corresponding partitions 201, thereby reinforcing the partitions 201, so that the partitions 201 are stably arranged on the bottom plate 101, and the partitions 201 are prevented from tilting relative to the bottom plate 101, causing the filter materials in different spaces to be mixed together.

[0038] like Figure 8-9 As shown, this example can achieve the effect of preventing the filter material from leaking through the water flow hole 203 and the pipeline 103.

[0039] Since the water purification system also includes a hollow sleeve 406, both left and right ends of the hollow sleeve 406 are slidably connected with sliding columns 404, the outer end of each sliding column 404 is welded with a square column 403, and each square column 403 is welded with a filter plate 401, and a plurality of filter holes are evenly distributed on the filter plate 401. Two filter plates 401 form a group, and a group of filter plates 401 is arranged between two adjacent partitions 201 or between the side plate 104 and the partition 201. The filter plate 401 is blocked at the water flow hole 203. The two sliding columns 404 can move left and right on the hollow sleeve 406, so as to adjust the distance between the two square columns 403, and then adjust the distance between the two filter plates 401. Since the spacing between the two partitions 201 in different spaces is different, the spacing between the two filter plates 401 can be adjusted, and the two filter plates 401 are respectively attached between the two partitions 201, or the two filter plates 401 are respectively attached between the side plate 104 and the partition 201, and the water hole 203 or the pipe 103 is blocked by the filter plate 401, so that only water can pass through the water hole 203 and the pipe 103, and the filter material is prevented from leaking through the water hole 203 and the pipe 103. The spacing between the two filter plates 401 can be adjusted to adapt to the partitions 201 with different spacings.

[0040] like Figure 4-5 As shown in Figures 8-9, this example can achieve the effect of preventing a gap from existing between the filter plate 401 and the partition plate 201.

[0041] Since two limit blocks 202 are welded on the upper part of the partition 201, the filter plate 1 401 is arranged between the two limit blocks 202; the left and right ends of the hollow sleeve 406 are connected with fastening screws 1 402 through threads, and the fastening screws 1 402 are pressed on the corresponding sliding column 404; a convex plate 405 is welded in the middle of the hollow sleeve 406, and compression springs are welded on the left and right sides of the convex plate 405, and the outer ends of the two compression springs are respectively welded on the two sliding columns 404, and the two limit blocks 202 on the filter plate 1 401 can limit the filter plate 1 401 attached to the partition 201 from moving forward and backward, and prevent the filter plate 1 401 from moving forward and backward at will The two compression springs respectively apply outward force to the two sliding posts 404, so that the two square posts 403 and the two filter plates 401 always have a tendency to move outward, so that the two filter plates 401 can be pressed between the two partitions 201 to prevent a gap between the filter plates 401 and the partitions 201. The fastening screws 402 can be rotated to press on the sliding posts 404, so that the sliding posts 404 are fixed on the hollow sleeve 406, and the relative positions between the two filter plates 401 and the two square posts 403 and the hollow sleeve 406 are fixed, and the two filter plates 401 are respectively fixed at the two partitions 201.

[0042] like Figure 4-5As shown in Figures 10-11, this example can prevent the block impurities from escaping from the range of the filter plate 2 501 when the block impurities are fished out.

[0043] Since a filter plate 501 is arranged between the side plate 104 and the partition plate 201 on the left side, a plurality of filter holes are arranged on the filter plate 501, and blocking edges 502 are arranged on the left and right edges of the filter plate 501, hinge seats 510 are arranged at the front and rear ends of the filter plate 501, a rotating plate 509 is hinged on each hinge seat 510, and a stopper 507 is welded on the two hinge seats 510, and the stopper 507 blocks the inner side of the rotating plate 509, the filter plate 501 needs to be arranged in the leftmost space, and the leftmost space refers to the space between the leftmost side plate 104 and the partition plate 201, and no filter material is placed in this space, and the two rotating plates 509 can rotate on the filter plate 501, and when the rotating plate 509 rotates to contact with the corresponding stopper 507, there is no filter material. The filter plate 501 is then lifted up, and the filter plate 501 removes the block impurities in the leftmost space. At this time, the two rotating plates 509 are in a vertical position to the filter plate 501. The two rotating plates 509 and the two blocking edges 502 block the four sides of the filter plate 501 to prevent the block impurities from escaping from the range of the filter plate 501 when the block impurities are removed. When the filter plate 501 is completely lifted up from the leftmost space, the two rotating plates 509 automatically open outwards due to their own gravity, making it convenient for manual cleaning of the block impurities removed from the upper side of the filter plate 501.

[0044] like Figure 4-5 As shown in Figures 10-11, this example can achieve the effect of removing the blocky impurities accumulated in the leftmost space.

[0045] Since columns 508 are welded at both the front and rear ends of the upper side of the filter plate 2 501, two strips 506 are welded on the outer plate 503, the two columns 508 are respectively connected to the two strips 506 by vertical sliding, and the two strips 506 are welded with inner plates 505. The outer plate 503 is attached to the outer side of the side plate 104, and the two inner plates 505 are attached to the inner side of the side plate 104. Two fastening screws 504 are connected to the outer plate 503 by threads, and the two fastening screws 504 are pressed on the side plate 104. The inner plates 505 are clamped on both sides of the leftmost side plate 104, and then the two strip plates 506 are set above the side plate 104, and the two fastening screws 504 on the outer plate 503 are rotated to press on the side plate 104, and then the outer plate 503 and the two strip plates 506 are fixed on the upper side of the side plate 104. Then, when too many block impurities accumulate in the leftmost space, the two columns 508 are pulled up to remove the block impurities accumulated in the leftmost space. The two columns 508 facilitate driving the filter plate 2 501 to lift.

Claims

1. A water purification system, comprising a bottom plate (101), characterized in that: The upper side of the bottom plate (101) is provided with a plurality of slots (102) from left to right, and a plurality of partitions (201) are provided. The partitions (201) can be inserted into the slots (102), and the upper end or the lower end of the partitions (201) is provided with water flow holes (203), and the water flow holes (203) on adjacent partitions (201) are arranged one above the other.

2. A water purification system according to claim 1, characterized in that: Side plates (104) are fixed to both left and right ends of the bottom plate (101), and a pipe (103) is fixed to each side plate (104).

3. A water purification system according to claim 2, characterized in that: Support rods (107) are fixed at the four corners of the lower side of the bottom plate (101), and a conical block (108) is fixed at the lower end of each support rod (107).

4. A water purification system according to claim 3, characterized in that: Baffles (301) are provided on both the front and rear sides of the bottom plate (101), and side edges (305) are fixed on both the left and right ends of the baffles (301). The two side edges (305) on the baffles (301) are respectively blocked on the outsides of the two side plates (104), and a baffle (303) is fixed on the upper end of each side edge (305), and the baffle (303) is placed on the top of the corresponding side plate (104).

5. A water purification system according to claim 4, characterized in that: A threaded column (106) is fixed at both the front and rear ends of each side plate (104), a strip groove (304) is provided on each side edge (305), the threaded column (106) is inserted into the corresponding strip groove (304), a nut (105) is connected to the threaded column (106) through a thread, and the nut (105) is pressed on the corresponding side edge (305).

6. A water purification system according to claim 5, characterized in that: A plurality of limiting forks (302) are arranged on the inner side of the baffle (301), and the plurality of limiting forks (302) are respectively inserted into the plurality of partitions (201).

7. A water purification system according to claim 6, characterized in that: The invention also comprises a hollow sleeve (406), wherein both left and right ends of the hollow sleeve (406) are slidably connected with sliding columns (404), a square column (403) is fixed to the outer end of each sliding column (404), a filter plate (401) is fixed to each square column (403), a plurality of filter holes are evenly distributed on the filter plate (401), two filter plates (401) form a group, a group of filter plates (401) is arranged between two adjacent partitions (201) or between the side plate (104) and the partition (201), and the filter plates (401) are blocked at the water flow holes (203).

8. A water purification system according to claim 7, characterized in that: Two limit blocks (202) are fixed on the upper part of the partition (201), and the filter plate 1 (401) is arranged between the two limit blocks (202); the left and right ends of the hollow sleeve (406) are connected with fastening screws 1 (402) through threads, and the fastening screws 1 (402) are pressed on the corresponding sliding columns (404); a convex plate (405) is fixed in the middle part of the hollow sleeve (406), and compression springs are fixed on the left and right sides of the convex plate (405), and the outer ends of the two compression springs are respectively fixed on the two sliding columns (404).

9. A water purification system according to claim 8, characterized in that: A second filter plate (501) is arranged between the side plate (104) located on the left side and the partition plate (201), and a plurality of filter holes are arranged on the second filter plate (501). The left and right edges of the second filter plate (501) are both provided with blocking edges (502). The front and rear ends of the second filter plate (501) are both provided with hinged seats (510), and a rotating plate (509) is hingedly connected to each hinged seat (510). Stoppers (507) are fixed to the two hinged seats (510), and the stoppers (507) are blocked on the inner side of the rotating plate (509).

10. A water purification system according to claim 9, characterized in that: The front and rear ends of the upper side of the second filter plate (501) are both fixed with columns (508); two strips (506) are fixed on the outer plate (503); the two columns (508) are respectively vertically slidably connected to the two strips (506); the two strips (506) are both fixed with inner plates (505); the outer plate (503) is attached to the outer side of the side plate (104); the two inner plates (505) are attached to the inner side of the side plate (104); two fastening screws (504) are connected to the outer plate (503) by threads; the two fastening screws (504) are both pressed on the side plate (104).