Water purification equipment made of novel environment-friendly material
By introducing a sliding plate and electromagnetic ring structure into the water purification equipment, the filtration sequence of the filter media is changed and backwashing cleaning is achieved, which solves the problems of easy clogging and resource waste of ceramic filter media, and improves the water purification effect and service life of the filter media.
Patent Information
- Application Number
- CN202511440139.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-10
- Publication Date
- 2025-11-07
- Estimated Expiration
- 2045-10-10
AI Technical Summary
In existing water purification equipment made of new environmentally friendly materials, ceramic filter media is prone to bacterial growth and impurity accumulation, resulting in poor water purification effect. Furthermore, filter media closer to the water inlet is prone to clogging and has a short lifespan, while filter media farther from the water inlet is not fully utilized, resulting in resource waste.
It adopts a structure with multiple sliding plates and electromagnetic rings, and changes the filtration sequence and water flow direction of the filter media through magnetic pole changes and backwash cleaning mechanism, so as to achieve full utilization and self-cleaning of the filter media.
It effectively extends the service life of filter media, prevents bacterial growth, improves water purification effect, optimizes the utilization rate of filter media, and avoids resource waste.
Smart Images

Figure CN120900280A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of water purification equipment, and in particular to water purification equipment of a novel environment-friendly material. BACKGROUND
[0002] With the improvement of living standards, people have higher and higher requirements for life, and the requirements for drinking water quality are also higher and higher. With the progress of science and technology, water purification equipment has been greatly optimized. Ceramic filter plates are widely used as a novel environment-friendly water purification material. However, the water purification equipment of the novel environment-friendly material still has defects. For example, after the ceramic filter material of most water purification equipment of the novel environment-friendly material is used for a long time, bacteria are easily bred on the surface of the ceramic filter material, and a large amount of impurities are easily accumulated on the surface of the ceramic filter material, so that the water purification effect is poor.
[0003] Secondly, when multi-layer filtration is performed, the filter material close to the water inlet bears the main filtration task, is easy to be blocked, has a short service life, and is the 'first line of defense' of the system. The filter material far from the water inlet is often not fully utilized in the traditional design, and there is a problem of resource waste. SUMMARY
[0004] The application provides water purification equipment of a novel environment-friendly material, which has the advantages of improving the service life of filter material and solves the problems in the background art.
[0005] To achieve the above-mentioned purpose, the application adopts the following technical scheme: water purification equipment of a novel environment-friendly material, comprising an inner shell, a plurality of circumferentially equidistantly arranged partition plates are fixedly connected to the curved surface of the inner shell, a sliding plate is slidably connected to the middle part of the partition plate, a filter material is fixedly installed between two adjacent partition plates, an outer shell is fixedly connected to the outer end of the plurality of partition plates, and a plurality of water flushing valves are fixedly installed in the middle part of the outer shell. A water storage shell is arranged inside the water storage shell, a plurality of through holes are formed in the inner part of the electromagnetic ring, a plurality of fan-shaped magnetic blocks are arranged between the two electromagnetic rings, and an electromagnetic push ring is arranged on the outer side of the two water storage shells. Two end covers are arranged, a water outlet shell is movably sleeved at the bottom of the lower end cover, two water outlet valves are installed at the bottom of the water outlet shell, connecting pipes are in communication with the two sides of the water outlet shell, and one-way valves are fixedly installed at the bottom end of the connecting pipes. A blowdown mechanism is arranged in the inner part of the inner shell.
[0006] Preferably, the two end covers are symmetrically arranged, the end cover comprises a cover body, two round holes are formed in the surface of the cover body, a plurality of circumferentially equidistantly arranged clamping seats are fixedly connected to the inner part of the cover body, sealing rings are fixedly installed in the inner part of the clamping seat, two arc-shaped plates are fixedly connected to the middle part of the cover body, and limit blocks are fixedly connected to the inner side of the arc-shaped plates.
[0007] Preferably, the pollution discharge mechanism comprises a rotating rod and a pollution discharge pipe, the curved surface of the rotating rod is fixedly connected with two rotating heads, the two ends of the rotating head are fixedly connected with switch sheets, and the pollution discharge pipe is rotatably installed in the inside of the inner shell.
[0008] Preferably, the outer sides of the plurality of filter materials are in close contact with the outer shell, and the plurality of flush valves are circumferentially equidistantly arranged and located at the outer sides of the filter materials.
[0009] Preferably, the water storage shell is fixedly connected with the outer shell, the two electromagnetic rings are fixedly connected with the outer shell, the electromagnetic push rings are slidably connected with the water storage shell and the outer shell, the plurality of through holes are circumferentially equidistantly arranged, the fan-shaped magnetic blocks are fixedly connected with the sliding plates, and the magnetic poles of the two adjacent fan-shaped magnetic blocks are opposite.
[0010] Preferably, the connecting pipe is in communication with the middle part of the water storage shell, and the opening direction of the one-way valve is towards the connecting pipe. The above structure can supply water to the inside of the upper cover through the two circular holes during work, the water is filtered by the plurality of filter materials along the purified water path, and finally discharged from the two circular holes below into the inside of the water outlet shell. With the continuous supply and purification of water, the water pressure in the inside of the water outlet shell is increased, so that the one-way valve is in an open state. Then, the electromagnetic push rings are electrified to generate repulsive electromagnetic ring magnetic fields, so that the two electromagnetic push rings are away from the electromagnetic rings, and the purified water enters the inside of the water storage shell through the connecting pipe.
[0011] Preferably, the two covers are rotatably connected with the curved surface of the inner shell, and the two circular holes are located on the two sides of a clamping seat.
[0012] Preferably, the rotating rod is rotatably connected with the upper cover, the two switch sheets are matched with the two arc-shaped plates at the same horizontal position, and the pollution discharge pipe is fixedly connected with the arc-shaped plates at the upper and lower ends. The above structure can rotate the rotating rod during work, and the rotating rod drives the rotating head and the switch sheet to rotate until the switch sheet no longer blocks the gap between the two arc-shaped plates. The sewage generated during backflushing will enter the gap between the two arc-shaped plates and be discharged from the middle part of the water outlet shell through the pollution discharge pipe.
[0013] Preferably, the clamping seat is matched with the upper and lower ends of the sliding plate, and the connecting pipe is a hard pipe.
[0014] Preferably, the curved surface of the outer shell is provided with a plurality of sliding grooves matched with the sliding plate.
[0015] The beneficial effects of the present application are as follows: 1. This invention involves detaching all sliding plates from the card holder at both the top and bottom and placing them in the middle position. Rotating the rotating rod causes the rotating head and switch plate to rotate until the switch plate no longer blocks the gap between the two arc-shaped plates. The two electromagnetic push rings are energized, generating a magnetic field that attracts the electromagnetic rings. This increases the pressure of the purified water between the two electromagnetic push rings, opening the flushing valve. The purified water between the two electromagnetic push rings enters the middle of the filter media through the flushing valve and is finally discharged from the top and bottom ends of the filter media, thus backflushing and cleaning the filter media. This solves the problem that existing ceramic filter media easily breed bacteria and accumulate a large amount of impurities on the surface after long-term use, resulting in poor water purification effect.
[0016] 2. This invention utilizes two electromagnetic rings to generate identical magnetic poles, causing one set of sliding plates, with their lower ends inside the sealing ring, to move upwards, while another set of sliding plates, with their upper ends inside the sealing ring, moves downwards until both sets of sliding plates are in the middle position. Then, rotating the water storage shell causes the outer and inner shells to rotate, resulting in the filter media and sliding plates rotating relative to the upper and lower covers. When the rotation reaches an appropriate angle, the filter media located directly below the circular hole will change, thereby altering the order of the filter media in the purified water path. Simultaneously, the direction of water flow through the filter media will also change. This solves the problem that filter media closer to the inlet bears the main filtration task, is prone to clogging, and has a short lifespan, while filter media farther from the inlet is often underutilized in traditional designs, leading to resource waste. Attached Figure Description
[0017] The accompanying drawings, which form part of this specification, illustrate embodiments disclosed in this application and, together with the specification, serve to explain the principles of this application in a clear and understandable manner.
[0018] This disclosure will become clearer with reference to the accompanying drawings and the following detailed description, wherein: Figure 1 This is a schematic diagram of the overall appearance of the invention; Figure 2 This is a half-sectional schematic diagram of the water storage shell of the present invention; Figure 3 This is a half-sectional schematic diagram of the outer casing of the present invention; Figure 4 for Figure 3 Enlarged view of point A in the middle; Figure 5 This is a schematic diagram of the interior of the end cap of the present invention; Figure 6 for Figure 5 Enlarged view of point B in the middle; Figure 7 This is a schematic diagram of a half-section of the inner shell of the present invention; Figure 8 This is a schematic diagram of the operation of the electromagnetic ring of the present invention.
[0019] Wherein: 1, inner shell; 2, partition; 3, sliding plate; 4, filter material; 5, outer shell; 6, flush valve; 7, water storage shell; 8, electromagnetic ring; 9, through hole; 10, fan-shaped magnetic block; 11, electromagnetic push ring; 12, end cover; 121, cover; 122, round hole; 123, clamping seat; 124, sealing ring; 125, arc plate; 126, limiting block; 13, water outlet shell; 14, water outlet valve; 15, connecting pipe; 16, check valve; 17, sewage mechanism; 171, rotating rod; 172, rotating head; 173, switch piece; 174, sewage pipe. DETAILED DESCRIPTION
[0020] 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, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0021] Please refer to Figures 1-8 The present application discloses a new type of water purification equipment of environmental protection material, including inner shell 1, the curved surface of inner shell 1 is fixedly connected with multiple circumferential equidistant partition 2, the middle part of partition 2 is slidably connected with sliding plate 3, adjacent two partition 2 are fixedly installed with filter material 4, the outer end of multiple partition 2 is fixedly connected with outer shell 5, the middle part of outer shell 5 is fixedly installed with multiple flush valve 6; Water storage shell 7, the inside of water storage shell 7 is provided with two electromagnetic rings 8, multiple through holes 9 are formed in the inside of electromagnetic ring 8, multiple fan-shaped magnetic blocks 10 are arranged between two electromagnetic rings 8, the outer side of two water storage shells 7 is provided with electromagnetic push ring 11; Two end covers 12, the bottom of lower end cover 12 is movably sleeved with water outlet shell 13, two water outlet valves 14 are installed at the bottom of water outlet shell 13, connecting pipe 15 is communicated on both sides of water outlet shell 13, check valve 16 is fixedly installed at the bottom end of connecting pipe 15; Sewage mechanism 17, sewage mechanism 17 is arranged in the inside of inner shell 1.
[0022] Two end covers 12 are symmetrically arranged, the end cover 12 comprises a cover body 121, two round holes 122 are arranged on the surface of the cover body 121, a plurality of circumferentially equidistant clamping seats 123 are fixedly connected to the inside of the cover body 121, a sealing ring 124 is fixedly installed in the inside of the clamping seat 123, two arc-shaped plates 125 are fixedly connected to the middle part of the cover body 121, a limiting block 126 is fixedly connected to the inner side of the arc-shaped plate 125, the same magnetic poles generated by the two electromagnetic rings 8 make a group of the sliding plates 3 with the lower end inside the sealing ring 124 move upwards, another group of the sliding plates 3 with the upper end inside the sealing ring 124 move downwards, until the two groups of the sliding plates 3 are in the middle position, then the water storage shell 7 is rotated, the water storage shell 7 drives the outer shell 5 and the inner shell 1 to rotate, the filter material 4 and the sliding plate 3 rotate relative to the upper and lower end cover body 121, when the rotation angle is appropriate, the filter material 4 located directly below the round hole 122 will change, thereby changing the sequence of the filter material 4 in the purified water path, and the flow direction of the water passing through the filter material 4 will also change, thereby solving the problem that the filter material close to the water inlet bears the main filtering task and is easy to block and has a short service life, and the filter material far from the water inlet is not fully utilized in the traditional design, and the problem of resource waste exists.
[0023] The blowdown mechanism 17 comprises a rotating rod 171 and a blowdown pipe 174, the curved surface of the rotating rod 171 is fixedly connected with two rotating heads 172, the two ends of the rotating head 172 are fixedly connected with a switch piece 173, and the blowdown pipe 174 is rotatably installed in the inside of the inner shell 1, the use of the filter material for a period of time makes all the sliding plates 3 have the upper and lower ends separated from the clamping seat 123 and be in the middle position, the rotating rod 171 drives the rotating head 172 and the switch piece 173 to rotate by rotating the rotating rod 171, until the switch piece 173 no longer blocks the gap between the two arc-shaped plates 125, the two electromagnetic push rings 11 are electrified, the magnetic field of the two electromagnetic push rings 11 attracts the electromagnetic ring 8, so that the purified water pressure between the two electromagnetic push rings 11 increases, the flushing valve 6 is opened, the purified water between the two electromagnetic push rings 11 enters the middle part of the filter material 4 through the flushing valve 6, and finally is discharged from the upper and lower ends of the filter material 4, thereby cleaning the filter material 4 by backwashing, thereby solving the problem that the surface of the existing ceramic filter material is easy to breed bacteria and accumulate a large amount of impurities after being used for a long time, thereby causing poor water purification effect.
[0024] The outer sides of the plurality of filter materials 4 are in close contact with the outer shell 5, and the plurality of flushing valves 6 are circumferentially equidistantly arranged and located on the outer side of the filter material 4.
[0025] The water storage shell 7 is fixedly connected with the outer shell 5, the two electromagnetic rings 8 are fixedly connected with the outer shell 5, the electromagnetic push rings 11 are slidably connected with the water storage shell 7 and the outer shell 5, the plurality of through holes 9 are circumferentially equidistantly arranged, the sector-shaped magnetic blocks 10 are fixedly connected with the sliding plates 3, and the magnetic poles of the adjacent two sector-shaped magnetic blocks 10 are opposite.
[0026] Wherein, the connecting pipe 15 and the middle part of the water storage shell 7 are communicated, the opening direction of the one-way valve 16 is towards the connecting pipe 15, which functions to supply water to the inside of the upper cover 121 through the two round holes 122, the water will be filtered by the plurality of filter materials 4 along the purified water path, and finally discharged from the two round holes 122 below into the inside of the water outlet shell 13, with the continuous supply and purification of water, the water pressure in the inside of the water outlet shell 13 is increased, so that the one-way valve 16 is in an open state, and then the electromagnetic push ring 11 is electrified to generate a magnetic field repelling the electromagnetic ring 8, so that the two electromagnetic push rings 11 are away from the electromagnetic ring 8, so that the purified water enters the inside of the water storage shell 7 through the connecting pipe 15.
[0027] Wherein, the two covers 121 are rotationally connected with the curved surface of the inner shell 1, and the two round holes 122 are located on both sides of a clamping seat 123, which functions that the magnetic poles of the two electromagnetic rings 8 are opposite (for details, please refer to Figure 8 ), so that the sliding plate 3 between the two round holes 122 and the sector-shaped magnetic block 10 fixedly connected to the sliding plate 3 at a position with an interval angle of twice the included angle will move downward under the action of the two electromagnetic rings 8 until the lower end of the sliding plate 3 is deeply inserted into the inside of the lower sealing ring 124 and the clamping seat 123, and since the magnetic poles of the two adjacent sector-shaped magnetic blocks 10 are opposite, the remaining sector-shaped magnetic blocks 10 will move upward under the action of the two electromagnetic rings 8 until the upper end of the sliding plate 3 is deeply inserted into the inside of the upper sealing ring 124 and the clamping seat 123, thereby forming a purified water path, and the water flow direction is shown by arrows in Figure 3 .
[0028] Wherein, the rotating rod 171 is rotationally connected with the upper cover 121, the two switch pieces 173 are adapted to the two arc-shaped plates 125 at the same horizontal position, and the blow-off pipe 174 is fixedly connected with the arc-shaped plates 125 at the upper and lower ends, which functions that the rotating rod 171 is rotated, and the rotating rod 171 will drive the rotating head 172 and the switch piece 173 to rotate until the switch piece 173 no longer blocks the gap between the two arc-shaped plates 125, and the sewage generated during backflushing will enter the gap between the two arc-shaped plates 125 and be discharged from the middle part of the water outlet shell 13 through the blow-off pipe 174.
[0029] Wherein, the clamping seat 123 is adapted to the upper and lower ends of the sliding plate 3, the connecting pipe 15 is a hard pipe, and the curved surface of the outer shell 5 is provided with a plurality of sliding grooves adapted to the sliding plate 3.
[0030] Working principle: The two round holes 122 on the top are connected with the water pipe which needs to be filtered. At this time, the magnetic poles of the two electromagnetic rings 8 are opposite. The sliding plate 3 fixedly connected with the sector-shaped magnetic blocks 10 and the sector-shaped magnetic blocks 10 with the same magnetic poles between the two round holes 122 will move downward under the action of the two electromagnetic rings 8 until the lower end of the sliding plate 3 is deeply inserted into the inside of the sealing ring 124 and the clamping seat 123. Since the magnetic poles of the two adjacent sector-shaped magnetic blocks 10 are opposite, the remaining sector-shaped magnetic blocks 10 will move upward under the action of the two electromagnetic rings 8 until the upper end of the sliding plate 3 is deeply inserted into the inside of the sealing ring 124 and the clamping seat 123, thereby forming a purified water path. Water is supplied to the inside of the upper cover 121 through the two round holes 122. The water will be filtered by the plurality of filter materials 4 along the purified water path and finally discharged from the two round holes 122 below into the inside of the water outlet shell 13. With the continuous supply and purification of water, the water pressure in the inside of the water outlet shell 13 increases, so that the one-way valve 16 is in an open state. Then the electromagnetic push ring 11 is powered on to generate a magnetic field repelling the electromagnetic ring 8, so that the two electromagnetic push rings 11 move away from the electromagnetic ring 8, so that the purified water enters the inside of the water storage shell 7 through the connecting pipe 15. With the sliding of the two electromagnetic push rings 11, the purified water will enter the space between the electromagnetic ring 8 and the electromagnetic push ring 11 through the through hole 9. When the water storage shell 7 stores an appropriate amount of purified water, the two electromagnetic push rings 11 are powered off, the water outlet valve 14 is opened, and the purified water will flow out from the water outlet valve 14; After using for a period of time, the water supply is suspended, and then the magnetic poles generated by the upper electromagnetic ring 8 are changed, that is, the magnetic poles generated by the two electromagnetic rings 8 are the same. The fan-shaped magnetic blocks 10 fixedly connected to the sliding plate 3 between the two circular holes 122 and the fan-shaped magnetic blocks 10 with the same magnetic poles are simultaneously adsorbed by the upper and lower electromagnetic rings 8. At the beginning, the adsorption capacity of the upper electromagnetic ring 8 is greater than that of the lower electromagnetic ring 8, so that the group of fan-shaped magnetic blocks 10 moves upward. During the movement, the adsorption capacity of the upper electromagnetic ring 8 gradually decreases. When the group of fan-shaped magnetic blocks 10 is located at the middle position of the two electromagnetic rings 8, the adsorption capacities of the upper and lower electromagnetic rings 8 on the group of fan-shaped magnetic blocks 10 are equal, so that the group of fan-shaped magnetic blocks 10 is always kept at the middle position. Since the magnetic poles of the adjacent two fan-shaped magnetic blocks 10 are opposite, the remaining fan-shaped magnetic blocks 10 are repelled by the two electromagnetic rings 8. When the adsorption capacities of the two electromagnetic rings 8 are equal, the remaining fan-shaped magnetic blocks 10 will also be at the middle position. At this time, the upper and lower ends of all the sliding plates 3 are separated from the clamping seat 123 and the sealing ring 124. The rotating rod 171 is rotated, and the rotating rod 171 drives the rotating head 172 and the switch piece 173 to rotate until the switch piece 173 no longer blocks the gap between the two arc-shaped plates 125. The two electromagnetic push rings 11 are electrified to generate a magnetic field that adsorbs the electromagnetic ring 8, so that the purified water pressure between the two electromagnetic push rings 11 increases. The flush valve 6 is opened, and the purified water between the two electromagnetic push rings 11 enters the middle of the filter material 4 through the flush valve 6 and is finally discharged from the upper and lower ends of the filter material 4, so as to perform backflushing cleaning on the filter material 4. The sewage generated during backflushing enters the gap between the two arc-shaped plates 125 and is discharged from the middle of the water outlet shell 13 through the sewage discharge pipe 174. After backflushing is completed, the water storage shell 7 is rotated to drive the outer shell 5 and the inner shell 1 to rotate, so that the filter material 4 and the sliding plate 3 are rotated relative to the cover 121 at the upper and lower ends. After rotating by a proper angle, the filter material 4 located directly below the circular hole 122 changes. Then the two electromagnetic rings 8 work, and the rotating rod 171 is reversed, so as to form a closed purified water path, thereby changing the sequence of the filter material 4 in the purified water path and changing the direction of the water flowing through the filter material 4, so that the multiple filter materials 4 can be fully utilized.
[0031] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present application and are not limiting. Although the present application has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that the technical solutions of the present application can be modified or replaced equivalently without departing from the spirit and scope of the technical solutions of the present application, which should be covered in the scope of the claims of the present application.
Claims
1. A water purification device of a novel environment-friendly material, comprising an inner shell (1), a plurality of circumferentially equidistantly arranged partition plates (2) being fixedly connected to the curved surface of the inner shell (1), characterized in that, The middle part of the partition plate (2) is slidably connected with a sliding plate (3), adjacent two partition plates (2) are fixedly installed with filter material (4), the outer end of multiple partition plates (2) is fixedly connected with a shell (5), the middle part of the shell (5) is fixedly installed with multiple flush valves (6); The inside of the water storage shell (7) is provided with two electromagnetic rings (8), a plurality of through holes (9) are formed in the inside of the electromagnetic ring (8), a plurality of fan-shaped magnetic blocks (10) are arranged between the two electromagnetic rings (8), and the outer side of the two water storage shells (7) is provided with an electromagnetic push ring (11); Two end covers (12) are provided, the bottom of the lower end cover (12) is movably sleeved with a water outlet shell (13), the bottom of the water outlet shell (13) is provided with two water outlet valves (14), the two sides of the water outlet shell (13) are communicated with a connecting pipe (15), and the bottom end of the connecting pipe (15) is fixedly installed with a one-way valve (16); The sewage mechanism (17) is arranged in the inside of the inner shell (1).
2. The water purification apparatus of claim 1, wherein The two end covers (12) are symmetrically arranged, the end cover (12) comprises a cover body (121), two round holes (122) are formed in the surface of the cover body (121), a plurality of circumferentially equidistant clamping seats (123) are fixedly connected in the inside of the cover body (121), a sealing ring (124) is fixedly installed in the inside of the clamping seat (123), two arc-shaped plates (125) are fixedly connected to the middle part of the cover body (121), and a limiting block (126) is fixedly connected to the inner side of the arc-shaped plate (125).
3. The water purification device of claim 2, wherein the water purification device is a new environmentally friendly material. The sewage mechanism (17) comprises a rotating rod (171) and a sewage pipe (174), the curved surface of the rotating rod (171) is fixedly connected with two rotating heads (172), the two ends of the rotating head (172) are fixedly connected with a switch piece (173), and the sewage pipe (174) is rotatably installed in the inside of the inner shell (1).
4. The water purification apparatus of claim 3, wherein the water purification apparatus is characterized by, The outer side of the plurality of filter materials (4) is in close contact with the shell (5), and the plurality of flush valves (6) are circumferentially equidistantly arranged and located on the outer side of the filter material (4).
5. The water purification device of claim 4, wherein the water purification device is a new environmentally friendly material. The water storage shell (7) is fixedly connected with the shell (5), the two electromagnetic rings (8) are fixedly connected with the shell (5), the electromagnetic push ring (11) is slidably connected with the water storage shell (7) and the shell (5), the plurality of through holes (9) are circumferentially equidistantly arranged, the fan-shaped magnetic block (10) is fixedly connected with the sliding plate (3), and the magnetic poles of the adjacent two fan-shaped magnetic blocks (10) are opposite.
6. The water purification apparatus of claim 5, wherein the water purification apparatus is a new environmentally friendly material. The connecting pipe (15) is communicated with the middle part of the water storage shell (7), and the opening direction of the one-way valve (16) is towards the connecting pipe (15).
7. The water purification apparatus of claim 6, wherein the water purification apparatus is a new environmentally friendly material. The two cover bodies (121) are rotatably connected with the curved surface of the inner shell (1), and the two round holes (122) are located on the two sides of the clamping seat (123).
8. The water purification apparatus of claim 7, wherein the water purification apparatus is a new environmentally friendly material. The rotating rod (171) is rotatably connected with the upper cover body (121), the two switch pieces (173) are matched with the two arc-shaped plates (125) at the same horizontal position, and the sewage pipe (174) is fixedly connected with the arc-shaped plates (125) at the upper and lower ends.
9. The water purification apparatus of claim 8, wherein the water purification apparatus is a new environmentally friendly material. The card seat (123) is matched with the upper and lower ends of the sliding plate (3), and the connecting pipe (15) is a hard pipe.
10. The water purification apparatus of the novel environment-friendly material according to claim 9, characterized in that, The curved surface of the shell (5) is provided with a plurality of sliding grooves matched with the sliding plate (3).
Citation Information
Patent Citations
Mining mine water circulation purification equipment
CN116062811A
Filtering assembly of medical purification equipment
CN214232954U
Magnetic inertial gravitational water cleaning filter
RU2296720C1